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ワークステーション

EstablishmentOctober 2007
capital3000Ten thousand
number of employees24
addressGunma/Ota-shi/150-7 Nitta Kanemachi
phone0276-55-0958
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last updated:Dec 28, 2019
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ワークステーション List of Products and Services

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[Laser Marking Technology Production Examples] Gaming Machine Component Parts

Examples of manufacturing game machine components with complex curved shapes that are difficult to achieve with conventional laser processing machines.

We would like to introduce a case study of manufacturing gaming machine component parts for gaming machine manufacturers using our "Laser Marking Technology." The request was to perform a decorative layer (deposition/painting) peeling process on parts with complex curved shapes. Our uniquely developed 3-axis 3D laser processing machine can process products with complex curved surfaces, which are considered difficult with conventional laser processing machines, by moving the workpiece while maintaining the appropriate laser incidence angle, allowing for high-precision processing even on curved parts. 【Case Study】 ■ Production Capacity: 10,000 units/month ■ Processing Material - Base Material: PC (Polycarbonate) - Surface Treatment: Aluminum Deposition ■ Machinery Used: 3-axis 3D Laser Processing Machine (YVO4) ■ Work Size: Capable of processing up to 300mm x 300mm x height 42mm *For more details, please refer to the PDF document or feel free to contact us.

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Laser Marking Technology Production Example: Lighting Cover

A case study of processing a spherical-shaped lighting cover, which is difficult to achieve with conventional laser processing machines.

We would like to introduce a case study of the production of lighting covers for lighting fixture manufacturers using our "laser marking technology." The order was to perform a peeling process on the decorative layer (vacuum deposition and painting) for a spherical-shaped product. Our uniquely developed 5-axis 3D laser processing machine can process spherical-shaped products, which are considered difficult with conventional laser processing machines, by moving the workpiece while maintaining the appropriate laser incidence angle, allowing for high-precision processing even on spherical shapes. 【Production Case】 ■ Production Capacity: Made to order ■ Processing Material - Base Material: Glass - Surface Treatment: Painting ■ Machinery Used: 5-axis 3D laser processing machine (YVO4) ■ Work Size: φ200 (maximum φ30 hemispherical shape) *For more details, please refer to the PDF document or feel free to contact us.

  • others

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Laser Marking Technology Production Example: Pulley

This is a case study of pulley manufacturing with laser marking applied to recessed areas that are difficult to print.

We would like to introduce a case study of pulley manufacturing for industrial machine manufacturers utilizing our "Laser Marking Technology." The order requested laser marking on recessed areas that are difficult to print. Unlike printing, laser marking can be performed as a non-contact process, making it possible to process products with uneven surfaces. 【Case Study】 ■ Production Capacity: 2,000 units/month ■ Processing Material: Aluminum ■ Machinery Used: 3-axis 3D laser processing machine (YVO4) ■ Work Size: φ65mm x Height 15mm *For more details, please refer to the PDF document or feel free to contact us.

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Laser Marking Technology Production Example: Nameplate QR Code (2)

This is an example of a nameplate produced with laser processing on a substrate treated with black anodizing.

We would like to introduce a case study of nameplates (QR codes) produced for industrial machinery manufacturers using our "Laser Marking Technology." The order was for the creation of nameplates (QR codes). Using a 3-axis 3D laser processing machine, we performed laser ablation on aluminum that had undergone black anodizing to create the nameplates. 【Production Case】 ■ Production Capacity: 10,000 units/month ■ Processing Material - Base Material: Aluminum - Surface Treatment: Anodizing ■ Machinery Used: 3-axis 3D laser processing machine (YVO4) ■ Work Size: 45mm x 95mm x thickness 1mm *For more details, please refer to the PDF document or feel free to contact us.

  • others

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[Laser Marking Technology Production Example] Nameplate QR Code (1)

This is a case study of processing a nameplate in a pipe shape, which is difficult with conventional laser processing machines.

