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Aluminum alloy(ni) - メーカー・企業と業務用製品 | イプロスものづくり

Aluminum alloyの製品一覧

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Aluminum Alloy GAM AL8 for High-Strength Structural Components for Defense Applications

Materials that consider stable structural performance even under harsh environmental conditions.

In the defense industry, the strength and durability of structural components are crucial factors. GAM AL8 features high strength and high elongation, contributing to the reliability of structural components. Additionally, its low density is expected to contribute to weight reduction. 【Application Scenarios】 - Structural components for military equipment - Drone airframes - Parts requiring durability 【Effects of Introduction】 - Improved structural reliability - Enhanced operational efficiency through weight reduction - Simplification of the manufacturing process due to non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Application of high-performance aluminum alloys to lightweight structural components for aerospace.

Materials with high strength and lightweight characteristics that can be considered for application in structural components.

In the aerospace field, reducing the weight of structural components while ensuring strength is an important challenge. GAM AL8 is a material that combines high strength, high elongation, and low density, making it a candidate for various structural components. 【Application Scenarios】 - Aircraft structural components - Drone airframe structures - Parts requiring weight reduction 【Benefits of Implementation】 - Improved efficiency through weight reduction - Ensured strength of structural components - Simplification of processes due to non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Aluminum alloy that achieves both structural stability and lightweight design for railways.

Materials for structural components considering durability and efficiency in long-term use environments.

In the railway industry, while ensuring safety and durability, improving operational efficiency through weight reduction is also important. GAM AL8 is a material that combines high strength, high elongation, and low density, making it suitable for application in structural components. Additionally, its corrosion resistance contributes to a longer lifespan. [Application Scenarios] - Body structural components - Brackets and structural members - Parts requiring durability [Effects of Introduction] - Improved operational efficiency through weight reduction - Reduced maintenance burden due to longer lifespan - Reduced manufacturing costs through non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Aluminum alloy for lightweighting and improved driving efficiency for two-wheel vehicles.

A material that contributes to the performance improvement of motorcycle structural components due to its high strength and low density characteristics.

In the motorcycle industry, improving running performance and efficiency through weight reduction is a crucial factor. GAM AL8 combines high strength, high elongation, and low density, contributing to the lightweighting of the body and structural components. It is also a material that considers both durability and productivity. 【Application Scenes】 - Motorcycle frames - Engine and structural components - Parts that require weight reduction 【Effects of Introduction】 - Improved running performance due to weight reduction - Enhanced durability of components - Reduced manufacturing costs through non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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High-strength aluminum alloy for lightweight structural design for robots

Materials that consider both lightweighting and durability improvement of movable structural components simultaneously.

In the robotics industry, the lightweight design of movable parts and structural rigidity are crucial factors that influence performance. GAM AL8 features high strength, high elongation, and low density, contributing to the lightweight design and durability of structural components. It is also a material that easily accommodates complex shapes. 【Application Scenes】 - Robot frames and structural components - Arms and housings - Lightweight structural components 【Effects of Implementation】 - Improved operational efficiency through weight reduction - Enhanced structural rigidity and durability - Simplification of the manufacturing process due to non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Aluminum alloy that balances durability and productivity for power tools.

Materials for structural components that demonstrate stable performance even in harsh operating environments.

In the field of power tools, materials that can maintain stable performance under repeated impacts and various environmental conditions are required. GAM AL8 is equipped with high strength and corrosion resistance, contributing to the durability of products. Additionally, the non-heat treatment process also contributes to improved production efficiency. 【Application Scenes】 - Power tool housings - Structural frames - Parts requiring durability 【Effects of Introduction】 - Improved product lifespan - Cost reduction through non-heat treatment - Compliance with environmental regulations due to being copper-free

  • Non-ferrous metals
  • Aluminum alloy

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[For Robots] Structural Rigidity and Durability - High Strength Aluminum Alloy

Materials that enhance the strength and reliability of movable structural components.

