A handle of a vehicle and a vehicle

By setting the accommodating cavity on the base of the vehicle handle and matching the connecting parts, and using the pull rope and guide structure design, the problem of difficult handles being stuck and reset is solved, and the smooth reset and stability of the handles are achieved, and user experience and production efficiency are improved.

CN120039179BActive Publication Date: 2025-07-25NINGBO JOYSON TECH CO LTD
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Patent Information

Application Number
CN202510510759.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-07-25
Estimated Expiration
2045-04-23

AI Technical Summary

Technical Problem

In the prior art, the vehicle handle is prone to being stuck after being pulled out, resulting in difficulty in resetting. The user needs to exert additional force or try multiple times, which reduces the user experience.

Method used

The handle base is equipped with the receiving cavity and the connecting parts on the handle body, and the handle body and the handle base are connected through a draw rope, so that the handle body is switched between the open position and the closed position, combining the guide structure and the design of the elastic member to ensure smooth reset.

Benefits of technology

It improves the accuracy and efficiency of handle reset, reduces the phenomenon of stuck, improves user experience, and reduces production and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a handle for a vehicle and a vehicle. The handle is installed on the roof of the vehicle. The handle includes: a handle body; a connecting component disposed on the handle body; a handle base provided with a receiving cavity that cooperates with the connecting component; a pulling rope movably connected between the connecting component and the handle base to enable the handle body to switch between a pulled-open position and a closed position. Wherein, when the handle body is in the pulled-open position, the connecting component and the receiving cavity are separated from each other; when the handle body is in the closed position, the receiving cavity sleeves the outside of the connecting component. The technical problem solved by the present invention is that for the handle of a vehicle in the prior art, when the user pulls out the handle body, the handle is prone to jamming during the reset process, resulting in the handle being unable to complete the reset, so that the user needs to apply additional force or try multiple times to reset the handle, reducing the user experience.
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Description

Technical Field

[0001] The present invention relates to the technical field of automobiles, and more particularly, to a vehicle handle and a vehicle. Background Art

[0002] With the continuous promotion of energy conservation and emission reduction, the automotive industry has achieved rapid development in the direction of intelligentization. On the premise of meeting people's riding functional requirements, the quality and grade of automotive interiors have also attracted more and more attention.

[0003] Among them, the vehicle handle is usually arranged at the position of the vehicle ceiling. During the vehicle driving process, when the road is bumpy, the vehicle makes a sharp turn or brakes suddenly, the user can hold the handle with his hand to maintain balance, avoid body dumping, and ensure the safety of the user. Currently, the vehicle handle is usually in a retracted state, and there is a holding space between the handle body and the vehicle ceiling, so that when the user needs to hold the handle, it is convenient for the user to pull out the handle.

[0004] However, there are at least the following problems in the related art: for the handle of the vehicle in the prior art, when the user pulls out the handle body, the handle is prone to jamming during the reset process, resulting in the situation that the handle cannot be reset, so that the user needs to apply additional force or try multiple times to reset the handle, which reduces the user experience. Summary of the Invention

[0005] The technical problem solved by the present invention is that for the handle of the vehicle in the prior art, when the user pulls out the handle body, the handle is prone to jamming during the reset process, resulting in the situation that the handle cannot be reset, so that the user needs to apply additional force or try multiple times to reset the handle, which reduces the user experience.

[0006] To solve the above problems, the present invention provides a vehicle handle. The handle is installed on the ceiling of the vehicle, and the handle includes: a handle body; a connecting component, the connecting component is arranged on the handle body; a handle base, the handle base is provided with a receiving cavity that cooperates with the connecting component; a pull rope, the pull rope is movably connected between the connecting component and the handle base, so that the handle body can be switched between a pulled position and a closed position; wherein, when the handle body is in the pulled position, the connecting component and the receiving cavity are separated from each other; when the handle body is in the closed position, the receiving cavity is sleeved outside the connecting component.

[0007] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: In this solution, a receiving cavity is provided in the handle base to cooperate with the connecting component on the handle body, and a pull rope is provided to connect the handle body and the handle base, so that the handle body can be switched between the pulled-open position and the closed position, ensuring that the handle body can smoothly return to the closed position during the reset process, reducing the situation where the handle body cannot be reset due to jamming during the reset process. Therefore, after the user pulls out the handle body, no additional force needs to be applied or multiple attempts are required during the reset process of the handle body, thereby improving the user experience.

