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In the home appliance industry, cushioning materials are essential to protect products from shocks and vibrations during transportation. Especially for home appliances that contain many precision instruments and delicate parts, selecting the appropriate cushioning material is crucial for maintaining product quality. Inadequate cushioning materials can lead to product damage or performance degradation. Our rubber and sponge die-cutting processing offers the best cushioning solutions tailored to our customers' needs from a variety of materials and processing methods. 【Usage Scenarios】 - Packaging materials for home appliances - Internal cushioning materials for products - Shock absorption during transportation - Vibration countermeasures 【Benefits of Implementation】 - Reduces the risk of product damage - Optimizes transportation costs - Improves product quality - Enhances customer satisfaction
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In the automotive industry, gaskets are essential for maintaining airtightness and liquid tightness in various parts such as engines, transmissions, and vehicle bodies. Due to their use in harsh environments, they require high durability, heat resistance, and oil resistance. Poor gasket performance can lead to oil leaks and contamination, potentially resulting in decreased vehicle performance and failures. Our rubber and sponge die-cutting processing offers optimal materials and processing methods tailored to customer needs, contributing to improved automotive reliability. 【Application Scenarios】 - Engine gaskets - Transmission gaskets - Body sealing - Door seals - Window glass seals 【Benefits of Implementation】 - Improved reliability through high sealing performance - Compatibility with diverse materials - Enhanced cost performance - Short delivery times
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Rubber and sponge punching processing uses a die with cutting blades embedded in a base material known as a Thomson type to punch the material. The base materials can include wood, resin boards, metal sheets, etc., and are selected based on conditions such as dimensional accuracy, production time, and cost. Although the precision is inferior to that of molding with molds, it excels in cost due to the low cost of the die. *Depending on the lot size, delivery time, and accuracy, options for cutting and molding processing may also be effective. We will propose a processing method that meets your requirements. For more details, please refer to the PDF document or feel free to contact us.
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In the energy industry, the reliability of insulating materials is extremely important. To ensure the safety of electrical equipment, materials with high insulation performance are essential, and there is also a demand for design flexibility. Soft materials such as rubber and sponge excel in insulation and can be processed into various shapes, making them suitable for a wide range of applications. Our company provides insulating components in shapes tailored to customer needs by machining soft materials. 【Application Scenarios】 - Substations - Power plants - Transmission lines - Electric vehicles 【Benefits of Implementation】 - Ensuring high insulation performance - Accommodating diverse shapes - Supporting prototyping and small-scale production - Cost reduction
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In the civil engineering industry, there is a demand for compliance with noise regulations. Minimizing the noise impact on surrounding residents at construction sites and infrastructure projects is essential for smooth business operations. Inadequate soundproofing measures can lead to work interruptions and conflicts with nearby residents. Our company provides products that enhance soundproofing performance by machining soft materials such as rubber and sponge. 【Usage Scenarios】 - Soundproof walls for construction sites - Noise control measures for road construction - Sound-absorbing materials for tunnel construction 【Benefits of Implementation】 - Reduction of noise - Consideration for nearby residents - Smooth progress of construction
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In the sports equipment industry, selecting cushioning materials is crucial for balancing product safety and comfort. Particularly in sports equipment where shock absorption and durability are required, the appropriate shape and material of the cushioning can significantly affect product performance. Inadequate cushioning materials can increase the risk of injury or shorten the product's lifespan. Our company can process soft materials such as rubber and sponge into the desired shapes through cutting. 【Application Scenarios】 - Sports protectors - Shock-absorbing materials - Cushioning materials 【Benefits of Implementation】 - Achieving optimal cushioning performance - Improving product safety - Supporting prototyping and small-scale production
