This application claims priority to Chinese Application Serial No. 201721461915.8, filed on Nov. 6, 2017, which is herein incorporated by reference in its entirely.
The present utility model relates to a folding ladder, and it belongs to the technical field of household products.
The existing folding ladder comprises a frame with a front leg and a rear leg. The rear leg is coupled to the front leg, and the front and rear legs can be pivoted relative to each other between the opening position and the closing position. A pedal connected to the front leg is assembled, and the pedal can be relatively pivoted between the horizontal use position and the storage position; a connector is assembled, and the connector comprises a body and a shaft connected to the body and the pedal; a joint elbow connected to the body is assembled. When the joint elbow is trigged to engage with the rear leg and the pedal is moved from the horizontal use position to the storage position, the rear leg can move from the opening position to the closing position correspondingly. In the above technical solution, the connector is rotationally connected with respect to the pedal, and the structure necessarily requires a reset elastic member similar to torsion ring. The connection between the pedal and the rear leg needs to rely on the torsion spring, so the structure is complicated to assemble, with high manufacturing cost.
It is an object of the present utility model to overcome the drawbacks of the prior art and provide a folding ladder with reasonable structural design and low production cost.
To achieve the above object, the present utility model adopts the following technical solution:
A folding ladder comprises a front frame, a rear frame, a pedal and a locking mechanism for locking the pedal flipping, the front frame is rotatably connected with the rear frame, the pedal is rotatably connected with the front frame, the rear frame is provided with a crossbar and the pedal can be flipped to the crossbar, after the pedal is flipped to the crossbar, the locking mechanism can lock the pedal. The locking mechanism comprises a hook member, a snap portion that snaps the hook member, and a control member that controls the engagement and/or disengagement of the hook member and the snap portion; the hook member is provided with a barb that is engaged with the snap portion; the snap portion is disposed on the pedal, and the hook member is disposed on the rear frame; or the positions of the snap portion and the hook member are interchanged; the number of barbs is one or two or more than two.
Further, the snap portion comprises a cavity having a narrow opening and wide inside, after the hook member is embedded in the cavity by overcoming its own elastic resistance, the hook member resets and the hook member is engaged with the snap portion, to lock the pedal, the control member controls the opening of the snap portion to become large, so that the snap portion and the hook member are disengaged.
Further, the snap portion comprises a cavity having a narrow opening and wide inside, after the hook member is embedded in the cavity by overcoming its own elastic resistance, the hook member resets and the hook member is engaged with the snap portion, to lock the pedal, the control member controls the hook member to disengage from the snap portion.
Still further, the periphery of the cavity comprises a semi-closed type, and the semi-closed type is a point-and-segment distribution structure of the outer wall of the cavity having a gap space.
Still further, the periphery of the cavity comprises a closed type or semi-closed type, and the closed type is a continuous closed structure of the outer wall of the cavity, and the semi-closed type is a point-and-segment distribution structure of the outer wall of the cavity having a gap space.
Still further, the folding ladder further comprises an elastic member, when the control member moves to the opening of the snap portion by overcoming the resistance of the elastic member, the opening becomes large, and the elastic member exerts a force on the control member to reset it.
Further, the folding ladder further comprises an elastic member, when the control member moves to the hook member by overcoming the resistance of the elastic member, the hook member tends to be disengaged from the snap portion, and the snap portion disengages from the hook member; the elastic member exerts a force on the control member to reset it.
Further, the hook member is an integrally formed plastic member.
Further, the hook member is made of elastic steel wire or steel plate.
Further, the barb is provided with a guide surface that caters to control with the control member.
Compared with the prior art, the present utility model has the following advantages and effects: first, when the pedal of the utility model is flipped to the crossbar, the locking mechanism can lock the pedal, so it needs not redundant operation for locking, just rotating the pedal. The operation is convenient and safe. The locking mechanism is arranged between the pedal and the crossbar, which dramatically reduces the materials and saves the manufacturing costs.
The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. The embodiments herein are illustrative but not restrictive to the present utility model.
