• High-Inclination Wave-Shape Belt Conveyor with Side Walls
High-Inclination Wave-Shape Belt Conveyor with Side Walls
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  • 产品描述
  • 产品优势
  • 工艺流程
  • 技术参数
  • Details

    Use

    Due to site constraints or the need to convey materials at steep inclinations, in order to prevent material spillage, side-wall conveyor belts must be able to withstand high load stresses and repeatedly endure bending during high-capacity, steep-inclination conveying operations. To meet these requirements, this product employs high-quality polyester fabrics with low elongation, providing enhanced rigidity. This product is suitable for conveying materials under steep inclinations ranging from 0° to 90°.

    Function

    • The conveying material can achieve a large inclination angle of up to 90°.

    • High conveying capacity with no material spillage. The conveyor can switch between horizontal and inclined angles, and also transition smoothly from an inclined angle to a horizontal angle.

    Standard

    Type Tensile strength N/mm Kindness Number of body layers Covering rubber thickness (mm) Weight (kg/m) 2) Minimum roller diameter, mm
    XE 200 Ordinary 2 2x2 9.8 200
    XOE 315

    Ordinary

    Heat-resistant

    Flame-retardant

     

    2+1 4x2 11.3 315
    500 3+1 4x2 13.2 400
    630 4+1 4x2 14.9 500
    800 5+1 4x2 17.8 630
    1000 6+1 5x3 22.0 800
    Snow 315 Ordinary 2+1 4x3 12.7 315
    500 3+1 4x3 14.5 400
    630 4+1 4x3 16.3 500
    XDE 315 Ordinary 2+2 4x3 13.7 315
    500 3+2 4x3 15.5 400
    630 4+2 4x3 17.3 500

    Wavy sidewalls

    The sidewall is made of high-quality rubber.

    In addition, there are two types: pure rubber (BG) and rubber with a fabric-reinforced layer (BGT).

    Communication occasion Height Side wall width Bottom width Weight Minimum roller diameter
    Millimeter Millimeter Millimeter Millimeter Millimeter
    Grace 80 44 50 1.6 200
    100 44 50 1.8 250
    S 120 66 75 3.1 320
    160 66 75 4.1 400
    200 66 75 5.1 500
    240 66 75 6.1 550
    Spanish 300 88 100 12.0 700
    400 88 100 16.0 900

    Note: N—Light load; S—Medium load; ES—Heavy load.

    Bulkhead

    The partition is made of high-quality rubber and features excellent elastic support.

    There are also two other types: pure rubber and rubber with a fabric-reinforced layer.

    T Type T75 T110        
    Height (mm) 75 110        
    Weight (kg/m) 1.65 2.20        
    Minimum roller diameter (mm) 200 300        
    TC Type TC110 TC140 TC180 TC220 TC260  
    Height (mm) 110 140 180 220 260  
    Weight (kg/m) 2.6 5.5 7.0 8.0 10.2  
    Minimum roller diameter (mm) 350 370 450 500 600  
    Tata Consultancy Services Type         TCS280 TCS360
    Height (mm)         280 360
    Weight (kg/m)         18.5 22.0
    Minimum roller diameter (mm)         700 700

