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| Customization: | Available |
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| Processing Object: | Metal |
| Molding Style: | Forging |
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1. Precision forging & CNC machining parts strictly follow customers' drawing, packing, and quality requirements.
2. Tolerance: between+/-0.2mm;
3. The high-tech inspectors to ensure the quality;
4. Full-Experienced engineers and well professional trained workers;
5. Fast delivery time;
6. Professional advice for our customers; 
All our products are manufactured under Precision manufacturing, which have five floors of 4810 square meters. Owning various types of precision automatic equipments: 120 sets of CNC Lathe, CNC machining centers, forging and Stamping Machines, thread rolling machines and other processing machines. those have a monthly capacity of 3,000,000 units, to match your volume orders .There are also lots of testing equipment for quality assurance. Such as: three dimensional, optical Projector, Surfagauge, sclerometer, Tension tester, etc. Quality Control All of our engineers and Q/C guys concern and active in every engineering and manufacturing stages by ISO standard. Available materials: brass, mild steel, steel alloy, stainless steel and iron, aluminum, zinc; Available surface finish: fine polish, electrolyte-polish, chrome, zinc plating, nickel plating, aluminum oxidation. Available processes: metal processing includes machining, stamping, die-cast and hot-press,expert plastic injection, and surface plating.OEM orders are welcome Contact us NOW If you have new project please send your 2D or 3D drawing(STP,IGS)file to us, we will be quote to you in 24hours.
Aluminum alloy cold forging and warm forging:
1. High-tech and complex-shaped aluminum alloy cold forging and warm forging parts.
2. Super long aluminum alloy cold forged and warm forged shaft, pipe and tube (maximum length: 700mm).
3. Large end and super thin special section aluminum alloy cold forged and warm forged part (like IPAD crust, the thinnest can be0.6mm).
4. High-precision aluminum alloy cold forged and warm forged parts, no secondary machining after heat treatment.
5. Cold forged and warm forged parts of Special aluminum alloy (Such as 2024, 2A12, 7075, 7A09, 5082, 5052, etc.).
6. High-precision 3D aluminum alloy cold forged and warm forged parts.
7. High tensile strength and yield strength aluminum alloy cold forged and warm forged parts.
8. High-speed aluminum alloy cold forging with high efficiency and low cost.
9. High-tech aluminum alloy forged heat sink.
| Quality Control | 1. Raw Materials Test, include chemical composition and size; |
| 2. Random inspection during production; | |
| 3. Final products size test, with measurement tools, special gauges and Coordinate instrument if needed; | |
| 4. Final products Strenght and Hardness test, to guarantee the mechanical property; | |
| 5. Assembly and Function test, with special testing gauges; | |
| 6. Packing test |

| Features: Aluminum Forging Parts |
| 1) Materials: Aluminum |
| 2) Standard: JIS, DIN, ASTM, BS |
| 3) Surface treatment: Anodic oxidation |
| 4) Weight: 0.1 -100kg |
| 5) Processes : Forging, CNC Machining. |
| 6) Application: Industry Equipments, Autos, Construction machinery Parts, Agricultural machinery, Railway relevant Parts, Petrochemical machinery, Mining machinery, The power industry. |
| 7) Testing equipment: Supersonic inspection machine, Supersonic flaw detecting machine , physics and chemical analysis. |
| 8) Services |
| a) Also can design and manufacture forged according to the customers' requirement |
| b) ISO9001 quality control and inspection |
| c) In house & Third Parties |
| d) Ordering and warehousing |
| 9) Packing: Wooden cases or according to customers' needs |
| 10)Logistics: Shipping, Air Flight, International Express etc. |
| 11)Process: Die Forging, Free Forging, Hot forging, Heat Treatment, Machining, Surface Treatment etc. |

Aluminum alloy forging is the process of shaping aluminum metal into desired forms through the application of high pressure, usually using a hammer or press. This process involves heating the aluminum alloy to a malleable state, then applying force to shape it into components for use in various industries, such as automotive, aerospace, and manufacturing.
Enhanced Strength: Forging increases the strength of aluminum alloy, making it more durable and reliable.
Superior Grain Structure: The process refines the grain structure of the metal, improving its mechanical properties.
Lightweight: Aluminum alloys remain light, which is beneficial in industries such as aerospace and automotive.
Improved Fatigue Resistance: Forged aluminum parts typically have better fatigue resistance compared to cast parts.
High Precision: Forging can produce parts with tight tolerances, reducing the need for additional machining.

Common aluminum alloys used in forging include:
2xxx Series (Al-Cu): Known for high strength and used in aerospace applications.
6xxx Series (Al-Mg-Si): Offers good strength and corrosion resistance, commonly used in structural applications.
7xxx Series (Al-Zn): High strength and used in aerospace and applications.
Heating: The aluminum alloy is heated to a temperature where it becomes malleable.
Forging: The heated metal is placed between dies and shaped using a hammer or press.
Cooling: After forging, the part is cooled, and often further processing is done to enhance properties, such as aging or heat treatment.
Forged aluminum alloy parts are used in a variety of industries:
Aerospace: For components like aircraft wings, engine parts, and landing gear.
Automotive: For lightweight yet strong parts such as wheels, suspension components, and engine blocks.
Industrial Equipment: For heavy-duty applications requiring high strength and precision.
Sports & Recreation: For lightweight and durable parts in bicycles, golf clubs, etc.

Forging creates parts by shaping heated aluminum alloy under pressure, while casting involves pouring molten aluminum into molds.
Forged aluminum generally has a superior grain structure and better mechanical properties compared to cast aluminum.
Casting is more suitable for producing complex shapes, but forging is ideal for strength and durability in critical applications.
Material Cost: Aluminum alloys can be expensive, especially high-strength alloys.
Tooling and Equipment: Forging requires specialized dies and presses, which can be costly.
Heat Management: Properly controlling the heating and cooling stages is crucial to ensure the final product's quality.
Size Limitations: Forging is typically best suited for medium to large parts, as very small or complex parts may be difficult to forge effectively.
Yes, aluminum forging can be more environmentally friendly than casting or machining in some cases:
Reduced Material Waste: Forging processes tend to create less scrap material compared to casting.
Recyclability: Aluminum is highly recyclable, and forging can use recycled aluminum, reducing environmental impact.
Energy Efficiency: Forging can be more energy-efficient in some scenarios compared to casting.
Heat treatment, including processes like aging or solution heat treatment, can significantly improve the mechanical properties of forged aluminum. Heat-treated forged aluminum often exhibits improved strength, hardness, and corrosion resistance.
Material Type: High-strength alloys typically cost more.
Part Complexity: More complex designs require more intricate tooling and processes.
Volume: Larger production runs often reduce the per-unit cost.
Quality Requirements: Higher precision and stricter quality standards increase cost.
Tooling and Setup Costs: Initial setup and tooling for forging are significant costs.