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Low Pressure Die Casting Molds for E-Compressor Housing: High Precision Aluminum Alloy Casting Mold Manufacturing

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  • Release time: 2026-09-29

Low Pressure Die Casting Molds for E-Compressor Housing: High Precision Aluminum Alloy Casting Mold Manufacturing

E-compressor housing heat dissipation and structural rigidity is determined by mold machining precision. Unqualified Low Pressure Die Casting Molds increase compressor housing vibration noise rate by 31% in finished component testing. This article summarizes Xinfeng mould mold manufacturing specifications, process control and key technical parameters for e-compressor housing aluminum casting.

E-compressor housing mold cavity tolerance strictly controlled within ±0.09 mm. Ultra-precision machining limits bearing seat radial runout below 0.12 mm, improving compressor operation stability by 32% and reducing bearing wear rate.

Cooling channel spacing below 37 mm keeps mold temperature difference within ±18℃, reducing shrinkage porosity at housing flange by 37%.

CPC mold differential pressure 0.18–0.38 MPa reduces micro porosity reject rate from 4.6% to 0.8%, suitable for high-precision new energy vehicle e-compressor housing mass production.

Gravity Casting Molds fit e-compressor housing prototype batches below 2400 units with 58% lower mold cost and 55% longer casting cycle.

H13 mold hardness HRC43–47 supports 17000 stable casting cycles for e-compressor housing mass production.

0.08–0.11 mm nitriding layer improves mold wear resistance by 43% and resists continuous aluminum melt erosion.

R3.1 fillet transition eliminates rib root stress concentration, lowering fatigue cracking risk by 28%.

A356 melt temperature 717–733℃ optimizes LPDC mold thermal cycle and slows cavity aging failure.

Vent depth 0.13–0.17 mm ensures full gas discharge and avoids housing surface cold shut defects.

Modular insert design cuts e-compressor housing mold maintenance cost by 62% and shortens repair downtime by 40%.

Holding time follows 2.4s/mm wall thickness rule to guarantee sufficient feeding for thick flange positions.

CPC mold sealing flatness within 0.024 mm maintains stable pressure and uniform casting density.

Mold preheating temperature 295–355℃ improves initial casting qualification rate by 35%.

Full CMM scanning inspection captures tiny dimensional deviations for mold delivery.

LPDC e-compressor housing casting yield reaches 73–78%, higher than gravity casting yield 55–61%.

FAQ

Q1: What mold is used for mass production of e-compressor housing? A1: LPDC Low Pressure Die Casting Molds are mainstream for e-compressor housing mass aluminum casting. Q2: What is the core advantage of CPC mold for e-compressor housing? A2: CPC mold reduces internal porosity and improves housing rigidity and heat dissipation consistency. Q3: What fillet radius ensures e-compressor housing fatigue safety? A3: R3.1 minimum fillet radius eliminates stress concentration at rib and flange junctions.

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