New energy battery pack with anti-collision function
An anti-collision and new energy technology, which is applied in the direction of battery pack parts, circuits, electrical components, etc., to achieve the effects of strong practicability, prevention of deflagration and fire, and convenient and quick use
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Embodiment 1
[0024] Example 1: as Figure 1-5 As shown in the figure, a new energy battery pack with anti-collision function proposed by the present invention includes a battery placement box 1. When both sides of the battery placement box 1 are impacted, the lengths of the two sides of the battery placement box 1 are the same. Compared with the front and back, the impact bearing area is smaller. The front and back inner walls of the battery placement box 1 are welded with two slide rails 20, and the interior of the slide rails 20 are provided with support frames 21. When impacted on different sides, the battery 9 inside the placing frame 8 is bound to oscillate, and after the impact, both ends of the support frame 21 will slide inside the slide rail 20, and at the same time, the folded intersection of the support frame 21 is also set. There is a telescopic rod with elastic support, so as to relieve and offset the vibration of the placement rack 8, the other end of the support rack 21 is w...
Embodiment 2
[0025] Example 2: as Figure 1-5 As shown, the side of the first connecting plate 7 away from the battery placement box 1 is welded with two mounting bases, and the side of the mounting base away from the first connecting plate 7 is provided with a sleeve 4, and the first anti-collision plate 3 is provided with a sleeve 4. When receiving the impact force and rotating up or down, the rotating shaft 5 will inevitably pull or compress the hydraulic rod 12 inside the casing 4, and obtain the support of the hydraulic rod 12, under the support of the hydraulic rod 12, it will initially slow down the first anti. The impact of the collision plate 3 further realizes the protection of the battery 9 inside the battery placement box 1. The inner ring of the sleeve 4 is welded with a second connection block 14, and one end of the second connection block 14 away from the inner ring of the sleeve 4 is welded. The hydraulic rod 12 is hingedly connected, and the first connecting block 13 is hi...
Embodiment 3
[0026] Example 3: as Figure 1-5 As shown, the connecting shaft 2 is sleeved on both sides of the rotating shaft 5 outside the casing 4, and the first anti-collision plate 3 is welded at the end of the connecting shaft 2 away from the rotating shaft 5, and the battery is placed on the two front and back sides of the box 1. The first anti-collision plate 3 is straightened, and the position of the first anti-collision plate 3 will be limited by the sleeve 4 and then kept on the collision surface facing the battery placement box 1. The outer surface of the first anti-collision plate 3 is provided with The elastic plating layer 6, the battery 9 is provided with a fixed beam all around, the end of the fixed beam away from the battery 9 is welded with the inner wall of the placement rack 8, and the side of the second connecting plate 10 away from the battery placement box 1 is welded with three third connections Plate 15, after the front and back of the battery placement box 1 are i...
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