• Truck cover coated fabric PVC tarpaulins System 1
Truck cover coated fabric PVC tarpaulins

Truck cover coated fabric PVC tarpaulins

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China Main Port
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Quick Details

  • Product Type:Other Fabric

  • Supply Type:Make-to-Order

  • Material:PVC+POLYESTER

  • Pattern:Coated

  • Coated Type:PVC Coated

  • Style:Plain

  • Width:1.02-3.2m

  • Yarn Count:1000x1000

  • Density:20x20

  • Weight:400-1200g

  • Use:Truck cover and others

  • Place of Origin:Zhejiang, China (Mainland)

  • Place of Origin:China

  • Use:Truck Cover

Packaging & Delivery

Packaging Details:Kraft paper
Delivery Detail:15-18Days

Specifications

PVC fabric for truck cover
100% polyester, coated or laminated
water proof, fire retardant,anti-mildew, anti-UV etc.

Tarpaulin

Features:1) PVC Coated Tarpaulin Fabric

2) Density: 20 x 20/inch

3) Yarn: 1000 x 1000D polyester woven

4) Weight: 500 - 1200gsm, 14.5 - 35.5oz

5) Width: 1.5 - 3.2m, 59 - 126"

6) Tensile strength: >2500N/5cm

7) Tear strength: >250N

8) Adhesion: >100N/5cm

9) Temperature: -30 - +70 celsius

10) Flame retardant

1) UV-resistance

12) Anti-mildew

Truck Cover

CategorySpecificationWeight (g)Tensile strength
in N/5 cm
Tear strength
in N
Coating materialFlame-retardant standardsColor fastnessTemperature resistance
DCW250250*250D 36*362501500/1500100/90PVCNFPA701,M2,B17–8-30°C/+70°C
DCW410500*840D 18*184102000/1800150/140PVCNFPA701,M2,B17–8-30°C/+70°C
DCW5101000*1000D 20*205102500/2000250/250PVCNFPA701,M2,B17–8-30°C/+70°C
DCW6101000*1000D 20*206102500/2500270/270PVCNFPA701,M2,B17–8-30°C/+70°C
DCW6801000*1000D 20*206803000/3000300/300PVCNFPA701,M2,B17–8-30°C/+70°C
DCW9001000*1000 D 12*12L2/29004000/4000500/500PVCNFPA701,M2,B17–8-30°C/+70°C
DCW10001000*1000 D 14*14L2/210005000/4500900/900PVCNFPA701,M2,B17–8-30°C/+70°C

Remarks:
1.Add flame-retardant, anti-UV, mildew resistance, cold resistance, and surface treatment according to customer requirements
2.Color and weight according to customer requirements
3.Has strong tensile strength, tear strength and adhesion strength

Purposes:
Depending on the specifications of the fabric can be used to make trucks, trains covered with cloth, awning, tent, etc.

