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■Router (Woodworking) It is possible to create tool paths compatible with 2-axis to 3-axis machining, block drilling, composite heads, and angle heads in woodworking processing. By combining with 'Multi-Axis', it also supports multi-axis machining.
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■Multi-Axis (Simultaneous 5-Axis Machining) It is easy to create 5-axis machining tool paths using a graphical setup screen. Detailed axis control allows for flexible machining settings. The output NC data is compatible with a wide range of machine tools.
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"Autodesk HSM" is a CAD/CAM solution that combines the 3D CAD "Inventor Professional" with the advanced and efficient machining capabilities of CAM "HSM." HSM creates reliable and efficient tool paths for a wide range of machining processes, from 2.5-axis to 5-axis milling and turning. Additionally, it includes the Solidworks add-in CAM (HSM for Solidworks) and the cloud-based CAD/CAM Fusion360. ■ Autodesk HSM Lineup - HSM Premium Supports 2.5-axis, 3-axis, 3+2-axis, and turning operations, creating reliable and efficient tool paths. - HSM Ultimate In addition to the machining capabilities of HSM Premium, it also supports simultaneous 5-axis machining. ■ With Autodesk HSM, you can use the following software: - HSM for Inventor (CAD/CAM) - HSM for Solidworks (CAM) - Fusion360 (CAD/CAM)
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At System Create, we offer a 3D technology outsourcing service using 3D printers. By using rubber-like resin that has properties similar to rubber and allows for hardness adjustment, we can achieve verification that is close to the final product.
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This is a booklet of success stories featuring 10 companies that have implemented the "MDX Series," "SRM-20," "ARM-10," and "LEF Series," achieving in-house production of cutting, shaping, and UV printing.
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At System Create, we offer a 3D printing service using 3D printers. ■Features High heat resistance: It boasts a high heat resistance with a heat tolerance of approximately 216 degrees. Chemical resistance: It can withstand corrosive chemicals, making it suitable for medical applications. Biocompatibility: It is certified to ISO 10993/USP Class VI. Food contact approved: It has NSF 51 food contact certification. ■Example Applications Mechanical testing, tooling brakes, aircraft interior parts, piping, etc. ■Service Overview 3D Printer Used: Fortus450mc (Fused Deposition Modeling) Maximum Build Size: 406×355×406mm Layer Thickness: 0.254mm *You can download the PDF catalog from the button below.
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At System Create, we offer a 3D technology outsourcing service using 3D printers. We create models using versatile ABS resin that can be utilized for various applications. Additionally, we also provide post-processing services using machine tools and other equipment.
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At System Create, we offer 3D technology outsourcing services using 3D printers. It is water-resistant, has a heat resistance of about 100 degrees, and shows little color change after heating, making post-experiment verification clear.
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★On page 2 of the document, we have listed reference costs/reference dimensional accuracy★ At System Create, we offer a 3D printing service using 3D printers. ■Features High heat resistance/impact resistance: The heat resistance temperature is approximately 140 degrees, and it is made of high-performance resin with excellent durability. No support needed for shaping: Due to the SLS (Selective Laser Sintering) method, it is possible to create shapes that are difficult to remove supports from, as well as to create integrated structures. ■Example Applications Testing of fitting parts such as snap shapes or applying pressure insertion. ■Service Overview Used 3D Printer: LISA Shaping Method: SLS (Selective Laser Sintering) Maximum Build Size: 90×110×130mm Layer Pitch: 0.125mm *You can download the PDF catalog from the button below.
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At System Create, we regularly hold processing schools utilizing the tabletop cutting machine "MODELA" series! "I want to introduce a cutting machine for the first time, but what do I need?" "I'd like to take a look at the MDX series." We will introduce processing know-how in a demonstration format! We will also explain other often-overlooked settings and their solutions. Customers who purchase the MODELA series from us or request a quote can attend for free. *For customers who have concerns such as wanting to improve their business processes, we also offer a practical course using "Fusion360." For more details, please visit our website or feel free to contact us.
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You can always use the latest versions of over 10 types of cutting-edge 3D product design and engineering software, including 3DCAD "Inventor Professional," "AutoCAD," finite element analysis software "Nastran in CAD," and 3DCAM "HSM," at an attractive package price. Depending on the situation, you can download and install the tools you want to use when you need them, whether for temporarily required tools for specific projects or clients, or for exploring new workflows. This collection supports various initiatives starting from design, such as optimizing designs based on analysis and challenging in-house production through CNC machining.
