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plast-machIndustry NewsLG Chem @ CHINAPLAS 2026: First Release of Innovative Materials for Global Application of Robots
CHINAPLAS 2026 International Rubber and Plastic Exhibition
Hot ongoing
LG ChemMore than 90High value-added strategic products
Shocking Attack!
coverRobots, electrical equipment, medical and health care
ใ€€ใ€€Smart living, sustainable packaging, and future travelโ€ฆโ€ฆ
Full range application scenarios
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ใ€€ใ€€Take a quick look at the celebrity exhibition area together
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To actively respond to the growing demand in the robotics industry market, LG Chem showcased for the first time at this exhibition a full range of innovative materials suitable for humanoid robots, including exteriorsensorVarious components such as internal circuits and energy management systems.
How to help build humanoid robots
ใ€€ใ€€Sensitive 'joints', high-quality' skin '
ใ€€ใ€€Stable and enduring 'driving force' and keen 'perception ability'?
LG ChemExhibition Area Innovative MaterialsAnswer for you.
Mechanical structure drive system components

shell
ใ€€ใ€€Metallic texture without spray coatingABS
LG Chem's metallic ABS creates a uniform metallic luster appearance for robots through a spray free process.
ใ€€ใ€€Translucent/Transparent ABS
This material is used for the housing cover of robots to meet their visual display requirements and can be customized to adjust transparency.
ใ€€ใ€€Self reinforcing composite PP
This material has high adhesion, high tensile strength, and high impact resistance, and is easy to recycle and reuse, meeting the dual requirements of mechanical performance and sustainability of robot shell structures.
ใ€€ใ€€Joint driver
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Using LG Chem's high-strength and wear-resistant engineering plastics PPS, PA66, and PK, the robot can stably transmit torque in a repeatedly driven working environment. At the same time, it ensures the reliability of actuator operation under overload and wear conditions.
Sensing, skin, and interface components

Optical sensor cover plate
LG Chem's high refractive index PPE material can be designed for curved surfaces based on high transparency and impact resistance, and is suitable for lens covers such as robot eyes or optical sensors.
Shielding and heat dissipation materials are mainly used in lens modules and casings to enhance electromagnetic shielding and heat dissipation stability, ensuring structural stability through dimensional accuracy; IR projection materials are used for infrared sensor housings (LiDAR) to enhance the reliability of distance and object sensing.
ใ€€ใ€€Appearance skin
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LG Chem NBR Latex material, with its excellent chemical resistance, excellent soft touch, and high tensile strength, can be applied to robot hand skin and tactile sensor components. In addition, when using LG Chem's modified SSBR technology on the sole skin, it can reduce wear and improve the braking performance of the product.
Power&Thermal Management System Components
ใ€€ใ€€Battery&Internal Wiring
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PC material is suitable for battery cell frames due to its excellent flame retardancy, dimensional stability, and corrosion resistance. The internal circuit can enhance the stability and safety of the circuit by using ultra-high polymerization degree PVC material that combines high heat resistance and high flexibility.
At the same time, LG Chem can provide safe material solutions for robot batteries, including Super Flame Barrier and Nexula, a thermal insulation material based on aerogel ยฎโ€ใ€‚ When SFB material is exposed to flames, its surface quickly becomes a hard and tight barrier, which can simultaneously suppress flame spread and pressure transfer. Nexula ยฎ With excellent thermal insulation performance, it effectively blocks thermal diffusion inside the battery and can withstand high temperatures up to 300 โ„ƒ.
With the development trend of the global robotics industry and the resonance between market demand and era innovation, LG Chem will accelerate the landing of lightweight and high-performance robots and continuously expand their diversified application scenarios through embodied intelligent application of new materials.
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