• Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure System 1
  • Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure System 2
  • Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure System 3
  • Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure System 4
Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure

Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
10 pc
Supply Capability:
200000 pc/month

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FRP Pipe Description

Made from the high quality corrosion resistant resin and continuous fiber winding without alkali, filament winding FRP pipe possesses the characteristics of lightness, high strength, distinguished corrosion resistance and expedient installation and maintenance etc.,

FRP Pipes were applied widely in the oil-field system of sewage treatment, electrical plant water circulation, water pipe with electric magma and projects of chemical engineering, metallurgy, and medicine processing etc.
our company (headquarter in Jiangsu Province) has been the No. 1 in exporting composites products domestically, annual capability of 100,000 tons for pipes & tanks as well as 10,000 pieces of wind turbine blade, with branches in Thuringia of Germany, Liaoning province, Neimenggu Province, Gansu Province, Xinjiang Province and Sichuan Province etc.

We are the exclusive FRP manufacturer with rich experiences in cooperating with foreign companies worldwide, the only supplier that provides large-diameter FRP pipes to the nuclear power station. Sole company owning finite element analysis in China. 20 production lines are in good operation.

Main Features of the FRP  Pipe 

  1. Corrosion-resistant

  2. Light weight

  3. Long standard lengths

  4. Extremely smooth bore

  5. Precision sealability

  6. Flexible manufacturing

  7. High technology pipe design

  8. High technology pipe manufacturing system producing pipe that complies to stringent performance standards (AWWA, ASTM, DIN, EN,BS, etc.) 

FRP  Pipe Application

1)drinking water transmiting

2)sewage pipeline,rainwater pipelin

3)angricultural irrigation

4)seawater desalination system

5) other kinds of liquid transmiting

6)municipal engineering construction

FRP  Pipe Images

 

 

 

Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure

Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure

Fiberglass Reinforced Plastic Pipe FRP/GRP Pipe Municipal Sewage Infrastructure

 

FRP  Pipe Specification

Diameter: DN300-4000
Pressure:PN6-25
Standard length: 6m, 12m
Execute standard:JC552,ASTMD2996

Management System & Certificates

Management system: ISO9001, ISO14001, OHSAS18001,

Performance standards: ASTM D3262, D3517, D3754/AWWA C950, M-54/China Standard B/21238, JC552, CECS190, CECS129; DIN16868/ BS 5480;

WRAS Certificate, API Certificate, Installation Qualification.

Caesar II is applied for stress analyzing of piping system, AFT impulse is used for analysis of water hammer. Meanwhile we can supply finite element analysis to the customer.

FAQ of FRP  Pipe

Q: What is fiberglass composite?

A: Fiberglass composite is a laminate made from glass fibers or filaments and thermosetting resin. It is commonly known as RTRP, RTMP, FRP, GRP, GRE and GRV.

Q: Are fiberglass pipes fragile?

A: Due to the elastic nature of the resin which holds the clothlike glass fibers together, fiberglass is strong and flexible. FPI products meet the rigorous "Impact Test" requirements of the international standard e.g. BS, API, ...

Q: What is the trade information

A: Trade terms:FOB,CIF,EXW

Payment terms:T/T,L/C

Shipping:By sea,by air and by express delivery

 

 

Q:What epoxy resin is used for anticorrosion of pipeline glass fiber reinforced plastics?
3PE has some disadvantages. (1) the bending of the guiding hole and the protruding rock, pebble and gravel in the hole will cause friction and scratch to the relatively soft 3PE corrosion resistant layer. (2) 3PE coating using polyethylene heat shrinkable sleeve joint, the convex part of the concave or lap joint, which makes it easy to travel being scratched or pulled off lead. (2) 3PE corrosion protection layer has a strong electrical shielding, so that the cathodic protection current is difficult to reach the defects of corrosion protection layer, thus causing perforation corrosion.So, from the last century at the beginning of 90s, the United States developed Powercrete (s) Powder Concrete Anticorrosion structure, namely in the bottom of fusion bonded epoxy powder, sprayed with epoxy resin as main film-forming material, and adding a two-component epoxy coating for concrete, polymer concrete curing agent and other inorganic fillers. The coating is tough and wearable and can be used directly in FBE coated pipes to protect the pipe from damage during handling, directional drilling, crossing, etc..
Q:How can I make up the broken glass fiber?
If the glass fiber reinforced plastic pipe is broken, how do you fix it and repair it better?. It's better to replace it. I wonder how much pressure you use for fiberglass pipes. The proposal is to replace the pipeline.
Q:The difference between GRP cable duct and PVC cable pipe
Glass fiber reinforced plastic cable pipe is a kind of pipe made of resin as matrix, with continuous glass fiber and fabric as reinforcing material, and controlled by computer, winding process or pultrusion process.
Q:What are the differences between inorganic FRP pipes and plexiglass pipes, what are the advantages and disadvantages?
Inorganic glass fiber reinforced plastic wind pipe: magnesium magnesite soil and glass fiber mesh cloth made of advantages: flame retardant shortcomings: large proportion, low strength
Q:A basic overview of FRP pipes
FRP pipes are used in petroleum, chemical and drainage industries. Glass fiber reinforced plastic pipeline production in China has developed rapidly, and the quantity has been increasing year by year, and the scope of application and departments are becoming wider and wider.
Q:Glass tube has different diameters with different prices. Who can elaborate?
The standard for FRP pipe execution is GB21238-2007
Q:What is the elastic modulus of glass fiber reinforced plastic?
Glass fiber reinforced plastics (FRP), also known as GFRP, that is, fiber reinforced plastics, generally refers to the use of glass fiber reinforced unsaturated polyester, epoxy resin and phenolic resin matrix. Reinforced plastics made from glass fiber or its products are called fiberglass reinforced plastics, or "GRP", and they are distinguished from tempered glass. Because of the different kinds of resins used, they are called polyester glass fiber reinforced plastics, epoxy glass fiber reinforced plastics and phenolic resin glass fiber reinforced plastics. It is light and hard, non conductive, stable in performance, high in mechanical strength, low in recycling and corrosion resistant. It can be used instead of steel to make machine parts, automobiles, ship shells, etc..
Q:Can FRP pipes be used in heating pipes?
Glass fiber reinforced plastic is glass fiber reinforced plastic, so it is similar to plastic in some physical propertiesIt has a high temperature resistant resin, but it costs a lot. Most resins do not work at high temperatures for long periods. So personally think it is not suitable for use.
Q:Uneven settlement of the foundation, can lead to glass fiber reinforced plastic underground water pipes burst, what is the principle?
Can cause rupture. FRP material originally resistant to pressure better, tensile, shear resistance is poor, the foundation sinking is shear, I want to sink more than 5 cm, if the soil around the pipeline is compacted, it may break
Q:What is the stiffness of FRP pipe?
The ring stiffness is the comprehensive parameter of the tube's resistance to external pressure. Obviously, the choice of ring stiffness is one of the keys to ensure the safe operation of plastic underground drainage pipe under the external compressive load. If the ring stiffness of the tube is too small, the tube may undergo excessive deformation or buckling failure. On the other hand, if the ring stiffness is chosen too high, the excessive cross section moment of inertia must be used, which will result in too much material and too high cost.

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