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Automated parts processing

Automated machining of rough and fine mechanical parts requires separation to ensure precision machining accuracy. Because when machining rough mechanical parts, the cutting amount is large, and there is obvious work hardening phenomenon on the cutting force, clamping force, heat, and precision machining surface of the workpiece. The workpiece has a large internal stress. If the rough mechanical parts are machined continuously, the precision of the part will quickly lose due to stress redistribution. For the machining of mechanical components of high-precision hardware prototype models. After rough machining and precision machining, low-temperature annealing process or aging treatment should also be arranged to eliminate internal stress.

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Product Description Specification Parameters

Automated machining of rough and fine mechanical parts requires separation to ensure precision machining accuracy. Because when machining rough mechanical parts, the cutting amount is large, and there is obvious work hardening phenomenon on the cutting force, clamping force, heat, and precision machining surface of the workpiece. The workpiece has a large internal stress. If the rough mechanical parts are machined continuously, the precision of the part will quickly lose due to stress redistribution. For the machining of mechanical components of high-precision hardware prototype models. After rough machining and precision machining, low-temperature annealing process or aging treatment should also be arranged to eliminate internal stress.
Do you need to pay attention to whether the heat treatment process needs to be arranged during automated part processing operations. The location arrangement is as follows: during the heat treatment process, metals that improve their cutting performance, such as annealing, normalizing, tempering, are generally arranged for machining mechanical parts. Eliminating internal stress, such as aging treatment, adjusting treatment, as shown in the overall layout, rough machining, but after completion. In order to improve the mechanical performance of components, such as carburizing, quenching, and tempering, they are generally arranged for machining of mechanical parts. If there is significant deformation after heat treatment, the processing process should also be arranged.
 
Automated parts processing coated tungsten steel milling cutters mainly cut steel parts, cast iron, etc. Relatively heat-resistant. Wear resistance. The selling price is higher. Drill bits, this is quite common. Including standard Fried Dough Twists drill. Mainly used for making conventional materials. The punching function of conventional products. Group drills can have magical effects on some special workpieces. Point drill center drill.
Mainly used for point automation of parts machining centers. Chamfer knives can generally be replaced with point drills. Mainly used for product chamfering. CNC ball end cutter, mainly used for machining curved products. Of course, special purposes are also possible. CNC boring tool, used for boring precision holes. The scale is generally adjustable. The holes mainly used for processing have relatively high requirements. But compared to a reamer. It will not have a porous effect. Reamer. Mainly used for reaming purposes. Generally used for precision hole machining.
It can play a role in correcting the verticality of the hole. Face milling cutter. Also known as a flying knife. The function of milling large surfaces. It is also a common tool in machining centers. A round nose knife usually has a rough opening effect. It can also be surface milled, etc. It has a relatively wide range of uses. Thread milling cutter. Can mill threads. Thread cleaning programs can be programmed using programming software. Tap. Play a product tapping role. Divided into cutting taps. Spiral tap. Squeeze the tap. The swallowtail cutting tool is named after its shape resembling a swallow tail. Mainly used to open dovetail grooves. Engraving tools. Mainly used for product carving purposes. Rolling cutter. Used for machining holes. It can achieve a mirror level finish.

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