TPE other modifications
MODIFIED TPE
Modified TPE combines rubber‑like elasticity and plastic‑grade processability. Its core strengths cover broad hardness adjustability ranging from 0A to 65D, soft touch and environmental‑friendly non‑toxic property. It exhibits excellent overmolding performance and forms firm bonding with various substrates such as PP and ABS. It features outstanding weather resistance and low‑temperature performance together with favorable recyclability. Functional modifications can endow it with properties including flame retardancy, electrical conductivity and antibacterial performance for wide applications in automotive, medical‑care and consumer‑product industries. The following lists other modification categories for TPE.
Reinforced Flame‑Retardant Modification Reinforced flame‑retardant modification integrates mechanical reinforcement and fire‑safety functions by synergistically incorporating reinforcing materials and flame‑retardant systems into the TPE matrix. Such materials deliver superior flame‑retardant performance while retaining favorable mechanical strength and elasticity. In railway transportation, reinforced flame‑retardant TPE is adopted for cable management systems and sealing components that require both high fire‑resistance standards and mechanical durability. This modification enables TPE to serve demanding scenarios with strict safety and structural‑strength requirements, such as rail‑transit interior parts and electrical‑electronic housings.
Toughening Modification TPE itself acts as an outstanding toughening modifier widely used for toughening engineering plastics. As a thermoplastic elastomer composed of rigid styrene segments and flexible rubber segments, TPE forms micro‑phase‑separated structures when blended with plastics such as PPE and PP. It creates energy‑dissipating zones within the matrix to effectively absorb and disperse impact stress and improve the overall impact strength of composite materials. In automotive industry, toughened TPE is used for impact‑resistant components including bumpers, instrument panels and interior trims. In electrical‑electronic sectors, it is applied in battery housings, connectors and other components.
High‑Impact Modification TPE functions as a high‑performance impact modifier to boost the impact resistance of engineering plastics. Within blended systems, TPE builds energy‑dissipating domains to absorb and disperse impact stress and retard crack propagation. High‑impact TPE is widely used in impact‑energy‑absorbing applications such as automotive bumpers, instrument panels, safety protective articles, sports protective gears and tool handles. For electrical‑electronic products, it is suitable for impact‑protected components including battery housings and connectors.
Features: Other Modifications
Physical Properties: Multiple modification types are available; click this category for unlisted items Minimum order quantity: 1 ton upon successful sample testing
Participation Process
For modification factories wishing to join the supply, please contact supply‑side customer service.
Users may click group‑order procurement or contact procurement customer service to submit procurement requirements. The platform aggregates similar demands, then screens from its platform database or releases a tender. High‑quality modified raw materials are selected according to users’ procurement requirements. After successful sample testing, users confirm the advantageous modified raw materials and suppliers, and sign purchase‑sales contracts.



