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Plastics Fiberglass Reinforced Tent Frp Pole / Rod Tube / Solid Rods

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Plastics Fiberglass Reinforced Tent Frp Pole / Rod Tube / Solid Rods

Brand Name : Dingrong

Model Number : Φ0.4-Φ5.0

Certification : ISO9001

Place of Origin : China

MOQ : Negotiation

Price : Negotiation

Payment Terms : L/C, T/T

Supply Ability : 5000Km/Month

Delivery Time : 30days

Packaging Details : Plywood reel or plastic reel

Product Name : FRP Strengthen Core

Function : Strengthen

Spool length : 50.4km/reel, 25.2km/reel or customized

Material : FRP Fiber Reinforced Plastic

Packing : Plywood reel or plastic reel

High temperature Bending test (100℃, 24h, 30D) : no cracks, no uneven spots, surface smooth

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FRP Strength Member For Fiber Optical Cables

 

 

 

The durability and effectiveness of FRP (Fiber Reinforced Polymer) members used in structural applications depend heavily on regular inspection and maintenance. These members are commonly used in construction due to their high strength-to-weight ratio, corrosion resistance, and low maintenance requirements. However, over time, they can deteriorate due to environmental factors such as exposure to sunlight, moisture, and chemicals.

 

To ensure the longevity and performance of FRP members, it is essential to conduct regular inspections and maintenance. This involves checking for signs of damage, such as cracks, delamination, or fiber breakage, and repairing or replacing affected areas. Regular maintenance can also include cleaning and protecting the surface of the members from environmental factors that can cause degradation.

 

Non-destructive testing methods such as ultrasonic testing and infrared thermography can be used to assess the condition of FRP members without causing damage. Ultrasonic testing involves sending high-frequency sound waves through the material and measuring the time it takes for the waves to bounce back. This method can detect internal defects such as voids, delamination, or fiber breakage. Infrared thermography, on the other hand, uses thermal imaging to detect changes in temperature that can indicate defects or damage in the material.

 

Overall, regular inspection and maintenance, along with non-destructive testing methods, are crucial for ensuring the longevity and performance of FRP members in structural applications. By identifying and addressing defects early on, it is possible to prevent major damage or failure that could compromise the safety and integrity of the structure.


Properties of Non-metallic FRP Rod Strength Member

A. High strength
FRP is stronger than structural steel on a pound-for pound basis.

B. Light weight
FRP is 20-25% the weight of steel and 70% the weight of aluminum. FRP are easily transported, handled and lifted into place.

C. Anti-corrosion
FRP will not rot and are impervious to a broad range of corrosive elements. This feature makes FRP a natural selection for indoor or outdoor structures in corrosive environments.

D. Electro-magnetic transparency
FRP are transparent to radio waves, microwaves and other electromagnetic.

E. Non-conductive
FRP has low thermal/ electrical conductivity.

F. Dimensional stability
The coefficient of thermal expansion of FRP is slightly less than steel and significantly less than aluminum.

 

  • High tensile strength, high modulus, low thermal conductivity, low elongation, low expansion, and wide temperature range;
  • Non-metallic materials are not sensitive to electric shock, and are suitable for areas with multiple lightning and rainy weather conditions;
  • Chemical resistance, compared with the metal core, the GFRP reinforcing core does not affect the fiber transmission index
  • The fiber optic cable using the GFRP reinforcing core can be installed next to the power line and the power supply device, and is not interfered by the induced current generated by the power line or the power supply device;
  • Smooth surface is , stable size, easy to process and lay, and the application range is wide.

 


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