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Hashimoto Precision Metal (Shenzhen) Ltd

Address: No. 25, Xinfa East Road, Xiangshan Community, Xinqiao street, Bao'an District, Shenzhen 518125, P.R.China

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Email: info@hskcoltd.com

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Metal stamping: the core technology for creating precision components
Release time:2023-06-28Views:2880

Metal stamping parts are widely used in industries such as automotive, aerospace, electronics, and home appliances. Their processing accuracy and quality are directly related to the performance and stability of the entire product. Metal stamping, as an efficient and high-precision processing method, has become one of the indispensable key technologies in modern manufacturing industry. This article will delve into the process and application of metal stamping, as well as its important role in promoting the upgrading of manufacturing industry.

1. Process flow of metal stamping

Metal stamping is the process of forming the required components by passing metal sheets through stamping molds and undergoing a series of processes such as extrusion, shearing, and stretching. The process flow mainly includes four stages: design, mold manufacturing, stamping processing, and surface treatment.

1) Design: Based on the functions and requirements of the product, design a reasonable stamping structure and size, and determine the material selection and thickness.2) Mold manufacturing: According to design requirements, manufacture corresponding stamping molds. The manufacturing quality and accuracy of molds are directly related to the quality and processing efficiency of stamped parts.3) Stamping processing: Place the metal sheet on a punching machine and use the power of stamping die to press the sheet into the desired shape. This process requires precise control of parameters such as stroke, punching speed, and punching force to ensure the accuracy and quality of the stamping parts.
4) Surface treatment: By surface treatment methods such as electroplating, spraying, etc., the product's aesthetics and corrosion resistance are increased.


2. Application Scenarios of Metal Stamping

Metal stamping is widely used in various industries, especially for precision components and mass production, which is an indispensable key technology.

1) Automotive industry: Automotive is one of the main application areas for metal stamping. For example, components such as car bodies and doors are processed through metal stamping.2) Aerospace field: The aerospace industry has extremely high requirements for component accuracy and quality, and metal stamping can meet its complex shape and high-precision requirements.

3) Household appliances and electronics: The metal shells and internal connectors in household appliances and electronic products such as refrigerators, washing machines, and mobile phones are all made through metal stamping.

 3. The Future Development Trend of Metal Stamping  

1) Digital manufacturing: With the development of digital technology, metal stamping will also develop towards intelligence and digitization. By means of mold intelligence, process optimization, and data analysis, processing efficiency and quality can be improved.
2) 
High speed machining: In order to meet the needs of large-scale and high-efficient production, metal stamping will develop towards high speed. Adopt high-speed stamping equipment and high-speed cutting process to improve processing speed and production efficiency.

3) Flexible manufacturing: With the increasing demand for personalized products, metal stamping also requires more flexible production methods. Adopt multi-station and multifunctional stamping equipment to achieve rapid conversion and production of different products.


Metal stamping, as an important core technology in modern manufacturing, has a significant impact on the quality and performance of products. By precisely controlling processing parameters and the precision of mold manufacturing, high-precision and highly-stable metal stamping parts can be created. In the future, metal stamping will gradually achieve digital manufacturing, high-speed processing, and flexible manufacturing, providing more possibilities for the upgrading of manufacturing industry.


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