• E Glass Fiber CSM(Powder) System 1
  • E Glass Fiber CSM(Powder) System 2
  • E Glass Fiber CSM(Powder) System 3
E Glass Fiber CSM(Powder)

E Glass Fiber CSM(Powder)

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Loading Port:
China Main Port
Payment Terms:
TT or LC
Min Order Qty:
22160 kg
Supply Capability:
200000Kg Per Month kg/month

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1.Brief Introduction

E-Glass Powder Chopped Strand Mat is made of randomly distributed chopped strands held together by a powder binder.
It is compatible with UP, VE, EP, PF resins.
The roll width ranges from 50mm to 3300mm.                                                                                                                               

It is designed for use in hand lay-up, filament winding,  compression molding and continuous laminating processes. Its end-use applications include boats, bath equipment, automotive parts,  chemical corrosion resistant pipes, tanks, cooling towers and  building components

2.Product Features
Fast breakdown in styrene
High tensile strength, allowing for use in hand lay-up process to produce large-area parts
Good wet-through and fast wet-out in resins, rapid air lease
Superior acid corrosion resistance

 

3.Product Specifications

Property

Area Weight

Moisture Content

Size Content

Breakage Strength

Width

 

%

%

%

N

mm

Property

IS03374

ISO3344

ISO1887

ISO3342

 

EMC80P

±7.5

≤0.20

8-12

≥40

50-3300

EMC100P

≥40

EMC120P

≥50

EMC150P

4-8

≥50

EMC180P

≥60

EMC200P

≥60

EMC225P

≥60

EMC300P

3-4

≥90

EMC450P

≥120

EMC600P

≥150

EMC900P

≥200

E Glass Fiber CSM(Powder)

4.FAQ

Packaging
Each Chopped Strand Mat is wound onto a paper tube which has an inside diameter of 76mm and the mat roll has a diameter of 275mm. The mat roll is wrapped up with plastic film,and then packed in a cardboard box or wrapped up with kraft paper. The rolls can be vertically or horizontally placed. For transportation, the rolls can be loaded into a cantainer directly or on pallets.

Storage
Unless otherwise specified, Chopped Strand Mat should be stored in a dry, cool and rain-proof area. It is recommended that the room temperature and humidity should be always maintained at 15℃~35℃ and 35%~65% respectively.

Q:Can fiberglass fabric be used for reinforcement in chemical storage tanks?
Fiberglass fabric is indeed capable of reinforcing chemical storage tanks. Due to its strength and durability, fiberglass proves to be resistant against numerous chemicals, rendering it suitable for environments encompassing chemical storage tanks. By applying the fabric to the tank structure, reinforcement is provided, thereby assisting in averting leakage or harm. Moreover, fiberglass is both lightweight and manageable, thereby making it a pragmatic option for tank reinforcement. Nevertheless, it is crucial to choose the suitable variant of fiberglass fabric, one that is specifically designed to withstand chemicals, in order to guarantee its efficacy within this usage.
Q:How does fiberglass fabric perform in high humidity environments?
Fiberglass fabric performs exceptionally well in high humidity environments. The inherent properties of fiberglass, including its resistance to moisture absorption, make it highly suitable for use in such conditions. Unlike organic materials, fiberglass does not readily absorb water, ensuring that its structural integrity remains intact even in high humidity. The non-porous nature of fiberglass fabric prevents the growth of mold, mildew, and bacteria, which are commonly associated with high humidity environments. This feature makes fiberglass fabric an ideal choice for applications where hygiene and cleanliness are essential, such as in hospitals, laboratories, and food processing facilities. Additionally, fiberglass fabric's resistance to moisture also ensures that it does not become weakened or degraded over time. This is particularly crucial in environments where the fabric is exposed to prolonged periods of high humidity, such as in outdoor applications or areas with poor ventilation. Furthermore, fiberglass fabric is known for its excellent thermal insulation properties. Even in high humidity environments, fiberglass fabric can effectively regulate temperature, preventing condensation and the formation of moisture on surfaces. This characteristic is highly beneficial in applications where maintaining stable temperature and humidity levels is crucial, such as in HVAC systems or insulation for pipes and tanks. In summary, fiberglass fabric performs exceptionally well in high humidity environments due to its resistance to moisture absorption, non-porous nature, resistance to mold and bacteria growth, and excellent thermal insulation properties. These features make it a reliable and durable choice for a wide range of applications, even in the most demanding and humid conditions.
Q:Problems in making FRP models and models
Method of making die at the end of the lowest cost, is artificial cutting and polishing, wood or other materials can have certain hardness and easy processing stuff, but it requires a very high skill, good feel, and often do it is not precise enough, but for ship model, basically is sufficient.
Q:Can fiberglass fabric be used for insulation in storage tanks?
Yes, fiberglass fabric can be used for insulation in storage tanks. It is commonly used due to its excellent thermal insulation properties, as it helps to maintain the temperature of the stored contents and prevent heat loss or gain. Additionally, fiberglass fabric is resistant to moisture, chemicals, and corrosion, making it a suitable choice for insulation in storage tanks.
Q:Is fiberglass fabric suitable for making car covers?
Yes, fiberglass fabric is suitable for making car covers. It is known for its durability, strength, and resistance to heat and chemicals, making it an excellent choice for protecting vehicles from various environmental elements such as UV rays, rain, and dust. Additionally, its lightweight nature allows for easy handling and storage of the car cover.
Q:Can fiberglass fabric be used for making welding curtains?
Indeed, fiberglass fabric possesses the capability to be utilized in the creation of welding curtains. Renowned for its exceptional heat resistance traits, fiberglass fabric emerges as a fitting substance for safeguarding against the emergence of sparks and flames that welding activities generate. Notably, it endures elevated temperatures and impedes the propagation of fire, thereby establishing itself as a secure and efficacious preference for welding curtains. Furthermore, the durability and commendable tear resistance of fiberglass fabric ensure its capacity to endure the arduous conditions inherent in a welding setting.
Q:Can fiberglass fabric be used for insulation in nuclear power plants?
Fiberglass fabric is indeed a viable option for insulating nuclear power plants. It is widely utilized across various industries, including the nuclear sector, due to its numerous benefits. These include exceptional thermal resistance, fire resistance, and low thermal conductivity. These qualities make it ideal for insulating equipment and components in nuclear power plants, where high temperatures and potential fire risks are prevalent. Moreover, fiberglass also exhibits resistance against moisture, chemicals, and radiation, all of which are critical considerations in the nuclear field. However, it is crucial to bear in mind that the selection and installation of insulation materials in nuclear power plants should be based on the specific application and required safety standards.
Q:What is the resolution of glass fiber cloth and polyester fiber cloth?
It is mainly made of glass fiber and short needle non-woven fabric composite geosynthetics.
Q:What kind of fiberglass cloth should be used for keeping the chicken boarding board?
With low thermal conductivity, the closed cell type and continuity of the rigid foam polyurethane ensure its thermal insulation performance.
Q:Asphalt + glass fiber cloth
General underground pipeline corrosion protection, the past specifications are three oil two cloth

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