Q:How do automotive plastic products impact vehicle handling and maneuverability?
Automotive plastic products have a minimal impact on vehicle handling and maneuverability as they are designed to be lightweight and durable. However, certain plastic components like spoilers or body kits may slightly affect aerodynamics, potentially improving stability at high speeds. Overall, the impact of automotive plastic products on handling and maneuverability is generally insignificant.
Q:How do automotive plastic products contribute to vehicle stability?
Automotive plastic products contribute to vehicle stability by providing lightweight yet strong components that help to reduce the overall weight of the vehicle. This, in turn, improves the vehicle's handling, maneuverability, and fuel efficiency. Additionally, plastic components can be designed to absorb and disperse impact forces, enhancing the vehicle's crashworthiness and safety.
Q:What are the cost implications of using plastic in automotive products?
The cost implications of using plastic in automotive products can vary depending on several factors. Plastic is generally a cheaper material compared to metals, such as steel or aluminum, which can result in lower manufacturing costs. Additionally, plastic is lighter in weight, which can contribute to fuel efficiency and reduce transportation costs. However, plastic components may require additional engineering and design considerations, which can increase development costs. Furthermore, plastic may be less durable than metal, potentially leading to higher maintenance and replacement costs over time. Overall, while plastic can offer cost advantages in certain aspects, it is essential to weigh its long-term implications on durability and maintenance.
Q:What are the fire safety considerations for automotive plastic products?
Fire safety considerations for automotive plastic products include: 1. Flame retardancy: Automotive plastic components should be made with flame-retardant materials to minimize the risk of fire. These materials have the ability to resist ignition and slow down the spread of flames in case of a fire. 2. Heat resistance: Automotive plastic products should be able to withstand high temperatures without melting or releasing toxic fumes. This ensures that the plastic does not contribute to the fire's intensity or create additional hazards. 3. Smoke production: Minimizing smoke production is crucial in fire safety. Automotive plastic products should be designed to produce minimal smoke when exposed to fire. This helps improve visibility for occupants and emergency responders, reducing the risk of accidents. 4. Self-extinguishing properties: It is important for automotive plastic products to have self-extinguishing properties, meaning they stop burning once the source of ignition is removed. This prevents the fire from spreading and helps contain it within a limited area. 5. Compatibility with fire suppression systems: Automotive plastic components should be compatible with fire suppression systems, such as sprinklers or fire extinguishers, allowing them to effectively suppress or control fires in case of an emergency. Overall, fire safety considerations for automotive plastic products involve ensuring flame retardancy, heat resistance, minimal smoke production, self-extinguishing properties, and compatibility with fire suppression systems. These measures aim to minimize the risk of fires and enhance the safety of vehicle occupants.
Q:How does the choice of plastic affect the performance of automotive products?
The choice of plastic significantly affects the performance of automotive products. The specific type of plastic used can impact various aspects such as durability, strength, weight, and resistance to temperature, chemicals, and UV radiation. The selection of the appropriate plastic can enhance the product's structural integrity, reduce its weight, improve fuel efficiency, increase safety, and extend its lifespan. Conversely, using the wrong type of plastic may result in reduced performance, decreased lifespan, and potential safety hazards.
Q:What are some examples of automotive plastic products used in roof and body panels?
Some examples of automotive plastic products used in roof and body panels include bumpers, fenders, hoods, grilles, and door panels.
Q:Are there any drawbacks to using plastic in automotive manufacturing?
Yes, there are several drawbacks to using plastic in automotive manufacturing. Firstly, plastic components are generally less durable than their metal counterparts, making them more prone to wear and tear, leading to shorter lifespan and potential safety concerns. Secondly, plastic materials can be more vulnerable to extreme temperatures, which can cause warping, cracking, or even melting. Additionally, the production and disposal of plastic can have significant environmental impacts, contributing to pollution and waste. Lastly, plastic components may require more complex manufacturing processes and specialized tools, which can increase production costs and maintenance expenses.
Q:What are the considerations for using plastic in automotive braking and traction control systems?
There are several considerations when it comes to using plastic in automotive braking and traction control systems. Firstly, the material's strength and durability must be thoroughly evaluated to ensure it can withstand the high temperatures and pressures experienced during braking. Additionally, plastic's resistance to wear and tear, chemical compatibility with brake fluids, and ability to effectively dissipate heat are crucial factors to consider. Furthermore, the material's weight, cost-effectiveness, and ease of manufacturing also play a significant role in determining its suitability for these critical automotive components.
Q:What is the impact of automotive plastic products on vehicle suspension durability?
Automotive plastic products can have a significant impact on vehicle suspension durability. These products, such as plastic components in suspension systems, are typically lightweight and offer better corrosion resistance compared to traditional metal counterparts. However, their use may also introduce challenges related to durability and longevity. Plastic components may be prone to wear, deformation, or failure under high-stress conditions, potentially leading to decreased suspension performance and reduced overall durability. Therefore, it is crucial for manufacturers to carefully design and select plastic materials that can withstand the demands of vehicle suspension systems to ensure long-term durability and reliability.
Q:How to remove the plastic wheel hub for automobiles?
Just direct, and if it is fun, you need to unscrew the plastic screw to pull it down

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