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Industry Misconceptions: Does Higher Hardness Mean Longer Service Life for Aluminium Alloy Casting Mould

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  • 解放時間: 2026-09-04

Industry Misconceptions: Does Higher Hardness Mean Longer Service Life for Aluminium Alloy Casting Mould

Mold hardness is not positively correlated with service life, and excessive hardness will increase brittleness and reduce the comprehensive durability of aluminium alloy casting mould.
Industry test data proves that molds with hardness above HRC 55 have 28% higher cracking risk than standard molds in cyclic high-temperature casting environments.
The optimal hardness range for low pressure die casting mold is HRC 50-52, balancing thermal fatigue resistance and mechanical impact resistance performance.
Wheel casting mold with ultra-high hardness is prone to edge chipping during demoulding, increasing mold repair frequency by 35% in mass production.
Custom low pressure die casting mold service life depends on heat treatment process and cooling design, with hardness only accounting for 22% of lifespan influencing factors.
High durability LPDC die for mass production prioritizes thermal stability over single hardness index, adapting to long-cycle temperature alternating working conditions.
Counter pressure die casting mold for high-precision parts adopts medium hardness treatment to avoid brittle fracture under high-pressure working state.
Automotive casting tooling with unbalanced hardness and toughness has shorter service life, even if reaching ultra-high hardness standards.
Foundry tooling lifespan test shows that reasonable structural optimization extends mold life by 40%, far exceeding the improvement effect of single hardness upgrade.
A356 aluminum alloy casting production molds need strong thermal shock resistance, which cannot be achieved only by improving mold surface hardness.
xinfeng’s mold manufacturing process focuses on comprehensive performance matching, avoiding the industry misconception of blindly pursuing ultra-high mold hardness.

FAQ

1. Does higher mold hardness bring longer service life? No, excessive hardness increases brittleness and cracking risks.
2. What is the optimal hardness for aluminum casting molds? HRC 50-52 balances toughness and thermal fatigue resistance.
3. What risk does HRC 55+ mold hardness cause? Cracking risk increases by 28% in cyclic high-temperature production.
4. What proportion does hardness affect mold lifespan? Hardness only accounts for 22% of total lifespan influencing factors.
5. What improves mold life more effectively than hardness? Structural optimization extends service life by up to 40%.
6. Why do high-hardness molds chip easily? Excessive hardness reduces toughness, causing edge damage during demoulding.
7. What performance is key for mass production LPDC molds? Thermal stability is more important than single hardness index.
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