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In the robotics industry, precise movements and safety assurance are required. Particularly in the gripping part of robotic arms, it is important to securely grasp objects without causing damage. If the material or shape of the grip is not appropriate, it may lead to slipping, breakage, or damage to the object. Our company can manufacture grips tailored to your needs by machining soft materials. 【Application Scenarios】 - Grips for robotic arms - Gripping parts of handling robots - Contact parts of collaborative robots 【Benefits of Implementation】 - Realization of grips that are less likely to damage objects - Improved gripping power due to anti-slip effects - Compatibility with various shapes
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In the home appliance industry, the quietness and durability of products are highly valued. In particular, operating noise and vibration significantly affect the comfort and lifespan of products. Inadequate vibration control measures can lead to the occurrence of abnormal sounds and early deterioration of components. Our company provides optimal parts for vibration control in home appliances by machining soft materials such as rubber and sponge. 【Application Scenarios】 - Home appliances such as washing machines and refrigerators - Speakers and AV equipment - Products that may generate vibrations 【Benefits of Implementation】 - Reduction of vibrations - Improvement of quietness - Extension of product lifespan - Increased customer satisfaction
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In the aerospace industry, seals that require high levels of airtightness, heat resistance, and chemical resistance are essential. Particularly in components used in harsh environments, the quality of the seals affects the safety and performance of the products. Inadequate seals can lead to malfunctions of the aircraft and a decrease in safety. Our company provides seals made from soft materials through machining, which possess the shapes and performance required for aerospace applications. 【Application Scenarios】 - Aircraft engine seals - Spacecraft airtight seals - Vibration-damping materials for aircraft interiors 【Benefits of Implementation】 - Achieving high levels of airtightness, heat resistance, and chemical resistance - Improving product safety and reliability - Accommodating prototyping and small-scale production
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In the medical device industry, the quality of seals is crucial to ensure the safety and reliability of products. In particular, seals used in areas that come into contact with liquids or bodily fluids significantly affect the performance of the product, depending on the choice of material and shape accuracy. Inappropriate seals can lead to liquid leakage or contamination, increasing the risk of device malfunction and posing risks to patients. Our company offers various soft materials for seals used in medical devices through machining, catering to our customers' needs. 【Usage Scenarios】 - Sealing for medical devices - Prevention of leakage of liquids and bodily fluids - Seals requiring precise shapes 【Benefits of Implementation】 - Improved product reliability with high-quality seals - Adaptability to diverse materials and shapes - Flexible response from prototyping to small-scale production
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In the automotive industry, gaskets are used in various parts such as engines, transmissions, and bodies, playing a crucial role in maintaining airtightness and liquid tightness while preventing the intrusion of foreign substances. Particularly in environments exposed to high temperatures, high pressures, and vibrations, the durability and reliability of gaskets significantly affect the performance and safety of vehicles. If the material or shape of the gasket is not appropriate, leaks or damage may occur, potentially leading to serious problems. Our company manufactures gaskets tailored to your requirements using soft materials through machining. 【Usage Scenarios】 - Engine head gaskets - Oil pan gaskets - Door seals - Window glass seals 【Benefits of Implementation】 - Ensuring airtightness and liquid tightness - Preventing the intrusion of foreign substances - Improving durability - Extending product lifespan
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Do you have any projects or issues where you would like to prototype or produce soft materials such as rubber or sponge in single pieces or small quantities? Our company can shape soft materials through cutting processes to meet your requirements. We have a variety of materials with different hardness in stock, so please feel free to consult with us. (If it is difficult to manufacture due to complex shapes, we can also suggest alternative methods.)
