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Custom aluminum die casting seat frames are specialized seat structures manufactured using the die casting process, where molten aluminum is injected into a steel mold (die) under high pressure to create a precise, high-strength component. These frames are designed for specific applications, offering lightweight, durable, and corrosion-resistant seating solutions.
It is a big seat frame, material in aluminum alloy ADC12, used in outdoor chair.
ADC12 is a good aluminum material to die casting, and very common.
The process is die casting, cavity 1-1, the weight of seat is 3.6kg, it need 800ton die casting machine to work .
After die casted, worker deburrs carefully and remove extra material.
And put it into shot blasted machine to get a nice surface.
All these seat frame are packed into wooden crate and then load into containers.
Custom aluminum die cast seat frames are ideal for industries requiring durability, lightweight performance, and high-volume production. The die casting process allows for intricate designs while maintaining cost efficiency and structural reliability.
Custom aluminum die casting seat frames are specialized seat structures manufactured using the die casting process, where molten aluminum is injected into a steel mold (die) under high pressure to create a precise, high-strength component. These frames are designed for specific applications, offering lightweight, durable, and corrosion-resistant seating solutions.
It is a big seat frame, material in aluminum alloy ADC12, used in outdoor chair.
ADC12 is a good aluminum material to die casting, and very common.
The process is die casting, cavity 1-1, the weight of seat is 3.6kg, it need 800ton die casting machine to work .
After die casted, worker deburrs carefully and remove extra material.
And put it into shot blasted machine to get a nice surface.
All these seat frame are packed into wooden crate and then load into containers.
Custom aluminum die cast seat frames are ideal for industries requiring durability, lightweight performance, and high-volume production. The die casting process allows for intricate designs while maintaining cost efficiency and structural reliability.
Lightweight & Strong | Made from high-grade aluminum alloys (e.g., ADC12, A380) for reduced weight without compromising structural integrity. |
Precision Die-Casting | Ensures complex geometries, tight tolerances, and smooth surface finishes for seamless integration. |
Corrosion & Fatigue Resistant | Ideal for harsh environments, ensuring long-term durability. |
Customizable Design | Tailored to fit specific seat dimensions, load-bearing needs, and aesthetic preferences. |
Cost-Effective Production | Die-casting allows high-volume manufacturing with minimal post-processing. |
Enhanced Safety | Engineered to meet industry standards (e.g., automotive crash tests, FAA/ISO certifications) |
Lightweight & Strong | Made from high-grade aluminum alloys (e.g., ADC12, A380) for reduced weight without compromising structural integrity. |
Precision Die-Casting | Ensures complex geometries, tight tolerances, and smooth surface finishes for seamless integration. |
Corrosion & Fatigue Resistant | Ideal for harsh environments, ensuring long-term durability. |
Customizable Design | Tailored to fit specific seat dimensions, load-bearing needs, and aesthetic preferences. |
Cost-Effective Production | Die-casting allows high-volume manufacturing with minimal post-processing. |
Enhanced Safety | Engineered to meet industry standards (e.g., automotive crash tests, FAA/ISO certifications) |
Automotive Seats (cars, trucks, racing vehicles)
Aircraft & Helicopter Seats
Marine & Boating Seats
Office & Ergonomic Chairs
Heavy Machinery & Industrial Seating
Public Transportation Seats (buses, trains)
Automotive Seats (cars, trucks, racing vehicles)
Aircraft & Helicopter Seats
Marine & Boating Seats
Office & Ergonomic Chairs
Heavy Machinery & Industrial Seating
Public Transportation Seats (buses, trains)
A:Faster production compared to CNC machining or welding.
Better surface finish (reduces post-processing needs).
Higher structural integrity with fewer weak points vs. welded assemblies.
A:Alloy Selection (e.g., A380, A383, ADC12 for optimal strength/fluidity)
Surface Treatments (powder coating, anodizing, plating)
Integration of Inserts (threaded bosses, reinforcements)
Hollow Structures (for further weight reduction)
A:Faster production compared to CNC machining or welding.
Better surface finish (reduces post-processing needs).
Higher structural integrity with fewer weak points vs. welded assemblies.
A:Alloy Selection (e.g., A380, A383, ADC12 for optimal strength/fluidity)
Surface Treatments (powder coating, anodizing, plating)
Integration of Inserts (threaded bosses, reinforcements)
Hollow Structures (for further weight reduction)
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