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Simulation And Prototyping Key Steps In EPS Mould Development

    Buy cheap Simulation And Prototyping Key Steps In EPS Mould Development from wholesalers
     
    Buy cheap Simulation And Prototyping Key Steps In EPS Mould Development from wholesalers
    • Buy cheap Simulation And Prototyping Key Steps In EPS Mould Development from wholesalers
    • Buy cheap Simulation And Prototyping Key Steps In EPS Mould Development from wholesalers
    • Buy cheap Simulation And Prototyping Key Steps In EPS Mould Development from wholesalers

    Simulation And Prototyping Key Steps In EPS Mould Development

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    Brand Name : PIN SHENG
    Model Number : Customization
    Certification : ISO9001:2015
    Price : negotiation
    Payment Terms : T/T LC
    Supply Ability : 100pcs per month
    Delivery Time : 6-10days
    • Product Details
    • Company Profile

    Simulation And Prototyping Key Steps In EPS Mould Development

    EPS molds are used to create custom-shaped expanded polystyrene foam products. The mold design and manufacturing process is crucial for producing high-quality EPS parts. Here are some key aspects to consider:
    Mold Materials:
    Aluminum and steel are common mold materials for EPS. Aluminum is lightweight and cost-effective, while steel offers greater durability and precision.
    The mold material must be able to withstand the heat and pressure of the EPS expansion process.
    Mold Cavity Design:
    The mold cavity shape directly determines the final product geometry.
    Draft angles, ejection mechanisms, and parting line placement are critical for part removal and dimensional accuracy.
    Multi-cavity molds allow for higher production volumes in a single cycle.
    Bead Fusion:
    The EPS beads must properly fuse together within the mold to create a cohesive, structural part.
    Bead size, density, and fusion properties affect the mold design and expansion process parameters.
    Improper bead fusion can lead to weak points or voids in the final EPS product.
    Manufacturability:
    Cycle time, demolding, post-processing, and packaging needs must be considered for efficient, high-volume production.
    Mold cooling, heating, and automation features impact the overall manufacturing process.
    Simulation and Prototyping:
    CAE (computer-aided engineering) tools are used to model the mold filling, bead expansion, and part ejection.
    ItemSpec
    Raw MaterialAluminum alloy
    Warranty Period1 year
    ApplicationEPS box
    Production Cycle1-2 Months
    Mold TestYES
    Mold life100,000times
    DimensionCustomization
    CavityNegotiation or Customization


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