Description
Customized processing of non-standard lathe parts, precision turning parts, and non-standard copper sleeve parts. We have an excellent technical team to provide you with automation solutions.
Our Services
We provide customized solutions for different industries, from aerospace, medical components, electronics to the new energy industry, and more. CNC machining ensures the accuracy and quality of products.
At XYC, our ISO certified CNC workshop is specifically designed for rapid prototyping and small batch production of end use components. XYC CNC Factory provides you with 24-hour quotation service and rapid production of samples. We are your best choice for machining parts and can customize manufacturing according to your project requirements.
Machinable Range
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Tolerance: |
+/-0.01mm(In CNC machining, The tolerance is largely influenced by the geometric shape and material type of the part. Specific tolerance details for different parts ) |
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Roughness: |
Ra 0.1-Ra 3.2 |
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Quality: |
DIN,ASTM,GOST,GB,JIS,ANSI,BS; |
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Drawing format: |
PDF,DWG,DXF,IGS,STEP |
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Authentication: |
ISO9001:2015,ISO4001:2015,RoHS,SGS; |
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Size: |
Length 1600mm*length 850mm |
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Material |
Steel: carbon steel, alloy steel, stainless steel, 4140, 20 #, 45 #, 40Cr, 20Cr, etc |
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AL: AL6061,AL6063,AL6061,AL7075,AL5052,etc |
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Stainless steel: 201SS,301SS,304SS,316SS 17-4PH,etc |
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Brass: C37700,C28000,C11000,C36000,etc |
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Plastics:PTFE,PEEK,POM,PA,UHMW,PC,PBT,etc |
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Surface Treatment: |
Steel |
stainless steel |
stainless steel |
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Galvanization |
Burnishing |
Anodizing |
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Black anodize |
Passivation |
Sandblasting anodizing |
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Nickeling |
Laser marking |
Colorful anodizing |
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Chroming |
Sandblasting |
Wire drawing |
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Heat treatment |
Burnishing |
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Powder coating |
Chroming |
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CNC turning is a typical subtractive manufacturing process that uses cutting tools to remove some material from the outside of the material. When the workpiece rotates (continuously), excess fragments are cut off until it reaches the desired shape, diameter, and size of the final product. CNC turning is suitable for cutting metals, wood, plastics, and other polymers. In addition, due to the use of computer-generated programs and codes in this process, its products often have high dimensional accuracy.
Turning includes rotating and rotating workpieces, usually the material being processed is cylindrical or circular. However, when using compatible adapters, turning can work on materials of different shapes. It is worth noting that there are different tools on the turret of a CNC lathe or turning center. The more tools can be accommodated, the more complex the machine becomes, making it more suitable for complex designs.
Materials Suitable For CNC Turning Processing
One of the significant advantages of CNC machining is its compatibility with a large number of materials. Similarly, most metal and plastic materials are ideal choices for CNC turning:
Aluminium
nylon
copper
steel
wood
titanium alloy
PEEK
ABS
glass
PVC
Brass etc.
CNC lathe parts are widely used in fields such as aerospace, automotive, mechanical manufacturing, and mechatronics integration. In the aerospace field, it is used to produce high complexity components such as engine parts and aircraft structural parts. In the field of automotive manufacturing, it is used to manufacture automotive components such as axles, reducer gears, etc. In the field of mechanical manufacturing, high-precision parts such as sealing surfaces, shaft sleeves, and shafts can be manufactured. In the field of mechatronics, it is used to manufacture electronic components such as sensors and motors.



FQA
What is CNC turning service?
CNC turning service is a manufacturing service that uses a CNC (Computer Numerical Control) lathe to process and manufacture various parts and components. In CNC turning services, computer programs control the operation of the lathe and perform precise cutting operations according to predetermined designs and specifications.
A CNC lathe is an automated machine tool that uses rotating tools to remove excess material from the workpiece, in order to shape and process the workpiece. Compared with traditional manual lathes, CNC lathes have a higher degree of automation and accuracy. The operator uses computer-aided design (CAD) software to create a three-dimensional model of the workpiece and writes a CNC program to guide the lathe in cutting operations.
The advantages of CNC turning services include:
High precision: CNC lathes can achieve high-precision machining, ensuring that the dimensions and geometric shapes of the parts meet design requirements.
High repeatability: CNC programs can be reused to ensure consistent machining results on multiple workpieces and avoid human errors.
Complex shape machining: CNC lathes can process complex geometric shapes, including curves, slopes, holes, and threads.
Automated production: The automation characteristics of CNC lathes enable continuous processing without operators, improving production efficiency.
Programmability: By writing different CNC programs, CNC lathes can process various types of workpieces with good flexibility and adaptability.
CNC turning services are widely used in various fields of manufacturing, including aerospace, automotive, medical devices, electronic equipment, etc. It can process metal and non-metallic materials such as aluminum, steel, copper, plastic, etc., and is used to produce various parts and components such as shafts, flanges, bolts, nuts, valves, etc.
How long does CNC turning take?
The time required for CNC turning depends on multiple factors, including the following main aspects:
The size and complexity of the workpiece: Larger and more complex workpieces usually require longer processing time. Workpieces with more processing steps, details, and complex geometric shapes may require longer time to complete.
The number of processing operations: The number of processing operations also affects the total processing time. Each processing operation requires a certain amount of time to complete, so the more processing operations there are, the corresponding processing time will increase.
Cutting speed and feed rate: Cutting speed and feed rate are parameters that control the cutting process of CNC lathes. Higher cutting speed and feed rate can usually shorten processing time, but it is necessary to make reasonable settings based on the workpiece material and cutting tools to ensure processing quality.
Optimization of CNC programs: Optimizing CNC programs can improve machining efficiency and reduce machining time. Reasonable tool path planning, optimal cutting strategies, and reducing idle time can all have an impact on machining time.
Equipment performance and stability: The performance and stability of CNC lathes can also affect processing time. High performance machine tools and control systems typically have higher processing speeds and better stability, which can reduce processing time.
What is the difference between CNC turning and milling?
CNC turning and milling are two common CNC machining methods, which have some differences in the workpiece machining process and cutting methods. The following are their main differences:
Cutting method:
CNC turning: CNC turning is the process of removing excess material from a workpiece by rotating the tool. The cutting tool performs cutting operations along the axis of the workpiece to form the desired geometric shape.
Milling: Milling is a cutting operation performed on a workpiece by rotating a cutting tool (milling cutter). The teeth of the milling cutter move along the surface or edge of the workpiece during the cutting process to remove material and form the desired shape.
Exercise mode:
CNC turning: In CNC turning, the workpiece is usually fixed, while the tool moves on the lathe. The cutting tool can move in the axial and radial directions of the workpiece to achieve the required cutting operation.
Milling: In milling, both the tool and the workpiece can move relative to each other. The workpiece can move in different directions through the workbench, and the tool can also move in multiple directions, thus achieving complex cutting operations.
Processing object:
CNC turning: CNC turning is mainly used for processing rotationally symmetrical workpieces, such as shafts, flanges, threads, etc. It is suitable for various materials, including metallic and non-metallic materials.
Milling: Milling can be used to process flat, curved, and complex shaped workpieces, such as flat surfaces, cams, molds, etc. It is also suitable for various materials.
Cutting tools:
CNC turning: The commonly used cutting tools for CNC turning include turning tools, turning tools, and groove cutters. These cutting tools typically have a single cutting edge.
Milling: The commonly used cutting tool for milling is the milling cutter, which has multiple cutting edges and can remove multiple materials simultaneously during the cutting process.
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