[0008] In one example of the present invention, the connecting component has a guiding structure that gradually expands from the first end far from the handle body to the second end close to the handle body, and the inner part of the receiving cavity has a guiding surface adapted to the guiding structure.

[0009] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: In this solution, by providing the guiding structure, the connecting component can be automatically aligned and smoothly enter the receiving cavity during the reset process, so that when the user pulls the handle body, even if it is tilted or twisted in any direction, the handle body can be normally pulled out without jamming, or there will be no jamming when the user releases the handle body after pulling it out, improving the accuracy and efficiency of the reset of the handle body.

[0010] In one example of the present invention, the connecting component is integrally formed with the handle body; or the connecting component is separately provided from the handle body, and the connecting component is connected to the handle body by a buckle or a screw.

[0011] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: In one example of this solution, by setting the connecting component to be integrally formed with the handle body, the assembly steps during the production of the handle are reduced, the production cost is lowered, and thus the production efficiency is improved. In another example of this solution, the connecting component is separately provided from the handle body, and the connecting component is connected to the handle body by a buckle or a screw, so that when either the handle body or the connecting component is damaged, only the damaged one needs to be replaced, reducing the maintenance cost of the handle.

[0012] In one example of the present invention, the connecting component includes: a first connecting piece, which is provided at one end of the handle body; a second connecting piece, which is provided at the other end of the handle body, and the second connecting piece and the first connecting piece are provided on the same side of the handle body; the handle base includes: a first receiving cavity, which is provided at one end of the handle base; a second receiving cavity, which is provided at the other end of the handle base; wherein, when the handle body is in the closed position, the first receiving cavity cooperates with the first connecting piece, and the second receiving cavity cooperates with the second connecting piece.

[0013] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: By providing a first connecting member and a second connecting member to cooperate with the first accommodating cavity and the second accommodating cavity respectively, the stability and firmness of the handle are improved, and the shaking of the handle during use is reduced.

[0014] In an example of the present invention, a first connection hole is provided at the top of the first accommodating cavity, and a second connection hole is provided at the top of the second accommodating cavity. The handle further includes: a first transmission assembly, which is arranged at one end of the handle base close to the first accommodating cavity and is movably connected to the handle base; a second transmission assembly, which is arranged at one end of the handle base close to the second accommodating cavity and is movably connected to the handle base. Wherein, the pull rope includes a first connection rope and a second connection rope, one end of the first connection rope is connected to the first transmission assembly, and the other end passes through the first connection hole and is connected to the first connecting member; one end of the second connection rope is connected to the second transmission assembly, and the other end passes through the second connection hole and is connected to the second connecting member.

[0015] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: By providing a first transmission assembly and a second transmission assembly to control the first connection rope and the second connection rope respectively, the stability of the handle body during the reset process is improved, and the user experience is further enhanced.

[0016] In an example of the present invention, the handle base is provided with a first mounting portion and a second mounting portion, and the first mounting portion is provided with a first mounting hole, and the second mounting portion is provided with a second mounting hole; the first transmission assembly includes: a first transmission rod, at least a part of the end of the first transmission rod away from the first accommodating cavity passes through the first mounting hole; a first stopper, which is arranged at the end of the first transmission rod away from the first accommodating cavity to limit the first transmission rod from disengaging from the first mounting hole; the second transmission assembly includes: a second transmission rod, at least a part of the end of the second transmission rod away from the second accommodating cavity passes through the second mounting hole; a second stopper, which is arranged at the end of the second transmission rod away from the second accommodating cavity to limit the second transmission rod from disengaging from the second mounting hole; wherein, one end of the first connection rope is connected to the first transmission rod, and the other end passes through the first connection hole and is connected to the first connecting member; one end of the second connection rope is connected to the second transmission rod, and the other end passes through the second connection hole and is connected to the second connecting member.

[0017] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: In this solution, a first mounting portion and a second mounting portion are provided on the handle base. At least a part of the end of the first transmission rod away from the first accommodating cavity passes through the first mounting hole of the first mounting portion, avoiding the deviation of the first transmission assembly caused by vibration or external force during the transmission process, and improving the stability of the first transmission assembly during the transmission process; at least a part of the end of the second transmission rod away from the second accommodating cavity passes through the second mounting hole of the second mounting portion, avoiding the deviation of the second transmission assembly caused by vibration or external force during the transmission process, and improving the stability of the second transmission assembly during the transmission process.

