A method for reinforcing mesh
A reinforcement and mesh technology, applied in the field of mesh, which can solve problems such as poor support performance and weak mesh strength
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Embodiment 1
[0013] Embed unfoamed EVA particles into the mesh of the mesh, and fix the EVA particles in the mesh by thermal foaming to reinforce the mesh.
[0014] Mesh cloth is divided into upper and lower layers in the present embodiment, and the mesh hole of lower layer mesh cloth is smaller than the mesh hole of upper layer mesh cloth, and in thermal foaming step, lower layer mesh cloth is arranged below the EVA particle all the time. In this way, the EVA particles are prevented from moving around in the process of foaming and hot pressing, resulting in dislocation of the EVA particles after foaming.
[0015] The concrete steps of described thermal foaming are as follows: the mesh hole that embeds EVA particle is put into mould, add filler, blowing agent, bridging agent, foaming accelerator and lubricant and carry out foaming, foaming temperature is 130 ℃, the pressure is 100kg / cm 2 , foaming time 100s.
[0016] Described filler is calcium carbonate, described foaming agent is AC fo...
Embodiment 2
[0026] The difference between the technical solution disclosed in this embodiment and the technical solution disclosed in Example 1 is that the filler is talcum powder. Powder, greasy to the touch. Odorless and tasteless. This product is insoluble in water, dilute mineral acid or dilute alkali hydroxide solution. Can be used for medicinal purposes.
Embodiment 3
[0028] The difference between the technical solution disclosed in this embodiment and the technical solution disclosed in Example 1 is that the specific steps of thermal foaming are as follows: put the mesh embedded with EVA particles into the mold, add filler, foaming agent, The bridging agent, the foaming accelerator and the lubricant are foamed, and the foaming temperature is 125°C.
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