High-Quality Custom Automotive Parts with CNC Precision Engineering
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Product Details
| Customization: | Available |
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| Application: | Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory, Customize |
| Standard: | GB, EN, JIS Code, ASME, ISO |
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Basic Info.
- Model NO.
- JLT24-C0001
- Surface Treatment
- Per Customer Request
- Production Type
- Mass Production
- Machining Method
- CNC Machining
- Material
- Nylon, Steel, Plastic, Brass, Alloy, Copper, Aluminum, Iron, Customize
- Tolerance
- +/-0.01mm
- QC System
- 100% Inspection Before Shipment
- Processing
- CNC Milling, Turning, Grinding, EDM Wire Cutting
- Surface Roughness
- 0.8
- Transport Package
- Container Bulk Cargo
- Specification
- customized
- Trademark
- Besharp
- Origin
- China
- HS Code
- 32023630
- Production Capacity
- 1000000PCS/Month
Packaging & Delivery
- Package Size
- 30.00cm * 20.00cm * 20.00cm
- Package Gross Weight
- 15.000kg
Product Description

PRODUCT PARAMETERS.
Custom CNC machining is a precision subtractive manufacturing process. Computer-controlledtools (mils, lathes, routers) selectively remove material from solid blocks (metal, plastic, orcomposite) to produce highly accurate,complex parts meeting exact specifications
Product name | CNC machining services |
Surface treatment | Anodizing, bead blasting, black oxide, polishing, powder coating,painting, brushing, electroplating, passivation, or customer'srequirements. |
Material capacities | Metal: aluminum alloy, stainless steel, brass, copper, tool steel,carbon steel, iron. Plastic:ABS, POM, PC(Poly Carbonate), PC+GF, PA(nylon),PA+GF,PMMA(acrylic), PEEK, PEl, etc. |
CNC processing scope | CNC 3-axis, 4-axis machining, CNC milling, CNc turning, CNClathe, high precision 5-Axis turning-milling combined machining |
Tolerance | ±0.002~±0.005mm |
Surface roughness | Min Ra 0.02~3.2 |
SAMPLE DISPLAY.
MATERIAL SELECTION.

In CNC precision machining, material selection directly shapes a component's stability, performance, and cost-efficiency. With over a decade of expertise, we excel at matching optimal materials to client needs, delivering reliable results through rigorous quality control.
Our premium portfolio, sourced from certified suppliers, caters to aerospace, automotive, medical, and electronics sectors. Key metals include 6061/7075 aluminum (lightweight/strong), 304/316L stainless steel (corrosion-resistant/biocompatible), Grade 5 titanium, and conductive copper.
We also offer engineering plastics (PEEK for high temps, Delrin for low friction, cost-effective ABS) and exotic alloys like Inconel for specialized demands.
Quality control is non-negotiable: every batch undergoes spectral analysis, hardness testing, and dimensional checks, with traceable MTRs/CoCs meeting ASTM, FDA, and AS9100 standards.
Our engineers provide tailored advice—recommending 316L for medical parts (FDA compliance) and 7075 aluminum for EV components (40% weight reduction). We balance performance, machinability, and budget.
From standard aluminum parts to exotic alloy components, our comprehensive materials, strict QC, and expert guidance make us a trusted partner—delivering professionalism clients rely on.
Our premium portfolio, sourced from certified suppliers, caters to aerospace, automotive, medical, and electronics sectors. Key metals include 6061/7075 aluminum (lightweight/strong), 304/316L stainless steel (corrosion-resistant/biocompatible), Grade 5 titanium, and conductive copper.
We also offer engineering plastics (PEEK for high temps, Delrin for low friction, cost-effective ABS) and exotic alloys like Inconel for specialized demands.
Quality control is non-negotiable: every batch undergoes spectral analysis, hardness testing, and dimensional checks, with traceable MTRs/CoCs meeting ASTM, FDA, and AS9100 standards.
Our engineers provide tailored advice—recommending 316L for medical parts (FDA compliance) and 7075 aluminum for EV components (40% weight reduction). We balance performance, machinability, and budget.
From standard aluminum parts to exotic alloy components, our comprehensive materials, strict QC, and expert guidance make us a trusted partner—delivering professionalism clients rely on.
SURFACE TREATMENT & PRODUCTION PROCESS.


HOT SALES.
PACKAGING&SHIPPING.


Our product packaging is crafted with meticulous care, prioritizing protection, functionality, and environmental responsibility. For durability, we select high-strength materials: most products use robust cardboard boxes that resist impacts and pressure during transit and storage. Inside, tailored cushioning—such as foam, bubble wrap, or air cushions—prevents product shifting and shields against shocks or vibrations. For fragile items, we adopt specialized solutions like wooden crates or reinforced boxes, designed to meet unique product requirements and ensure maximum safety. Beyond protection, our packaging balances aesthetics and informativeness: clear labels detail product names, specifications, and quantities for easy identification and handling. Critically, we uphold strong eco-conscious values: we use recyclable materials wherever possible and minimize waste, aligning with global demands for sustainable packaging while reducing environmental impact. For exported products, we offer diverse, carefully chosen transportation methods to guarantee efficient, reliable delivery—ensuring products reach clients intact and on schedule. In essence, our packaging integrates durability, functionality, and eco-friendliness, safeguarding product integrity while leaving a positive impression, and our export transportation ensures seamless, trustworthy delivery worldwide.
COMPANY PROFILE.

