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# Gravity Casting Molds & LPDC for Onboard Charger Housing: NEV Aluminum Casting Mold Technology Onboard charger housing heat dissipation and pressure tightnes

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  • Release time: 2026-09-29

Gravity Casting Molds & LPDC for Onboard Charger Housing: NEV Aluminum Casting Mold Technology

Onboard charger housing heat dissipation and pressure tightness depend on scientific mold solidification design. Substandard Gravity Casting Molds increase charger housing coolant leakage rate by 33% in durability testing. This article introduces mold manufacturing standards, process optimization and defect control for onboard charger housing aluminum alloy casting with Xinfeng mould technical parameters.

Onboard charger housing mold core positioning tolerance fixed at ±0.15 mm. Core shift beyond tolerance causes uneven wall thickness, reducing heat dissipation efficiency and increasing electronic component operating temperature by 28%. Wall thickness deviation must be controlled within ±0.44 mm.

Gravity Casting Molds adopt minimum 18% riser volume to compensate shrinkage at thick mounting boss. Exothermic riser sleeves extend feeding time by 34% and reduce shrinkage porosity rejection rate.

LPDC bottom low-speed filling below 0.18 m/s reduces oxide defects by 48%, ensuring flatness of charger housing assembly mating surface.

Mold preheating temperature 320–380℃ eliminates cold shut defects on thin heat dissipation rib structures.

CPC inert gas protection cuts oxide inclusion rate by 38%, suitable for high-precision onboard charger housing casting.

Core vent slot depth 0.10–0.15 mm releases trapped air for complex multi-rib housing structure and avoids gas pore defects.

0.08–0.12 mm nitriding layer extends mold service life by 42% for long-term onboard charger housing production.

Balanced mold cooling limits temperature difference below 44℃ to reduce housing residual stress and machining warpage.

Gravity casting pouring temperature 710–740℃ ensures stable molding for thick and thin composite housing structure.

LPDC holding pressure 0.07–0.12 MPa eliminates shrinkage defects at thick boss positions.

Parting line clearance under 0.03 mm controls flash and reduces post-processing polishing workload by 12%.

Electroslag remelted H13 steel improves mold thermal stability by 26%.

20 PPI ceramic filter removes 56% of large oxide particles to improve onboard charger housing fatigue performance.

Gravity casting mold vent cleaning every 130 cycles maintains stable mold operation.

FAQ

Q1: What mold suits onboard charger housing low volume prototype? A1: Gravity Casting Molds apply to onboard charger housing prototype and small batch aluminum casting. Q2: What riser volume ratio required for gravity casting onboard charger housing? A2: Riser volume must reach 18% of casting volume to compensate shrinkage at thick mounting bosses. Q3: What process improves onboard charger housing sealing and heat dissipation quality? A3: CPC counter pressure die casting mold reduces internal defects and improves casting compactness.

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