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The "SRM-20" is a low-cost, compact cutting machine that is widely used by companies and educational institutions for circuit board creation. With cutting processing, you can create circuit boards from design data in a short time without worrying about outsourcing lead times and costs, or handling corrosive liquids and waste disposal during etching. This offers many advantages when multiple prototypes or small quantities of circuit boards are needed.
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Despite its compact body, it boasts high rigidity and achieves high precision.
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Introducing solutions to seven challenges encountered during the implementation and operation of CAD/CAM using Autodesk CAM. This can also be utilized as a checklist for replacing, expanding, or newly implementing CAD/CAM.
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In the field of furniture design, there is an increasing demand for diverse designs and high-quality products. By utilizing 3D scanning technology, it is necessary to accurately digitize the shapes of existing furniture and objects, thereby streamlining the design process. Accurate data acquisition is particularly important in the design of furniture with complex shapes and curves. Geomagic Wrap is software that allows for the quick, accurate, and easy conversion of 3D scan data and mesh data. It enables data modifications beyond what is possible with the correction software included with 3D scanners. 【Use Cases】 - Digitizing the shapes of existing furniture into 3D data for design purposes - Designing furniture with complex shapes - Modifying 3D scan data and converting it into CAD data 【Benefits of Implementation】 - Reduction in design time - Increased design freedom - Decrease in the number of prototypes needed
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In educational institutions, there is a growing demand for teaching materials that utilize 3D scanning technology. It is important to deepen students' understanding through the creation and modification of 3D models. Geomagic Wrap is ideal for creating teaching materials in educational settings because it allows for easy editing of 3D scan data and mesh data. It enables data modifications beyond the correction software included with 3D scanners. 【Usage Scenarios】 * Modification of 3D scan data * Creation of 3D models * Utilization of 3D data as teaching materials 【Effects of Implementation】 * Improvement of students' 3D modeling skills * Reduction of teaching material creation time * Provision of practical learning opportunities
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In the automotive industry inspection process, it is essential to accurately grasp the shape and dimensions of parts. In particular, it is important to detect deformations caused by manufacturing errors or aging deterioration early on in order to maintain quality. Geomagic Wrap streamlines inspection tasks by quickly and accurately correcting and converting point cloud data and mesh data obtained from 3D scan data. 【Use Cases】 - Shape inspection of parts - Wear inspection of molds - Dimensional measurement of prototypes 【Benefits of Implementation】 - Reduction in inspection time - Improvement in quality control - Cost reduction
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In reverse engineering within the manufacturing industry, it is essential to digitize existing products and parts into 3D data to facilitate design changes and remanufacturing. Particularly, accurately digitizing products with complex shapes and dimensions for use as CAD data is crucial. Inaccurate data and the complexity of editing can lead to design delays and increased costs. Geomagic Wrap is software that allows for the quick, accurate, and easy conversion of 3D scan data and mesh data. It enables smooth utilization in subsequent processes. 【Usage Scenarios】 - 3D digitization of existing products - Duplication of damaged parts - Data creation for design changes - Mold manufacturing 【Benefits of Implementation】 - Creation of accurate 3D data - Reduction of design time - Cost savings - Effective utilization of existing assets
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Geomagic Wrap allows you to convert point cloud data obtained from 3D scans or input 3D formats (such as STL, OBJ) into 3D polygon meshes or surfaces. The converted data can be utilized in manufacturing, analysis, design, entertainment, archaeology, and more. It enables data modifications beyond the correction software included with 3D scanners. [Features] ■ Easy repair of noise and errors The automatic re-meshing tool searches for and automatically repairs irregularities and invalid polygon structures caused by noise. ■ Optimal repairs tailored to the situation With the hole-filling function, you can select the most suitable hole-filling options based on curvature, tangents, and plane settings. ■ Convert data into a format usable with existing CAD Automatic surface creation from polygon data is possible. The surfaced data can be output as an intermediate file, making it editable with your CAD software. ■ Convert data and use it immediately in the next process Supports various output formats, allowing for output suitable for CAD, 3D printing, and other processing. *For more details, please request a catalog or view the PDF data via the download button below.
