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Professional Plastic Pipe Fitting Mould Manufacturer With 20 Years Of Experience - Spark Mould

Centrifugal Air Compressor Plastic Impeller Mold 1
Centrifugal Air Compressor Plastic Impeller Mold 2
Centrifugal Air Compressor Plastic Impeller Mold 3
Centrifugal Air Compressor Plastic Impeller Mold 1
Centrifugal Air Compressor Plastic Impeller Mold 2
Centrifugal Air Compressor Plastic Impeller Mold 3

Centrifugal Air Compressor Plastic Impeller Mold

This is a set of Air Compressor plastic Impeller Mold. Because the blades of the compressor impeller are curved, the sliders need to be set according to the curved path of the blades. This set of plastic impeller mold is divided into 3 layers of slider groups. There is one layer on the fixed mold side and two layers on the movable mold side. The two-layer slider group uses the slider's directional movement to separate from the product, and the 1-layer slider group is controlled by the cylinder.

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    Air Compressor Plastic Impeller Mold Structure

    This plastic impeller mold has two design highlights: the delay mechanism of the resin latch and the ejection B plate separation slider. The mold has a total of 3 layers of slider groups, as shown in the following figure:

    Air Compressor Plastic Impeller Mold Structure (3)
    Air Compressor Plastic Impeller Mold Structure (2)
    Air Compressor Plastic Impeller Mold Structure (1)

    Plastic Centrifugal Impeller Mold Dynamic Simulation

    As shown in the video, this set of plastic impeller mold ejects the product in 3 steps.

    Step 1: Use the resin latch to extend the opening time of the AB plates. Wait for the A plate slider to separate from the product and the parting surface to open.

    Step 2: The cylinder of the B plate pulls out the middle slider.

    Step 3: Push the B plate, and the inner slider is separated from the product.

    Application areas: A broad stage for high-performance Plastic Impeller.

    Industrial air compressors and blowers: Upgrade and replace screw air compressors, centrifugal air compressors, and Roots blowers.

    New energy vehicles: Fuel cell air compressors (key components), electric turbochargers, and vehicle air conditioning compressors.

    HVAC/R (Heating, Ventilation, Air Conditioning and Refrigeration): High-efficiency scroll compressors, centrifugal chillers.

    Environmental protection and process gases: Wastewater treatment aeration blowers, process gas compression and transportation.

    Medical and laboratory equipment: Precision equipment that requires a quiet, clean air source.

    Why choose us to make Plastic Impeller Mold for you.

    In-depth integration of material science and aerodynamic design:

    We are proficient in the characteristics of engineering plastics (reinforced nylon, PPS, PEEK, etc.) in the application of Air Compressor Impeller, and optimize the mold design in a targeted manner.

    We use CFD (fluid dynamics simulation) to optimize the blade profile, and combine CAE (mold flow analysis) to ensure that the plastic is perfectly filled, pressurized and cooled in the Plastic Impeller Mold, minimizing deformation and internal stress to ensure the dynamic balance of the impeller.

    Experts in precision molding of complex geometries:

    Specializes in manufacturing centrifugal Plastic Impeller Molds with highly difficult three-dimensional twisted blades, thin-walled structures, precision hubs and streamlined flow channels.

    Ensures that the molded Plastic Impeller accurately replicates the design intent and achieves optimal aerodynamic performance.

    Top manufacturing technology and durability guarantee:

    High-precision processing: Adopt five-axis linkage machining center, precision EDM (electric discharge machining), slow wire cutting to ensure ultra-high precision (μm level) of mold cavity and core.

    Top mold steel: Select high-quality pre-hardened steel (such as 1.2738), hardened steel (such as 1.2344/ESR) or cemented carbide, and undergo strict heat treatment and surface strengthening (nitriding, chrome plating, PVD coating) to give Air Compressor Impeller Mold excellent wear resistance, corrosion resistance and ultra-long service life.

    Efficient temperature control system: Optimize the design of cooling water circuit to achieve fast and uniform cooling, shorten the molding cycle, increase production, and stabilize the quality of Plastic Impeller.

    High stability design for mass production:

    The solid mold structure and precise guide and ejection system ensure that the Plastic Impeller Mold operates stably and reliably in continuous high-speed injection molding production.

    The low failure rate design maximizes equipment utilization and reduces the production cost of a single Plastic Impeller.

    Act now!

    Looking for a reliable and innovative Centrifugal Air Compressor Plastic Impeller Mold partner? Contact us! Our team of engineers will provide you with professional Plastic Impeller Mold solution consultation to help you use high-performance Plastic Impeller to improve product competitiveness and seize market opportunities!

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