[0018] In an example of the present invention, the handle further includes: a first elastic member disposed between the first mounting portion and the first stopper; wherein, when the handle body is in the pulled-open position, the first elastic member is in a compressed state; when the handle body is switched from the pulled-open position to the closed position, the first elastic member extends from the compressed state to the natural length state; and / or a second elastic member disposed between the second mounting portion and the second stopper; wherein, when the handle body is in the pulled-open position, the second elastic member is in a compressed state; when the handle body is switched from the pulled-open position to the closed position, the second elastic member extends from the compressed state to the natural length state.

[0019] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: On the one hand, in this solution, a first elastic member is provided between the first mounting portion and the first stopper. When the handle body is in the pulled-open position, the first transmission rod is pulled by the first connecting rope, and the first elastic member is compressed and stores energy between the first mounting portion and the first stopper. When the user releases the handle body, the handle body is reset under the elastic force of the first elastic member, thereby improving the convenience during the reset process of the handle. On the other hand, in this solution, a second elastic member is provided between the second mounting portion and the second stopper. When the handle body is in the pulled-open position, the second transmission rod is pulled by the second connecting rope, and the second elastic member is compressed and stores energy between the second mounting portion and the second stopper. When the user releases the handle body, the handle body is reset under the elastic force of the second elastic member, thereby further improving the convenience during the reset process of the handle.

[0020] In an example of the present invention, the handle further includes:

[0021] a first connecting portion disposed at one end of the first transmission rod close to the first accommodating cavity, and the first connecting portion is provided with a third connecting hole; a first connecting buckle disposed on the side of the first connecting portion away from the first accommodating cavity; wherein, the first connecting rope passes through the third connecting hole and cooperates with the first connecting buckle;

[0022] and / or a second connecting part, the second connecting part is arranged at one end of the second transmission rod close to the second accommodating cavity, and the second connecting part is provided with a fourth connecting hole; a second connecting buckle, the second connecting buckle is arranged on the side of the second connecting part away from the second accommodating cavity; wherein, the second connecting rope passes through the fourth connecting hole and cooperates with the second connecting buckle;

[0023] and / or a third connecting part, the third connecting part is arranged at one end of the first connecting piece away from the handle body, and the third connecting part is provided with a fifth connecting hole; a third connecting buckle, the third connecting buckle is arranged on the side of the first connecting piece close to the handle body; wherein, the first connecting rope passes through the fifth connecting hole and cooperates with the third connecting buckle;

[0024] and / or a fourth connecting part, the fourth connecting part is arranged at one end of the second connecting piece away from the handle body, and the fourth connecting part is provided with a sixth connecting hole; a fourth connecting buckle, the fourth connecting buckle is arranged on the side of the second connecting piece close to the handle body; wherein, the second connecting rope passes through the sixth connecting hole and cooperates with the fourth connecting buckle.

[0025] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: First, in this solution, by arranging the first connecting rope to pass through the third connecting hole and cooperate with the first connecting buckle, the first connecting rope is restricted from coming out of the first connecting part, avoiding the situation that the connection between the first connecting rope and the first transmission rod falls off when the user pulls out the handle body, thereby improving the connection stability between the first connecting rope and the first transmission rod; Second, in this solution, by arranging the second connecting rope to pass through the fourth connecting hole and cooperate with the second connecting buckle, the second connecting rope is restricted from coming out of the second connecting part, avoiding the situation that the connection between the second connecting rope and the second transmission rod falls off when the user pulls out the handle body, thereby improving the connection stability between the second connecting rope and the second transmission rod; Third, in this solution, by arranging the first connecting rope to pass through the fifth connecting hole and cooperate with the third connecting buckle, the first connecting rope is restricted from coming out of the third connecting part, avoiding the situation that the connection between the first connecting rope and the first connecting piece falls off when the user pulls out the handle body, thereby improving the connection stability between the first connecting rope and the first connecting piece; Fourth, in this solution, by arranging the second connecting rope to pass through the sixth connecting hole and cooperate with the fourth connecting buckle, the second connecting rope is restricted from coming out of the fourth connecting part, avoiding the situation that the connection between the second connecting rope and the second connecting piece falls off when the user pulls out the handle body, thereby improving the connection stability between the second connecting rope and the second connecting piece.

