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Tool steel knowledge sharing

Hello, welcome to our tool steel knowledge sharing platform. We will regularly share various knowledge points in the field of tool steel. Our purpose is to spread this knowledge to help more technicians and companies engaged in the tool field understand industry trends and choose correct and high-quality tool materials.

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  • DC53 vs D2 comparison showing D2 punch chipping and DC53 stronger edge performance for cold work die steel

    DC53 vs D2: Is DC53 the Better Fix for Punch Chipping and Die Failure?

    If you are comparing DC53 vs D2, the real question is not only which steel is harder. The better question is this: why does a D2 punch chip, crack, or…

    Read More DC53 vs D2: Is DC53 the Better Fix for Punch Chipping and Die Failure?Continue

  • 17-4PH vs 316L stainless steel selection for corrosion resistance and high strength parts

    17-4PH vs 316L: When Stainless Steel Needs More Than Corrosion Resistance

    17-4PH vs 316L is a real engineering choice when a stainless part must resist corrosion but also carry load, hold threads, resist wear, or avoid bending in service. 316L is…

    Read More 17-4PH vs 316L: When Stainless Steel Needs More Than Corrosion ResistanceContinue

  • M35 vs M42 cobalt drill bits cutting stainless steel with coolant and metal chips

    M35 vs M42 Cobalt Drill Bits: Why 8% Cobalt Matters When Drilling Stainless Steel

    M35 vs M42 Cobalt Drill Bits is not a small grade debate when drilling stainless steel. It is the difference between a tool that keeps cutting and one that turns…

    Read More M35 vs M42 Cobalt Drill Bits: Why 8% Cobalt Matters When Drilling Stainless SteelContinue

  • High-contrast macro photo comparing H13 and Dievar hot work tool steel cross-sections after thermal fatigue testing, showing deep micro-cracks in H13 and minimal surface crazing in Dievar.

    Dievar vs H13: Is Saving On Tool Steel Killing Your Die Casting ROI?

    When a high-pressure die casting tool cracks unexpectedly, the upfront expense of the replacement block is just a small fraction of the financial damage caused by the hours or days…

    Read More Dievar vs H13: Is Saving On Tool Steel Killing Your Die Casting ROI?Continue

  • A professional metallurgical testing facility showing a large industrial hot-work tool steel mold undergoing thermal fatigue testing with molten aluminum injection, demonstrating the application of DIN 1.2343 and 1.2344 equivalents in a high-temperature engineering lab.

    1.2343 vs 1.2344 Steel: Which Grade Stops Early Die Casting Cracks?

    If your multi-thousand-dollar aluminum die casting inserts are splitting or showing web-like cracks after just 5,000 cycles, you are likely facing an expensive metallurgical miscalculation. This guide directly resolves the…

    Read More 1.2343 vs 1.2344 Steel: Which Grade Stops Early Die Casting Cracks?Continue

  • A mirror-polished mold insert made of NAK80 mold steel reflecting safety goggles with perfect clarity in a precision CNC machine shop environment.

    NAK80 Mold Steel: Why Your Mirror Finish Fails and How to Achieve Zero-Pinhole Optics

    In the high-stakes world of optical molding—think smartphone camera lenses, light guides for EVs, and VR headset components—there is zero margin for error. You have likely experienced the “Mirror Trap”:…

    Read More NAK80 Mold Steel: Why Your Mirror Finish Fails and How to Achieve Zero-Pinhole OpticsContinue

  • Side-by-side comparison of corroded 1.2083 mold steel and pristine 1.2316 pre-hardened stainless steel in an industrial PVC extrusion factory setting.

    1.2083 vs 1.2316: Solving Acidic Corrosion in PVC Extrusion Dies

    In the high-stakes environment of plastic extrusion, the choice of mold steel is rarely just about hardness. For engineers dealing with PVC, the decision often boils down to a head-to-head…

    Read More 1.2083 vs 1.2316: Solving Acidic Corrosion in PVC Extrusion DiesContinue

  • Professional heat treatment of stainless steel blades in an industrial furnace, illustrating the hardening process of martensitic stainless steel for 420 and 440C grades.

    Why the 420 vs 440C Stainless Choice Defines Your Product’s Life

    Selecting the right alloy for high-stress components often feels like a balancing act between cost, durability, and chemical stability. Within the world of martensitic stainless steel, two grades frequently dominate…

    Read More Why the 420 vs 440C Stainless Choice Defines Your Product’s LifeContinue

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Recent Posts

  • DC53 vs D2: Is DC53 the Better Fix for Punch Chipping and Die Failure?
  • 17-4PH vs 316L: When Stainless Steel Needs More Than Corrosion Resistance
  • M35 vs M42 Cobalt Drill Bits: Why 8% Cobalt Matters When Drilling Stainless Steel
  • Dievar vs H13: Is Saving On Tool Steel Killing Your Die Casting ROI?
  • 1.2343 vs 1.2344 Steel: Which Grade Stops Early Die Casting Cracks?

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Qilu Steel is a leading supplier of high-quality tool steel with extensive experience in the industry. Our investment in a specialized factory further demonstrates our commitment to being at the forefront of the tool steel industry. We offer a wide range of tool steel grades, including P20, H13, D2, and S7, each with unique properties suited for different applications.

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