Gelanten is a leading provider of precision component machining and tailored technical solutions ,dedicated to delivering excellent and customized solutions across industries worldwide, including: Defense, Automotive, Medical Devices, Industrial Machinery, Robotics,Consumer Electronics,etc...
We are your engineering and manufacturing partner with integrated capabilities across CNC Machining, Stamping, Powder Metallurgy, and more. Our expertise ensures precision, quality, and cost-effective solutions from concept to volume production.
Services: OEM & ODM Solutions
Quality: Full inspection with CMM and optical equipment to ensure 100% compliance
We are your engineering and manufacturing partner with integrated capabilities across CNC Machining, Stamping, Powder Metallurgy, and more. Our expertise ensures precision, quality, and cost-effective solutions from concept to volume production.
Services: OEM & ODM Solutions
Quality: Full inspection with CMM and optical equipment to ensure 100% compliance



CUSTOMER FEEDBACK.

Trusted by global clients in aerospace, automotive, medical, and electronics industries, our CNC precision components earn consistent 5-star praise for tight tolerances (±0.001mm-±0.005mm), high-quality materials (aluminum, stainless steel, titanium, PEEK), and reliable custom machining solutions—from low-cost prototyping to high-volume production, paired with on-time international shipping, RoHS/REACH compliance, and strict quality control.
TOP 10 FAQs FOR CNC PRECISION MACHINED COMPONENTS.
1. What core info is reguired for customization?
Provide 3D models (STP/lGS), 2D CAD drawings, material specs, tolerance demands (ls0 2768), and DFMrequirements.
Provide 3D models (STP/lGS), 2D CAD drawings, material specs, tolerance demands (ls0 2768), and DFMrequirements.
2. What's the typical precision range?
Standard: +0.01mm; High-precision: +0.005mm via five-axis machining; Ultra-precision: +0.001mm with nanomachining.
3. How to resolve machining overcut?
Optimize tool radius compensation,and adjust Sf speed with uniform allowance distribution.
Optimize tool radius compensation,and adjust Sf speed with uniform allowance distribution.
4. Which materials are commonly processed?
6061/7075 aluminum alloy, 316L/17-4PH stainless steel, titanium alloy, and CFRP (carbon fiber reinforced composites).
6061/7075 aluminum alloy, 316L/17-4PH stainless steel, titanium alloy, and CFRP (carbon fiber reinforced composites).
5.What's the lead time for mass production?
10-30 days: Standard parts (10-15 days); complex five-axis machining (20-30 days) with digital twin simulation.
10-30 days: Standard parts (10-15 days); complex five-axis machining (20-30 days) with digital twin simulation.
6. How to improve surface finish?
Adopt high-speed cutting (HSC), use PVD-coated tools, and optimize coolant supply to avoid built-up edges
Adopt high-speed cutting (HSC), use PVD-coated tools, and optimize coolant supply to avoid built-up edges
7. What causes dimensional instability?
Material internal stress or thermal deformation; solved by pre-annealing and fixture-fixed cooling.
Material internal stress or thermal deformation; solved by pre-annealing and fixture-fixed cooling.
8.What's the common payment structure?
30-40% down payment for raw materials, balance paid before delivery; flexible terms for long-term cooperation.
9. How to prevent tool wear?
Select carbide tools for hard materials, apply high-pressure internal cooling, and monitor via vibration detection systems.
Select carbide tools for hard materials, apply high-pressure internal cooling, and monitor via vibration detection systems.
10.Can post-processing enhance performance?
Yes: Heat treatment (quenching-tempering), anodizing, and laser surface remelting (LSR) for wear resistance.
Yes: Heat treatment (quenching-tempering), anodizing, and laser surface remelting (LSR) for wear resistance.
11. How does smart manufacturing help?
Al-driven process optimization and MES data integration cut defect rates by 30% and boost efficiency.
Al-driven process optimization and MES data integration cut defect rates by 30% and boost efficiency.
12.What causes machining vibration?
Insufficient workpiece rigidity or resonance; resolved by shock-absorbing toolholders and optimized spindlespeed.
13. Who is responsible for maintenance?
Manufacturer provides 1-year free warranty for non-human damage; post-warranty offers precisioncalibration service.
Manufacturer provides 1-year free warranty for non-human damage; post-warranty offers precisioncalibration service.
14. How to ensure lP security?
Sign confidentiality agreements, mark unique part identifiers, and restrict unauthorized design reuse
15.What tolerance standards apply?
Adopt lS0 2768 for general parts; ASME Y14.5 for automotive/aviation high-precision components.
Adopt lS0 2768 for general parts; ASME Y14.5 for automotive/aviation high-precision components.
Last Updated: Mar 3, 2026
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