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Impact-resistant structure of modified polymer nano thermal insulation material
The invention discloses an impact-resistant structure of a modified polymer nano thermal insulation material. The impact-resistant structure of the modified polymer nano thermal insulation material comprises a first thermal insulation board, wherein a first groove is formed in the top of the first thermal insulation board, a first through hole is formed in the side face of the first thermal insulation board, a second thermal insulation board is placed at the top of the first thermal insulation board, and a first connecting plate is fixedly connected to the bottom of the second thermal insulation board, a second through hole is formed in the surface of the first connecting plate, and a connecting block is fixedly installed on the inner wall of the first thermal insulation board. Through the arrangement of an adjusting mechanism, a threaded rod can drive a sliding plate to slide when the threaded rod is rotated, the right side face of the first thermal insulation board is driven to be close to the left side face through a stress plate when the siding plate slides, and a first spring is driven to contract backwards, so that the number of turns of the first spring becomes dense, the elastic force of the first spring is weakened at the moment, and the impact resistance of the thermal insulation boards is adjusted.
本发明公开了一种改性高分子纳米隔热材料的抗冲击结构,包括第一隔热板,所述第一隔热板的顶部设置有第一凹槽,且第一隔热板的侧面设置有第一通孔,所述第一隔热板的顶部放置有第二隔热板,且第二隔热板的底部固定连接有第一衔接板,所述第一衔接板的表面设置有第二通孔,所述第一隔热板的内壁固定安装有衔接块,通过调节机构的设置,当旋转螺纹杆时,螺纹杆会带动滑动板进行滑动,在滑动板滑动时,会通过受力板带动第一隔热板的右侧面向左侧面靠拢,并带动第一弹簧向回收缩,使得第一弹簧的圈数变得密集,此时第一弹簧的弹力就会减弱,以此来调节隔热板的受冲击性能。
Impact-resistant structure of modified polymer nano thermal insulation material
The invention discloses an impact-resistant structure of a modified polymer nano thermal insulation material. The impact-resistant structure of the modified polymer nano thermal insulation material comprises a first thermal insulation board, wherein a first groove is formed in the top of the first thermal insulation board, a first through hole is formed in the side face of the first thermal insulation board, a second thermal insulation board is placed at the top of the first thermal insulation board, and a first connecting plate is fixedly connected to the bottom of the second thermal insulation board, a second through hole is formed in the surface of the first connecting plate, and a connecting block is fixedly installed on the inner wall of the first thermal insulation board. Through the arrangement of an adjusting mechanism, a threaded rod can drive a sliding plate to slide when the threaded rod is rotated, the right side face of the first thermal insulation board is driven to be close to the left side face through a stress plate when the siding plate slides, and a first spring is driven to contract backwards, so that the number of turns of the first spring becomes dense, the elastic force of the first spring is weakened at the moment, and the impact resistance of the thermal insulation boards is adjusted.
本发明公开了一种改性高分子纳米隔热材料的抗冲击结构,包括第一隔热板,所述第一隔热板的顶部设置有第一凹槽,且第一隔热板的侧面设置有第一通孔,所述第一隔热板的顶部放置有第二隔热板,且第二隔热板的底部固定连接有第一衔接板,所述第一衔接板的表面设置有第二通孔,所述第一隔热板的内壁固定安装有衔接块,通过调节机构的设置,当旋转螺纹杆时,螺纹杆会带动滑动板进行滑动,在滑动板滑动时,会通过受力板带动第一隔热板的右侧面向左侧面靠拢,并带动第一弹簧向回收缩,使得第一弹簧的圈数变得密集,此时第一弹簧的弹力就会减弱,以此来调节隔热板的受冲击性能。
Impact-resistant structure of modified polymer nano thermal insulation material
一种改性高分子纳米隔热材料的抗冲击结构
WANG GUILONG (author) / JIANG LEI (author) / CHAI JIALONG (author) / MENG XIANGWEI (author) / XUE BAOLIANG (author) / WANG BAOSHUAI (author) / XU HUI (author)
2021-07-30
Patent
Electronic Resource
Chinese
IPC:
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
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