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The steel midsole is a vital protective component in industrial footwear, offering unmatched puncture resistance against sharp objects like nails or metal debris. Made from hardened carbon steel, it provides a rigid barrier that distributes impact forces evenly across the foot. Its tempered construction (1-2mm thick) balances durability with flexibility, while corrosion-resistant coatings ensure longevity in harsh environments.

 

The steel plate also enhances stability, reducing foot fatigue during prolonged standing on hard surfaces. Though slightly heavier than composite alternatives, its superior penetration protection and load-bearing capacity make it ideal for construction, manufacturing, and heavy industry applications. Modern designs integrate ergonomic contours and compatibility with other safety features, maintaining workplace protection without compromising comfort.

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  • High Quality kevlar midsole plate For Safety Shoes Manufacturer

    Kwalità Għolja kevlar midsole pjanċa għall-Manifattur Żraben tas-Sigurtà

    Oġġett:Midsole Kevla

    Applikazzjoni:Għal żraben tas-sigurtà

    Materjal:Kevla

    Ħxuna:0.5mm/0.8mm

    Kulur:abjad

    Standard:EN22568

    Reżistenza għall-penetrazzjoni:1200N

    Reżistenza għall-flessjoni:EN22568 (1500000times)standard

    Funzjoni:reżistenti għall-ilma, kontra t-tqattigħ, kontra t-titqib, kontra ż-żlieq

    Post ta' Oriġini:Hebei, iċ-Ċina

  • Safety midsoles for shoes Steel Plate Anti-nail Anti-piercing Foot Larbor Protection steel Midsoles

    Midsoles tas-sigurtà għaż-żraben Steel Plate Anti-dwiefer Anti-titqib Foot Larbor Protection azzar Midsoles

    Oġġett:Midsole Mn-azzar

    Applikazzjoni:Għal żraben tas-sigurtà

    Materjal:Mn-azzar

    Ħxuna:0.49-0.5mm

    Kulur:iswed

    Standard:EN22568

    Reżistenza għall-penetrazzjoni:1200N

    Funzjoni:kontra l-impatt, reżistenza għaż-żejt, anti-statiku

    Post ta' Oriġini:Hebei, iċ-Ċina

  • High Quality EN Standard Stainless Steel Midsole

    Kwalità Għolja EN Standard Stainless Steel Midsole

    Suletti kontra t-titqib ta 'l-Azzar li ma jsaddadx huwa magħmul minn azzar ta' kwalità għolja li huwa ideali għal żraben tas-sigurtà, għandu titqib tajjeb
    reżistenza u jista 'jitgħawweġ aktar minn 1,000,000 darba, il-wiċċ tiegħu huwa magħmul minn sprej ta' trab matte tar-reżina epoxy biex itejjeb il-
    adeżjoni, huwa kontra s-sadid u kontra t-titqib. Azzar anti Piercing Mid-lingwata intużat fit-teħid taż-żraben tas-sigurtà għal ħafna snin. dan
    huwa rqiq, mhux għali u użat ħafna minn dawk li jfasslu ż-żraben tas-sigurtà. (L-azzar anti-penetraion Mid-lingwata manifatturata fil-fabbrika tagħna għandha
    Reżistenza għall-flexing: (1000000 darba), EN12568, CSA (1500000 darbiet) standard. Reżistenza għall-penetrazzjoni 1100N Flexing resistancec
    100PRS/CTN). Għandu STANDARD EWROPEW EN12568.


    Oġġett:Midsole tal-istainless steel

    Applikazzjoni:Għal żraben tas-sigurtà

    Materjal:azzar li ma jissaddadx

    Ħxuna:0.49mm

    Kulur:fidda

    Standard:EN22568

    Reżistenza għall-penetrazzjoni:1200N

    Reżistenza għall-flessjoni:EN22568 (1000000times)standard

  • Stainless Steel Insole

    Stainless Steel Insole

    Steel bottom can prevent puncture, anti-static, zigzag resistance, acid and alkali resistance, high and low temperature resistance. Quality up to EN, CSA, JIS and other international standards, is the work shoes, labor protection shoes and other protective shoes necessary protective products Stainless steel anti-puncture insole made of high quality steel, is the ideal choice for safety shoes, has good puncture resistance, can be bent more than 1,000,000 times. The surface is sprayed with epoxy resin matte powder to enhance adhesion, prevent rust and puncture. Especially in the site is particularly popular, mainly used to prevent stepping on nails or other sharp objects, due to its high hardness, wear resistance characteristics, can effectively protect the safety of the foot, reduce the risk of injury.Durable: Compared with ordinary insoles, stainless steel insoles are stronger, not easy to damage, and have a long service life.

What is a steel midsole? 

 

A steel midsole is a protective layer embedded in work boots between the insole and outsole, designed to prevent puncture injuries from sharp objects like nails or metal shards. Typically made from thin, tempered steel, it provides rigid structural support while maintaining flexibility for walking comfort. The steel plate acts as an impenetrable barrier that meets ASTM F2413 safety standards for puncture resistance. Unlike surface protection, the midsole's strategic placement shields the entire footbed without adding excessive bulk.

 

While offering superior protection in industrial environments, steel midsoles do add some weight to footwear and can conduct temperature extremes. Modern designs often incorporate perforations or contours to improve flexibility and breathability while maintaining safety performance. This critical safety feature has become standard in many construction, manufacturing, and utility work boots where puncture hazards exist.


Pros and cons of Steel Midsole versus Composite

 

Steel midsoles and composite midsoles each have distinct advantages and drawbacks in work boot construction. Steel midsoles provide superior puncture resistance and structural rigidity, making them ideal for heavy industrial environments with sharp debris. They offer excellent protection against extreme compression and maintain stability over time, but add significant weight to the footwear and can conduct temperature extremes. Composite midsoles are lighter weight (typically 30-50% reduction), non-metallic (making them metal detector friendly), and provide better insulation against hot/cold surfaces.

 

While they meet most safety standards for puncture resistance, composites may not withstand repeated extreme impacts as well as steel. Composite materials also tend to be more flexible, improving comfort during extended wear but potentially offering less support for heavy loads. The choice depends on workplace hazards - steel excels in high-risk industrial settings while composites better suit lighter duty applications where weight and thermal comfort are priorities.

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