
CNC Machining Aluminum Products Drone Accessories
Drawing processing
Processing materials: aluminum, copper, stainless steel, zinc alloy
Processing accuracy: 0.006mm~0.01mm
Processing cycle: 7-14 days
Proofing cycle: 1-5 days
Surface roughness: according to customer needs
Maximum processing capacity: 260 processing centers
Description
Technical Parameters

CNC drone parts processing uses aluminum alloy as raw material. After accurate calculation by advanced CNC processing equipment system, CNC drone parts custom-made products can be accurate to micro-millimeter units, and can produce non-standard precision parts according to customer requirements NC processing, processing of various aluminum alloy products, etc. In particular, in terms of CNC drone parts processing and customization, the company has a professional technical production team and advanced production and processing equipment, and promises to deliver high-precision and high-quality products on time.
CNC machining drone accessories
Name: CNC processing drone accessories
Application field: CNC drone accessories
Product material: aluminum alloy
Product process: After CNC machining, sandblasting 120# emery, oxidation
Product use: CNC drone accessories
Product advantages: CNC machining and oxidation process, high precision, so that the appearance and color of the product are diversified



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Remarks: About the packign methods, usually, we will discuss with our customers. As different parts( CNC parts,),
different weight, different shape, so we will suggest the best protective way to pack the goods. Below are some examples for your reference
Shenzhen pride Industrial Co., Ltd.
E-mail: crush@pride-cnc.com
Whatsapp:+8615629044483
Fax:+86-917-3387002
Add: Block D, Dianlian Science Park, Matian St., Guangming District, Shenzhen 518106, China
Latest News
In order to increase production capacity, reduce labor intensity, and ensure product consistency, FAW Forging has implemented a 125MN front axle and crankshaft production line
(Hereinafter referred to as Qianqu) Automated transformation to adapt to the increasing market demand and less unmanned production conditions. The entire production line after the transformation is completely operated by robots. In order to work with robots, the original simple trimming die must be discarded and transformed into a new trimming compound die that can meet production requirements and process requirements.
Because the front axle and crankshaft trimming correction process are the same, in order to avoid any praise, this article will introduce the process of front axle trimming as an example. The front axle belongs to the long axle type. The traditional process is affected by the bending moment during the forging and trimming process, resulting in straightness deformation. The deformation is 2~5mm. The subsequent need to be 100% straightened by hydraulic press. There are many problems during the straightening process: ①residual stress is generated, which affects the accuracy of the front axle. ②The correction method is small-plane contact, and local forces are prone to stress concentration, causing the front axle to break. ③The labor intensity of the workers in the cold correction process is relatively high, and there are greater safety hazards. The research and development of the composite mold effectively solved the problem of trimming deformation, achieved the straightness forging qualification, and eliminated the goal of cold correction.
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