Multifunctional double-sided dual-purpose fitness mat and preparation method thereof
A multifunctional, fitness mat technology, applied in the field of fitness mats, can solve the problems of poor mechanical properties of fitness mats, lack of high elasticity, no shock absorption effect, etc., and achieve high flexibility mechanical properties, excellent damping performance, and excellent shock absorption performance effect
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no. 1 example
[0040] Please refer to figure 1 , the present embodiment provides a multifunctional double-sided dual-purpose fitness mat 10, where the multifunctional double-sided dual-purpose fitness mat 10 can be a sports mat, specifically a yoga mat. The multifunctional double-sided dual-purpose fitness mat 10 includes a shock-absorbing slow-elastic layer 11 and a high-elastic layer 12, wherein the shock-absorbing slow-elastic layer 11 and the high-elastic layer 12 are connected into one body by thermocompression.
[0041] Wherein, the shock-absorbing slow-elastic layer 11 is made of thermoplastic shock-absorbing slow-elastic material, specifically, made of TPV material. The granules of TPV material have high flexibility and high mechanical properties, as well as excellent damping performance, shock-absorbing slow elastic performance and compression deformation resistance. Pad 10 has the physical characteristics of shock-absorbing and slow-bouncing.
[0042] The high elastic layer 12 is...
no. 2 example
[0044] This embodiment provides a multifunctional double-sided dual-purpose fitness mat 10. The multifunctional double-sided dual-purpose fitness mat 10 includes a shock-absorbing slow-elastic layer 11 and a high-elastic layer 12, wherein the shock-absorbing slow-elastic layer 11 and the high-elastic The layers 12 are connected into one body by thermocompression lamination.
[0045]Wherein, the shock-absorbing slow-elastic layer 11 is made of a thermoplastic shock-absorbing slow-elastic material. Specifically, the material of the shock-absorbing slow-elastic layer 11 includes the following substances by mass: 50% of TPV material, 30% of calcium carbonate, and 8% of graphene oxide. %, nano-silica 2%, maleic anhydride grafted thread 2%, pigment 5%, chemical additives 3%.
[0046] The high-elastic layer 12 is connected to one side of the shock-absorbing slow-elastic layer 11. The high-elastic layer 12 is made of thermoplastic high-elastic material. Specifically, the material of t...
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