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In the toy industry, prototyping is crucial for verifying design and confirming functionality. Particularly for toys that require safety and durability, accurate modeling of prototypes and appropriate material selection are essential. Depending on the modeling method, there may be insufficient detail reproduction or strength, which could hinder commercialization. Our company offers optimal modeling methods tailored to our customers' needs. 【Usage Scenarios】 - Design review - Function verification - Small-scale production 【Benefits of Implementation】 - Creation of high-quality prototypes - Reduction of time to market - Cost savings
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In the robotics industry, design changes and prototypes for movable parts are frequently conducted. Movable parts require durability and lightweight properties, making the selection of materials and consideration of manufacturing methods during the prototyping stage crucial. By utilizing 3D printers, it becomes possible to respond flexibly to design changes and achieve rapid prototyping. Our company proposes the optimal manufacturing methods tailored to our customers' needs. 【Usage Scenarios】 - Joints of robots - Movable exterior parts - Function verification during the prototyping stage 【Benefits of Implementation】 - Rapid response to design changes - Quick prototyping - Broader range of material selection
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In the food industry, the material and shape of containers are crucial for delivering safe food to consumers. Durability, airtightness, and compatibility with food are required for containers. Verifying the shape and material during the prototyping stage is essential for the success of product development. Our company utilizes 3D printers to support the prototyping of food containers. We propose the optimal manufacturing method tailored to our customers' needs. 【Usage Scenarios】 - Consideration of food container shapes - Verification of materials - Small lot production 【Benefits of Implementation】 - Prototyping possible with short lead times - Support for diverse shapes and materials - Cost reduction
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In the home appliance design industry, there is a demand for the rapidity of design prototypes and diverse expressiveness to balance product appeal and functionality. Particularly, to materialize new design concepts and align them with market needs, flexible responses during the prototyping stage are essential. Prototyping with 3D printers becomes a crucial step for design verification, functionality evaluation, and ultimately moving towards product commercialization. Our company offers optimal modeling methods tailored to our customers' design needs. 【Usage Scenarios】 - Design prototyping for home appliances - Creation of models for design reviews - Production of small quantity parts 【Benefits of Implementation】 - Quick response to design changes - Realization of diverse design expressions - Reduction of product development time
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In the medical device industry, there is a growing demand for customized medical devices tailored to the needs of patients. It is required to quickly prototype and provide devices that have the optimal shape and function for individual patients. 3D printers allow for flexible responses to design changes and enable rapid prototyping. This enables medical device manufacturers to respond quickly to patient needs and enhance their competitiveness. 【Usage Scenarios】 - Prototyping medical devices tailored to individual patient needs - Verification of the shape and function of medical devices 【Benefits of Implementation】 - Reduced prototyping time for customized medical devices - Flexible response to design changes - Realization of optimal medical device provision for patients
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In the aerospace industry, there is a demand for complex-shaped parts that achieve both lightweight and high strength. During the prototyping phase, flexible responses to design changes and the ability to produce parts in a short time frame are crucial. Shapes that are difficult to achieve with traditional manufacturing methods can be realized with 3D printers. Our company proposes the optimal manufacturing method tailored to our customers' needs. 【Application Scenarios】 - Prototyping of complex shapes - Prototyping of parts that require weight reduction - Small-lot, diverse parts manufacturing 【Benefits of Implementation】 - Increased design freedom - Reduced lead times - Potential for cost savings
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In the automotive industry, weight reduction is an essential challenge for improving fuel efficiency and performance. In particular, it is necessary to achieve weight reduction while maintaining the strength of components. Traditional manufacturing methods often involve high time and costs during the prototyping stage, and there are challenges related to low flexibility for design changes. Prototyping with 3D printers addresses these issues, enabling rapid design verification and the realization of weight reduction. 【Application Scenarios】 - Prototyping of automotive parts - Component design aimed at weight reduction - Small lot production 【Effects of Implementation】 - Rapid prototyping and verification during the design phase - Improved fuel efficiency performance due to weight reduction - Cost reduction through a decrease in the number of parts
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This is an introduction to 3D printing services. There are various methods of 3D printing. Are you unsure which method is best for your needs? Our company will provide you with the most suitable proposal based on your requirements from a variety of printing methods. - I want to know which manufacturing method is suitable for this application. - I want to produce small lots with a variety of products as cheaply as possible. - Is it possible to prototype with specified materials? - There are so many printing methods that I don't understand them well. If you find yourself in such a situation, please feel free to contact us. We accept inquiries for both resin and metal. 【Proposal for Various 3D Printing Methods】 - Fused Deposition Modeling (FDM) - Inkjet Method - Powder Sintering Layered Manufacturing Method - Stereolithography Method *Additionally, we can propose various methods for prototyping and small-scale production beyond 3D printing. Please feel free to inquire.
