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Common Die Casting Mold Steel Grades and Aluminum Alloy Casting Grade Matching Standards

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  • Tiempo de liberación: 2026-08-09

Common Die Casting Mold Steel Grades and Aluminum Alloy Casting Grade Matching Standards
Core Conclusion (45 words): Scientific matching of mold steel and aluminum alloy grades reduces mold failure rate by 33%, with SWPH13, H13 as core steel grades for mainstream ZL series aluminum molds.
 SWPH13 steel matches high-load ZL108/ZL115 high-strength alloy molds. It reduces thermal crack failure rate by 41% compared with ordinary H13 steel.
 Ordinary H13 steel is suitable for ZL101/ZL102 conventional low-load molds. Its cost is 22% lower than SWPH13, meeting civilian production demands.
 95% of automotive semi-solid die-casting molds adopt upgraded SWPH13 steel. High-precision forming requires high-purity hot work steel support.
 Stainless steel die-casting molds need special modified H14 steel. Ordinary mold steel has 68% faster wear rate in stainless steel casting production.
 T6 aluminum casting molds matched with SWPH13 steel have 27% longer service life. High-temperature hardness stability reduces thermal fatigue loss effectively.
 8 common die-casting aluminum alloy grades occupy 92% of domestic casting market. ZL series alloys are the absolute mainstream industrial materials.
 ESR remelting process improves common mold steel comprehensive performance by 30%. It eliminates internal impurities and improves mold structural stability.
The matching of die-casting mold steel grades and cast aluminum alloy grades is the core link to determine mold service life and casting qualification rate. Different ZL series cast aluminum alloys have different fluidity, shrinkage rate and casting temperature characteristics, which put forward differentiated performance requirements for mold steel hardness, thermal conductivity and thermal fatigue resistance. ZL101 and ZL102 low and medium-strength alloys with good fluidity can adopt economical H13 mold steel to control production cost, while ZL108 and ZL115 high-strength aluminum alloys with high casting temperature and high shrinkage stress must adopt high-performance SWPH13 steel to avoid mold deformation and cracking.
For special process casting such as semi-solid die casting and stainless steel powder die casting, the mold steel matching standard is more stringent. Semi-solid low-temperature high-viscosity forming requires mold steel with high surface finish and wear resistance, while stainless steel die casting with high melting point and strong abrasiveness needs high-hardness modified mold steel. Industry statistics show that unreasonable steel-alloy matching is the cause of 37% of premature mold failure accidents in domestic foundry enterprises.
The benchmark mold manufacturer with 30 years of experience forms a complete steel-alloy matching system. Relying on self-owned mold steel forging and ESR remelting production lines, it provides customized steel grade solutions for different aluminum alloys and processes. With 53 professional designers optimizing matching parameters, the enterprise ensures stable mold performance for LPDC, gravity and CPC casting processes, serving global high-end casting customers.
FAQ
Q: What steel matches high-strength ZL108 and ZL115 alloy molds?
A: SWPH13 steel reduces thermal crack failure rate by 41% effectively.
Q: What steel suits conventional ZL101 and ZL102 mold production?
A: Economical H13 steel meets low-load civilian casting demands.
Q: What steel is standard for automotive semi-solid die-casting molds?
A: SWPH13 steel is adopted by 95% of high-precision semi-solid molds.
Q: What steel is required for stainless steel die-casting molds?
A: Modified H14 steel avoids rapid wear in stainless steel casting.
Q: How much performance does ESR remelting improve for mold steel?
A: Comprehensive mold steel performance is improved by 30% after remelting.

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