The present invention relates generally to a scooter, and more particularly to the disclosure of an innovative structure type of a telescopic connecting frame in the operating mode thereof a bracing plate assembly is used for bracing positioning.
There have been many types of electric scooter structure types on the present market, and the electric scooter in the present invention refers to a type wherein the wheel body part thereof is a three-wheel or a four-wheel configuration. This type of electric scooter is widely used by the elderly and the physically handicapped for smooth driving and easy operation.
However, the electric scooter of the type referred to in the present invention also has a problem wherein the scooter body is large in size and relatively occupying the space for placement. Previously, although there have been related industry attempting to develop an improved electric scooter with a scooter body folding function, but its folding effect is not yet perfect.
First, the scooters on the present market can be roughly divided into three major structures: a powered base, a scooter head structure mounted in front of the base, and a seat structure mounted behind the base. The folding method mainly uses the pivot joint structure and the connecting rod structure, so that the folded scooter head structure and the seat structure are as close as possible to the base. However, this folding method only reduces the overall height of the scooter, and the folded scooter still retains the original length of the scooter. In this way, volume is reduced during transportation and storage, but it still occupies a large floor area in the home for the user, and it also causes the current electric scooter to still fail to achieve the practical folding function.
In addition, in terms of prior patent data, a structure of folding plate body is disclosed in the patent for invention of Chinese Mainland “Folding Rear Seat Hopper for Electric wheelchairs” of CN108498247A, but the folding plate body is provided only for reducing the volume of the rear hopper, it has no top bracing positioning action on the frame, because the telescopic rear frame in the case is fixed to the front frame by a screw, and the rear frame can be adjusted steplessly by rotating the screw to achieve a positioning action.
The primary object of the present invention is to provide a frame structure, and the technical problem to be solved realizes a breakthrough in developing a novel telescopic frame structure of scooter which is more ideal and practical.
The technical feature of the present invention is mainly that said scooter comprises: a rear frame with a front end, a tail end and a top surface, and the rear frame is provided with a rear wheelset, and the front end is formed with two guide runners extended towards the tail end. A seat is connected to the top surface of rear frame by a support. The seat is provided for the user to sit. A front frame is assembled in the spacing at the front end of rear frame, and the front frame is provided with a front wheelset. An upright scooter head rod is assembled on the front frame. The upright scooter head rod is provided for the user to grip with both hands. A telescopic connection frame is installed between the front frame and the rear frame. The telescopic connection frame comprises a front frame part and two sliding bar parts which are connected to each other. The front frame part is connected to the front frame, two sliding bar parts are inserted in the two guide runners of rear frame in telescopic sliding state, and the maximum elongation stroke of each sliding bar part is set by assembling a limiting component to prevent it from escaping the guide runner, forming the operating mode and folding mode of the telescopic connection frame, and a bearer part is formed at least in the midsection of the top surface of each sliding bar part. A bracing plate assembly is assembled between the front frame and rear frame and above the telescopic connection frame. The bracing plate assembly comprises a front plate body and a rear plate body. The front plate body and rear plate body have a front side and a rear side respectively. The front side of the front plate body is pivotally disposed at the rear edge of the front frame through a first pivoting shaft member. The rear side of the rear plate body is pivotally disposed at the front edge of the rear frame through a second pivoting shaft member, and the rear side of the front plate body is pivoted on the front side of the rear plate body through a third pivoting shaft member, and a toggle part is defined at the pivot joint. The toggle part downwards abuts on the bearer part formed on the top surface of each sliding bar part. When the telescopic connection frame is in operating mode, the front and rear plate bodies are interlocked and unfolded taking the third pivoting shaft member as the rotary fulcrum, so as to brace and position the telescopic connection frame in operating mode. Before the unfolded state, the rear plate body is provided for the user to tread on with both feet, when the telescopic connection frame is in folding mode, the front and rear plate bodies are interlocked in zigzag state to release the telescopic connection frame in slideable state. The axle center definition of the first pivoting shaft member forms a first pivoting axis. The axle center definition of the second pivoting shaft member forms a second pivoting axis, and the axle center definition of the third pivoting shaft member forms a third pivoting axis. The connecting definition between the first pivoting axis and the second pivoting axis forms a virtual connecting axis, the virtual connecting axis is in any state of horizontal line or approaching the horizontal line, and the virtual connecting axis corresponding to the third pivoting shaft member defines an intermediate line section, and the height of the third pivoting axis is lower than the height of the intermediate line section. The upper edge of rear side of front plate body and the upper edge of front side of rear plate body are provided with a first underpropping part and a second underpropping part respectively. The height of the toggle part downwards abutting on the bearer part must be sufficient for the first underpropping part and the second underpropping part to abut on each other, and the included angle between the top surfaces of front plate body and rear plate body is smaller than 180°, so that the zigzag state between the front plate body and rear plate body is temporarily locked to achieve the positioning action.
