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Thermoset Resins
Products in Thermoset Resins: Wires
36 Products found in Thermoset Resins
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SABIC's Specialties Business
LNP™ STAT-KON™ Compound TX06488
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Injection Molding
End Uses:
Semiconductor Applications, Wires, Industrial Applications, Electrical/Electronic Applications, Cables
Density:
1280.0 - 1280.0 kg/m³
SABIC's Specialties Business LNP STAT-KON TX06488 compound is based on Polyurethane (TPU) resin containing conductive carbon powder. Added features of this grade include: Excellent Ductility, Electrically Conductive. This product does not contain PFAS intentionally added during SHPP’s manufacturing process and are not expected to contain unintentional PFAS impurities. Each user is responsible for evaluating the presence of unintentional PFAS impurities.
SACO AEI Polymers
PEXIDAN® HF SX524
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1400.0 - 1400.0 kg/m³
Tensile Strength:
10.0 - 10.0 MPa
PEXIDAN® HF SX524 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM424 or CM424/1, in the ratio 95:5. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX524 has been developed specially for particularly optical fiber ADSS (all dielectric self-supporting) communication cables to be installed on overhead power distribution networks. The material is black in color and suitable for outdoor use with excellent tracking and UV resistance.
SACO AEI Polymers
PEXIDAN® SX522A
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Low Voltage Insulation, Cables, Wires
Density:
920.0 - 920.0 kg/m³
PEXIDAN® SX522A pre-grafted base is mixed with crosslinking catalyst masterbatch CM401 in the ratio 95:5. This system has ambient cure.
SACO AEI Polymers
PEXIDAN® SX523
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Low Voltage Insulation, Cables, Wires
Density:
950.0 - 950.0 kg/m³
PEXIDAN® SX523 pre-grafted black base is mixed with crosslinking catalyst masterbatch CM493 or CM497 in the ratio 95:5. This system is carbon loaded, with high UV stabilization, and has been developed especially for usage on overhead power cables insulation according NFC 33-209, “Câble Torsadé”. Crosslinking is obtained by exposure to moist or hot water immersion only.
SACO AEI Polymers
PEXIDAN® SX409
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Medium Voltage Insulation, Cables, Wires
Density:
928.0 - 928.0 kg/m³
PEXIDAN® SX409 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM401 in the ratio 95:5. The SX409:CM401 compound has been developed specifically for cables operating up to 36kV. This compound is typically used in conjunction with crosslinkable semi-conducting material for conductor and insulation shields. Crosslinking is obtained by exposure to moist or hot water immersion only.
SACO AEI Polymers
PEXIDAN® SX409NT
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Medium Voltage Insulation, Cables, Wires
Density:
928.0 - 928.0 kg/m³
PEXIDAN® SX409NT pre-grafted base is mixed with a crosslinking catalyst masterbatch CM401 in the ratio 95:5. The SX409NT:CM401 system has been developed specifically for cables operating up to 36kV. The graft compound contains a non-staining stabilizer and an effective tree retarder, giving outstanding long term retention of dielectric strength. This compound is typically used in conjunction with crosslinkable semi-conducting material for conductor and insulation shields. Crosslinking is obtained by exposure to moist or hot water immersion only.
SACO AEI Polymers
PEXIDAN® HF SX407K
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Industrial Cable Insulation, Cables, Wires, Nuclear Power Applications
Density:
1370.0 - 1370.0 kg/m³
PEXIDAN® HF SX407K pre-grafted base is mixed with a crosslinking catalyst masterbatch CM424 in the ratio 95:5. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX407K has been designed to be used in different nuclear power plant radiation resistance cables sheathing with LOCA approval. Different types of cable designs made using SX407 have complied with the following flame tests: - BS 4066 Part 1/IEC 332 Part 1; CEGB GDCD Standard 21; VDE 0472 Pt.804 Method C; VDE 0472 Pt.814; NF C 32- 070 Test 2 (Category C1); BS 4066 Part 3; IEC 332 Part 3 (Categories A, B & C).
SACO AEI Polymers
PEXIDAN® SX546
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Low Voltage Insulation, Cables, Wires
Density:
920.0 - 920.0 kg/m³
PEXIDAN® SX546 pre-grafted base is mixed with crosslinking catalyst masterbatch CM493CD, for small cross sections, or CM497CD, in the ratio 95:5, for a 125ºC working temperature system. This system has ambient cure.
