SABIC Expands Its Product Portfolio Into Three New Chemically Resistant LNP™ CRX Copolymer Resins

SABIC Branches Out Into Its LNP™ CRX Copolymer Resins

A global giant in the chemical business, SABIC, has launched the 3 latest LNP™ CRX copolymer resins in their product portfolio to offer their clients mobility and industrial new products which are resistant to rough chemicals and difficult environmental conditions.

The specialised LNP CRX products based on polycarbonate (PC) copolymer offer great chemical resistance and excellent weather ability (low-temperature ductility, UL74C F1 rating, and the capability of handling high heat and humidity levels). Owing to these characteristics, the durability of parts like the EV (electric vehicles) charging sockets and housings for outdoor battery storage equipment is improved.

Other properties of the products include excellent durability, which leads to the extension of the component's life, furthering the sustainability goals since it reduces the demand for raw materials, water, energy, and other resources.

For end-users, the product can help achieve a great brand reputation and lowers costly recalls and warranty claims. Hence, owing to its various advantages, the newly launched LNP CRX copolymer resins are ideal for applications in end-user industries like healthcare and consumer electronics.

The Product's Application In Thin-Wall Medical Devices

The newly launched products by SABIC, LNP Elcres CRX1314TW copolymer and LNP Elcrin CRX1314BTW copolymer, its biobased counterpart, are ideal for being used in medical devices as it offers product with great resistance against chemical and impact, dimensional stability, processability, and thin-wall transparency. The product also helps cut 42% of the carbon footprint, which allows users to meet their sustainability goals.

According to the article by Procurement Resource, SABIC has launched the three latest LNP™ CRX copolymer resins in their product range which offer properties like excellent durability, great resistance against chemical and impact, dimensional stability, processability, and thin-wall transparency as well as the ability to cut 42% of the carbon footprint which makes it ideal for use in applications in the medical and automotive industries.

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