Design principles of riot suits
Jan 01 1970
Design principles of riot suits
1. Bulletproof materials
Bulletproof materials are the core of riot gear design. Their main function is to prevent penetration by bullets or other sharp objects. Common bulletproof materials include polyethylene fiber, Kevlar and ceramic composite materials. These materials have the characteristics of high strength, light weight and good flexibility.
2. Stab-proof materials
Stab-proof materials are another important component of anti-riot clothing design. Their main function is to prevent puncture from sharp weapons. Common stab-proof materials include special steel wire mesh and polymer materials. These materials have the characteristics of high density, high strength, and good flexibility.
3. Impact-resistant materials
Anti-riot clothing needs to have a certain impact resistance to protect the wearer's body from violent impact. Common impact-resistant materials include foam plastics, elastic materials, and liquid-absorbing materials. These materials have the characteristics of energy absorption, shock absorption, and lightweight.
4. Breathable materials
Anti-riot clothing needs to be breathable to ensure that the wearer will not be too hot in a high temperature environment. Common breathable materials include polymer materials, cellulose materials, and porous materials. These materials have the characteristics of good breathability and comfort.
5. Ergonomic design
Anti-riot suits need to conform to ergonomic principles to ensure that the wearer has good comfort and flexibility when moving. The design of anti-riot suits needs to take into account the strength and protection of the shoulders, waist, hips and other parts, as well as factors such as the quality and weight of the clothes.
6.Summary
The design principle of riot suits needs to comprehensively consider factors such as materials, ergonomics, protection and breathability. In the future, with the continuous advancement of technology, the design of riot suits will continue to innovate to better protect the safety of the wearer.