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HPL

Polymer additives supplied by Solstice Advanced Materials

21 Products match your search

HPL -6109

by Solstice Advanced Materials

Blend of stearate, oxidized polyethylene, ethene homopolymer, mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6104

by Solstice Advanced Materials

Stearate. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6510

by Solstice Advanced Materials

Blend of calcium distearate, oxidized polyethylene, stearate, fatty acid esters and stearic acid. An external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6505

by Solstice Advanced Materials

Blend of stearate, oxidized polyethylene and stearic acid. An external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6155

by Solstice Advanced Materials

Blend of stearate, ethene homopolymer and mixture of hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6079

by Solstice Advanced Materials

Blend of fatty acid ester, ethene homopolymer, mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6077

by Solstice Advanced Materials

Blend of fatty ester, oxidized polyethylene, mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6090

by Solstice Advanced Materials

Blend of fatty acid ester, oxidized polyethylene, Ethene homopolymer, mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6258

by Solstice Advanced Materials

Blend of stearate and mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.

HPL -6078

by Solstice Advanced Materials

Blend of fatty acid ester, ethene homopolymer, mixture of paraffin waxes and hydrocarbon waxes. An internal/external lubricant blend for rigid PVC compounds employing high performance lubricant technology. It decreases die pressure and improves external lubrication, extrusion output and metal release. It lowers application temperature, energy consumption and melting temperature.
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