
Qingdao Beishun Environmental Protection Technology Co.,Ltd
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Good After-Sales Rubber Hydraulic Molding Machine Is Used To Manufacture Rubber Shock-Absorbing Pads And Rubber Shock-Absorbing Bases
The manufacturing machinery for rubber anti-vibration pads and rubber anti-vibration bases typically involves a series of specialized equipment and processes. Below is an overview of the key machinery and steps involved:
Internal Mixer (Banbury Mixer): Used to mix rubber with fillers, vulcanizing agents, and other additives.
Two-Roll Mill: Further mixes and plasticizes the rubber compound.
Compression Molding Press (Flat Vulcanizing Press): Uses heat and pressure to shape rubber into the desired form.
Injection Molding Machine: Injects rubber into molds, suitable for complex shapes.
Extruder: Produces long strips or tubular rubber products.
Autoclave (Vulcanization Tank): Provides high temperature and pressure for vulcanization.
Continuous Vulcanization Line: Used for high-volume production.
Trimming Machine: Removes excess flash or burrs from the molded parts.
Grinding Machine: Smooths the surface of the products.
Washing Machine: Cleans the finished products to remove any residues.
Durometer: Measures the hardness of the rubber.
Tensile Testing Machine: Tests tensile strength and elongation.
Compression Set Tester: Evaluates the compression properties.
Robotic Arms: Used for handling and assembling parts.
Conveyor Systems: Links different stages of production for efficiency.
Steel Molds: Used for compression or injection molding.
Aluminum Molds: Suitable for small batches or prototyping.
Cooling Systems: Used to cool molds and finished products.
Air Compressors: Provide compressed air for pneumatic equipment.
Exhaust Gas Treatment Systems: Handle gases emitted during vulcanization.
Wastewater Treatment Systems: Treat production wastewater.
Automatic Packaging Machines: Used for packaging the final products.
These machines and processes work together to manufacture high-quality rubber anti-vibration pads and bases, ensuring both product performance and production efficiency.
Technical parameter;
Type | XLB-D(Y)1000*1000*1 | XLB-D(Y)1600*1600*1 | XLB-D(Y)1400*2600*1 |
(MN)Nominal mounding power | 2.50 | 8.00 | 10.00 |
Working layer number | 7 | 7 | 7 |
(mm)Piston stoke | 500 | 500 | 500 |
(KW)Main motor power | 3.0 | 22.5 | 22.5 |
(mm)Plate clearance | 70 | 80 | 80 |
Calefaction manner | Steam Electricity | Steam Electricity | Steam Electricity |
Configuration | Frame | Frame | Frame |
Electric pipe heating power(kw) | 12 | 28.8 | 22.5 |