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In the telecommunications industry, high-precision component machining is required to maximize the efficiency of radio wave transmission and reception for antenna applications. Particularly for antenna components used in high-frequency bands, even slight dimensional errors can significantly impact performance. Our metal cutting processing can flexibly accommodate customer needs, from single items to mass production. 【Application Scenarios】 - Base station antennas - Satellite communication antennas - Wireless LAN antennas 【Benefits of Implementation】 - Improved antenna performance through high-precision component machining - Increased design flexibility by accommodating various metal materials - Consistent support system from prototyping to mass production
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In the precision machinery industry, high-precision processing of enclosures is required to ensure the reliability and durability of products. In particular, for enclosures exposed to external shocks, vibrations, and temperature changes, high dimensional accuracy, strength, and appropriate surface treatment are essential for maintaining product performance. Improper processing or poor-quality materials can lead to malfunctions or failures of the equipment. Our metal cutting processing accommodates a wide variety of materials and provides optimal processing tailored to customer needs, from single items to mass production. 【Application Scenarios】 - Precision machinery enclosures - Electronic equipment enclosures - Medical device enclosures - Measurement equipment enclosures 【Benefits of Implementation】 - Improved product reliability through high-precision enclosure processing - Increased design flexibility by accommodating a wide variety of materials - Flexibility to handle everything from single items to mass production - Delivery of finished products according to drawings, including painting, surface treatment, and helicoil embedding.
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In the robotics industry, there is a demand for lightweight and highly precise joint components. Particularly in joint parts that endure repetitive motions and loads, high durability and precise machining significantly influence the performance of robots. Improper machining can lead to operational failures or premature wear. Our metal cutting processing accommodates a wide variety of materials and provides optimal machining methods tailored to customer needs, contributing to the enhancement of robot performance. 【Application Scenarios】 - Joints of robotic arms - Movable parts of robotic hands - Drive components of various industrial robots 【Effects of Implementation】 - Improved operational performance through high-precision component machining - Energy savings through weight reduction - Extended maintenance cycles due to increased durability
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In the machine tool industry, parts that require high precision and durability are essential. Especially for components used in harsh environments, the selection of materials and precise machining significantly affect the performance and lifespan of the machinery. Inappropriate parts can lead to machine failures or performance degradation. Our metal cutting processing utilizes a wide variety of materials and advanced machining techniques to provide high-quality parts that meet our customers' demands. 【Application Scenarios】 - Various parts for machine tools (gears, shafts, frames, etc.) - Parts requiring high precision - Parts requiring durability 【Benefits of Implementation】 - Improved performance of machine tools - Extended lifespan of parts - Increased machine operating rate
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In the semiconductor manufacturing industry, jigs that require high-precision processing are essential. In particular, the accuracy of dimensions in processes such as wafer transport and positioning greatly affects product quality. Inadequate jigs can lead to delays in the manufacturing process and the occurrence of defective products. Our metal cutting processing services cater to a wide variety of materials and provide jigs tailored to customer needs, from single items to mass production. 【Usage Scenarios】 - Jigs for wafer transport - Jigs for positioning - Jigs for inspection - Other jigs used in the semiconductor manufacturing process 【Benefits of Implementation】 - Stabilization of the manufacturing process through the provision of high-precision jigs - Reduction of defect rates - Improvement in productivity - Realization of optimal jigs by accommodating diverse materials
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In the aerospace industry, aircraft manufacturing requires lightweight structures and high strength. In particular, precise processing of metal components is essential to ensure the safety and durability of the aircraft. Improper processing can lead to a decline in aircraft performance or even accidents. Our metal cutting processing accommodates a wide variety of materials and provides tailored processing from single items to mass production to meet our customers' needs. 【Application Scenarios】 - Aircraft and spacecraft structural components - Engine parts - Structural materials 【Benefits of Implementation】 - Improved aircraft performance through high-precision component processing - Enhanced fuel efficiency through weight reduction - Increased design flexibility by accommodating diverse materials
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In the automotive engine industry, high durability and precision are required. Since engines are exposed to high temperatures and pressures, the components used must have high strength and accuracy. Metal cutting processing is an essential technology to meet these demands. Our metal cutting processing supports the design and manufacturing of engine parts, accommodating a wide variety of materials, including difficult-to-cut materials such as aluminum, carbon steel, and titanium. 【Application Scenes】 - Engine blocks - Pistons - Crankshafts - Valves - Other internal engine components 【Benefits of Implementation】 - Improved engine performance through high-precision component manufacturing - Increased design flexibility by accommodating diverse materials - Flexibility to handle everything from single items to mass production - Shortened processes through the delivery of finished products based on drawings
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We can handle processing from a single item to mass production of 1,000 pieces or more. We can deliver finished products according to drawings, including painting, surface treatment, Helicoil embedding, and press fitting. Please feel free to contact us.