We would like to introduce a case study of nameplate (QR code) production for industrial machine manufacturers using our "Laser Marking Technology." The order was to create nameplates for products with pipe shapes (curved surfaces), which are difficult to process with conventional laser processing machines. With our uniquely developed 5-axis 3D laser processing machine, it is possible to achieve high precision processing even on curved surfaces. 【Production Case】 ■ Production Capacity: 2,000 units/month ■ Processing Material: Stainless Steel ■ Machine Used: 5-axis 3D Laser Processing Machine (YVO4) ■ Work Size: φ50mm to 100mm *For more details, please refer to the PDF document or feel free to contact us.

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Laser Marking Technology Production Example: Screws

This is a case study of screw manufacturing for industrial machine manufacturers, featuring fine marking processing on the screw heads.

We would like to introduce a case study of screw manufacturing for industrial machinery manufacturers using our "Laser Marking Technology." The order was to apply fine marking processing on the screw heads. With our technology, it is possible to mark with a character height of 0.1mm, enabling marking on small parts. Additionally, we have created dedicated jigs to facilitate a large number of processes in-house. 【Case Study】 ■ Production Capacity: 200,000 pieces/month ■ Processing Material: Stainless Steel ■ Machinery Used: 3-axis 3D Laser Processing Machine (YVO4) ■ Work Size: φ4mm to 8mm *For more details, please refer to the PDF document or feel free to contact us.

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[Laser Marking Technology Production Example] Flower Vase

Introducing examples of flower vases created with laser engraving, featuring designs with shading and depth.

We would like to introduce a case study of flower vases made for the flower shop industry using our "laser marking technology." The request was for the creation of a vase with a new design aesthetic. The vases created feature laser engraving, characterized by shadows and depth created by the uneven surfaces. Additionally, for the embellishments, we used a dedicated jig to ensure that there was no misalignment, employing inkjet printing for the processing. 【Production Case】 ■ Production Capacity: 100 units/month ■ Processing Material: Paulownia wood ■ Machines Used: - Plotter-type laser processing machine (CO2) - UV inkjet processing machine ■ Work Size: 145mm x 145mm x 145mm *For more details, please refer to the PDF document or feel free to contact us.

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Collection of production examples utilizing laser marking technology.

We have published numerous examples of production utilizing our laser marking technology!

This document is a collection of case studies summarizing examples of three-dimensional laser peeling processing technology developed by our company. We provide a consistent production process for decorative molded parts, from mold manufacturing to injection molding, various surface treatments, and laser peeling processing. Our laser processing equipment can be applied to parts with complex three-dimensional curved surfaces that were difficult to process with conventional laser peeling, and it enables highly decorative fine designs that could not be achieved with traditional manufacturing methods. [Featured Cases] ■ Lighting Covers (for lighting fixture manufacturers) - Peeling of decorative layers (vacuum deposition, painting) on spherical products ■ Gaming Machine Components (for gaming machine manufacturers) - Peeling of decorative layers (vacuum deposition, painting) on parts with complex curved shapes ■ Screws (for industrial machine manufacturers) - Fine marking processing on screw heads ■ Pulleys (for industrial machine manufacturers) - Marking in recessed areas that are difficult to print *For more details, please refer to the PDF document or feel free to contact us.

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Presentation of Case Studies: The Basics of Workstation Processing Procedures

The processing engineering varies by company. Our company offers integrated production from design to processing, surface treatment, assembly, and inspection. We can accommodate requests as needed.

This document presents the technology for integrated production from design to processing, surface treatment, assembly, and inspection by Workstation Co., Ltd. In the processing stage, we can accommodate requests such as blank processing, preliminary processing, and bending processing, and we focus on cost reduction from the stage of creating production drawings. To prevent human errors in finishing, surface treatment, assembly, inspection, and delivery, we pay extra attention to quality control, such as having someone other than the processor verify against the drawings. 【Features】 ■ Capable of integrated production from sheet metal processing to finishing, surface treatment, assembly, inspection, and delivery ■ Can accommodate requests regarding delivery times and specifications *For more details, please refer to the PDF document or feel free to contact us.

  • wood
  • Woodworking machines, instruments, and tools

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[Processing Example] Laser Processing

Laser stripping processing for surface treatment layers of products with complex shapes!

