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High-protective-property variable-rigidity skiing helmet and design and preparation method thereof

A technology with variable stiffness and high protection, applied in helmets, design optimization/simulation, helmet caps, etc., can solve the problems of restricting the protection potential of ski helmets and increasing the weight of helmets, so as to improve design capabilities, increase tensile strength, and increase stiffness and the effect of intensity

Pending Publication Date: 2022-04-29
DALIAN UNIV OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented innovator describes an improvement over existing designs for safety helmets by integrating certain technical features such as unevenly distributed bending stresses or varying degrees of flexibility within each section of the hat's surface area. These improvements result from advanced mathematical models that predict how well these sections will resist deformation under external forces during use without losing their effectiveness due to insufficient rigidity. Additionally, this new design allows for customization based upon specific needs rather than just being fixed beforehand. Overall, it provides better protection against impact damage while maintaining good comfort levels for users who wear them.

Problems solved by technology

This patents describes different technical problem addressed by this patented technology: how to improve the safety and effectiveness of skiwear helms while minimizing their overall size without compromising its ability to absorb shock loads caused by falling ice or striking things like rocks.

Method used

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  • High-protective-property variable-rigidity skiing helmet and design and preparation method thereof
  • High-protective-property variable-rigidity skiing helmet and design and preparation method thereof
  • High-protective-property variable-rigidity skiing helmet and design and preparation method thereof

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Embodiment Construction

[0103] In order to make the technical problems solved by the present invention, the technical solutions adopted and the technical effects achieved more detailed, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, but not to limit the present invention. In addition, it should be noted that, for the convenience of description, only relevant parts of the present invention are shown in the drawings but not all content.

[0104] figure 1 It is a flow chart of realizing a high-protection variable-stiffness ski helmet provided by the embodiment of the present invention. The programs involved in the present invention are developed based on Python and Matlab environments, and the design process of a high-protection variable-rigidity ski helmet provided by the embodiment of the present invention ...

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Abstract

The invention discloses a high-protective-property variable-rigidity skiing helmet and a design and preparation method thereof, and belongs to the field of helmets. The method comprises the following steps: firstly, fusing a non-uniform curve reinforcement variable stiffness design technology into helmet design, and establishing a representation mode of a variable stiffness non-uniform curve rib model by utilizing a space variable condensation technology and a grid mapping technology to obtain a geometric model of a shell rib cluster; and parametric modeling of the curve ribs on the complex small-space special-shaped curved surface and collaborative design of the shapes and the layouts of the ribs are realized. Then, all components and proportions of materials used by the shell are determined through experimental testing, and injection molding process parameters are determined through mold flow analysis. And finally, a design scheme of the high-protection variable-stiffness skiing helmet is obtained. According to the method, parametric modeling of the curve ribs on the complex small-space special-shaped curved surface and collaborative design of the shapes and the layouts of the ribs can be realized; structural rigidity can be distributed in different areas according to needs, the design capacity of the helmet is remarkably improved, and the method is expected to be one of the most potential methods in helmet design.

Description

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Claims

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Application Information

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Owner DALIAN UNIV OF TECH
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