In-mold molding
Our company handles a variety of molded products.
We will directly mold printed PP, PET sheets, and paper. ●For more details, please contact us.
- Company:ピーエー
- Price:Other
Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.
91~105 item / All 689 items
Our company handles a variety of molded products.
We will directly mold printed PP, PET sheets, and paper. ●For more details, please contact us.
Enabling decoration on three-dimensional shapes!!
Until now, it has been difficult to add decorations to three-dimensional shapes. Additionally, it will also be possible to create patterns and color separations that cannot be achieved with painting.
"Unable to achieve the expected results" and "Even when following the manual and instructions, the desired foam cannot be obtained" are filled with hints regarding factors and solutions.
Chapter 1: Explanation of Technical Content Related to Foaming Molding - Preparation for Implementing Foaming Molding Chapter 2: Bubble Generation Process and Simulation Technology in Resin Foaming Chapter 3: Control of Bubbles and Properties in Physical Foaming Section 1: MuCellR Technology - Supercritical Foaming Injection Molding Method Using Supercritical Nitrogen and Carbon Dioxide Section 2: Extrusion and RIM Molding Technology Using Supercritical Carbon Dioxide Section 3: Epoxy Resin Foaming Molding and Bubble Structure Control Section 4: Cellulose Nanofiber Reinforced Thermoplastic Resin Foaming Molding Section 5: Molding and Application Development of Olefin Foaming Sheets Chapter 4: Control of Bubbles and Properties in Chemical Foaming Section 1: Selection and Utilization Technology of Chemical Foaming Agents Section 2: Mold Expansion Injection Foaming Molding Technology Section 3: Production Process of Gradient Foamed Rubber Utilizing Transient Thermal Conductivity Characteristics Chapter 5: Property Evaluation Technology for Foamed Materials Section 1: Property Evaluation of Soft Foamed Materials Section 2: Impact Compression Property Evaluation of Polyimide Foams Section 3: Evaluation of Elastic Modulus, Heat Resistance, and Thermal Insulation of Foamed Resins - Independent Bubble Polyethylene Foam - Section 4: Evaluation of Practical Thermal Insulation Performance and Properties of Rigid Polyurethane Foam Insulation Section 5: Tribology and Tactile Properties of Porous Soft Materials
I want to reduce gear noise, which is a friction sound, and contribute to the lightweighting of gears!
We would like to introduce our cold forging technology, "Dimple Forming on Gear Tooth Surfaces." By applying dimple forming to gear tooth surfaces, we can expect a reduction in the friction coefficient. If we can lower the friction coefficient, it is possible to reduce gear noise in gearboxes for electric vehicles (EVs) and other applications. This is expected to significantly contribute to the lightweighting of gears. 【Features】 ■ In dimpled forged surfaces, hydraulic pressure increases under load. ■ A lubricating film forms on the surrounding contact surfaces, reducing the friction coefficient. *For more details, please refer to the PDF materials or feel free to contact us.
We are engaged in "monozukuri" that emphasizes high quality and low cost through quality management and implementation.
Plastic is used for various applications, similar to press processing. There are several processing methods depending on the application. We have established a production environment to meet customer needs, along with quality control through an imaging system, focusing on high-quality and low-cost manufacturing. As processing methods, we incorporate insert and outsert molding using press products manufactured by Shimizu Industries, as well as mold systems that can accommodate small quantities and a variety of products. 【Overview】 ■ Insert/Outsert Molding ■ Injection Molding ■ Fully Automated Unmanned Line for Press Processing and Insert Molding *For more details, please refer to the PDF document or feel free to contact us.
Production system compatible with super engineering plastics.
Miyahara Gosei Co., Ltd. has established a system capable of producing LCP resin, polysulfone, polyamide imide resin (Torlon, AI Polymer), PEEK, epoxy resin, and more, pursuing the world of micro-precision molding processes such as roundness and flatness. Of course, other engineering plastics and general-purpose resins can also be molded. To meet the diverse needs of our customers, we have introduced equipment capable of producing both thermoplastic and thermosetting materials. Therefore, customers can select resin materials that enable the desired properties, price, precision, and appearance as needed. For more details, please contact us or refer to our catalog.