[0026] In an example of the present invention, a first rack is provided on the first transmission rod, and a second rack is provided on the second transmission rod. The handle further includes: a first gear damper, which is arranged on the handle base; a second gear damper, which is arranged on the handle base; wherein, the gear of the first gear damper meshes with the first rack, and the gear of the second gear damper meshes with the second rack.

[0027] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: By setting the gear of the first gear damper to mesh with the first rack and the gear of the second gear damper to mesh with the second rack, when the handle body is reset under the elastic force of the first elastic member or the second elastic member, it can be reset slowly, avoiding the situation that the handle body rebounds violently during the reset process and causing damage to the first accommodation cavity or the second accommodation cavity, thereby improving the service life of the handle.

[0028] On the other hand, the present invention also provides a vehicle, which includes: the handle of the vehicle in any of the above technical solutions; a vehicle ceiling, and the handle is installed on the inner side of the vehicle ceiling.

[0029] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: This solution can achieve the technical effects corresponding to any of the above examples, which will not be elaborated here.

[0030] After adopting the technical solution of the present invention, the following technical effects can be achieved:

[0031] A handle and a vehicle of the present invention are provided. The handle of the vehicle cooperates with the connecting component on the handle body by arranging an accommodation cavity on the handle base, and a pull rope is arranged to connect the handle body and the handle base to ensure that the handle body can smoothly return to the closed position during the reset process, reducing the situation that the handle body cannot be reset due to jamming during the reset process. Therefore, when the user pulls out the handle body and then resets the handle body, no additional force needs to be applied or multiple attempts need to be made, thereby improving the user experience. Description of the Drawings

[0032] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0033] Figure 1 It is a perspective view of a handle of a vehicle provided by an embodiment of the present invention;

[0034] Figure 2Schematic diagram of the partial perspective of the handle of a vehicle provided by an embodiment of the present invention;

[0035] Figure 3 One of the schematic diagrams of the structure of the handle of a vehicle provided by an embodiment of the present invention;

[0036] Figure 4 Is Figure 3 The enlarged view of area A in

[0037] Figure 5 Another schematic diagram of the structure of the handle of a vehicle provided by an embodiment of the present invention;

[0038] Figure 6 Is Figure 5 The enlarged view of area B in

[0039] Figure 7 Top view of the handle of a vehicle provided by an embodiment of the present invention;

[0040] Figure 8 Is Figure 7 The cross-sectional view along O-O in

[0041] Figure 9 Is Figure 8 The enlarged view of area C in

[0042] Figure 10 Is Figure 8 The enlarged view of area D in

[0043] Explanation of reference numerals:

[0044] 100, handle body; 110, connecting component; 111, first connecting piece; 111a, third connecting part; 112, second connecting piece; 112a, fourth connecting part; 200, handle base; 210, first accommodating cavity; 211, first connecting hole; 212, second protruding piece; 220, second accommodating cavity; 221, second connecting hole; 222, first protruding piece; 223, third limiting piece; 224, fourth limiting piece; 230, first mounting part; 240, second mounting part; 250, first gear damper; 260, second gear damper; 300, pull rope; 310, first connecting rope; 311, first connecting buckle; 312, third connecting buckle; 320, second connecting rope; 321, second connecting buckle; 322, fourth connecting buckle; 400, first transmission assembly; 410, first transmission rod; 411, first connecting part; 412, first rack; 420, first stop piece; 430, first elastic piece; 500, second transmission assembly; 510, second transmission rod; 511, second connecting part; 512, second rack; 520, second stop piece; 530, second elastic piece; 600, holding space. Detailed implementation manners

[0045] To make the above objects, features, and advantages of the present invention more apparent and understandable, the following will describe in detail the specific embodiments of the present invention with reference to the accompanying drawings.

