Isophthalic
NAD-1201
NAD-1201 is an Isophthalic polyester resin, medium viscosity unsaturated polyester resin. It is supplied as a solution dissolved in monomeric styrene.
Applications: NAD-1201 is designed for artificial stone, sink and wash basin applications.
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Nad-1201LV
NAD-1201LV is an Isophthalic resin, low viscosity unsaturated polyester resin. It is supplied as a solution dissolved in monomeric styrene.
Applications: NAD-1201LV is designed for pipes and fittings and tanks.
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NAD-1202
NAD-1202 is an Isophthalic polyester resin, medium viscosity unsaturated polyester resin. It is supplied as a solution dissolved in monomeric styrene.
Applications: NAD-1202 is designed for general purpose applications, pultrusion process, boat manufacturing, pipe and fitting.
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NAD-1203
NAD-1203 is an Isophthalic polyester resin, medium viscosity unsaturated polyester resin. It is supplied as a solution dissolved in monomeric styrene.
Applications: NAD-1203 is designed for pipes and fittings and tanks.
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NAD-1206
NAD-1206 is an acrylic modified unsaturated polyester resin derived from isophthalic acid and neopentyl glycol (Iso/NPG) dissolved in styrene. NAD-1206 is of medium viscosity with demonstrated weathering features and good corrosion resistant.
Applications: NAD-1206 is designed for artificial stone, sink and washbasin and solid surface productions.
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NAD-1231
NAD‑1231 is an unsaturated polyester resin derived from isophthalic acid and standard glycols, dissolved in styrene. NAD‑1231 exhibits medium viscosity.
Applications: NAD‑1231 is designed for the production of artificial stone, sinks, and washbasins.
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NAD‑1207
NAD-1207 is an unsaturated polyester resin derived from Isophthalic acid and standard glycols dissolved in styrene. NAD-1207 is of medium viscosity and high reactivity.
Application: NAD-1207 is designed for SMC and BMC Composites. The resin is mainly used in combination with a low profile or low shrinkage thermoplastic resin. The resin can be readily thickened with Magnesium Oxide (MgO) or Magnesium Hydroxide Mg(OH)2.
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