EV Automatic machining line for drive motor casing
Mass production processing machine
What kind of case is it?
Production line for processing electric vehicle motor casings
What difficulties did the customer solve?
1. Due to the high processing accuracy (concentricity), the original equipment imported from Japan was used for processing, which resulted in high investment costs. Instead, Japanese brand domestically produced equipment was used to achieve the same precision processing while reducing investment costs
2. The customer does not have the ability to test the casting blank. Our company actively coordinates with external factories and production line manufacturers to measure the size of the blank and assist the customer in modifying and improving it
3. The overall processing attributes of the workpiece exceed 2500, and the processing attributes that cannot be specifically selected exceed 120
How much efficiency has been improved?
1. Adopting Japanese brand Chinese made equipment to achieve the same processing accuracy while reducing the investment cost of the entire project
2. Our company actively coordinates with outsourcing factories and production line manufacturers to measure the size of raw materials, which improves the efficiency of customers' modification of raw materials
Achievement background
To meet the high difficulty of machining the motor housing of new energy vehicles, localized equipment from Japanese brands has been adopted to achieve the same machining accuracy as imported equipment while reducing investment costs.
Our company can provide integrated solutions and supplies including machining machines, fixtures, tooling tools, automation, etc.
In addition, we can also provide you with solutions and supplies for equipment such as cleaning machines and leak testing machines for subsequent processes.
By optimizing the processing technology and improving the cutting tools, the core challenges in complex machining (with over 2500 machining attributes and over 200 important machining projects) have been solved, ultimately achieving the dual goals of optimizing project costs and improving machining yield.