silicone rubber heaters silicone flexible pad heaters for 3D printers
Silicone Rubber Heaters silicone rubber heater silicone flexible heaters silicone flexible heater silicone pad heater silicone pad heaters silicone mat heaters silicone mat heater silicone blanket heater silicone blanket heaters silicone heating pad silicone heating mat silicone heating panel silicone panel heaters silicone heating blanket silicone heating belt silicone heater belt silicone belt heaters silicone heating strip silicone heating strap silicone band heaters silicone flexible pad heaters silicone flexible mat heaters silicone flexible blanket heaters silicone heating film silicone film heaters silicone thermal foil heaters thermal foil heater silicone thermal film silicone thermal pad silicone thermal mat silicone thermal blanket Silicon Rubber Heaters for 3D printers have wire-wound or etched foil heating elements protected by
fiberglass-reinforced silicon rubber vulcanized and compressed at high temperature and press.
They are thin, bendable and shaped to fit almost any equipment. Heat can be applied to the most
complex shapes, geometries, curves and pipes conceivable without sacrificing efficiency or
1 ）Maximum temperature resistance of insulator：300℃
2 ）Maximum operation temperature： 250℃
3 ）Insulation Resistance：≥500 MΩ/DC 1000V
4 ）Breakdown Voltage：≥ AC1500v/5S
5 ）Capacity Tolerance：±5%
6 ）Temperature range: -60℃—250℃ continuous heating; Heating element: Available with either
etched foil or wire-wound elements:
7 ）Dimension:Maximum 1.2m×Xm Minimun 15mm×15mm; Thickness 1.5mm（Thinnest
0.8mm，Thickest 4.5mm）Lead wire Length:Standard 130mm.
1 ） with backing PSA (Pressure Sensitive Adhesive or called self adhesive, self stick adhesive) as
2 ） with vulcanization or curing and compression at high temperature and press
3 ） with spring and hole or eyelet
4 ） with clamps
1 ）Heating evenly,accurate and adjustable
2 ）various shapes, holes, cutouts, profiled watt densities and multiple voltages
3 ）Put heat exactly where it is required
4 ）High dielectric strength, flexibility, bendable and cost effectiveness.
5 ）Resistance to temperature extremes, moisture, weathering, radiation, fungus and chemical
6 ）Heat can be applied to the most complex shapes, geometries, curves and pipes conceivable
without sacrificing efficiency or dependability.
7 ）Easily bonded and/or mechanically mounted, even onto the curving surface.
1) Thermal developing in graphic imaging or heating transfer printing equipment;
2) Prevent condensation in motors or instrument cabinets;
3) Freeze or condensation prevention in housings containing electronic equipment,
for examples: liquid battery,traffic signal boxes, automatic teller machines, temperature control
panels, gas or liquid control valve housings
4) Composite bonding processes
5) Semiconductor process heating
6) Food service equipment
7) Airplane engine heaters and aerospace industry
8) Drums and other vessels and viscosity control and asphalt storage
9) Medical equipment such as blood analyzers, medical respirators, test tube heaters, etc.
10) Curing of plastic laminates
11) Computer peripherals such as laser printers, duplicating machines
Notes: Voltage,wattage,size and shape can be customized.(as cone,ellipse shape etc.)
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