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Colored PP Plastic Cladding Sheets Boards For Walls Heat Resistance

Categories PP Plastic Board
Brand Name: Xinkunda
Model Number: Customizable according to requirements
Certification: ISO9001,ISO14001,ISO45001
Place of Origin: Chengdu, Sichuan, China
MOQ: 1ton
Price: 1535 USD/metric ton (current price)
Payment Terms: T/T
Supply Ability: 2000 tons/month
Delivery Time: 2-7 days
Packaging Details: Stacked strapped packaging and boxed or pallet packaging with outer waterproof canvas covering
Density: 0.9 g/cm3
Color: White/gray/beign/cyan/blue
Thickness: 3-30mm
Size: Customized
High Temperature Resistance: Up to 120°C
Weather Resistance: Good
Electrical Insulation: High
Uv Resistance: Good
Surface Finish: Smooth
Material: PP(Polypropylene)
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Colored PP Plastic Cladding Sheets Boards For Walls Heat Resistance

Durable PP Boards With A Good Performance On High Temperature Resistance
Product Specifications
AttributeValue
Density0.9 g/cm3
ColorWhite/gray/beige/cyan/blue
Thickness3-30mm
SizeCustomized
High Temperature ResistanceUp to 120°C
Weather ResistanceGood
Electrical InsulationHigh
UV ResistanceGood
Surface FinishSmooth
MaterialPolypropylene
Product Description

Portable PP Boards With High Resistance Heat
PP board is a plastic panel primarily made from polypropylene. Our PP boards are lightweight yet durable, with high resistance to corrosion, acid and alkali, as well as moisture and mold-proof properties. They also offer excellent insulation, making them suitable for the electronics and electrical industries. PP boards are easy to process, supporting welding, cutting, and thermoforming, with a wide temperature resistance range (-10°C to 120°C).

Good Performance

PP sheets have certain characteristics in terms of high-temperature resistance. Their conventional operating temperature range is -20℃ to 80℃. Within this range, the physical and chemical properties of the sheets can remain stable without obvious deformation, cracking or performance degradation. PP sheets that have undergone special modification treatment have further improved high-temperature resistance. Some products can be used temporarily in environments of 100℃ to 120℃, or work stably for a long time at a temperature of around 90℃.​

Various Applications

In terms of performance, in conventional scenarios from room temperature to 80℃, PP sheets can withstand the long-term effect of media such as hot water and hot gas. For example, in applications such as the outer protection of household or industrial hot water transmission pipelines and the inner lining of hot water storage tanks, there will be no structural damage due to temperature effects. For modified PP sheets, in some scenarios with slightly higher temperatures, such as trays used for temporarily holding hot food materials at 80℃ to 100℃ in food processing, or equipment linings in industrial production that come into contact with medium-temperature liquids, they can also maintain good stability and are not prone to softening or deformation.​

In terms of applications, conventional PP sheets can be used to make hot water tank baffles in kitchens and other household scenarios, as well as protection for components that do not come into contact with high temperatures in ordinary industrial equipment. Modified PP sheets are suitable for lining of hot material conveying tracks in food processing plants, medicine turnover boxes in medium-temperature environments in the pharmaceutical industry, and some parts in automobile engine compartments that do not directly contact high-temperature sources, etc.

Notice

However, the high-temperature resistance of PP sheets still has limitations. If they are in a high-temperature environment above 120℃ for a long time, their performance may decline. Therefore, they should be selected reasonably according to specific temperature requirements.​

Comparison of Properties Between PP, PE and PVC
CharacteristicPP (Polypropylene)PE (Polyethylene)PVC (Polyvinyl Chloride)
Density (g/cm³)0.89-0.910.91-0.96 (Higher for HDPE, lower for LDPE)1.3-1.45
AppearanceTranslucent to opaque, relatively hard surfaceTranslucent to milky white, soft surface with waxy feelTransparent to opaque, diverse colors (pigment-addable)
HardnessMedium-high, good rigidityLow (LDPE) to medium (HDPE), good flexibilityMedium-high (rigid PVC); flexibility of soft PVC is adjustable
Impact ResistanceGood at room temperature, brittle at low temperaturesExcellent, especially tough at low temperatures (LDPE better)Poor for rigid PVC at low temperatures; soft PVC has improved toughness due to plasticizers
Tensile Strength (MPa)20-408-30 (Lower for LDPE, higher for HDPE)30-50 (rigid PVC), lower for soft PVC
Continuous Service Temperature (℃)110-120-40-80 (About 60 for LDPE, about 100 for HDPE)-15-60 (rigid PVC), lower for soft PVC (affected by plasticizers)
Low-Temperature ResistancePoor, brittle below 0℃Excellent, can withstand below -70℃ (HDPE slightly less cold-resistant)Poor, easy to harden and crack at low temperatures
Vicat Softening Point (℃)150105-130 (Higher for HDPE)75-90 (rigid PVC)
Acid and Alkali ResistanceExcellent, resistant to most acids, alkalis, salts; not resistant to aromatic solventsExcellent, resistant to acids and alkalis; not resistant to strong oxidants and organic solventsResistant to general acids and alkalis; not resistant to concentrated acids, aromatics, and ketones
Solvent ResistancePoor (easily dissolved by aromatics and chlorinated hydrocarbons)Medium (LDPE more easily swollen by solvents)Medium (rigid PVC better than soft PVC)
Processing Temperature (℃)170-220150-200 (Lower for LDPE, higher for HDPE)160-190 (requires stabilizers to prevent decomposition)
WeldabilityEasy to weld, suitable for heat sealing and ultrasonic weldingEasy to weld, LDPE better than HDPERigid PVC weldable; soft PVC poor due to plasticizer migration
Molding MethodsExtrusion, injection molding, blow molding, etc.Extrusion, injection molding, blow molding, film forming, etc.Extrusion, injection molding, calendering (soft PVC suitable for films, pipes)
InsulationExcellent, low dielectric constant, good high-frequency insulationExcellent, low dielectric loss, suitable for high-frequency insulationGood, but rigid PVC better than soft PVC (affected by plasticizers)
ToxicityNon-toxic, meets food contact standardsNon-toxic, meets food contact standards (pure PE)Rigid PVC itself non-toxic but may contain lead stabilizers; soft PVC contains plasticizers (phthalates may be harmful)
RecyclabilityEasy to recycle, can be reprocessedEasy to recycle, HDPE has higher recycling rate than LDPEDifficult to recycle, recycled material has significant performance degradation
Typical UsesFood packaging, pipes, auto parts, medical devicesFilms (plastic bags), containers, pipes, toysPipes (drainage), profiles (doors/windows), films, artificial leather
PP Board industrial application in chemical processing
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