About us
Nanjing Pusher Machinery Co., Ltd is specializing in customized-made CNC machining and welding, casting, forging. our company is a large-scale professional investment casting foundry with powerful machining capabilities in China. and the products are exported to North America, South America, Europe, Southeast Asia, Middle east, and other destinations around the world.
The machining factory is in headquarters and is fully equipped with complete and advanced CNC machining equipment including thirty vertical and horizontal machining centers, and more than 30 CNC machines and fifty other machining equipment., the machining facility is fully independent from the casting foundry and has an independent management team and tailored business model to suit. In addition to the casting, forging, and machining, it also has the facility to machine various profiles. Our company also has advanced inspection equipment, including Spectrometer, Metallographic Microscope, Tension Tester, Low Temperature Tester, X-ray Tester, MPT, UT, CMM, Video Measurement Machine and so on. With these advanced facilities & instruments, we can supply the high-quality castings to our customers and make products meeting comprehensive inspection requirements on chemical composition, mechanical properties, non-destructive testing, and high precise dimensional inspections.
(1) The stamped parts have high dimensional accuracy.
(2) Stamping processing has good stability, and stamping parts from the same batch can be interchanged without affecting assembly and product performance.
(3) Since stamping parts are made of sheet metal, their surface quality is good, which provides convenient conditions for subsequent surface treatment processes (such as electroplating and spray painting).
(4) Stamping processing can obtain parts with high strength, high rigidity and light weight.
(5) The cost of stamping parts produced in batches with molds is low.
(6) Stamping can produce parts with complex shapes that are difficult to process with other metal processing methods.