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In the food processing industry, ensuring product quality and safety is the top priority. In particular, cushioning materials are essential for protecting products from vibrations and shocks in machines and equipment that handle food. However, traditional cushioning materials have the challenge of being difficult to adapt to small lot needs due to the cost and time required for mold production. Our rubber cutting processing can produce various shapes of cushions without the need for molds, allowing us to flexibly meet the diverse needs in food processing environments. 【Usage Scenarios】 - Cushioning materials for food transport lines - Vibration absorption for food processing machines - Shock absorption for packaging machines 【Benefits of Implementation】 - Reduced mold costs and cost savings - Possible delivery in a short time frame - Adaptability to various shapes and materials
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In the agricultural machinery industry, seals that can withstand harsh operating environments and possess high durability and airtightness are required. It is important to protect the interior of machines from dust, water, and oil, while maintaining performance. Although mold production requires time and cost, our rubber cutting processing can provide seals in the necessary shapes with shorter lead times while keeping initial costs low. 【Usage Scenarios】 * Agricultural machinery such as tractors, combines, and rice transplanters * Seals for engines, hydraulic cylinders, and various bearings * Prototyping and small-scale production 【Benefits of Implementation】 * Reduction in mold costs * Short lead time response * Adaptability to various materials and shapes * Reduction in maintenance costs
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In the home appliance industry, the quality of cushioning materials is crucial for protecting products from vibrations during transportation and use. This is especially true for home appliances that contain many precision instruments and delicate components, as the performance of the cushioning material affects the product's lifespan and safety. Since mold production requires time and cost, cost and delivery time become challenges in prototype and small-lot production. Our rubber cutting processing can produce three-dimensional cushioning materials without using molds, thereby solving these challenges. 【Usage Scenarios】 - Cushioning materials for home appliances - Cushioning materials in the prototype stage - Cushioning materials for small-lot production 【Benefits of Implementation】 - Reduction in mold costs - Ability to respond to short delivery times - Capability to accommodate various shapes
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In the robotics industry, a grip that can securely hold workpieces of various shapes is required. In particular, customizing the grip to match the material and shape of the workpiece is important for improving work efficiency and safety. However, there is a challenge in that prototyping and small-lot production of grips require time and cost for mold manufacturing. Our rubber cutting process solves these challenges by processing rubber and sponge in three dimensions without the use of molds. 【Application Scenarios】 - Robot hand grips - Suction pads - Protective materials 【Benefits of Implementation】 - Achieves low-cost prototyping of grip shapes - Enables grip production with short lead times - Supports various materials and hardness levels
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In the semiconductor manufacturing industry, gaskets that require high airtightness and chemical resistance are essential. In particular, the accurate shape and material of the gasket are crucial to prevent the contamination of fine foreign substances during the manufacturing process and to maintain product quality. While mold production takes time and costs, our rubber cutting processing provides gaskets tailored to customer needs without the need for molds and with short delivery times. 【Application Scenarios】 - Semiconductor manufacturing equipment - Seals for precision instruments 【Benefits of Implementation】 - Reduction of initial costs and lead times - Adaptability to various materials and shapes - Flexible response from the prototype stage
