1. TPR blended masterbatch material for silicone masterbatch 300
TPR blended masterbatch is our company introduced to PP, PE as main carrier silicone masterbatch, dedicated to TPE, TPV, TPR field materials to improve the feel and reduce the role of cohesion, improve production efficiency and stability, to solve the problem of finished product mold mouth accumulation of material, reduce the torque, internal and external lubrication, and improve the surface of the anti-dust.
DX300 is a high molecular weight silicone masterbatch it is mainly used in shoe sole, and rubber material. It has better dispersibility and compatibility in plastics, while having less impact on material mechanical properties. DX300 has better demolding performance and smoothness. It improve the performance of wear-resistant, anti-scratch, and lubrication.
2. TPR blended masterbatch
TPR blended masterbatch, i.e. thermoplastic polyurethane (TPR) modified masterbatch, is a special material. TPR blended masterbatch itself is a thermoplastic elastomer, which consists of a polyether or polyester-type elastomer and polyurethane hard segments crosslinked with each other, and it has excellent resistance to abrasion, oil, flexing and tearing, as well as high elasticity and high strength. Modified masterbatch, on the other hand, is a granular mixture obtained by adding the required pigments, additives or functional auxiliaries to the base resin after sufficient mixing and dispersion.
TPR blended masterbatch combines the advantages of TPR and the characteristics of modification technology, and can be adjusted in terms of colour, performance or other characteristics to meet the needs of different applications. For example, by adding specific additives, the weather resistance, UV resistance or flame retardant properties of TPU can be improved. This kind of modification technology makes TPU’s application range more extensive, and can play its advantages in more fields.
During the manufacturing process, the preparation of TPR modification masterbatch usually involves precise formulation design and advanced mixing technology to ensure the uniform dispersion and stable performance of pigments, additives and functional additives in the TPU matrix. This results in modified TPU materials with better processability and end-product performance stability.