Baby Stroller Frame Linked Folding Device
20210403069 · 2021-12-30
Inventors
Cpc classification
B62B7/068
PERFORMING OPERATIONS; TRANSPORTING
B62B7/062
PERFORMING OPERATIONS; TRANSPORTING
B62B2205/26
PERFORMING OPERATIONS; TRANSPORTING
B62B2205/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention provides a baby stroller frame linked folding device. A linked folding joint is provided on the upper end of a rear leg frame and is pivotally connected with a front leg frame and a handlebar frame. The handlebar frame comprises a lower handlebar frame that is pivotally connected to the linked folding joint, a handlebar folding clutch joint configured on the upper end of the lower handlebar frame, and an upper handlebar frame pivotally connected to the handlebar folding clutch joint. On the inner side of the linked folding joint, a seatback clutch joint is configured, for installation of a seatback frame, and a slide base is configured, which can slide along the rear leg frame, and both sides of the top end of the slide base are respectively and pivotally connected with a connecting rod, each respectively and pivotally connected to the front leg frame and the lower handlebar frame; when the upper handlebar frame turns and folds onto the lower handlebar frame, it will firstly drive the releasing push block inside the seatback clutch joint so that the seatback frame will fall down, then, the lower sliding block pushes the hook to release the slide base, so that the slide base will slide downward, causing the two connecting rods to pull the front leg frame and the handlebar frame and fold them onto the rear leg frame. Thus, the baby stroller frame can be folded all at once.
Claims
1. A baby stroller frame linked folding device, characteristically comprising: a linked folding joint provided on the upper end of a rear leg frame, pivotally connected to a front leg frame and a handlebar frame; the handlebar frame comprises a lower handlebar frame and an upper handlebar frame; the lower handlebar frame is pivotally connected to the linked folding joint, and on its connecting position, a pushing and releasing block is provided; the upper handlebar frame has a folding operator, and is pivotally connected to the lower handlebar frame through a handlebar folding clutch joint; on the handlebar folding clutch joint, a cord is configured, which will pull the pushing and releasing block inside the lower handlebar frame when the upper handlebar frame is folded; a seatback frame is provided, whose tilting angle can be adjusted; between the seatback frame and the linked folding joint, a seatback clutch joint is configured; particularly: the upper end of the rear leg frame is configured with a slide base which can slide along the rear leg frame; the slide base is configured with a hook receiver portion, and both sides of the upper end of the slide base are respectively connected with a connecting rod, each pivotally connected to the front leg frame and the lower handlebar frame; inside the linked folding joint, an upper sliding block is configured, which can slide back and forth, with its rear end pushing against the pushing and releasing block, and inside the linked folding joint and below the upper sliding block, a lower sliding block is configured, which is elastically pushed against the upper sliding block and can slide up and down; at the position where the upper sliding block and the lower sliding block pushes each other, corresponding tilted supporting facets are configured; on the inner side of the lower sliding block, a side tilted supporting facet is further configured; inside the linked folding joint and below the lower sliding block, a hook is pivotally configured, which can turn elastically; the upper and lower ends of the hook are respectively configured with a bracing portion to receive the pushing by the lower end of the lower sliding block, and a hook portion, which can catch the hook receiver portion of the slide base; the seatback clutch joint comprises a groove portion configured on the corresponding position of the linked folding joint; inside the groove portion, a releasing push block is configured, capable of sliding left and right, and having a tilted supporting facet to push against the side tilted supporting facet of the lower sliding block; on the corresponding position of the seatback frame, a corresponding groove portion is configured; inside the groove portion, a bonding tooth is configured, which can elastically push the releasing push block, so that the bonding tooth can be caught inside the groove portions of the linked folding joint and the seatback frame at the same time.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0027] Indications of the accompanying drawings: 1—rear leg frame; 11—sliding groove; 2—linked folding joint; 20—supporting plate; 21—upper sliding block; 211—tilted supporting facet; 22—lower sliding block; 220—lower slot; 221 tilted supporting facet; 222—tilted supporting facet; 223—lower pusher portion; 23—hook; 231—bracing portion; 232—hook portion; 24—spring; 25—spring; 26—groove portion; 27—releasing push block; 271—tilted supporting facet; 28—spring; 3—front leg frame; 4—handlebar frame; 41—lower handlebar frame; 42—upper handlebar frame; 421—folding operator; 43—handlebar folding clutch joint; 44—cord; 45—pushing and releasing block; 5—slide base; 51—inlayed sliding portion; 52—hook receiver portion; 6—connecting rod; 7—seatback frame; 70—spring; 71—groove portion; 72—bonding tooth; 8—front guardrail; A—seatback clutch joint.
DETAILED DESCRIPTION OF THE INVENTION
[0028] Disclosed in
[0029] Further, disclosed in
[0030] Further, inside said lower handlebar frame 41 that is pivotally connected to the linked folding joint 2, a pushing and releasing block 45 is configured, capable of sliding back and forth. Said cord 44 goes around the pivotal connecting position and backward, and is connected on the pushing and releasing block 45. Thus, when the cord 44 is pulled or released, the pushing and releasing block 45 can move forward or backward.
[0031] Further, inside the upper portion of said linked folding joint 2, an upper sliding block 21 is configured, also capable of sliding back and forth. At a lower middle position of the upper sliding block 21, a tilted supporting facet 211 is configured. Inside the linked folding joint 2 and below the upper sliding block 21, a lower sliding block 22 is configured, capable of sliding up and down. At a middle position of the lower sliding block 22, a lower slot 220 is configured. Inside the lower slot 220, a spring 25 is provided to elastically push the lower sliding block 22 upward so that it can sit on the supporting plate 20 inside the linked folding joint 2. At the same time, on the upper end of the lower sliding block 22, a tilted supporting facet 221 is configured to push against the tilted supporting facet 211 of the upper sliding block 21. On the inner side of the lower sliding block 22, two tilted supporting facets 222 are configured, one at a lower position and the other on the lower end. On the left and lower end of the lower sliding block 22, a lower pusher portion 223 is configured. Then, inside the linked folding joint 2 and below the lower sliding block 22, an L-shaped hook 23 is pivotally configured, capable of turning. On the upper end of the hook 23, a bracing portion 231 is configured, to be pushed by the lower pusher portion 223 of the lower sliding block 22. On the lower end of the hook 23, a hook portion 232 is configured. Inside the linked folding joint 2 and below the bracing portion 231, a spring 24 is configured. The upper end of the spring 24 elastically pushes against the bottom of the bracing portion 231, so that the hook portion 232 on the lower end of the hook 23 can be turned and be caught on the hook receiver portion 52 at the lower end of said slide base 5.
[0032] Further, disclosed in
[0033] Thus, as depicted
[0034] Disclosed in