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In the field of archaeology, detailed analysis of the shape and internal structure of excavated artifacts is crucial for understanding their age, use, and cultural background. Traditional analytical methods have made it difficult to visualize internal structures without destroying the artifacts. TomoShop Viewer generates 3D models from CT scan data, enabling non-destructive and detailed analysis. This expands the potential for new discoveries through shape measurement and internal structure analysis of artifacts. 【Application Scenarios】 - Shape analysis of excavated artifacts - Visualization and analysis of internal structures - Creation and preservation of 3D models of artifacts 【Benefits of Implementation】 - Preservation of artifacts through non-destructive testing - Deepening research through detailed shape analysis - Information sharing and education utilizing 3D models
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In geological surveys, it is important to understand the internal structure of strata and rocks in detail. Traditional survey methods have limitations in sampling and visual observation, making it difficult to grasp the overall picture of the internal structure. TomoShop Viewer visualizes the internal structure by generating 3D models from CT scan data, enabling more detailed analysis. This is expected to improve the accuracy and efficiency of surveys. 【Use Cases】 - Analysis of internal structure of rock samples - Visualization of stratigraphic structures - Analysis of faults and cracks - Analysis of boring cores 【Benefits of Implementation】 - Reduced impact on samples through non-destructive testing - Improved analysis accuracy through visualization of internal structures - Intuitive information grasping with 3D models - Shortened survey time and cost reduction
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In automotive design, accurately understanding the shape of components is a crucial factor that influences the quality and efficiency of the design. Particularly in the design of parts with complex shapes or internal structures, 3D data obtained from CT scan data is essential. In traditional design processes, the use of CT scan data has been a challenge due to the time and effort required. TomoShop Viewer converts CT scan data into 3D data, streamlining the design process. 【Use Cases】 - Design of automotive parts - Shape analysis of prototypes - Reverse engineering 【Benefits of Implementation】 - Reduced design time - Improved design accuracy - Cost savings
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In the field of non-destructive testing, accurate evaluation of internal structures is required to ensure product quality. In particular, defects in materials and contamination by foreign objects can compromise the performance and safety of products. CT scan data is an effective means of visualizing these internal structures, but its analysis requires specialized knowledge and time. TomoShop Viewer allows for the conversion of CT scan data into 3D data, making visualization and analysis easy. 【Use Cases】 * Quality inspection of internal structures of products * Detection of material defects and foreign objects * Improvement of manufacturing processes 【Benefits of Implementation】 * Reduction of inspection time * Enhancement of quality control * Reduction of defective products
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The "TomoShop Viewer" is software designed to convert CT scan data into 3D data for use in CAD and 3D printers. It combines a variety of measurement functions, high-speed processing, artifact reduction features, and a low price. [Features] ■ Convert and output CT scan data CT scan data from medical CTs and MRIs (in DICOM format) can be converted and output in formats such as STL, IGES, and VRML, making it usable in 3D CAD and 3D printers. ■ Reduce artifacts (noise) to obtain clear 3D data Reduces artifact noise that occurs in reconstructed images from CT scan data. It includes features to mitigate ring artifacts and vertical artifacts. ■ Display fine shapes in high quality Equipped with volume rendering capabilities that faithfully depict fine shapes of biological and natural objects in high quality. It is also possible to color the data and obtain it as a 3D model. ■ Diverse measurement and analysis Measurements such as distances and angles in 2D images, as well as inner diameter measurements in 3D images, are possible. *For more details, please request a catalog or view the PDF data from the download button below.
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In-house production of machine tools presents important challenges in improving product quality and reducing costs. Particularly in prototype and small-lot production, there is a demand for reducing outsourcing costs and shortening delivery times. The Cut-α series supports in-house production robustly while achieving high processing performance and operability with a space-saving design. 【Usage Scenarios】 - Production of prototypes - Manufacturing of small-lot parts - Mold making 【Benefits of Implementation】 - Reduction in outsourcing costs - Shortened delivery times - Improved quality control
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Large molds require high-precision machining because accuracy and durability significantly affect product quality. However, machine tools capable of handling large workpieces can be difficult to introduce due to space constraints. The Cut-α series achieves a wide stroke while maintaining a space-saving design, meeting the machining needs for large molds. 【Usage Scenarios】 - Machining of large molds - Small-batch production of various types - Operation in a space-saving manner 【Benefits of Introduction】 - Capability to handle large workpieces - Achievement of high-precision machining - Cost reduction through space-saving design
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The "Cut-α Series" condenses the voices of customers who are dedicated to manufacturing and all the know-how of developing space-saving cutting machines into this one unit. It is equipped with 16 ATCs, a maximum spindle speed of 10,000 min-1, and enhanced rigidity, among other features.
