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Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag

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    Buy cheap Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag from wholesalers
     
    Buy cheap Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag from wholesalers
    • Buy cheap Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag from wholesalers
    • Buy cheap Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag from wholesalers
    • Buy cheap Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag from wholesalers

    Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag

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    Brand Name : AIRSUSTECH
    Model Number : F-350-3
    Certification : ISO/TS16949:2009
    Payment Terms : T/T, Western Union, Paypal or Others
    Supply Ability : 1000PCS/Week
    Delivery Time : 5-8 Working Days
    • Product Details
    • Company Profile

    Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag

    Industrial Air Spring Yokohama S-350-3R Rubber Airbag For Punch Feeder

    OEM Cross reference

    AIRSUSTECH Part No.: F-350-3

    YOKOHAMA S-350-3R

    YOKOHAMA S 350 3R

    YOKOHAMA S-350-3

    YOKOHAMA S 350 3

    YOKOHAMA S350-3R

    YOKOHAMA S350-3

    Specifications and Detailed Technical Parameters: F-350-3

    Height H(mm)

    Design Height: 160mm

    Max. Height: 250mm

    Min Height: 85mm

    Common Maximum Travel(mm): ±65mm

    Compression Max. Outside Diameter (mm): 410mm

    Standard height, approximate value at 0.49MPA internal pressure

    Efective Area(cm2): 960

    Volume(L): 15.0

    Load (KN):47.1

    Dynamic Spring Constant(n/mm): 647

    Natural Vibration Frequence(Hz): 1.8

    Maximum Internal Pressure (MPA): 0.88

    Internal Pressure Failure(MPA): 3.9-4.9

    Other types:

    GUOMAT NO.

    Yokohama Reference No.

    Hight H(mm)

    Commonly Maximum Stroke(mm)

    The Largest Diameter When Compressed(mm)

    Design High(mm)

    Maximum High(mm)

    Minimum Height(mm)

    F-600-1

    S-600-1

    72

    122

    40

    ±30

    700

    F-600-2

    S-600-2

    102

    172

    57

    ±45

    660

    F-600-3

    S-600-3

    160

    270

    90

    ±68

    660

    F-600-4

    S-600-4

    218

    363

    123

    ±90

    660

    F-600-5

    S-600-5

    276

    456

    156

    ±113

    660

    F-550-2

    S-550-2

    102

    172

    50

    ±45

    610

    F-550-3

    S-550-3

    160

    270

    90

    ±68

    610

    F-500-2

    S-500-2

    102

    172

    57

    ±45

    560

    F-500-3

    S-500-3

    160

    270

    90

    ±68

    560

    F-500-4

    S-500-4

    218

    363

    123

    ±90

    560

    F-500-5

    S-500-5

    276

    456

    156

    ±113

    560

    F-450-1

    S-450-1

    72

    117

    40

    ±30

    510

    F-450-2

    S-450-2

    102

    172

    57

    ±45

    510

    F-450-3

    S-450-3

    160

    270

    90

    ±68

    510

    F-450-4

    S-450-4

    218

    363

    123

    ±90

    510

    F-450-5

    S-450-5

    276

    456

    156

    ±113

    510

    F-400-2

    S-400-2

    102

    167

    57

    ±45

    460

    F-400-3

    S-400-3

    160

    260

    90

    ±68

    460

    F-400-4

    S-400-4

    218

    348

    123

    ±90

    460

    F-400-5

    S-400-5

    276

    435

    156

    ±113

    460

    F-350-1

    S-350-1

    72

    117

    40

    ±30

    450

    F-350-2

    S-350-2

    102

    160

    55

    ±42

    410

    F-350-4

    S-350-4

    218

    336

    118

    ±85

    410

    F-300-1

    S-300-1

    72

    117

    40

    ±30

    400

    F-300-2

    S-300-2

    98

    158

    53

    ±40

    360

    F-300-3

    S-300-3

    152

    242

    82

    ±60

    360

    F-300-4

    S-300-4

    206

    326

    111

    ±80

    360

    F-240-4

    S-240-4

    206

    316

    111

    ±80

    300

    F-240-3

    S-240-3

    152

    232

    82

    ±60

    300

    F-240-2

    S-240-2

    98

    148

    53

    ±40

    300

    F-240-1

    S-240-1

    72

    110

    40

    ±30

    340

    F-220-4

    S-220-4

    206

    311

    111

    ±80

    280

    F-220-3

    S-220-3

    152

    232

    82

    ±60

    280

    F-220-2

    S-220-2

    98

    148

    53

    ±40

    280

    F-200-2

    S-200-2

    98

    148

    53

    ±35

    260

    F-200-3

    S-200-3

    152

    232

    82

    ±53

    260

    F-200-4

    S-200-4

    206

    311

    111

    ±70

    260

    F-160-1

    S-160-1

    72

    102

    40

    ±25

    220

    F-160-2

    S-160-2

    98

    148

    53

    ±35

    220

    F-160-3

    S-160-3

    152

    227

    82

    ±53

    220

    F-160-4

    S-160-4

    206

    306

    111

    ±70

    220

    F-120-4

    S-120-4

    206

    306

    111

    ±70

    180

    F-120-3

    S-120-3

    152

    227

    82

    ±53

    180

    F-120-2

    S-120-2

    98

    148

    53

    ±35

    180

    F-100-4

    S-100-4

    206

    296

    121

    ±60

    160

    F-90-3

    S-90-3

    152

    222

    87

    ±45

    160

    F-90-2

    S-90-2

    98

    143

    58

    ±30

    160

    F-90-1

    S-90-1

    76

    106

    46

    ±30

    125

    The related picture of F-350-3

    Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag

    Yokohama S-350-3R Industrial Air Spring For Punch Feeder Rubber Airbag

    Necessity of air spring rubber vulcanization process


    Before vulcanization, natural rubber is mainly linear in microscopic structure, and the intermolecular force is mainly Van der Waals force. The stability is low, mainly in terms of low hardness and solubility, and it cannot fully adapt to the complex use environment. .
    In order to improve the performance of rubber in all aspects and adapt to the complex and changeable environment, the last process of rubber products is vulcanization. The vulcanized rubber will show different hardness and toughness depending on the degree of vulcanization. A really good rubber product can choose the most suitable balance point between hardness and toughness to maximize the performance of the rubber product.
    During the vulcanization process of rubber, the physical and chemical properties of the rubber have changed. Guomat has been committed to being a professional air spring manufacturer. Guomat air spring bladders have improved physical properties during the vulcanization process, including strength (tensile strength, tensile strength and tear strength, etc.), elongation at break, hardness, density, breathability, elasticity, permanent deformation, swelling, etc.

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