The Face Shield M-2020 has been newly developed using vacuum molding to prevent virus droplet infection.
The holder and shield are molded as a single unit with an air vent on the top surface, preventing the shield from fogging up. When worn, it fits snugly against the face, ensuring stable attachment. It is lightweight, easy to set up, and does not cause strain even during long hours of work, making it effective for infection prevention. This face shield provides wide visibility and protects the eyes, nose, mouth, and face from airborne viral infections. It is essential to consider how to produce and sell this product in the context of the ongoing coronavirus infection environment. A new design has been developed using vacuum forming, and a design registration application is currently in progress.
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basic information
Our company has become capable of producing face shields M-2020 using the vacuum forming method among various plastic molding processes. The factory is equipped with quasi-clean room production facilities that automatically control air pressure. Using thin plastic sheets and a cost-effective die called Thomson, we manufacture this face shield M-2020 with an automatic puncher that simultaneously performs automatic accumulation.
Price range
P4
Delivery Time
※Regarding the delivery date, we will respond with made-to-order production as a general rule.
Applications/Examples of results
The spread of such viral infections globally has become a social issue, raising the question of how to prevent invisible droplet infections in an environment where we do not contract or transmit the coronavirus. This applies not only to hospitals but also to retail stores (department stores, supermarkets, shopping centers, live houses, small restaurants, schools, individual clinics, theaters of all sizes, baseball, soccer, and various lecture venues). While the market potential may be uncertain, what do you think?
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There are various molding methods for plastic molding processing, but our company's vacuum forming (vacuum molding) has lower mold costs compared to other molding methods and allows for small lots of a wide variety of products. This enables us to mass-produce plastic containers at a low cost within a quasi-cleanroom factory. Additionally, due to its high versatility, plastic containers such as conductive trays, frozen food containers, cosmetic trays, blister packs, barrier trays, clear cases, and biodegradable plastics are used in various fields.