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Custom Copper Precision Turning Parts
Our company is good at turning all kinds of copper parts, all kinds of valve parts, electrical bronze parts, brass nuts, mobile phone antennas, external knurling (straight grain / twill / net grain) and so on. The picture on the left shows a turned copper core. Used in valves, the material is C3604 fast-cutting steel brass, and the copper turning parts customized according to customer requirements are used as the valve stem and valve core. Used in valves of internationally renowned brands. Automatic turning and forming, after the head milling edge and the rod milling edge, the angle is 60 degrees. Slotted head. The outer diameter is 12.7mm, and the total length is 70mm. The forming turning tool has been used many times in the processing of this copper precision part. In order to solve the accuracy of the R angle and chamfering of the inner groove, CNC machining was initially adopted. Later, in order to save costs, automatic lathe processing was used.
Categories: CNC milling services, CNC turning services
Tags: CNC machining, CNC Milling, copper parts
| Our company is good at turning all kinds of copper parts, all kinds of valve parts, electrical bronze parts, brass nuts, mobile phone antennas, external knurling (straight grain / twill / net grain) and so on. |
Comparison of large and small copper turning parts | |
The left is a copper part used in communication equipment. If you are a professional in this industry, you should know what it is. | |
The above group of pictures shows the comparison diagram of the large and small internal thread turning parts, and this group of pictures shows the size comparison diagram of the large and small external thread brass turning parts. | |
The picture on the left is a copper turned part customized according to customer requirements, used as an air nozzle, with an external thread (fixed on the air jet hole) and an inner hole for air jet. |
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CNC milling and turning stainless steel Price
The main properties of stainless steel
The workability is much worse than that of medium carbon steel. Taking the machinability of ordinary No. 45 steel as 100%, the relative machinability of austenitic stainless steel 1Cr18Ni9Ti is 40%; The relative turning workability of ferritic stainless steel 1Cr28 is 48%; Martensitic stainless steel 2Cr13 is 55%. Among them, austenitic and austenitic + ferritic stainless steels have the worst machinability.
Lathe turning precision copper electrical parts
The picture on the left shows a copper turning part with internal and external threads. Wait, something seems wrong. . . . . . Is this copper?
That's right, this is a copper turned part, made of C3604 fast-cutting brass, the surface is electroplated, and the plating is nickel-plated, so it looks like stainless steel.
This product has both internal thread and external thread, internal thread is M4, external thread is M6. While the outer threaded upper flat sided milling, and thread to ensure 100% compliance.
How do we lathe such internal and external threaded products? You can refer to this address, the first product on this page is the semi-finished product of the product on the left (unmilled, unplated, copper color):
Precision turning process of large threaded shaft
Ordinary lathes sometimes experience bed saddle vibration when turning large-pitch threads forcefully. Lighter ones will cause ripples on the machined surface, and severer ones will break the knife. When cutting off, there are often knife sticking or broken tools. There are many reasons for the above problems. This phenomenon and its solution are mainly discussed through the analysis of the force of the turning tool.
The difference between automatic lathe and CNC lathe machining
Different metal nuts processed by automatic lathe
Our company provides automatic lathe processing of various nuts, including but not limited to the insert nuts for injection molding as shown in the left picture. There are a large number of examples of this product in other directories on this website:
It also includes hexagonal and thin copper nuts, non-standard special nuts, etc. The process of turning various nut parts on automatic lathes.