
Cnc Machining Parts Chair Machining Turning Aluminum Parts
Specifications: customized according to the requirements of drawings and samples
Introduction: Professional hardware accessories processing factory
Description
Technical Parameters
cnc machining parts chair machining turning aluminum parts
| Product Description |
| Product Name | cnc machining parts chair machining turning aluminum parts |
| Product Type | CNC turning, milling, drilling, grinding, wire EDM cutting etc. |
| Our Services | CNC Machining,Plastic Injection,Stamping,Die Casting,Silicone And Rubber,Aluminum Extrusion,Mould Making,etc |
| Material | Aluminum,Brass,Stainless Steel,Copper,Plastic,Wood,Silicone,Rubber,Or as per the customers' requirements |
| Surface Treatment | Anodizing,Sandblasting,Painting,Powder coating,Plating,Silk Printing,Brushing,Polishing,Laser Engraving |
| Dimension | As customers' request |
| Service Project | To provide production design, production and technical service, mould development and processing, etc |
| Drawing Format | PRO/E, Auto CAD, Solid Works,IGS,UG, CAD/CAM/CAE |
| Testing Machine | Digital Height Gauge, caliper, Coordinate measuring machine, projection machine, roughness tester, hardness tester and so on |
| Industry used | Machinery; heavy duty equipment; electronic device; Auto spare parts; optical telecommunication |
| Packing | Eco-friendly pp bag / EPE Foam /Carton boxes or wooden boxes As customer's specific requirements |
| Trial sample time | 7-10 days after confirmation |
| Delivery time | 7-30 days after receive the pre-payments |
| Payment Terms | T/T,Western Union,Paypal |
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| Contact Us |
Shenzhen pride Industrial Co., Ltd.
Block D, Dianlian Science Park, Matian St., Guangming District, Shenzhen 518106, China
+8615629044483
Contact:Chloe
+86-917-3387002
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Latest News |
Aerospace aluminum alloy thin-walled frame parts are very easy to produce bending, warping and other processing deformation during the processing process and are difficult to control. Cutting force is an important cause of machining deformation. Reducing the cutting force can effectively reduce the machining deformation of such components. Therefore, research on cutting force prediction is important for improving the machining accuracy, quality stability and processing of thin-walled frame workpieces. Efficiency is of great significance. WEINERT et al. used the finite element method for the calculation and analysis of the aluminum alloy structure machining process and the prediction of static errors in the peripheral milling process of thin-walled parts; LI et al. established an end milling simulation model: ZAGHBANI et al. studied the force of the aluminum alloy high-speed dry milling process Temperature model and related constitutive model; GUoO et al. established a finite element model for predicting the milling deformation of thin-walled aluminum alloy parts for aviation. However, in the simulation process, the mesh of the finite element model cannot be adaptively refined. Therefore, in order to obtain high-precision simulation results, the mesh must be subdivided, which leads to calculations during the milling simulation of large-size thin-walled parts higher cost. The finite element analysis software Advant Edge3D based on the process simulation system is used to numerically simulate the plastic deformation of materials, tool wear, stress and strain, cutting force, and cutting temperature changes in the metal forming process, which provides valuable for forming processing and machining. The process analysis data provided a reference for the selection of optimized process parameters.
For the high-speed milling of 7075 aviation aluminum alloy, the author of this paper studies the simulation results of the AdvantEdge3D milling force, obtains the milling force change curve in the high-speed machining of a single tooth, and predicts the temperature distribution on the workpiece and the tool under different cutting time sequences. Obtain the temperature distribution curves of the tool rake and flank surfaces; establish the influence curve of the high-speed milling parameters on the milling force and milling temperature of aluminum alloy A17075, which can assist in optimizing the cutting parameters and reduce the wear of the tool during the cutting process. Improve the cutting state of the tool and increase the service life of the tool.
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