    Coverage Rubber Quality/Grade Standard Performance Parameters

    China GB/T7984-2013 GB/T 32457-2015 Conveyor Belt Cover Layer Performance
    Type Tensile strength (ISO 37)
    Megapascal
    Elongation at break (ISO 37)
    %
    Abrasion (ISO4649)
    Millimeter 3
    H 24 450 120
    D 18 400 100
    L 15 350 200
    German standard DIN-22102
    Grade Tensile strength ≥ MPa Elongation at break ≥ M% Wear ≥ millimeters 3 Bonding strength between fabric layers (N/mm) Bonding strength between the cover and the fabric layer (/mm)
    Cover layer thickness: 0.8–1.5 mm Covering thickness > 1.5 mm
    W 18 400 90 ≥5 3.5 4.5
    X 25 450 120
    Y 20 400 150
    Z 15 350 250
    British Standard BS 490
    Grade Tensile strength ≥ MPa Elongation at break ≥ M% Wear ≥ millimeters 3 Bonding strength between fabric layers (N/mm) Bonding strength between the cover and the fabric layer (/mm)
    Cover layer thickness: 0.8–1.5 mm Covering thickness > 1.5 mm
    M 24 450 - ≥5.25 3.15 4.5
    Grace 17 400 -
    Australian Standard AS 1332-2000
    Grade Tensile strength ≥ MPa Elongation at break ≥ M% Wear ≥ millimeters 3 Bonding strength between fabric layers (N/mm) Bonding strength between the cover and the fabric layer (/mm)
    Cover layer thickness: 0.8–1.5 mm Covering thickness > 1.5 mm
    A 17 400 70 6 4 4.8
    And E 14 300 -
    F 14 300 -
    M 24 450 125
    Grace 17 400 200
    S 14 300 250
    S* 12 300 250
    South Africa SANS 1173:2005
    Grade Tensile strength ≥ MPa Elongation at break ≥ M% Wear ≥ millimeters 3 Bonding strength between fabric layers (N/mm)    
    Bonding strength between the cover and the fabric layer (N/mm)
    A 18 400 90 ≥7 ≥5
    X 25 450 120
    M 24 450 150
    Grace 20 400 250

    Specifications and Technical Parameters of Corrugated Sidewall Multi-layer Fabric-Cored Conveyor Belts

    Fabric type Fabric structure Fabric Model Rubber belt thickness (mm/inch) Strength Series (N/mm) Cover胶 thickness Width range (mm)
    Twist Latitude line 2 Layers 3 Layers 4 Layers 5 Layers 6 Layers Upper cover layer Lower cover layer

    Nylon

    Polyester EP

    Neural network

    Electrical Engineering

    Nylon Nylon Nylon/EP Polyester/NN/EE-100 1.00 200 300 400 500 600 0-12 0-10 300-2500
    Nylon/EP Polyester/NN/EE-125 1.05 250 375 500 625 750
    Nylon/EP Polyester/NN/EE-150 1.10 300 450 600 750 900
    Nylon/EP Polyester/NN/EE-200 1.20 400 600 800 1000 1200
    Nylon/EP Polyester/NN/EE-250 1.40 500 750 1000 1250 1500
    Nylon/EP Polyester/NN/EE-300 1.60 600 900 1200 1500 1800

    The bonding strength and elongation performance meet the requirements specified in the table below.

    Bonding strength, elongation performance
    Belt core material Bond strength Elongation performance
    Interlayer N/mm Cover layer and fabric layer N/mm Total-thickness longitudinal elongation at break Full-thickness longitudinal reference force elongation
    Cover layer thickness ≤ 1.5 mm Cover layer thickness ≥ 1.5 mm
    Polyester canvas ≥5 ≥4.5 ≥5 ≥10% ≤4%6

    The tape’s coverage performance meets the specifications shown in the table below.

    China GB/T7984-2013 GB/T 32457-2015 Tape Coating Performance Tape Coating Performance
    Cover layer grade Tensile strength   Elongation at break Wear loss The rate of change in tensile strength and elongation at break after aging.
    Megapascal Kgf/cm2 % Millimeter 3 %
    H ≥24 ≥240 ≥450 ≤120 -25 to +25
    D ≥18 180 ≥400 ≤100 -25 to +25
    L ≥15 150 ≥350 ≤200 -25 to +25
  • High-Inclination Wave-Shape Belt Conveyor with Side Walls
High-Inclination Wave-Shape Belt Conveyor with Side Walls
+

High-Inclination Wave-Shape Belt Conveyor with Side Walls

High-angle corrugated sidewall conveyor belts must be able to withstand the extremely high stresses and repeated bending generated during high-capacity, steep-angle conveying. They are designed to prevent the conveyed materials from scattering, often due to site constraints or the need to lift materials at steep angles.

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