We would like to introduce a case study of laser processing proposed by Workstation Inc. In laser peeling processing for surface treatment layers, there were several issues with products of complex shapes. Therefore, we adopted our uniquely developed "3D laser processing machine with stage movement functionality." By moving the stage in the X, Y, Z, and θ directions and keeping the laser irradiation angle within a certain range, we solved the problems. 【Case Study】 ■ Issues - When the irradiation angle becomes obtuse, the accuracy of the laser irradiation position deteriorates, and it becomes impossible to provide the appropriate amount of energy to the processing surface, resulting in unstable finishing. - In products with complex shapes, conventional laser processing machines have limited processing ranges, which narrows the design options. ■ Proposal - Use our uniquely developed 3D laser processing machine with stage movement functionality. - Move the stage in the X, Y, Z, and θ directions to keep the laser irradiation angle within a certain range. *For more details, please refer to the PDF document or feel free to contact us.

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[Processing Example] Wood

We will solve issues such as wood warping due to laser heat with our accumulated know-how!

We would like to introduce a case study of laser processing of wood proposed by Workstation Inc. There were several issues with laser processing of wood, such as the laser burning the wood. Our company has selected laser output conditions that are compatible with wood, based on accumulated know-how, enabling engraving that maintains the original color of the wood. 【Issues】 ■ When attempting laser engraving, the laser burns the wood. ■ The heat from the laser causes the wood to warp. ■ Relying solely on the burn color from the laser results in monotonous designs. *For more details, please refer to the PDF document or feel free to contact us.

  • Wood processing

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Precision sheet metal semiconductor device components mechanical parts

Introduction of precision sheet metal parts (semiconductor device parts, mechanical parts) with a thickness of 3.2 mm or less!

Our company handles sheet metal products for electrical and medical devices from component design to prototyping and mass production in-house, with a particular expertise in processing thin sheets with a thickness of 3.2 mm or less. For products requested by major client companies, when assembling multiple parts processed through methods such as stamping and bending, it is necessary to consider and design the appropriate joining methods to achieve the desired product finish. We propose these solutions to our customers based on our in-house database and know-how. 【Sheet Metal Products】 ■ Semiconductor device components ■ Mechanical components ■ Material: SPCC ■ Angle tolerance: ±0.5 degrees ■ Coating: Acrylic resin coating *For more details, please refer to the PDF document or feel free to contact us.

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Precision sheet metal medical device parts complete set of sheet metal enclosures.

Introduction of precision sheet metal parts (medical device parts, complete sheet metal enclosures) with a thickness of 3.2 mm or less!

Our company handles sheet metal products for electrical and medical devices from component design to prototyping and mass production in-house, with a particular expertise in processing thin sheets with a thickness of 3.2 mm or less. For products requested by major client companies, when assembling multiple parts processed through methods such as stamping and bending, it is necessary to consider and design the appropriate joining methods to achieve the desired product finish. We propose these solutions to our customers based on our in-house database and know-how. 【Sheet Metal Products】 ■ Medical Device Components ■ Complete Sheet Metal Enclosures ■ Material: SECC-P ■ Coating - Primer: Cationic Electrodeposition - Topcoat: Leather Tone Coating ■ Printing: Epoxy Two-Component, 5-Color Printing *For more details, please refer to the PDF document or feel free to contact us.

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Precision sheet metal amusement equipment parts mechanism parts

Introduction of precision sheet metal parts with a thickness of 3.2 mm or less (amusement machine parts, mechanical parts)!

Our company handles sheet metal products for electrical and medical devices from component design to prototyping and mass production in-house, with a particular specialty in processing thin sheets with a thickness of 3.2 mm or less. For products requested by major client companies, when assembling multiple components processed through methods such as stamping and bending, it is necessary to consider and design the appropriate joining methods to achieve the desired product finish. We propose these based on our in-house database and expertise. 【Sheet Metal Products】 ■ Amusement Equipment Parts ■ Mechanical Components ■ Material: NEO Material (Non-Chromium) ■ Dimensional Accuracy: ±0.1 ■ Fitting Tolerance: H7 *For more details, please refer to the PDF document or feel free to contact us.