Referring to
In this embodiment, the mechanism that controls disengagement of the hook member 41 and the snap portion 42 includes a control member 43 that controls the hook member and a control member 43 that controls the snap portion 42.
Referring to
Further, the periphery of the cavity comprises a closed type, and the closed type is a continuous closed structure of the outer wall of the cavity, and the semi-closed type is a point-and-segment distribution structure of the outer wall of the cavity having a gap space. As the hook member 41 is a movable structure that can be deformed, the snap portion 42 of the closed type cavity structure is more beneficial to the stability of snapping.
Still further, the barb 411 is provided with a guide surface 4111 that caters to the snap-in or/and controls the disengagement with the control member 43. In this embodiment, preferably, the guide surface 4111 is a bevel. The barb 411 is provided with a guide surface 4111 that caters to the snap-in. During the engagement of the hook member 41 and the snap portion 42, the hook member 41 and the snap portion 42 are pushed each other, and the guide surface 4111 guides them to the engaged position.
The barb 411 of the embodiment is provided with a guide surface 4111 for engagement and controlling the disengagement with the control member 43. The engagement process is described as above and the disengagement process is as follows: The control member 43 comprises a top arm 431 corresponding to the guide surface 4111, and there is a free space between the top arms 431, and the top arm 431 is provided with a top arm slope corresponding to the guide surface 4111. In addition, it further comprises an elastic member 5. In this embodiment, preferably, the elastic member 5 is a spring, and when the control member 43 moves to the hook member 41 by overcoming the resistance of the elastic member 5, the control member 43 exerts a force on the hook member 41, so that the hook member 41 tends to be disengaged from the snap portion 42, and the snap portion 42 disengages from the hook member 41, and then the elastic member 5 exerts a force on the control member 43 to reset it.
As shown in
As shown in
The snap portion 42 comprises a cavity having a narrow opening and wide inside. The structure having a narrow opening and wide inside comprises a structure formed by the guide surface 4111 or a hole in which the inner wall of the vertical opening is provided with a convex ring or a hole wall having a stepped mechanism. The periphery of the cavity comprises a closed type or semi-closed type, and the closed type is a continuous closed structure of the outer wall of the cavity, and the semi-closed type is a point-and-segment distribution structure of the outer wall of the cavity having a gap space. The snap portion 42 is disposed at pedal 3, and the hook member 41 is disposed at crossbar 21.
Still further, after the hook member 41 is embedded in the cavity by overcoming its own elastic resistance, the hook member 41 resets, the hook member 41 engages with the snap portion 42, to lock the pedal 3. As shown in
The hook member 41 in this embodiment is an integrally formed plastic member.
The hook member 41 of this embodiment is made of elastic steel wire or steel plate. The elastic steel wire or steel plate is bent to form the barb 411 and/or the base 412.
The rotary connection in this embodiment is a conventional technical means, including pinning, hinging, riveting, etc.
Another embodiment of the snap portion 42 is that the snap portion 42 is a member that can be hooked securely to the hook member 41, and the member is configured as a cavity or a boss or a rod.
As shown in
Further, a hook mounting seat 413 for mounting the hook member 41 and an elastic member that exerts force on the control member 43 are provided. The hook mounting seat 413 is fixedly connected to the crossbar 21, and the hook member 41 is pin-connected with the hook mounting seat 413. The control member 43 is disposed on the pedal 3.
In this embodiment, the control member 43 is vertically and movably disposed on the pedal 3. The hook member 41 extends out of a driving rod 414. The control member 43 overcomes the resistance of the elastic member to touch the driving rod 414, so that the hook member 41 swings to the disengagement position.
The foregoing descriptions herein are merely illustrative of the utility model. A person skilled in the art can make various modifications or additions to the specific embodiments described or replace them in a similar manner, as long as these modifications, additions or replacements do not deviate from the description or are beyond the scope of the claims of the present utility model, they shall fall within the scope of protection of the present utility model.
Number | Date | Country | Kind |
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201721461915.8 | Nov 2017 | CN | national |