In the robotics industry, the rigidity of structural components and durability against repetitive motion are important factors. GAM AL7 has high strength and fatigue characteristics, contributing to the stability of structural components. Additionally, being a non-heat-treated material, it also contributes to the simplification of the manufacturing process. 【Application Scenes】 - Robot frames and structural components - Arms and housings - Parts requiring high strength 【Effects of Introduction】 - Improvement of structural rigidity and stability - Assurance of durability against repeated loads - Increased manufacturing efficiency due to non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Lightweight structure and high strength aluminum alloy for drones.

Materials that ensure the strength and operational stability of structural components.

In the field of drones, it is important to achieve both lightweight airframes and ensure the strength of structural components. GAM AL7 has high strength and fatigue characteristics, contributing to the durability of structural components. Additionally, the non-heat treatment process also contributes to improved production efficiency. 【Application Scenarios】 - Structural components of drone airframes - Parts used under high load conditions - Parts that require durability 【Effects of Implementation】 - Improved structural stability - Compatibility with lightweight structural design - Increased productivity through non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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[For Railways] Long-term Load and Vibration Environment High-Strength Aluminum Alloy

Non-heat-treated materials considering the stability and durability of structural components.

In the railway industry, materials that can maintain stable performance under repeated loads and vibration environments over long periods are required. GAM AL7 has high strength and fatigue characteristics, contributing to the reliability of structural components. Additionally, the non-heat treatment process also contributes to improved manufacturing efficiency. 【Application Scenarios】 - Body structural components - Brackets and support parts - Parts subjected to repeated loads and vibrations 【Effects of Implementation】 - Improved structural safety and durability - Reduced maintenance burden due to longer lifespan - Reduced manufacturing costs through non-heat treatment

  • Non-ferrous metals
  • Aluminum alloy

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Automotive-grade GAM AL7: Non-heat-treated high-strength aluminum alloy

Contributes to lightweighting and cost reduction in automobiles without the need for heat treatment.

In the automotive industry, reducing vehicle weight is a crucial challenge for improving fuel efficiency and reducing CO2 emissions. The adoption of high-strength, lightweight materials is essential for addressing this issue. GAM AL7 does not require heat treatment, allowing for reduced manufacturing costs while achieving high strength. This contributes to the lightweighting and durability enhancement of automotive parts. 【Application Scenarios】 - Automotive parts (e.g., engine components, chassis components) - Improved fuel efficiency through weight reduction - Reduction of CO2 emissions 【Benefits of Implementation】 - Reduction in material costs - Shortened production time - Decreased environmental impact

  • Non-ferrous metals
  • Aluminum alloy

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Durability and productivity compatible for electric tools and industrial equipment - Aluminum alloy

Non-heat-treated aluminum alloys suitable for high-strength structural components.

In the field of power tools and industrial equipment, high strength and durability that can withstand repeated loads and impacts are required. GAM AL7 ensures high strength even in a non-heat-treated state, contributing to the reliability of structural components. Additionally, it allows for the omission of heat treatment processes, thereby contributing to increased productivity and cost reduction. [Application Scenarios] - Power tool housings - Structural components of industrial equipment - Parts subjected to high loads and repeated use [Effects of Implementation] - Improved product durability and lifespan - Reduced manufacturing costs due to non-heat treatment - Shortened production lead times

  • Non-ferrous metals
  • Aluminum alloy

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High-strength, high-ductility non-heat-treated aluminum alloy for automotive applications

Aluminum alloy for structural components that achieves both cost reduction and weight reduction simultaneously through non-heat treatment processes.

In the automotive industry, reducing vehicle weight and improving productivity are important challenges. Particularly for structural components, there is a demand for balancing strength and ductility while also simplifying processes. GAM AL8 is a material that combines high strength, high elongation, and low density (2.51 g/cm³), making it suitable for application in structural components. Additionally, as a non-heat-treated material, it contributes to total cost reduction. 【Application Scenarios】 - Body structural components (such as giga-cast parts) - Battery cases, subframes - Parts requiring high strength and lightweight design 【Benefits of Implementation】 - Improved energy efficiency through weight reduction - Simplification of processes and cost reduction due to non-heat treatment - Enhanced corrosion resistance and compliance with environmental regulations due to being copper-free

  • Non-ferrous metals
  • Aluminum alloy

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