SACO AEI Polymers
PEXIDAN® HF SX612ES
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1520.0 - 1520.0 kg/m³
Tensile Strength:
13.0 - 13.0 MPa
PEXIDAN® HF SX612ES pre-grafted base is mixed with catalyst masterbatch CM602 or CM601, in an addition rate between 5% and 10%, depending on extrusion conditions. This system has ambient cure. PEXIDAN® HF SX612ES has been designed to meet the requirements of IEC 60092-351 HF90, EN 50363-5, EI5 type, EN 50525-1 and EN 50525-3-41, with enhanced fire resistance to comply with fire testing on smaller cross sections.
SACO AEI Polymers
PEXIDAN® HF SX738
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Building Wire Insulation, Cables, Appliance Wire Insulation, Wires
Density:
1400.0 - 1400.0 kg/m³
PEXIDAN® HF SX738 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM401 in the ratio 95:5. Crosslinking is obtained by exposure to moist or hot water immersion only. This system is designed specifically for the production, by extrusion, of flame retardant halogen free heat shrinkable tubing. The two component system SX738:CM401 combines ease of processing with the ability to achieve a degree of crosslinking compatible with good expansion and contraction.
SACO AEI Polymers
PEXIDAN® HF SX623
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1430.0 - 1430.0 kg/m³
Tensile Strength:
10.3 - 10.3 MPa
PEXIDAN® HF SX623 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM540U/1 in the ratio 95:5 or CM540U in the ratio 97:3. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX623 has been designed to meet the requirements of IEC 60092-360 SHF2, BS 7655-2.6 SW4 and EN 50264 sheathing applications.
SACO AEI Polymers
PEXIDAN® VT-2UV
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1300.0 - 1300.0 kg/m³
PEXIDAN® V/T-2UV is a low density flame retardant XLPE system, curable by moisture and consists of a silane grafted base compound A-3001 and a catalyst masterbatch CAT-083FR-UV. Mixed and extruded in the proper proportions (50/50), the two components result in a material that is curable by exposure to hot water. PEXIDAN® V/T-2UV is halogenated but is RoHS-compliant. Insulation made with this system may be marked SUNRES or ‘SR’ in all colors and in all sizes per UL44, UL4703 and CSA C22.2 #38. This product is also CSA-listed for RW90, RWU90, RPV90 RPVU90 and CIC, ‘SR’ and -40C rated.
SACO AEI Polymers
PEXIDAN® HF SX612S
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1470.0 - 1470.0 kg/m³
Tensile Strength:
14.0 - 14.0 MPa
PEXIDAN® HF SX612S pre-grafted base is mixed with catalyst masterbatch CM602 or CM601, in an addition rate between 5% and 10%, depending on extrusion conditions. This system has ambient cure. PEXIDAN® HF SX612S has been designed to meet the requirements of IEC 60092-351 HF90, EN 50363-5, EI5 type, EN 50525-1 and EN 50525-3-41.
SACO AEI Polymers
PEXIDAN® HF SX545
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1490.0 - 1490.0 kg/m³
Tensile Strength:
12.0 - 12.0 MPa
PEXIDAN® HF SX545 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM540U in the ratio 95:5. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX545 has been designed to meet the requirements of IEC 60092-351 HF90, EN 50363-5, EI5 type, EN 50525-1 and EN 50525-3-41.
SACO AEI Polymers
PEXIDAN® HF SX650
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1470.0 - 1470.0 kg/m³
Tensile Strength:
12.0 - 12.0 MPa
PEXIDAN® HF SX650 pre-grafted base is mixed with catalyst masterbatch CM603 or CM601, in an addition rate between 3% and 5%, depending on extrusion conditions. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX650 system has been developed to meet specification requirements TUV 2Pfg1169:2007, EN 50618:2014 and IEC 62930.
SACO AEI Polymers
PEXIDAN® HF X/T
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Building Wire Insulation, Low Voltage Insulation, Cables, Building Materials, Wires
Density:
1290.0 - 1290.0 kg/m³
PEXIDAN® HF X/T is a unique low smoke halogen free flame retardant 90°C wet-rated XL-insulation system curable by moisture. It consists of a silane pre-grafted base compound SX651 and a catalyst masterbatch CM540U. Mixed and extruded in the proper proportions (95:5), the two components result in a material that is crosslinkable by exposure to 90°C hot water. PEXIDAN® HF X/T is REACH and RoHS-compliant and is UL 2885 certified to bear the Halogen Free “HF” designation. PEXIDAN® HF X/T is UL-bulletinized and wire made with this insulation system may be marked as Oil Resistant “PR I” and “PR II”, Gas & Oil Resistant “GR I” and “GR II”, “-40C” and “SUNRES” in all colors. This compound will meet a 105°C dry rating.