[0046] Referring to Figures 1 to 10 , the present invention provides a handle for a vehicle. The handle is installed on the roof of the vehicle and includes a handle body 100, a connecting member 110, a handle base 200, and a pull rope 300. Specifically, the connecting member 110 is disposed on the handle body 100. The handle base 200 is provided with a receiving cavity that cooperates with the connecting member 110. The pull rope 300 is movably connected between the connecting member 110 and the handle base 200 to enable the handle body 100 to switch between an open position and a closed position. Among them, as Figure 1 shown, when the handle body 100 is in the open position, the connecting member 110 is separated from the receiving cavity; as Figures 2 to 10 shown, when the handle body 100 is in the closed position, the receiving cavity is sleeved outside the connecting member 110.

[0047] More specifically, in this solution, a receiving cavity is provided on the handle base 200 to cooperate with the connecting member 110 on the handle body 100, and a pull rope 300 is provided to connect the handle body 100 and the handle base 200, so that the handle body 100 can switch between an open position and a closed position, ensuring that the handle body 100 can smoothly return to the closed position during the reset process, reducing the situation where the handle body 100 cannot be reset due to jamming during the reset process. Therefore, after the user pulls out the handle body 100, no additional force needs to be applied or multiple attempts need to be made during the reset process of the handle body 100, thereby improving the user experience.

[0048] Furthermore, as Figure 1 and Figure 2 shown, the handle base 200 is provided with a recess that bends away from the handle body 100 to form a holding space 600 between the handle body 100 and the handle base 200, facilitating the user to insert the hand between the handle body 100 and the handle base 200 when the handle body 100 needs to be pulled out.

[0049] Referring to Figures 1 to 10 , in an embodiment provided by the present invention, the connecting member 110 has a guiding structure that gradually expands from a first end away from the handle body 100 to a second end close to the handle body 100, and the inside of the receiving cavity has a guiding surface adapted to the guiding structure.

[0050] It should be noted that in an embodiment provided by the present invention, the guiding structure mentioned in this solution may be a conical structure (such as Figures 1 to 10As shown in the figure, the guiding surface inside the accommodating cavity is a conical cavity adapted to the conical structure.

[0051] In another embodiment provided by the present invention, the guiding structure may be an arc structure, and the guiding surface inside the accommodating cavity is an arc-shaped cavity adapted to the arc structure.

[0052] In another embodiment provided by the present invention, the guiding structure may be a trapezoidal structure, and the guiding surface inside the accommodating cavity is a trapezoidal cavity adapted to the trapezoidal structure.

[0053] More specifically, in this solution, by setting the guiding structure, the connecting component 110 can be automatically aligned and smoothly enter the accommodating cavity during the reset process. When the user pulls the handle body 100, even if it is tilted or twisted in any direction, the handle body 100 can be normally pulled out without jamming, or when the user releases the handle body 100 after pulling it out, there will be no jamming either, improving the accuracy and efficiency of the reset of the handle body 100.

[0054] Refer to Figures 1 to 10 , in an embodiment provided by the present invention, the connecting component 110 and the handle body 100 are integrally formed; or the connecting component 110 and the handle body 100 are separately provided, and the connecting component 110 and the handle body 100 are connected by a buckle or a screw.

[0055] It should be noted that the structural schematic diagram in the drawings of the present invention shows the technical solution in which the connecting component 110 and the handle body 100 are integrally formed.

[0056] More specifically, in an example of this solution, by setting the connecting component 110 and the handle body 100 to be integrally formed, the assembly steps of the handle during the production process are reduced, the production cost is reduced, and thus the production efficiency is improved. In another example of this solution, the connecting component 110 and the handle body 100 are separately provided, and the connecting component 110 and the handle body 100 are connected by a buckle or a screw, so that when either the handle body 100 or the connecting component 110 is damaged, only the damaged one needs to be replaced, reducing the maintenance cost of the handle.

[0057] Refer to Figures 1 to 10, in an embodiment provided by the present invention, the connecting component 110 includes a first connecting piece 111 and a second connecting piece 112, and the handle base 200 includes a first accommodating cavity 210 and a second accommodating cavity 220. Specifically, the first connecting piece 111 is disposed at one end of the handle body 100, the second connecting piece 112 is disposed at the other end of the handle body 100, and the second connecting piece 112 and the first connecting piece 111 are disposed on the same side of the handle body 100; the first accommodating cavity 210 is disposed at one end of the handle base 200, and the second accommodating cavity 220 is disposed at the other end of the handle base 200; wherein, as Figures 7 to 10 shown, when the handle body 100 is in the closed position, the first accommodating cavity 210 cooperates with the first connecting piece 111, and the second accommodating cavity 220 cooperates with the second connecting piece 112.