In terms of the effect and advantage of the present invention, when the front plate body and rear plate body of telescopic frame of scooter are in unfolded state, the innovative type of descending pivot joint between the front and rear plate bodies can enhance the stability of the front and rear plate bodies in unfolded state, the probability of arbitrary turn-up and jump in the running process of scooter is reduced effectively. With the technical feature that the upper edge of rear side of front plate body and the upper edge of front side of rear plate body are provided with a first underpropping part and a second underpropping part respectively, when the front frame and rear frame are in unfolded state, the first underpropping part and the second underpropping part abut on each other, so that the front and rear plate bodies are temporarily locked, and the relative positions of front frame and rear frame will not change arbitrarily in the running process of scooter, the service stability and safety of scooter are further enhanced.
Please refer to
Said scooter comprises a rear frame 10 with a front end 11, a tail end 12 and a top surface 13, and the rear frame 10 is provided with a rear wheelset 14, and the front end 11 is formed with two guide runners 15 extended towards the tail end 12. A seat 20 is connected to the top surface 13 of the rear frame 10 by a support 21. The seat 20 is provided for the user to sit. A front frame 30 is assembled in the spacing at the front end 11 of the rear frame 10, and the front frame 30 is provided with a front wheelset 31. An upright scooter head rod 40 is assembled on the front frame 30. The upright scooter head rod 40 is provided for the user to grip with both hands. A telescopic connection frame 50 is installed between the front frame 30 and the rear frame 10. The telescopic connection frame 50 comprises one front frame part 51 and two sliding bar parts 52 which are connected to each other, wherein the front frame part 51 is connected to the front frame 30, the two sliding bar parts 52 are inserted in the two guide runners 15 of the rear frame 10 in telescopic sliding state, and the maximum elongation stroke of each sliding bar part 52 is set by assembling a limiting component 53 (only marked in
As shown in
Wherein the upper edge of rear side of the front plate body 61 and the upper edge of front side of the rear plate body 62 are provided with a first underpropping part 611 and a second underpropping part 621 respectively, and the height of the toggle part 74 downwards abutting on the bearer part 54 must be sufficient for the first underpropping part 611 and the second underpropping part 621 to abut on each other, forming the state that the included angle between the top surfaces of the front plate body 41 and the rear plate body 42 is smaller than 180° (see X in
Based on said structural composition and technical characteristics, the actuation of the preferred embodiments of the present invention is described below: as shown in
Afterwards, when the user applies a force to make the front plate body 61 and rear plate body 62 bend up taking the third pivoting shaft member 73 as rotary fulcrum (as shown in
As shown in
Number | Date | Country | Kind |
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108200376 | Jan 2019 | TW | national |
The present application is a continuation-in-part of U.S. Application Ser. No. 16/525,036, filed on Jul. 29, 2019, presently pending.
Number | Date | Country | |
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Parent | 16525036 | Jul 2019 | US |
Child | 17687850 | US |