医疗行业

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医疗行业

Prototek is a leading provider of manufacturing services, including CNC machining, metal forging, casting, deep drawing, and cold extrusion. These technologies are essential in the medical industry, where precision, reliability, and biocompatibility are paramount. This article explores how Prototek’s expertise in these areas supports the development and production of high-quality medical devices and components.

CNC Machining in the Medical Industry

——CNC (Computer Numerical Control) machining involves the use of computer-controlled machines to manufacture parts with high precision. 

Applications in Medical Device Manufacturing

  • Surgical Instruments: CNC machining is vital for producing precise and durable surgical instruments, such as scalpels, forceps, and clamps.
  • Orthopedic Implants: CNC machining creates custom orthopedic implants, including hip and knee replacements, with high accuracy to ensure proper fit and function.
  • Dental Implants: High-precision CNC machining is used to manufacture dental implants and prosthetics that meet strict biocompatibility standards.
  • Diagnostic Equipment Components: CNC machining produces intricate components for diagnostic equipment, ensuring reliability and performance.

Metal Forging in the Medical Industry

–Metal forging involves shaping metal using localized compressive forces. Depending on the material and desired properties, this process can be performed at various temperatures, including hot forging, cold forging, and warm forging.

Applications in Medical Device Manufacturing

  • Surgical Tools: Forged surgical tools offer superior strength and durability, essential for repeated use and sterilization.
  • Orthopedic Implants: Forged orthopedic implants, such as joint replacements, provide enhanced mechanical properties and longevity.
  • Medical Device Housings: Forged housings for medical devices ensure robust protection for sensitive internal components.

Metal Casting in the Medical Industry

——Metal casting involves pouring molten metal into a mold to create parts with complex shapes. Various casting methods, such as sand, precision, and die, are used based on the application and material requirements.

Applications in Medical Device Manufacturing

  • Surgical Instruments: Casting is ideal for producing complex surgical instruments with intricate shapes.
  • Orthopedic Implants: Cast orthopedic implants, such as bone plates and screws, provide the necessary strength and precision.
  • Diagnostic Equipment Housings: Cast housings for diagnostic equipment ensure the structural integrity and protection of electronic components.

Deep Drawing in the Medical Industry

——Deep drawing is a metal forming process that involves pulling a sheet metal blank into a forming die to create a hollow shape. This method is ideal for producing seamless, thin-walled components.

Applications in Medical Device Manufacturing

  • Surgical Instrument Housings: Deep drawing produces seamless housings for surgical instruments, ensuring sterility and ease of cleaning.
  • Medical Containers: Deep-drawn containers provide secure and sterile storage for medical samples and instruments.
  • Implantable Device Casings: Deep drawing creates biocompatible casings for implantable devices, ensuring safety and reliability.

Cold Extrusion in the Medical Industry

——Cold extrusion is a metal-forming process that involves forcing a metal billet through a die to create a specific shape at room temperature. This method produces high-precision, high-strength components with excellent surface finish.

Applications in Medical Device Manufacturing

  • Surgical Instrument Components: Cold extrusion is used to create precise and durable components for surgical instruments.
  • Orthopedic Screws and Fasteners: Cold extruded screws and fasteners offer superior strength and reliability for orthopedic applications.
  • Catheter Components: Cold extrusion produces intricate components for catheters, ensuring biocompatibility and precision.

Integrated Applications and Innovations

Prototek’s comprehensive approach ensures that each medical component meets the highest standards for performance and reliability. By integrating CNC machining, metal forging, casting, deep drawing and cold extrusion into its production processes and costs savings efforts, Prototek ensures product quality improvement while streamlining production processes and cutting costs.

Innovative Applications

  • Biocompatible Materials: Prototek explores advanced materials and manufacturing techniques to produce biocompatible components, ensuring patient safety and regulatory compliance.
  • Custom Solutions: Prototek offers customized solutions tailored to the specific needs of medical device manufacturers.
  • High-Performance Components: Leveraging the strengths of each manufacturing method, Prototek produces high-performance parts for critical medical applications.

Why Choose Prototek

Close collaboration between Prototek’s design and manufacturing departments ensures that each component moves smoothly from concept to production. 

Prototek is a one-stop solution platform from prototyping, R&D to mass production. Utilizing our instant quoting platform and comprehensive supplier network, you can quickly obtain design validation and accelerate your product launch.

Production capacity
Industry certifications including ISO 9001, IATF16949

Strict quality control
Provide professional quality inspection report

Instant quote online
The online order page provides different parameters and processes to get a quote quickly

F.A.Q.

CNC machining is widely used in the automotive field because it can provide high-precision, high-quality and high-efficiency processing, meeting the strict requirements of aerospace for part quality and accuracy.

It can provide high-precision and high-quality processing to ensure the accuracy and reliability of medical devices and meet the strict requirements of the medical industry for quality and safety.

Commonly used materials include stainless steel, titanium alloy, medical plastics, etc., which are biocompatible and corrosion-resistant.

CNC processing technology is flexible and diverse, and can produce customized medical devices and components according to customer needs to meet the personalized needs of different patients.