[0058] More specifically, in this solution, by setting the first connecting piece 111 and the second connecting piece 112 to cooperate with the first accommodating cavity 210 and the second accommodating cavity 220 respectively, the stability and firmness of the handle are improved, and the shaking of the handle during use is reduced.

[0059] Referring to Figures 7 to 10 , in an embodiment provided by the present invention, a first connection hole 211 is provided at the top of the first accommodating cavity 210, a second connection hole 221 is provided at the top of the second accommodating cavity 220, and the handle further includes a first transmission assembly 400 and a second transmission assembly 500. Specifically, the first transmission assembly 400 is disposed at one end of the handle base 200 close to the first accommodating cavity 210, and the first transmission assembly 400 is movably connected to the handle base 200. The second transmission assembly 500 is disposed at one end of the handle base 200 close to the second accommodating cavity 220, and the second transmission assembly 500 is movably connected to the handle base 200; wherein, the pull rope 300 includes a first connection rope 310 and a second connection rope 320, and one end of the first connection rope 310 is connected to the first transmission assembly 400, and the other end passes through the first connection hole 211 and is connected to the first connecting piece 111; one end of the second connection rope 320 is connected to the second transmission assembly 500, and the other end passes through the second connection hole 221 and is connected to the second connecting piece 112.

[0060] More specifically, in this solution, by setting the first transmission assembly 400 and the second transmission assembly 500 to control the first connection rope 310 and the second connection rope 320 respectively, the stability of the handle body 100 during the reset process is improved, and the user experience is further improved.

[0061] Further, referring to Figures 5 to 10, in an embodiment provided by the present invention, a first protrusion 222 is provided at the top of the second accommodation cavity 220. When the second connecting rope 320 passes through the second connecting hole 221 and is connected to the second connecting member 112, the second connecting rope 320 abuts against the top of the first protrusion 222. The first protrusion 222 is arranged in an arc structure to reduce the friction between the opening of the second connecting hole 221 and the second connecting rope 320 when the user pulls out the handle body 100 or resets the handle body 100.

[0062] Furthermore, referring to Figures 5 to 10 , in an embodiment provided by the present invention, the two sides of the arc structure are provided with a relatively arranged third limiting member 223 and a fourth limiting member 224, which are used to limit the second connecting rope 320 from shaking to both sides of the handle, so as to improve the stability of the second connecting rope 320 when the user pulls out the handle body 100 or resets the handle body 100.

[0063] Further, referring to Figures 5 to 10 , in an embodiment provided by the present invention, a second protrusion 212 is provided at the top of the first accommodation cavity 210. It should be noted that the second protrusion 212 has the same structure as the first protrusion 222, and the cooperation mode between the second protrusion 212 and the first connecting rope 310 is the same as the cooperation mode between the first protrusion 222 and the second connecting rope 320, which will not be elaborated here.

[0064] Referring to Figures 1 to 10 , in an embodiment provided by the present invention, the handle base 200 is provided with a first installation part 230 and a second installation part 240, and the first installation part 230 is provided with a first installation hole, and the second installation part 240 is provided with a second installation hole; the first transmission assembly 400 includes a first transmission rod 410 and a first stop member 420, and the second transmission assembly 500 includes a second transmission rod 510 and a second stop member 520. Specifically, at least a part of the end of the first transmission rod 410 far from the first accommodation cavity 210 passes through the first installation hole, and the first stop member 420 is arranged at the end of the first transmission rod 410 far from the first accommodation cavity 210 to limit the first transmission rod 410 from disengaging from the first installation hole; at least a part of the end of the second transmission rod 510 far from the second accommodation cavity 220 passes through the second installation hole, and the second stop member 520 is arranged at the end of the second transmission rod 510 far from the second accommodation cavity 220 to limit the second transmission rod 510 from disengaging from the second installation hole; wherein, one end of the first connecting rope 310 is connected to the first transmission rod 410, and the other end passes through the first connecting hole 211 and is connected to the first connecting member 111; one end of the second connecting rope 320 is connected to the second transmission rod 510, and the other end passes through the second connecting hole 221 and is connected to the second connecting member 112.