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In the medical device industry, the quality of seals is crucial to ensure the safety and reliability of products. In particular, seals used in areas that come into contact with liquids or bodily fluids require high sealing performance and durability. Inadequate seals can lead to leaks and contamination, potentially compromising the performance of medical devices. Our rubber machining allows for the production of seals in various shapes without the use of molds, making it ideal for prototyping and small-batch production. We can accommodate a wide range of materials and hardness levels to provide optimal seals tailored to our customers' needs. [Application Scenarios] - Connection points of medical tubes - Piston sections of syringes - Sealing sections of various testing equipment [Benefits of Implementation] - Reduction in mold costs - Short delivery times - Support for diverse shapes and materials - Improved product reliability with high-quality seals
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In the aerospace industry, high levels of safety and reliability are required, and seal components must possess high precision and durability. Seals that can withstand harsh environments contribute to maintaining the performance of the aircraft. While mold production takes time and costs, our rubber cutting processing can flexibly respond from prototyping to mass production without molds, achieving short delivery times and cost reductions. 【Application Scenarios】 - Sealing of aircraft and spacecraft fuselages - Seals for engines and hydraulic equipment - Seals for various piping and connections 【Benefits of Implementation】 - Reduction of mold costs - Supply of parts in a short time - Adaptability to various shapes and materials - Consistent support from prototyping to mass production
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In the automotive industry, vibration damping performance significantly affects ride comfort and durability, making it an important factor. To effectively suppress vibrations from the engine and during driving, high-quality vibration damping components are required. While mold production incurs costs and time, this can become a challenge in the prototyping stage or for small-scale production. Our rubber cutting processing does not require molds and can produce vibration damping components in shapes tailored to customer needs. 【Application Scenarios】 - Engine mounts - Cushioning materials between the body and suspension - Vibration absorption for interior parts 【Benefits of Implementation】 - Reduction in mold costs - Supply of components in a short lead time - Compatibility with various rubber materials and hardness - Accelerated performance evaluation through prototypes
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Introducing rubber cutting processing. For those involved in cutting processing or handling processed products, it may be hard to imagine, but it is indeed possible to cut and shape soft rubber into three-dimensional forms. When people see the samples, they often say, "Isn't this rubber molding?" However, it is also possible to create certain shapes through cutting processing. There are no restrictions on material or hardness. While we cannot achieve tolerances like those in plastics or metals, we strive to meet our customers' requests as closely as possible. We do not give up just because it is rubber. Simple tasks are handled by machines, while difficult and interesting tasks are performed by humans (craftsmen). Since no molds are required, we can reduce costs and shorten delivery times. Are there any projects or shapes you have given up on thinking they would only be for one or two pieces? Please feel free to contact us.
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In the automotive parts industry, product quality and delivery time are crucial. Especially in prototype production, repairs, and emergency parts procurement, a quick turnaround is required. Delays in parts supply can lead to production line stoppages and repair delays, potentially resulting in significant losses. Our company responds to customer needs with quick turnaround times for plastic machining. 【Usage Scenarios】 - Production of prototypes - Procurement of repair parts - Emergency parts supply 【Benefits of Implementation】 - Quick parts supply - Reduced risk of production line stoppages - Shortened repair times
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Ah! It's the weekend today. If you find yourself in an emergency situation where you need parts urgently, such as missing necessary components for early next week or having overlooked an order, please contact us. Our site operates on weekends and holidays as well, so if materials are available and the processing machines have open slots, we can make "processing and shipping over the weekend" a reality. Depending on the materials, processing details, and quantities, we will do our best to accommodate your request with the best possible delivery time.