CNC machining is characterized by automation and high efficiency, which can realize mass production, shorten the production cycle and improve the production efficiency of medical devices.

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数控加工零件

材料: 铝

主要流程:数控

应用:工业设备

数控零件

材料: 不锈钢 304

主要流程:数控

应用:工业设备

数控车削部件

材料: 不锈钢 304

主要流程:数控

应用:工业设备

连接器

材料: 铝

完成:清洁

主要流程:数控车削

应用:汽车行业

 

连接器

材料: 铝

完成:电镀

主要流程:数控车削

应用:汽车行业

锻造部件

材料: 铝

完成:清洁

主要流程:锻造+数控车削

应用:汽车行业

锻造部件

材料: 不锈钢 304

完成:电镀

主要流程:数控车削

应用:汽车行业

锻造部件

材料: 不锈钢 304

完成:阳极氧化

主要流程:数控车削

应用:汽车行业

 

锻造部件

材料: 不锈钢 304

完成:清洁

主要流程:数控车削

应用:制造业 

锻造部件

材料: 不锈钢 304

完成:清洁

主要流程:数控车削

应用:汽车行业

 

锻造部件

材料: 不锈钢 304

完成:清洁

主要流程:数控车削

应用:汽车行业

 

铝制底座

材料:铝

完成:黑色阳极氧化

主要流程:锻造+数控

应用:汽车空气悬架系统

建筑构件

材料:铝

主要流程:锻造+数控

应用:工业设备

锻造部件

材料: 不锈钢 304

完成:清洁

主要流程:数控车削

应用:汽车行业

 

铝环

材料:铝

完成:黑色阳极氧化

主要流程锻造+数控

应用:汽车空气悬架系统

铝制底座

材料:铝

完成:黑色阳极氧化

主要流程:锻造+数控

应用:汽车空气悬架系统

不锈钢套筒

材料:铝

完成:黑色阳极氧化

主要流程:锻造+数控

应用:汽车配件

法兰

材料:铝

主要流程:锻造+数控

应用:汽车空调系统

传感器外壳

材料: 铝

主要流程:冷挤压

应用:工业设备

传感器外壳

材料: 铝

主要流程:冷挤压

应用: 工业设备

深拉部件

材料: 铝

主要流程:深度绘图

应用:工业设备

电容器外壳

材料: 铝

主要流程:冷挤压

应用:工业设备

电容器外壳

材料: 铝

主要流程:冷挤压

应用: 工业设备

深拉部件

材料: 铝

主要流程:深度绘图

应用:工业设备

 

电子元件

材料: 铝

主要流程:冷挤压

应用:汽车行业

马弗

材料: 铝

主要流程:冷挤压

应用:汽车行业

马弗

材料: 铝

主要流程:冷挤压

应用:汽车行业

马弗

材料: 铝

主要流程:寒冷侵蚀

应用:汽车行业

假牙铝盒

材料:铝

主要流程:冷挤压

应用:医疗行业

电容器外壳

材料:铝

主要流程:冷挤压

应用:工业设备

铸造样品

材料: 不锈钢

主要流程铸造+数控

应用:工业设备

不锈钢底座

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

不锈钢底座

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

不锈钢法兰

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

冷热水管道备件

材料: 不锈钢

芬兰化:抛光

主要流程:铸造+数控

应用:管道设备

不锈钢连接器

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

不锈钢连接器

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

不锈钢连接器

材料: 不锈钢

主要流程铸造+数控

应用:工业设备

不锈钢底座

材料: 不锈钢

主要流程:铸造+数控

应用:工业设备

泵体

材料: 不锈钢 

主要流程:铸造+数控

应用:泵设备

 

铸造部件

材料: 不锈钢 304

完成:清洁

主要流程:铸造和数控车削

应用:汽车行业

 

铸件

材料: 不锈钢 304

完成:清洁

主要流程:铸造和数控车削

应用:汽车行业

 

套筒

材料: 不锈钢 304

主要流程:数控

应用:工业设备

套筒

材料: 不锈钢 304

主要流程:数控

应用:工业设备

汽车配件

材料: 不锈钢 304

主要流程:数控 

应用:汽车空气悬架系统

法兰

材料:铝

主要流程:锻造 + CNC

应用:汽车空调系统

套筒

材料: 不锈钢 304

主要流程:数控车削

应用:航空航天业

套筒

材料: 不锈钢 304

主要流程:数控 

应用:工业设备

基地

材料: 不锈钢 304

主要流程:数控 

应用:工业设备

基地

材料: 不锈钢 304

主要流程:数控 

应用:汽车空气悬架系统

法兰

材料:铝

主要流程:数控

应用:汽车空调系统

酒吧

材料: 不锈钢 304

主要流程:锻造+数控

应用:粉末冶金工业

基地

材料:铝

完成:阳极氧化

主要流程:锻造+数控

应用:汽车空气悬架系统

基地

材料: 不锈钢 304

主要流程:数控车削

应用:汽车空气悬架系统

数控车削部件

材料: 不锈钢 304

完成:清洁

主要流程:数控车削

应用:汽车行业