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Non-standard Mechanical Machining

  • Non-standard Mechanical Machining Manufacturers, Non-standard Mechanical Machining Factory, Supply Non-standard Mechanical Machining
Non-standard Mechanical Machining
  • Ding Heng
  • Wuxi, China
  • 20 days
  • 1000 units per year

Design Principles:
(1) The design specification shall ensure the processing quality of the machine parts (or the assembly quality of the machine) and meet the technical requirements specified in the design drawings.
(2) The process should have high productivity and the product should be put on the market as soon as possible.
(3) Minimize manufacturing costs
(4) Focus on reducing the labor intensity of workers and ensuring safe production.

Non-standard Mechanical Machining


Process Design


Design Principles:


(1) The design specification shall ensure the processing quality of the machine parts (or the assembly quality of the machine) and meet the technical requirements specified in the design drawings.


(2) The process should have high productivity and the product should be put on the market as soon as possible.


(3) Minimize manufacturing costs


(4) Focus on reducing the labor intensity of workers and ensuring safe production.


Raw data:


(1) Product assembly drawing, parts drawing.


(2) Product acceptance quality standards.


(3) The annual production plan of the product.


(5) The manufacturer's production conditions, including the specifications of machine tools and process equipment, performance and status, the skill level of the workers, the capabilities of the process equipment manufactured by the factory, and the power and gas supply capacity of the plant.


(6) Design manuals and related standards required for process design and process equipment design.


(7) Advanced manufacturing technology information at home and abroad.


Step content:


(1) Analyze the assembly drawing and part drawing of the product.


(2) Determine the blank.


(3) Develop a process route and select a positioning benchmark.


(4) Determine the equipment used in each process.


(5) Identify the tools, fixtures, gauges, and aids used in each process.


(6) Determine the technical requirements and test methods for each major process.


(7) Determine the machining allowance for each process and calculate the process dimensions and tolerances.


(8) Determine the amount of cutting.


(9) Determine the working time limit.


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