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The low-cost 3D viewer '3DFovi', equipped with only the necessary features, straightforwardly answers the desire to "easily check 3D data." ☆★☆ Bulk purchase campaign ongoing! ☆★☆ Special prices for multiple sets of the 3D viewer + plugin module! <2 License Pack> Available for 70,000 yen (excluding tax), saving you 6,000 yen off the regular price! <5 License Pack> Available for 150,000 yen (excluding tax), saving you 40,000 yen off the regular price! ■ Low Price The set price for the 3D viewer + plugin module is 38,000 yen (excluding tax). ■ Easily check various information about 3D data Easily check assemblies, parts, and cross-sections. Measurement, color changes, part movements, note creation, and image attachments are also possible. ■ Can read various native data In addition to intermediate files like IGES and STEP, you can view various native data such as CATIA, NX, CREO, SOLIDWORKS, and PARASOLID. * A plugin module is required to read native data and PARASOLID.
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"Eureka" is a simulation software that supports all types of NC machining. It is compatible not only with 3-axis milling machines and turning machines but also with multi-axis machines. It can detect interference between all components such as spindles, tables, turrets, jigs, workpieces, and holders, as well as machine limit overs. Additionally, it can accurately reproduce operations without the need for customization if using common CNC controllers (such as FANUC, SIEMENS, HEIDENHAIN, etc.). It allows for real-time simulation while checking various errors such as material removal, rapid feed collisions, and interference with product models and jigs.
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We offer the 'Geomagic Series' software that allows for smooth and easy editing and processing of 3D scan data! 【Product Lineup】 ■Geomagic Design X A 3D reverse engineering software that enables the creation of CAD models based on 3D scan data. ■Geomagic Control X A measurement, inspection, and analysis software that allows for error analysis and inspection of 3D scan data and CAD data. ■Geomagic Wrap A simple editing software for 3D scan data that can convert 3D scan data into forms useful for manufacturing, analysis, and design.
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"Geomagic Sculpt" is a new sensation virtual clay modeling system that allows you to "touch" virtual clay to create 3D models. Unlike traditional CAD, which is constrained by numbers, you can create complex and organic shapes and designs by pushing, pulling, and applying fine embossing. [Features] ■ "Touch" the design on the screen Modeling is done with a dedicated device instead of moving the mouse cursor on a flat surface. When you hold the stylus and operate it, the user’s hand feels resistance as if they are actually touching the model. *Mouse operation is also possible. ■ Capable of expressing fine designs You can create complex and organic designs that cannot be expressed with CAD. It is also possible to create embossing from loaded images. ■ Improved design and efficiency when used in conjunction with manufacturing tools It is possible to complement CAD functions by creating precise designs based on data created in CAD. Input and output with 3D scanners/printers can also lead to increased efficiency in the process. *For more details, please request a catalog or view the PDF data from the download button below.
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"Tune D3" is a professional-grade polishing film designed to reduce layer marks on 3D printed objects and provide a glossy finish. It does not use any special chemicals, making it easy for anyone to polish. It is compatible with materials ranging from ABS/PLA resins and nylon (polyamide) to acrylic resins. [Features] ■ Safe and user-friendly design for everyone It does not use organic solvents or special chemicals, and it does not require any specific skills from the operator, allowing anyone to easily process it. ■ Easy-to-understand film types Each film included in the kit is color-coded, making it visually easy to identify the types of films. ■ Efficient polishing is also possible It can be used only on areas that require polishing, making it easy to perform shape corrections and fine adjustments (dimensional changes) on the printed object. ■ Surface finishing that can also be used for post-processing The surface can be finished in either a matte or clear (mirror or transparent) style. It minimizes the "roughness" that can easily occur after polishing, allowing for a beautiful surface (texture). *For more details, please request a catalog or view the PDF data from the download button below.