[0065] More specifically, in this solution, by providing a first mounting portion 230 and a second mounting portion 240 on the handle base 200, at least a part of the end of the first transmission rod 410 away from the first accommodation cavity 210 passes through the first mounting hole of the first mounting portion 230, avoiding the deviation of the first transmission assembly 400 caused by vibration or external force during the transmission process, and improving the stability of the first transmission assembly 400 during the transmission process; at least a part of the end of the second transmission rod 510 away from the second accommodation cavity 220 passes through the second mounting hole of the second mounting portion 240, avoiding the deviation of the second transmission assembly 500 caused by vibration or external force during the transmission process, and improving the stability of the second transmission assembly 500 during the transmission process.

[0066] Referring to Figures 3 to 10 , in an embodiment provided by the present invention, the handle further includes a first elastic member 430, and the first elastic member 430 is disposed between the first mounting portion 230 and the first stopper 420; wherein, when the handle body 100 is in the pulled-open position, the first elastic member 430 is in a compressed state; when the handle body 100 is switched from the pulled-open position to the closed position, the first elastic member 430 extends from the compressed state to the natural length state; and / or a second elastic member 530, and the second elastic member 530 is disposed between the second mounting portion 240 and the second stopper 520; wherein, when the handle body 100 is in the pulled-open position, the second elastic member 530 is in a compressed state; when the handle body 100 is switched from the pulled-open position to the closed position, the second elastic member 530 extends from the compressed state to the natural length state.

[0067] More specifically, on the one hand, in this solution, by providing a first elastic member 430 between the first mounting portion 230 and the first stopper 420, when the handle body 100 is in the pulled-open position, the first transmission rod 410 is pulled by the first connecting rope 310, and the first elastic member 430 is compressed and stores energy between the first mounting portion 230 and the first stopper 420 under extrusion. When the user releases the handle body 100, the handle body 100 is reset under the elastic force of the first elastic member 430, thereby improving the convenience during the reset process of the handle. On the other hand, in this solution, by providing a second elastic member 530 between the second mounting portion 240 and the second stopper 520, when the handle body 100 is in the pulled-open position, the second transmission rod 510 is pulled by the second connecting rope 320, and the second elastic member 530 is compressed and stores energy between the second mounting portion 240 and the second stopper 520 under extrusion. When the user releases the handle body 100, the handle body 100 is reset under the elastic force of the second elastic member 530, thereby further improving the convenience during the reset process of the handle.

[0068] Referring to Figures 1 to 10 , in an embodiment provided by the present invention, the handle further includes:

[0069] The first connecting portion 411 is disposed at one end of the first transmission rod 410 close to the first receiving cavity 210, and the first connecting portion 411 is provided with a third connecting hole; the first connecting buckle 311 is disposed on a side of the first connecting portion 411 away from the first receiving cavity 210; wherein, the first connecting rope 310 passes through the third connecting hole and cooperates with the first connecting buckle 311;

[0070] and / or the second connecting portion 511 is disposed at one end of the second transmission rod 510 close to the second receiving cavity 220, and the second connecting portion 511 is provided with a fourth connecting hole; the second connecting buckle 321 is disposed on a side of the second connecting portion 511 away from the second receiving cavity 220; wherein, the second connecting rope 320 passes through the fourth connecting hole and cooperates with the second connecting buckle 321;

[0071] and / or the third connecting portion 111a is disposed at one end of the first connecting member 111 away from the handle body 100, and the third connecting portion 111a is provided with a fifth connecting hole; the third connecting buckle 312 is disposed on a side of the first connecting member 111 close to the handle body 100; wherein, the first connecting rope 310 passes through the fifth connecting hole and cooperates with the third connecting buckle 312;

[0072] and / or the fourth connecting portion 112a is disposed at one end of the second connecting member 112 away from the handle body 100, and the fourth connecting portion 112a is provided with a sixth connecting hole; the fourth connecting buckle 322 is disposed on a side of the second connecting member 112 close to the handle body 100; wherein, the second connecting rope 320 passes through the sixth connecting hole and cooperates with the fourth connecting buckle 322.

