Antistatic wood decorative material and manufacturing method thereof
A wood decoration and manufacturing method technology, applied in wood treatment, impregnated wood, manufacturing tools, etc., can solve the problems that conductive materials are easy to be worn, materials lose antistatic, etc., so that it is not easy to accumulate static charges, increase the added value of utilization, and prepare The effect of simple process and equipment
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Embodiment 1
[0044] An antistatic poplar veneer decorative material is manufactured through the following steps:
[0045] Step 1: Cut the fast-growing poplar into veneers with a thickness of 4.0mm;
[0046] Step 2: Use a softening device to roll the tight surface of the poplar veneer to eliminate internal stress and make the cracks on both sides of the veneer consistent, which is conducive to the uniform penetration of resin;
[0047] Step 3: Dry the softened veneer to make the moisture content 10%;
[0048] Step 4: Mix 300-mesh graphite powder, 200-mesh silicon dioxide, and aluminum oxide at a mass ratio of 1:1 to obtain a composite wear-resistant agent, titanate coupling agent, aluminate coupling agent, and silane coupling agent. The composite additives obtained by compounding the joint agent at a mass ratio of 1:1:1 are evenly mixed, and are uniformly dispersed into the melamine resin with a solid content of 30% by air blowing and mechanical stirring to obtain a uniform dispersion and ...
Embodiment 2
[0057] An antistatic eucalyptus veneer decorative material is manufactured through the following steps:
[0058] The first step: slice the fast-growing eucalyptus into veneers with a thickness of 6.0mm;
[0059] Step 2: Use a softening device to roll the tight surface of the poplar veneer to eliminate internal stress and make the cracks on both sides of the veneer consistent, which is conducive to the uniform penetration of resin;
[0060] Step 3: Dry the veneer after softening treatment by traditional drying process, and control the moisture content at 8%;
[0061] Step 4: Mix 250-mesh metal powder (nickel powder or copper powder), 200-mesh silicon dioxide and aluminum oxide at a mass ratio of 1:1 to obtain composite wear-resistant agent, titanate coupling agent, aluminate The composite additive obtained by compounding the ester coupling agent and the silane coupling agent at a mass ratio of 1:1:1 is uniformly mixed, and is uniformly dispersed into the melamine resin with a ...
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