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Supplier for PC in Faridabad

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PC | Injection Molding

Delhi, India

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PC | Injection Molding, Extrusion

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PC | Injection Molding

Delhi, India

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PC | Injection Molding

Delhi, India

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PC | Injection Molding

Delhi, India

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PC | Injection Molding

Delhi, India

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PC | Injection Molding

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PC | Extrusion

Delhi, India

Buyer for PC in Faridabad

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PC

PC | Injection Molding

Uttar Pradesh, India

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PC

PC | Injection Molding

Delhi, India

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PC | Injection Molding

Delhi, India

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PC | Injection Molding

Haryana, India

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PC | Mix Scrap

Uttar Pradesh, India

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ALL PLASTIC SCRAP

PC | Cable, Mix Scrap

Delhi, India

TEST PRODUCT 1234 PC Reprocess Granule Extrusion  india Plastic4trade

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TEST PRODUCT 1234

PC | Extrusion

124507, India

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PC PLASTIC SCRAP

PC | Injection Molding

Rajasthan, India

PC

 

PC Full Form:

 

Polycarbonate

 

What is Polycarbonate?

 

Amorphous and naturally transparent polycarbonate (PC) plastics are widely used in construction. The raw material permits interior light transmission almost to the same extent as glass, despite being made commercially available in a variety of colors (some translucent, others not). When impact resistance and/or transparency are required for a product, polycarbonate polymers can be used to fabricate a wide range of materials (e.g. in bullet-proof glass).

 

One of the most popular engineering thermoplastics, polycarbonate (PC), is transparent and has excellent toughness, thermal stability, and dimensional stability. Riot shields, burglar-proof glass, baby feeding bottles, electrical components, safety helmets, and headlight lenses are a few common PC applications.

 

How is Polycarbonate made?

 

Polycarbonate is produced chemically when phosgene COCl2 and bisphenol A (BPA) combine. The initial patent for it was submitted in 1953 by Hermann Schnell at Bayer under the name Melron (later changed to Makloron). Today, polycarbonate is produced in a similar way using injection moulding or extrusion. The BPA is occasionally replaced by other diols to enhance or modify its physical properties. Tetrabromobisphenol A is widely used to increase fire protection, whereas tetramethylcyclobutanediol is utilised to create BPA-free polycarbonate.

 

Polycarbonate uses/forms

 

Even at very low temperatures, the resilient, translucent material polycarbonate has outstanding strength, stiffness, and impact resistance. Polycarbonate sheet, rod, and tube have excellent dimensional stability and are simple to machine. PC has different uses, and a few of them are listed below-

 

Plastic lenses in eyewear
Automotive components
Digital Disks (CDs, DVDs, and Blu-ray)
Protective gear
Medical devices
Exterior lighting fixtures
 
Types of Polycarbonate
 
Colored/Tinted Polycarbonate
Clear Polycarbonate
Mirrored Polycarbonate
Bulletproof Polycarbonate
Anti Static Polycarbonate
Abrasion-Resistant Polycarbonate
 
Procedures
 
Injection Molding
 
A range of materials with strong impact resistance and translucent qualities are produced using PC injection moulding, an amorphous, naturally translucent thermoplastic. For polycarbonate plastic injection moulding material, typical heat deflection temperatures are 270° F at 264 pressures.
 
The tensile strength, flexural strength, and flexural modulus of polycarbonate all steadily decrease with increasing temperature, whereas the material's impact strength dramatically decreases as the temperature near zero degrees Fahrenheit. Following things can be made from injection molded polycarbonate-
 
House equipments
Lighting fixtures
Medical tubes
Instrument covers
Electrical connectors
Insulators
 
Benefits of Polycarbonate
 
Various colors
UV protection
Recycling
Light weight
Durable
Sustainable
Light transmission
Thermal insulation
 
 
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