Formula for reducing tire bead protection rubber heat generation performance and compression deformation
A compression deformation and heat generation technology, which is applied in the field of formula for reducing the heat generation and compression deformation of bead protectors, can solve the problems of bead bulging, high heat generation and compression deformation, cracks, etc. Bulge, reduced dynamic heat generation and compression deformation, performance-enhancing effects
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Embodiment 1
[0015] The formula for reducing the heat generation and compression deformation of the bead protector disclosed in this implementation includes: natural rubber: 100phr; N326 carbon black: 50phr; zinc oxide: 3phr; stearic acid: 2phr; RD: 1phr; reinforcing resin Sulfur: 4phr; N-cyclohexyl-2-benzothiazole sulfenamide: 1.0phr; Hexamethoxymethylmelamine resin: 1.0phr.
[0016] The rubber compound prepared by this formula is applied to the production of 155 / R12LT CR618 88 / 86N 8PR. After the laboratory durability running (implemented according to the FMVSS139 standard), the performance is improved by 8% and the failure point is not at the bead position.
Embodiment 2
[0018] The formula for reducing the heat generation and compression deformation of the bead protector disclosed in this implementation includes: natural rubber: 100phr; N326 carbon black: 40phr; zinc oxide: 4phr; stearic acid: 3phr; RD: 2phr; reinforcing resin Sulfur: 5phr; N-cyclohexyl-2-benzothiazole sulfenamide: 0.7phr; Hexamethoxymethylmelamine resin: 1.5phr.
[0019] The rubber compound prepared by this formula is applied to the production of 155 / R12LT CR618 88 / 86N 8PR. After the laboratory durability running (implemented according to the FMVSS139 standard), the performance is improved by 8% and the failure point is not at the bead position.
[0020] The specific performance is:
[0021] 1. The final fatigue temperature rise of the Goodrich compression heat generation test is reduced from the existing 33°C to 25°C.
[0022] 2. Under the test conditions of pressure 15Pa; temperature: 50°C; time: 6 hours, the compression deformation is reduced from 1.4% to 1.1%.
[0023] ...
Embodiment 3
[0026] The formula for reducing the heat generation and compression deformation of the bead protector disclosed in this implementation includes: natural rubber: 100phr; N326 carbon black: 55phr; zinc oxide: 5phr; stearic acid: 3phr; RD: 3phr; reinforcing resin Sulfur: 4phr; N-cyclohexyl-2-benzothiazole sulfenamide: 0.9phr; Hexamethoxymethylmelamine resin: 2phr.
[0027] The rubber compound prepared by this formula can promote the perfect cooperation between the tire bead protector and the rim under dynamic conditions, ensure the tire's durability and air retention performance are significantly improved, and reduce the possibility of bead bulges and tires during tire use. Risk of rip accidents.
[0028] After the prepared compound is applied to the production of 155 / R12LT CR618 88 / 86N 8PR, the performance of laboratory durability running (implemented according to FMVSS139 standard) is improved by 8% and the failure point is not at the bead position.
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