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In the machine tool industry, reducing processing time and improving quality are essential for enhancing productivity. Particularly in low-volume, high-variety production and complex shape machining, optimizing NC programs becomes crucial. Inappropriate programming can lead to increased processing time, premature tool wear, and even a decline in machining accuracy. ESPRIT CAM addresses these challenges and significantly contributes to improving production efficiency by maximizing the potential of machine tools. 【Application Scenarios】 - Reduction of processing time in multi-axis machining and complex lathes - Process optimization in machining complex-shaped parts - Machining of parts requiring high precision 【Benefits of Implementation】 - Maximization of processing time - Extension of tool life - Improvement in machining accuracy - Reduction of setup time
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In the automotive industry’s mass production system, achieving both high productivity and quality is essential. In particular, to manufacture parts efficiently, it is important to maximize the performance of machine tools and streamline the creation of NC programs. If the creation of NC programs takes too long or if machining troubles occur, production efficiency can decline, potentially leading to increased costs. ESPRIT CAM supports a wide range of machining from 2-axis to 5-axis processing, lathes, mill-turns, and wire cutting, automatically generating high-efficiency NC programs with intuitive operation. This contributes to improving productivity and quality in the mass production of automotive parts. 【Usage Scenarios】 - Mass production machining of automotive parts - Machining of complex-shaped parts using multi-axis processing and composite lathes - Efficient creation of NC programs 【Benefits of Implementation】 - Reduction in machining time - Decrease in setup time - Reduction in machining troubles - Stable supply of high-quality products
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The CAM software that maximizes the performance of multi-axis lathes, Swiss-type automatic lathes, and composite lathes is "ESPRIT." The ESPRIT CAM system provides effective NC programs for all CNC machine tools.
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"Polymaker" is a high-quality filament that can be used with almost all desktop FDM 3D printers. With a wide variety of types available, it can be utilized in a broad range of applications. [Features] ■ Printing that doesn't waste time Utilizing patented Jam-Free technology, it is designed to minimize nozzle clogs. This reduces the time spent handling clogs and leads to shorter printing times. ■ A wide variety of types for diverse applications The various filaments each have different properties, allowing you to select materials based on the purpose and application of your print. ■ Quality control you can trust Under an eight-stage quality control process, each filament is delivered vacuum-packed. This prevents quality degradation due to moisture absorption during transport and storage, allowing you to use it with confidence. *For more details, please request a catalog or view the PDF data via the download button below.
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3DTascalX Light is a 3D viewer that allows you to easily display and verify various 3D data without the need for 3DCAD. 【Features】 ■ Wide range of 3D data verification It can read not only major intermediate data such as IGES and Parasolid but also various native data from CATIA, NX, SOLIDWORKS, and more as standard. You can verify 3D data immediately without changing it to an intermediate file. ■ Various measurement functions In addition to dimension measurement, it allows you to check weight, maximum outer shape, undercut, and slope angle, which are necessary for understanding material costs and manufacturing methods. This helps improve the efficiency of sales and manufacturing by enabling immediate processing instructions and estimate creation. ■ Drawing support You can create drawings from 3D to 2D, including three-view drawings, isometric drawings, and cross-sectional views. You can add comments and annotations to drawings and 3D data, enabling clear image sharing and streamlining processing instructions within the company, as well as aligning processing requirements and change requests with business partners.
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The inxpeXio SMX-225CT is a domestically produced micro-focus X-ray CT scanning system. With its intuitive user interface, anyone can easily observe the internal structure of the target workpiece. It accommodates a wide range of applications, from miniaturized electronic devices to aluminum die-cast products in automobiles, all with a single unit. [Main Features] ● Equipped with an automatic positioning function for CT scans using an appearance camera (industry first) There is no need to position while viewing fluoroscopic images as in the past; the scan position and area can be determined semi-automatically. This significantly reduces the time required before starting the scan. ● No calibration required The cumbersome calibration work that was previously necessary before CT scanning is no longer needed. You can start the CT scan simply by setting the sample and clicking the start button. ● Automatic X-ray condition setting function according to the sample (industry first) For the first time in industrial X-ray CT, we have equipped the device with an "automatic X-ray condition setting function" that automatically adjusts the X-ray transmission settings. For more details, please request a catalog or view the PDF data by clicking the download button below.