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Precision sheet metal vending machine parts mechanism parts

Introduction of precision sheet metal parts with a thickness of 3.2 mm or less (ticket vending machine parts, mechanical parts)!

Our company handles sheet metal products for electrical and medical devices from component design to prototyping and mass production in-house, with a particular expertise in processing thin sheets with a thickness of 3.2 mm or less. For products that we receive production requests from major client companies, it is necessary to consider and design the appropriate joining methods to finish the assembled parts, which are processed through operations such as punching and bending, to meet the specified requirements. We propose these methods to our customers based on our in-house database and know-how. [Sheet Metal Products] ■ Ticket vending machine parts ■ Mechanical parts ■ Material: SUS304 ■ Dimensional accuracy: ±0.1 ■ Fit tolerance: H7 *For more details, please refer to the PDF document or feel free to contact us.

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Precision Sheet Metal Medical Device Parts Exterior Components

Introduction of precision sheet metal parts (medical device components, exterior parts) with a thickness of 3.2 mm or less!

Our company handles sheet metal products such as electrical and medical equipment from component design to prototyping and mass production in-house, with a particular expertise in processing thin sheets with a thickness of 3.2 mm or less. For products requested by major client companies, it is necessary to consider and design the appropriate joining methods to finish the assembled parts, which are processed through techniques such as stamping and bending, to meet the specifications. We propose these methods to our customers based on our in-house database and know-how. 【Sheet Metal Products】 ■ Medical Device Parts ■ Exterior Parts ■ Material: SECC ■ Coating - Primer: Cationic Electrodeposition - Topcoat - Acrylic Resin Coating *For more details, please refer to the PDF document or feel free to contact us.

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Laser stripping processing "5-axis 3D laser marking machine" Tech Eight

5-axis controlled laser marking that enables printing on 3D shapes and complex shapes.

The uniquely developed 5-axis 3D laser marking machine for workstations directly prints on already assembled cases, jigs, tools, and parts, marking three-dimensional metal and plastic products with DPM (Direct Part Marking). Unlike seals, ink, or paint, DPM uses surface modification for printing, resulting in a smooth finish without unevenness, eliminating concerns about peeling or paint chips falling off. This has led to an increased demand for QR code printing on tools and magazines used in clean rooms, where cleanliness and hygiene are essential. Laser DPM is chosen for its permanent marking capabilities, and due to computer-controlled processing, it allows for customized processing for each item, featuring contactless printing that does not restrict the choice of processing locations. *For more details, please download the PDF or feel free to contact us.*

  • Special Construction Method

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"Precision Sheet Metal" Workstation

We will make proposals based on our company's database and know-how.

Our company handles the manufacturing of sheet metal products such as electrical and medical equipment, from parts design to prototyping and mass production, with a particular expertise in processing thin sheets with a thickness of 3.2 mm or less. Although we were established in 2007 and have a relatively short history, we have skilled technicians who are well-versed in precision sheet metal work. 【Product Introduction】 - Medical device parts - Ticket vending machine parts - Amusement machine parts - Semiconductor equipment parts *For more details, please download the PDF or feel free to contact us.

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Wood Decoration "Laser Relief Processing + Inkjet Printing" Workshop Rihachi

We propose decorative techniques that can provide new designs.

We propose the creation of finely detailed raised patterns through laser processing and new decorative wooden panels with full-color coloring. The features of laser processing allow for precise positioning controlled by a computer, enabling specification of processing areas down to 0.1mm increments. Additionally, it offers the freedom to choose from a black finish resembling a partially burned board to engraving treatments that maintain the natural color of the wood. In practice, by collaborating geometric patterns created by designers with the natural growth ring patterns of the wood through raised processing technology, each wooden panel reveals a unique landscape. Furthermore, we have successfully created new designs using full-color UV printing technology. [Examples of Production] ■ Full-color UV printing on tiles ■ Lacquer-like urethane scraping paint ■ Three-dimensional decorative paulownia boxes *For more details, please download the PDF or feel free to contact us.

  • Spatial Design
  • Sculptures
  • molding

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