SACO AEI Polymers
PEXIDAN® HF SX622
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Density:
1430.0 - 1430.0 kg/m³
Tensile Strength:
10.5 - 10.5 MPa
PEXIDAN® HF SX622 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM540U/1 in the ratio 95:5 or CM540U in the ratio 97:3. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX622 has been designed to meet the requirements of IEC 60092-360 SHF2 sheathing.
SACO AEI Polymers
PEXIDAN® HF SX559
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires, Nuclear Power Applications
Density:
1490.0 - 1490.0 kg/m³
Tensile Strength:
14.0 - 14.0 MPa
PEXIDAN® HF SX559 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM540U in a ratio of 97:3 to 95:5. Crosslinking is obtained by exposure to moist or hot water immersion only. PEXIDAN® HF SX559 has been designed to meet the requirements of IEC 60092-351 HF90, EN 50363-5, EI5 type, EN 50525-1, EN 50525-3-41 or other insulation or sheathing applications where high fire retardancy is required. Good CPR performance.
SACO AEI Polymers
PEXIDAN® SX408
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Low Voltage Insulation, Cables, Wires
Density:
925.0 - 925.0 kg/m³
PEXIDAN® SX408 pre-grafted base is mixed with a crosslinking catalyst masterbatch CM401 in the ratio 95:5. If high thermal aging is required, than CM493 should be used instead. Crosslinking is obtained by exposure to moist or hot water immersion only.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4234
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4234 is sioplas (two steps) silane XLPE compound and suitable for 1kv and below low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The product has outstanding performance in high speed extrusion, smooth cable surface, wild processing temperature, easy processing and convenient to use.
Condor Compounds
CONLink® I 8895
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
CONLink® I 8895 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Condor Compounds
CONLink® I 4100
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
Tensile Strength:
13.5 - 13.5 MPa
CONLink® I 4100 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244B
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244B is suitable for 1kv and below low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are imported high-quality LDPE and silane crosslink agent.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4251B
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4251B is silane XLPE compound with monosil method (one step) and is specially used for 1KV and below cable & wire. It has outstanding performance in processing temperature, easy processing characteristics and excellent product properties.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244-E
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244-E is suitable for 1kv and below low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are imported high-quality LDPE and silane crosslink agent.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244-A
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244-A is suitable for 1kv and below low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are imported high-quality LDPE and silane crosslink agent.
Condor Compounds
CONLink® I 4900
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
CONLink® I 4900 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4251
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Silane Cross-Linkable PE Compound 4251 is silane XLPE compound with monosil method (one step) and is specially used for 1KV and below cable & wire. It has outstanding performance in processing temperature, easy processing characteristics and excellent product properties.
Condor Compounds
CONLink® S 4250
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
CONLink® S 4250 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Low Shrinkage Silane Cross-Linkable PE Compound 4244 is suitable for 1kv and below low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are imported high-quality LDPE and silane crosslink agent.
Condor Compounds
CONLink® S 4310
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
Tensile Strength:
11.0 - 11.0 MPa
CONLink® S 4310 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Condor Compounds
CONLink® I 4800
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
CONLink® I 4800 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Condor Compounds
CONLink® I 7050
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
CONLink® I 7050 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Condor Compounds
CONLink® S 4200
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
End Uses:
Cables, Wires
Tensile Strength:
11.0 - 11.0 MPa
CONLink® S 4200 is for high-performance wire & cable applications, where higher temperature, abrasion & chemical resistance are required, the compound must be crosslinked. Condor Compounds offers a broad range of cross-linkable compounds for the wire and cable industry according to various specifications.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Silane Cross-linkable PE Compound 4214B
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Silane Cross-linkable PE Compound 4214B is suitable for 10kv and below medium and low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are cable-use high-purity LDPE compound with mature graft technique and low impurity content.
Shanghai Sanzheng Polymer Material
Shanghai Sanzheng Polymer Material Silane Cross-linkable PE Compound 4214
Polymer Name:
Crosslinked Polyethylene (XLPE / PEX)
Processing Methods:
Extrusion
End Uses:
Cables, Wires
Shanghai Sanzheng Polymer Material Silane Cross-linkable PE Compound 4214 is suitable for 10kv and below medium and low voltage cable, it is composed by 95% silane crosslinkable low density polyethylene (compound A) and 5% catalyst (compound B). The main raw materials of the product are cable-use high-purity LDPE compound with mature graft technique and low impurity content.