Aluminum Shot With Microhardness 40-50HV Melting Point 660.3°C And Owen S Lifespan 6500times
Distinctive visual appeal: Aluminum shot possesses a bright and visually appealing appearance, enhancing the aesthetic quality of the workpiece surface.
Lightweight composition: Compared to other abrasive materials, aluminum shot is significantly lighter in weight. This characteristic improves handling and reduces fatigue during usage, making it easier to transport and maneuver.
Low hardness: Aluminum shot has a lower hardness compared to some other abrasives. This attribute allows it to effectively remove impurities, old coatings, and contaminants from the workpiece surface without causing damage or excessive material removal.
Corrosion resistance: Aluminum shot exhibits excellent corrosion resistance. This property makes it suitable for applications where exposure to moisture or corrosive environments is a concern. It maintains its integrity and effectiveness over time, reducing the risk of deterioration or degradation.
Surface-friendly polishing: Aluminum shot enables effective polishing without damaging the surface of the product. Its low hardness and gentle impact ensure a smooth and even polishing process, preserving the integrity and quality of the workpiece surface.
Significant whitening effect: When used for surface cleaning and polishing, aluminum shot provides a notable whitening effect on the workpiece surface. This is particularly advantageous in applications where achieving a bright, clean, and uniform appearance is desired.
Product Specifications:
Size Range: Aluminum shot is available in a range of sizes from 0.2mm to 3.0mm. This diverse size range allows for customization and selection based on specific application requirements, ensuring optimal performance and desired results.
Enhanced portability and maneuverability: Aluminum shot's exceptional lightweight nature makes it highly portable and easy to handle. Its light weight facilitates transportation and enables effortless maneuverability, especially in remote or on-site surface preparation tasks where mobility is crucial.
Non-sparking and safety: Due to its non-ferrous and non-magnetic properties, aluminum shot is non-sparking. This attribute is particularly valuable in environments where the generation of sparks poses safety risks, especially in industries dealing with flammable or explosive materials, ensuring a safe working environment.
Gentle and delicate abrasion: The lower density and softer impact of aluminum shot result in a gentler abrasion process on the workpiece surface. This characteristic is especially beneficial when working with delicate materials or components that require a delicate touch. It minimizes the risk of damage or surface deformation, preserving the integrity of the treated materials.
Enduring surface shine: Aluminum shot retains its shine and visual appeal over time, thanks to its natural oxide layer. This attribute ensures a long-lasting surface aesthetic, making it suitable for applications where maintaining an enduring and attractive finish is important.
Environmental sustainability: Aluminum shot's high recyclability makes it an environmentally sustainable choice. Its efficient recovery and reuse contribute to waste reduction, resource conservation, and cost-effectiveness. By aligning with environmentally friendly manufacturing practices, it promotes sustainability in various industries.
Clean working environment: Aluminum shot produces minimal airborne dust during the cleaning process. This feature is particularly valuable in industries where airborne dust needs to be minimized, such as cleanroom environments or sectors with strict air quality regulations. It ensures optimal working conditions and maintains the quality of the products.
Protection for delicate materials: With its lower density and softer impact, aluminum shot provides effective surface protection when working with delicate or sensitive materials. It enables surface cleaning and preparation without causing damage or deformation, ensuring the integrity and quality of the treated materials are preserved.
Uses | Shot Blasting, Metal Additive, Fireworks |
Flammability | Non-flammable |
Usage | Surface Blasting Treatment |
Owen's lifespan | 6500times |
Bulk density | 1.5 G/m3 |
Material | Aluminum |
Tensile strength | 80-240MPa |
Conductivity | High |
Microhardness | 40-50HV |
Malleability | High |
Surface rejuvenation and corrosion mitigation: Aluminum shot is effective in rejuvenating surfaces and mitigating corrosion by removing oxidation layers, rust, oil residues, and other contaminants from workpiece surfaces. It ensures a clean substrate for subsequent coating, welding, or machining processes, enhancing the overall longevity and performance of the treated surfaces.
Surface refinement and luster enhancement: Aluminum shot is utilized for surface refinement and luster enhancement, improving the quality and appearance of workpieces. It removes burrs, dents, and defects, resulting in a smoother, more uniform surface with enhanced glossiness, adding aesthetic value to the treated workpieces.
Maintenance of compression molding and stamping dies: Aluminum shot plays a crucial role in maintaining compression molding and stamping dies. It removes carbon deposits, residues, and oxides from the die surfaces, restoring their geometric shape and surface smoothness. This ensures proper functionality, extends their lifespan, and optimizes the quality of the molded or stamped products.
Cleaning and preparation of aluminum workpieces: Aluminum shot is employed to clean and prepare the surfaces of aluminum workpieces. It effectively removes oxidation layers, dirt, and grease, creating a clean and pristine surface for subsequent coating, welding, bonding, or assembly processes. This ensures optimal adhesion, integrity, and performance of the finished products.
Refinement of post-processed 3D printed parts: In the realm of 3D printing, aluminum shot serves as a valuable tool for refining post-processed printed parts. It is adept at removing support structures and residues from the surface, achieving the desired surface quality and preparing the parts for subsequent treatments, coatings, or assemblies, ensuring optimal functionality and aesthetics.
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