stainless steel shots
With core advantages such as pure composition, excellent performance, and long service life, they are widely used in surface strengthening, rust removal and cleaning, deburring
With advantages including high material purity, outstanding mechanical performance, and an extended service life, our stainless steel cut wire shot is widely used for surface strengthening, rust removal, cleaning, deburring, and matte finishing across industries such as aerospace, automotive manufacturing, marine engineering, new energy, and precision machinery.
I. Precision Manufacturing for Consistent Quality
Our stainless steel cut wire shot is manufactured in strict accordance with internationally recognized standards, including Germany VDFI 8001/2009 and SAE J441. Every stage of production—from raw material selection to final inspection—is carefully controlled to eliminate impurities and non-conforming particles.
The manufacturing process begins with premium stainless steel wire, which is precisely cut into cylindrical particles before undergoing professional rounding and passivation. A dual-stage screening and filtration system further improves particle consistency, ensuring excellent dimensional accuracy and product cleanliness.
As a result, the finished media offers:
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G1–G3 sphericity for consistent blasting performance
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Uniform particle size with minimal variation
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No pores, sharp edges, or irregular particles
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Bright, rust-free surface finish
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Excellent flowability for stable equipment feeding
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High recycling efficiency that minimizes equipment wear and reduces dust generation
To ensure consistent material quality, high-purity stainless steel is used as the base material. Critical alloying elements such as Cr, Ni, and Mo are accurately analyzed using a German SPECTRO direct-reading spectrometer, with chemical composition deviations controlled within ±0.05%.
II. Outstanding Performance That Delivers Long-Term Value
Excellent Corrosion Resistance
Thanks to its stainless steel composition, the media maintains outstanding corrosion resistance in humid environments as well as acidic, alkaline, and salt spray conditions, ensuring long-term stability during repeated blasting cycles.
Optimized Balance of Hardness and Toughness
Hardness can be customized according to different application requirements, ranging from HV300 to HV600 (HRC32–55).
At the same time, the material provides excellent toughness, with an Owen fatigue life of approximately 3,600–8,000 cycles, allowing repeated reuse while maintaining stable blasting efficiency.
Environmentally Friendly and Cost Efficient
Designed for sustainable industrial production, the product offers:
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Dust emission ≤5 mg/m³
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High recycling rate
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Lower equipment wear
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Reduced abrasive consumption
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Comprehensive operating costs more than 40% lower than comparable imported products
These advantages help manufacturers improve productivity while lowering long-term operating expenses.
III. Complete Product Range for Diverse Industrial Requirements
A comprehensive range of materials and particle sizes is available to satisfy different blasting processes. Customized specifications can also be produced according to individual customer requirements.
Material Grades and Typical Chemical Composition
| Material | Steel Type | Main Chemical Composition | Typical Applications |
|---|---|---|---|
| 304 | Austenitic | C≤0.07%, Cr17.0–19.0%, Ni8.0–11.0%, Mn≤2.0% | Precision components, food processing equipment, pharmaceutical machinery, general industrial applications |
| 316 | Austenitic | C≤0.08%, Cr16.0–18.0%, Ni10.0–14.0%, Mo2.0–3.0% | Marine engineering, chemical processing equipment, highly corrosive environments |
| 410 / 430 | Martensitic / Ferritic | C≤0.15% / 0.12%, Cr11.5–13.5% / 16.0–18.0% | Heavy-duty cleaning, surface strengthening, high-hardness applications |
Product Specifications
Available specifications include:
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Diameter: 0.1 mm–3.0 mm (custom sizes available)
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SAE Size Range: S40–S1100
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Bulk Density: 4.5 g/cm³
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Material Density: 7.8 g/cm³
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Tensile Strength: 1300–2200 MPa
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Hardness Tolerance: ≤±3.0 HRC
Particle size distribution, hardness, and sphericity can all be customized to match different blasting equipment and processing requirements.
IV. Broad Industrial Applications
With its excellent durability, corrosion resistance, and stable blasting performance, stainless steel cut wire shot is widely applied in numerous demanding industries.
Aerospace and Defense
Used for shot peening, deburring, and stress relief of precision components such as:
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Turbine blades
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Aircraft fasteners
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Structural aerospace parts
The process enhances fatigue resistance while eliminating residual welding stress.
Automotive Manufacturing
Ideal for cleaning and finishing:
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Aluminum alloy wheels
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Engine blocks
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Transmission housings
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Chassis components
It improves coating adhesion, enhances surface quality, and helps reduce production defects.
Marine Engineering and Steel Structures
Suitable for anti-corrosion surface preparation of:
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Ship hulls
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Offshore structures
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Wind turbine towers
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Bridge steel components
It serves as an effective alternative to traditional pickling processes while significantly improving salt spray resistance and extending protective coating life.
New Energy Industry
Widely used for surface treatment of:
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Photovoltaic mounting systems
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Lithium battery housings
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Hydrogen storage vessels
Its clean blasting characteristics make it especially suitable for dust-sensitive production environments.
Precision Machinery and Medical Equipment
Applied in the polishing and finishing of:
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Pumps
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Valves
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Surgical instruments
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Medical implants
The stainless steel media produces iron-free surfaces and supports manufacturing processes that comply with FDA, GMP, and other hygiene-related standards.
By combining high-purity raw materials, precision manufacturing technology, excellent durability, and customizable specifications, our stainless steel cut wire shot provides reliable, efficient, and environmentally responsible surface treatment solutions for a wide variety of industrial applications. Whether used for precision shot peening, surface cleaning, or corrosion-resistant finishing, it helps manufacturers achieve higher production quality, lower operating costs, and longer equipment service life.






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