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Before transitioning to mass production of plastic injection molded products and rubber molded products, do you have any need to create a few pieces for shape confirmation and assembly verification? If it's just one piece, a 3D printer would suffice, but if you require a larger quantity of prototypes, it may incur higher costs and take more time. With vacuum casting, it is possible to produce molds for casting at a low cost and in a short period, making it an effective processing method when producing a few to several dozen pieces needed for prototypes. Of course, it depends on the application, but it can also be used as a real product. You can choose from two materials: polyurethane elastomer and silicone rubber. - Polyurethane elastomer is available in hardness levels of 0, 7, 15, 20, 30, 40, 50, 60, 70, 80, and 90. - Silicone rubber is available in hardness levels of 40, 50, 60, and 70. - The casting sizes can be up to 900mm in length, 900mm in width, and 600mm in height, or 1400mm in length, 1400mm in width, and 300mm in height. Depending on the lot size and shape, we can also propose machining or molding using simple molds, so please feel free to consult with us.
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Introducing thermoplastic plastic molding. When it comes to mass production of plastics, injection molding is the way to go. Our company can handle molding not only for general plastics and engineering plastics but also for super engineering plastics like PEEK. Additionally, we offer integrated services including insert molding, two-color molding, as well as post-molding printing and plating. Please feel free to consult with us. 【What is super engineering plastic?】 It refers to materials with a continuous use temperature of over 150°C. Among them, PEEK has a continuous use temperature of 250°C, which limits the options for molding. 【What is two-color molding?】 It is a molding method that combines different resins or materials (e.g., plastic and elastomer) into a single unit. 【Our strengths】 Our company is also skilled in producing prototypes before molding. This allows us to handle everything from prototyping to mass production in a seamless manner, facilitating smooth communication regarding gaps and detailed discussions between the prototype and mass production stages.
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Introducing plastic grinding processing. Do you want to achieve dimensional accuracy in plate thickness but are concerned about machining marks (full back marks) in mechanical processing? Or do you have issues with wanting to improve dimensional accuracy beyond what you currently have? Our company can provide not only precision grinding of plastic plate thickness but also machining, allowing us to deliver finished products. 【Material Examples】 ■ Bakelite ■ PEEK ■ Glass epoxy We can also handle material procurement. 【Plate Thickness Accuracy】 ■ ±0.01 to ±0.05 The achievable accuracy varies depending on the material and size. *For more details on materials and sizes, please refer to the PDF catalog or feel free to contact us.
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In the agricultural machinery industry, dust-proof measures that can withstand harsh operating environments are crucial. To prevent the intrusion of soil dust and moisture and maintain the performance of the machinery, the appropriate selection of seal packings and gaskets is essential. Deterioration or defects in these components can lead to machine failures and reduced lifespan. Our precision die-cutting process provides an optimal solution to enhance dust-proof performance through precise cutting from rubber sheets. 【Usage Scenarios】 - Agricultural machinery such as tractors, combines, and rice transplanters - Filling gaps in engine parts, cabins, and control panels - Dust-proof, waterproof, and vibration-proof measures 【Benefits of Implementation】 - Reduces the risk of machine failure - Lowers maintenance costs - Improves machine operating rates
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In the toy industry, shock absorption performance is essential to ensure product safety and protect children from falls and impacts. In particular, appropriate materials and processing techniques are required to meet product durability and safety standards. Our die-cutting process specializes in cutting from rubber sheets, selecting the optimal material from various rubber materials, and providing components with high shock absorption performance. 【Usage Scenarios】 - Cushioning material for toys - Components that require shock absorption - Impact mitigation during falls 【Benefits of Implementation】 - Improved product safety - Enhanced product durability - Options from a variety of rubber materials
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In the aerospace industry, high safety and reliability are required, and insulation performance is an important factor. High-performance insulation materials are essential for temperature management of the aircraft and minimizing the impact from the external environment. Proper selection of rubber materials and precise processing techniques are crucial to meet these demands. Our die-cutting processing provides rubber material processing tailored to customer needs and contributes to improving insulation performance in the aerospace field. 【Application Scenarios】 - Cabin insulation of aircraft - Insulation around engines - Protection of electronic devices 【Benefits of Implementation】 - Achieving high insulation performance - Improved fuel efficiency through weight reduction - Compatibility with various rubber materials - Short delivery times
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