Material modification machine, dryer, ultrafine disperser
Release time:
2026-03-26 08:37
Source:
In today’s fast-paced consumer-goods industry, consumers are increasingly demanding greater safety, comfort, and durability—requirements that hinge on the continuous upgrading and optimization of base materials. From everyday tool handles and close-contact beauty products to sealing components and protective gear used in home settings, material performance is the critical factor that determines product experience and market competitiveness.

The core value of the coating and modification machine lies in its use of scientifically engineered surface-modification processes to alter the physical and chemical properties of material surfaces, thereby endowing base materials with superior compatibility and functionality. —This approach not only addresses the pain points of poor compatibility and limited performance inherent in unmodified materials, but also enables cost-effective realization of the performance advantages of high-end materials, perfectly aligning with the core demand of the consumer goods industry for “value for money plus high quality.” The range of materials that can be processed is exceptionally broad: whether non-metallic mineral powders (such as heavy and light calcium carbonate, kaolin, talc, precipitated silica, etc.) or polymeric elastomers (such as TPE and TPU), all can achieve performance enhancement through coating modification, thereby meeting the processing requirements of various categories of consumer products.
At the materials application level, these modified materials—after being processed by coating and modification equipment—have already penetrated deeply into various sub-sectors of daily consumer goods, becoming a key factor in enhancing product competitiveness. In the home and beauty care sector, the modified nano-sunscreen ingredients have undergone biocompatibility certification, posing no risk of transdermal residue and thereby eliminating the allergenic risks associated with unmodified nanosunscreens. As a result, they are widely used in sunscreen skincare products, achieving The dual breakthrough of “reducing burden while enhancing efficiency and strengthening safety protection” enables sunscreen products to deliver high-level protection while better meeting the needs of sensitive skin and other skin types. In the realm of everyday tools and home accessories, TPE/TPU materials that have undergone surface coating modification—through optimized molecular structure and polarity—dramatically improve interfacial adhesion with substrates such as ABS, while also enhancing flowability and demolding performance. These materials are widely used in applications like juicer sealing lids and tool handles, addressing the longstanding pain points of conventional overmolded materials—poor adhesion and easy sticking to molds—while providing a soft, non-slip grip that balances practicality with comfort. In the field of protective and functional products, coated and modified materials such as ceramic microspheres and graphene can impart special properties like antibacterial activity, self-cleaning capability, and impact resistance. For example, graphene-modified sealing materials for thermos lids achieve highly effective sealing and prevent leakage even when inverted, while modified ceramic fillers added to architectural coatings can increase wear resistance by 40% and simultaneously provide antibacterial functionality.
The enhancement of material performance hinges on the maturity and precision of coating-modification equipment and processes. Coating-modification processes are primarily categorized as continuous. Production , which can be flexibly tailored to the production scale and material characteristics of household-goods manufacturers, enabling a fully controllable, efficient, and environmentally friendly processing workflow that completely eliminates the common issues associated with traditional modification processes, such as uneven coating, chemical waste, and dust pollution. The continuous modification production process emphasizes high efficiency and large-scale operations, making it well-suited to the batch-production needs of medium- and large-sized household-goods enterprises—particularly ideal for Batch modification of commonly used materials such as TPE and calcium carbonate. The modifier is used in small quantities, provides uniform coating, ensures consistent product quality in mass production, and significantly reduces manufacturing costs for enterprises.

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