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Product Name: PALADIN STEEL MIDSOLES
Product Description:
PALADIN STEEL MIDSOLES are EN ISO22568-3-certified safety components for industrial footwear, engineered with 0.50mm high-strength stainless steel to deliver anti-penetration (≥1100N resistance) and 1 million flex-resistance cycles (ISO EN22568-3:2019). Designed exclusively for safety shoes, they prevent sharp-object injuries (e.g., nails, debris) in high-risk sectors like construction, mining, and agriculture, while maintaining lightweight ergonomics and corrosion-resistant durability.
Key Advantages:
Puncture & Nail Proof: Full-length steel core embedded between insole and outsole, compliant with anti-removal standards.
Rigid Support: Shields against impacts, compressive forces, and foot injuries.
Tested Reliability: Exceeds ISO EN22568-3:2019 for penetration, flexing, and corrosion resistance.
Technical Parameters:
Penetration Resistance: ≥1100N (ISO EN22568-3:2019 4.2)
Flexing Resistance: ≥1,000,000 cycles (ISO EN22568-3:2019 4.3)
Corrosion Resistance: ISO EN22568-3:2019 4.4
Packaging & Orders:
100 pairs/box | MOQ: 10,000 pairs | 100,000 pairs in 20 days
Applications:
Ideal PPE for safety footwear in construction, recycling plants, mining, and agriculture.
FAQ
How to Choose the Right Steel Midsole?
Material Options: Steel midsoles are available in carbon steel or stainless steel.
Stainless Steel Benefits:
1 million flex-resistance cycles
Zero penetration resistance (anti-puncture)
Corrosion resistance (rust-proof).
Passes all functional tests under EN ISO 22568-3, including:
Drawback: Higher material cost.
Carbon Steel Benefits:
Prone to rust due to lack of nickel in its composition.
Fails flex-resistance tests due to higher hardness.
Superior penetration resistance and lower cost.
Drawbacks:
Key Considerations:
Opt for stainless steel if compliance with EN ISO 22568-3 standards, durability, and corrosion resistance are priorities.
Choose carbon steel for budget-friendly puncture protection in low-corrosion environments, accepting trade-offs in flexibility and rust susceptibility.
Product Name: PALADIN STEEL MIDSOLES
Product Description:
PALADIN STEEL MIDSOLES are EN ISO22568-3-certified safety components for industrial footwear, engineered with 0.50mm high-strength stainless steel to deliver anti-penetration (≥1100N resistance) and 1 million flex-resistance cycles (ISO EN22568-3:2019). Designed exclusively for safety shoes, they prevent sharp-object injuries (e.g., nails, debris) in high-risk sectors like construction, mining, and agriculture, while maintaining lightweight ergonomics and corrosion-resistant durability.
Key Advantages:
Puncture & Nail Proof: Full-length steel core embedded between insole and outsole, compliant with anti-removal standards.
Rigid Support: Shields against impacts, compressive forces, and foot injuries.
Tested Reliability: Exceeds ISO EN22568-3:2019 for penetration, flexing, and corrosion resistance.
Technical Parameters:
Penetration Resistance: ≥1100N (ISO EN22568-3:2019 4.2)
Flexing Resistance: ≥1,000,000 cycles (ISO EN22568-3:2019 4.3)
Corrosion Resistance: ISO EN22568-3:2019 4.4
Packaging & Orders:
100 pairs/box | MOQ: 10,000 pairs | 100,000 pairs in 20 days
Applications:
Ideal PPE for safety footwear in construction, recycling plants, mining, and agriculture.
FAQ
How to Choose the Right Steel Midsole?
Material Options: Steel midsoles are available in carbon steel or stainless steel.
Stainless Steel Benefits:
1 million flex-resistance cycles
Zero penetration resistance (anti-puncture)
Corrosion resistance (rust-proof).
Passes all functional tests under EN ISO 22568-3, including:
Drawback: Higher material cost.
Carbon Steel Benefits:
Prone to rust due to lack of nickel in its composition.
Fails flex-resistance tests due to higher hardness.
Superior penetration resistance and lower cost.
Drawbacks:
Key Considerations:
Opt for stainless steel if compliance with EN ISO 22568-3 standards, durability, and corrosion resistance are priorities.
Choose carbon steel for budget-friendly puncture protection in low-corrosion environments, accepting trade-offs in flexibility and rust susceptibility.
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