Crushing deformation type rear-end crash seat energy-absorbing structure
An energy-absorbing structure and seat technology, which is applied to vehicle seats, movable seats, special positions of vehicles, etc., can solve problems such as unstable force, poor energy-absorbing effect, and high difficulty in energy-absorbing structure design, and achieve cushioning The process of energy absorption is stable and the effect of reducing occupant damage
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Embodiment 1
[0043] Such as image 3 only Figure 13As shown, the present invention discloses an energy-absorbing structure for a rear-end collision seat, including a seat cushion side plate 3 and a recliner connecting plate 4, the front end of the recliner connecting plate 4 and the rear portion of the seat cushion side plate 3 The upper end is connected to form a first connection structure 5, and the rear end of the recliner connecting plate 4 is connected to the rear lower end of the seat cushion side plate 3 to form a second connection structure 6, wherein the first connection structure 5 is a bolt connection structure;
[0044] The second connection structure 6 is an energy-absorbing connection structure composed of an energy-absorbing plate 7 , an upper-end bolt connection structure 8 and a lower-end bolt connection structure 9 , and the upper end of the energy-absorbing plate 7 is connected through the upper-end bolt connection structure 8 The rear end of the recliner connecting p...
Embodiment approach
[0052] Such as Image 6 , Figure 8 with Figure 9 As shown, the energy absorbing plate 7 is composed of an upper plate part 7-1, a single-sided middle plate part 7-2 and a lower plate part 7-3 connected in sequence, and the upper plate part 7-1 and the lower plate part The plate portions 7-3 are coplanar, and the single-sided middle plate portion 7-2 protrudes toward the cushion side plate 3, that is, the left or right direction of the car seat, to form the concave-convex structure 7a; , the upper end and the lower end of the energy-absorbing plate 7 are respectively located on the upper plate portion 7-1 and the lower plate portion 7-3.
[0053] The above is the basic implementation mode of the second embodiment, further optimization, improvement and limitation can be done on the basis of the basic implementation mode:
[0054] Preferably: the cross-sectional shape of the single-sided middle plate portion 7-2 is arc-shaped (see Image 6 ), rectangular half (see Figure ...
Embodiment 3
[0056] On the basis of the above-mentioned embodiment 1, the present embodiment 3 also adopts the following preferred implementation modes:
[0057] Such as Figure 10 , Figure 11 with Figure 12 As shown, the energy-absorbing plate 7 is composed of an upper plate part 7-1, a double-sided middle plate part 7-4 and a lower plate part 7-3 connected in sequence, and the upper plate part 7-1 and the lower plate part The plate parts 7-3 are in the same plane, and the double-sided middle plate part 7-4 is composed of a connected upper end middle plate part 7-4-1 and a lower end middle plate part 7-4-2, and the upper end middle plate part 7 -4-1 is connected with the upper plate part 7-1, the lower middle plate part 7-4-2 is connected with the lower plate part 7-3, the upper middle plate part 7-4-1 and the lower end One of the middle plate parts 7-4-2 protrudes toward the left side of the cushion side plate 3, that is, the car seat, and the other protrudes toward the right side o...
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Abstract
Description
Claims
Application Information
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