We promote the creation of an attractive company through technology and ingenuity that can accommodate various products.
At Plastics Seiko Co., Ltd., we engage in plastic injection molding, manufacturing and sales, as well as the design and production (outsourcing) of plastic molds. The parts we handle include automotive parts, mobile phone parts, office equipment parts, and vending machine parts, among others. In 2000, we obtained ISO 9001 certification, and we are striving to actively pursue improvements and reforms with a flexible approach in today's increasingly globalized and advanced plastic product market. Moving forward, we are committed to promoting an attractive company through technology and creativity that can accommodate various products. For more details, please contact us or refer to our catalog.
We have developed a manufacturing technology for metal powder injection molding applied to micro components, resulting in high-density, high-precision, and complex-shaped sintered products called "μ-MIM"!
At Taishō Industrial, we accept orders for prototype to mass production of high-density, high-precision, and complex-shaped "μ-MIM" products through metal powder injection molding. Metal Injection Molding (MIM) is a technology that involves mixing and kneading metal powder with a binder made of resin and wax, injecting it into a mold, and then sintering it after debinding to produce metal products. We are expanding these MIM technologies into micro components, developing our unique technology as "μ-MIM," and aiming for further technological advancements. "μ-MIM" offers high freedom in material selection, enabling the production of difficult-to-cut materials and high melting point materials. It allows for mass production of complex-shaped precision metal parts and the manufacturing of composite materials through the bonding of different materials. We also implement insert MIM molding for parts with undercuts, contributing to the reduction of assembly, press-fitting, and other processes, as well as improving quality stability and reducing costs, while accommodating screw shapes and transfers. For more details, please contact us or download our catalog.
A new technology that enables mass production of intricate shapes that are difficult to achieve with cutting processes! It eliminates the high material costs unique to copper.
Copper is a metal that excels in electrical conductivity and thermal conductivity, and is used in various applications, including electronic devices, resulting in the existence of many complex and finely shaped copper parts. Taihei Industry proposes cost reduction solutions through the adoption of Metal Injection Molding (MIM) for current mass-produced parts, which have high material costs and poor material yield when produced by cutting, as well as for complex-shaped parts that are difficult to process by cutting in the first place. We can accommodate a variety of copper-based materials, from pure copper to brass, nickel silver, and cupronickel! Taihei Industry proposes cost reduction solutions through the adoption of MIM for current mass-produced parts, which have high material costs and poor material yield when produced by cutting, as well as for complex-shaped parts that are difficult to process by cutting. *For more details, please download the catalog or contact us directly.
It is ideal for mass production prototypes, small-batch products, repairs, and custom parts.
At Gotoh Seiki Co., Ltd., we provide molded products at low cost and with short delivery times using high-precision simple molds made from super duralumin in our mold manufacturing and resin injection molding processes. This is ideal for mass production prototypes, a variety of small quantity products, repairs, and custom parts. We create molds from super duralumin, which has a hardness comparable to that of steel and excellent durability, guaranteeing between 30 and 10,000 shots. Based on 3D data, we carry out everything in-house from 3D design without drawings to processing, molding, and inspection, shortening the process by designing the mold base in-house and creating our own internal standards, allowing us to respond flexibly to design changes. For more details, please contact us.
Even complex shapes can be produced with injection molding! We deliver products with stable quality.
There are various methods for plastic molding, and one of them, "injection molding," is a suitable molding method for mass-producing products with complex shapes. At Hoshino Manufacturing, we have injection molding machines ranging from 30 tons to 180 tons of clamping force. Additionally, the required molding method varies depending on the functions and applications desired for the product. [Image of Injection Molding] 1. The raw materials are heated and melted to 150 to 280 degrees Celsius using electric heat. ↓ 2. The material is injected into the mold. ↓ 3. After cooling, the mold opens, and the product is removed. *For more details, please refer to the catalog or feel free to contact us.