Shock-absorbing and buffering sports mat and preparation method of shock-absorbing and buffering sports mat
A sports pad, thermoplastic elasticity technology, which is applied in the field of preparation of shock-absorbing cushion sports pad and shock-absorbing cushion sports pad, can solve the problems of lack of high elasticity, weak tearing, poor mechanical properties, etc., and achieve high flexibility mechanical performance, excellent damping performance, the effect of high mechanical properties
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no. 1 example
[0038] see Figure 1 to Figure 3 , the present embodiment provides a shock-absorbing and cushioning exercise mat 100, which has the effects of shock absorption, slow bounce, and silence.
[0039] The shock-absorbing and cushioning sports pad 100 provided by the present embodiment is made of TPV thermoplastic elastic foam material, and the TPV thermoplastic elastic foam material contains a thermoplastic elastomer 110, so that the shock-absorbing and cushioning sports pad 100 It has shock absorption and cushioning properties. Specifically, by adding a new type of TPV thermoplastic elastomer 110 to the raw material formula of the shock-absorbing cushion sports pad 100, its particles have high flexibility and high mechanical properties, as well as excellent damping performance, shock-absorbing slow elastic performance and resistance to compression deformation The shock-absorbing and cushioning sports pad 100 made by the vulcanization process has the physical characteristics of sh...
no. 2 example
[0065] see Figure 4 , the present embodiment provides a method for preparing a shock-absorbing and cushioning exercise mat 100, which is used to prepare the shock-absorbing and cushioning exercise mat 100 as provided in the first embodiment. The method includes the following steps:
[0066] S1: put the raw materials containing the thermoplastic elastomer 110 into an internal mixer for mixing, and form plasticized micelles.
[0067] Specifically, the thermoplastic elastomer 110, 30% calcium carbonate, 8% graphene oxide, 2% nano silicon dioxide, 2% maleic anhydride graft, 5% pigment and 3% chemical additives are put into the internal mixer in turn for mixing, and form plasticized micelles, and all raw materials are initially mixed. Of course, for actual conditions, the weight ratio of each component can be adjusted.
[0068] S2: Calendering and kneading the plasticized micelles with an open mill.
[0069] Specifically, the materials are mixed more fully and evenly through th...
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