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In the non-destructive testing industry, accurate observation of internal structures is essential for quality control and ensuring reliability of products. In particular, the detection of defects and foreign objects within materials is a critical factor that affects product safety and performance. VGSTUDIO MAX visualizes fine defects and internal structures that are difficult to detect with conventional inspection methods through CT data analysis, enabling rapid and accurate evaluation. 【Application Scenarios】 - Internal defect inspection of castings and molded products - Internal observation of welds - Evaluation of internal structures of electronic components 【Benefits of Implementation】 - Reduction of defect rates through early detection of issues - Improvement in product quality and reliability - Shortening of inspection time and increased efficiency
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In the automotive industry, it is essential to accurately detect defects in parts to ensure product safety and reliability. Particularly for critical components related to safety, such as engine parts and brake parts, care is taken to not overlook even minor defects during the manufacturing process. VGSTUDIO MAX contributes to addressing these challenges by quickly and accurately detecting internal defects in parts through CT data analysis. 【Application Scenarios】 - Inspection of voids and cracks in cast parts - Inspection of internal defects in resin molded products - Inspection of defects in welds - Detection of foreign object contamination 【Benefits of Implementation】 - Improvement in product quality - Reduction of defective products - Shortening of inspection time - Cost reduction
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"VGSTUDIO MAX" is a high-end software for analyzing and visualizing industrial CT data. By combining various optional modules, it is possible to build a CT data analysis system tailored to your workflow. [Features] ■ Defect/Foreign Object Analysis Module Detects voids and cracks that occur in molded and cast products, allowing you to check the location, size, and volume of defects. You can also use the filter function to display only voids above a specified size or volume. ■ Design Value/Measured Value Comparison Module Compares CT scan data with CAD data and displays dimensional errors in color. It quantifies deformations and amounts of deformation, such as shrinkage, warping, and distortion, which cannot be visually assessed. *Coordinate measurement module required. ■ Wall Thickness Analysis Module Visually evaluates excess and deficiency in wall thickness through color-coded displays of scan data. It allows you to identify areas of insufficient material filling, even in difficult-to-measure locations or shapes. *Recommended for use in conjunction with the coordinate measurement module. *The above modules are just a part of the offerings. Please see below for other modules. *For more details, please request a catalog or view the PDF data via the download button below.
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"Simplify3D" is a cost-effective software that incorporates many features necessary for Fused Deposition Modeling (FDM) 3D printers. You can start 3D printing in just a few minutes, from import to operation, modification, slicing, and preview. [Features] ■ Achieves high-quality modeling High-performance path functions enable precise modeling. The support surfaces securely hold the model while being easy to remove, and the removed surfaces have a smooth finish, reducing the need for post-processing. ■ Reduces wasted time in conversion with high-speed calculations The slicing calculation speed is top-level, allowing for the creation of high-quality slice data in just a few seconds, even for what typically takes several minutes. ■ Usable with any FDM 3D printer You can freely set the build area and nozzle temperature, so it is not limited to specific models as long as it is an FDM 3D printer. If you are not satisfied with the build quality from the included software, please consider this option. *For more details, please request a catalog or view the PDF data from the download button below.
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"Simple Spindle Grinding" is a service that resolves issues such as: - Tool vibration leading to unstable diameter correction in NC milling and machining centers - Chatter on finished surfaces during boring operations - Inability to perform heavy cutting [Features] ■ Low cost / Quick completion Traditional repairs require removing the head and sending the spindle to the manufacturer, which necessitates long machine downtime and incurs high costs. With Simple Spindle Grinding, our staff will visit your location to grind the spindle taper, completing the work in half a day to one day. There is no need to remove the head, minimizing both the time and cost of machine downtime. ■ Reliable quality Customers have reported improvements in the precision of the taper part of vertical machining centers, reducing runout from 160μ to below 5μ. After the work is completed, we conduct measurements of the spindle runout, taper contact area, and clamping force, and we prepare and submit a report. *You can download the PDF catalog from the button below.
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This is a white paper that introduces the benefits of implementing "SPACECLAIM" through detailed case studies and utilization flows. "SPACECLAIM" is a 3D direct modeler that allows for modeling and data modification in a way that feels like interacting with the model, without the concepts of features or history.
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The "FANUC ROBODRILL" series is a machining center manufactured by FANUC, boasting high versatility that can handle heavy cutting despite its compact size. There are standard 3-axis models and models that support up to 5 axes. Additionally, there are high-performance versions of the above models. ■ Product Lineup - Standard Model: a-DiB Series - Standard (up to 5-axis) Model: a-DiB5 Series - High-Performance Model: a-DiB ADV Series - High-Performance (up to 5-axis) Model: a-DiB5 ADV Series ■ High-Performance Specifications Features - The Z-axis stroke has been expanded to 400mm, improving accessibility for machining with additional axes. - Improvements to the Z-axis cover reduce column interference when using large fixtures. - The maximum load capacity has been increased from the standard 300kg to 400kg. - The adoption of a servo motor-driven tool indexing device has achieved a reduction in tool change time and improved reliability. - The shortest tool change time is now 0.7 seconds (tool-to-tool), which is a 0.2-second reduction compared to the DiA series. - The maximum tool weight has also been increased to 4kg, allowing for the use of larger tools.
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