[0073] More specifically, in the first aspect, in this solution, the first connecting rope 310 is set to pass through the third connecting hole and cooperate with the first connecting buckle 311 to limit the first connecting rope 310 from disengaging from the first connecting portion 411, avoiding the situation where the connection between the first connecting rope 310 and the first transmission rod 410 becomes detached when the user pulls out the handle body 100, thereby improving the connection stability between the first connecting rope 310 and the first transmission rod 410. In the second aspect, in this solution, the second connecting rope 320 is set to pass through the fourth connecting hole and cooperate with the second connecting buckle 321 to limit the second connecting rope 320 from disengaging from the second connecting portion 511, avoiding the situation where the connection between the second connecting rope 320 and the second transmission rod 510 becomes detached when the user pulls out the handle body 100, thereby improving the connection stability between the second connecting rope 320 and the second transmission rod 510. In the third aspect, in this solution, the first connecting rope 310 is set to pass through the fifth connecting hole and cooperate with the third connecting buckle 312 to limit the first connecting rope 310 from disengaging from the third connecting portion 111a, avoiding the situation where the connection between the first connecting rope 310 and the first connecting member 111 becomes detached when the user pulls out the handle body 100, thereby improving the connection stability between the first connecting rope 310 and the first connecting member 111. In the fourth aspect, in this solution, the second connecting rope 320 is set to pass through the sixth connecting hole and cooperate with the fourth connecting buckle 322 to limit the second connecting rope 320 from disengaging from the fourth connecting portion 112a, avoiding the situation where the connection between the second connecting rope 320 and the second connecting member 112 becomes detached when the user pulls out the handle body 100, thereby improving the connection stability between the second connecting rope 320 and the second connecting member 112.

[0074] Referring to Figures 1 to 6 , in an embodiment provided by the present invention, the first transmission rod 410 is provided with a first rack 412, the second transmission rod 510 is provided with a second rack 512, and the handle further includes a first gear damper 250 and a second gear damper 260. Specifically, the first gear damper 250 is disposed on the handle base 200, and the second gear damper 260 is disposed on the handle base 200; wherein, the gear of the first gear damper 250 meshes with the first rack 412, and the gear of the second gear damper 260 meshes with the second rack 512.

[0075] More specifically, in this solution, by setting the gear of the first gear damper 250 to mesh with the first rack 412 and the gear of the second gear damper 260 to mesh with the second rack 512, when the handle body 100 is reset under the elastic force of the first elastic member 430 or the elastic force of the second elastic member 530, it can be reset slowly, avoiding the situation where the first receiving cavity 210 or the second receiving cavity 220 is damaged due to violent rebound during the reset process of the handle body 100, thereby improving the service life of the handle.

[0076] On the other hand, the present invention also provides a vehicle, which includes a handle of the vehicle in any of the above technical solutions; a vehicle roof, and the handle is installed on the inner side of the vehicle roof.

[0077] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention should be subject to the scope defined by the claims.

Claims

1. A handle of a vehicle, characterized in that, The handle is installed on the ceiling of the vehicle, and the handle includes: A handle body (100); A connecting member (110), the connecting member (110) is arranged on the handle body (100); A handle base (200), the handle base (200) is provided with a receiving cavity that cooperates with the connecting member (110); A pull rope (300), the pull rope (300) is movably connected between the connecting member (110) and the handle base (200) so that the handle body (100) can be switched between an open position and a closed position; Wherein, when the handle body (100) is in the open position, the connecting member (110) is separated from the receiving cavity; when the handle body (100) is in the closed position, the receiving cavity sleeves the outside of the connecting member (110); The connecting member (110) includes: A first connecting member (111), the first connecting member (111) is arranged at one end of the handle body (100); A second connecting member (112), the second connecting member (112) is arranged at the other end of the handle body (100), and the second connecting member (112) and the first connecting member (111) are arranged on the same side of the handle body (100); The handle base (200) includes: A first receiving cavity (210), the first receiving cavity (210) is arranged at one end of the handle base (200); A second receiving cavity (220), the second receiving cavity (220) is arranged at the other end of the handle base (200); A first connection hole (211) is arranged at the top of the first receiving cavity (210), and a second connection hole (221) is arranged at the top of the second receiving cavity (220). The handle further includes: A first transmission assembly (400), the first transmission assembly (400) is arranged at one end of the handle base (200) close to the first receiving cavity (210), and the first transmission assembly (400) is movably connected to the handle base (200); A second transmission assembly (500), the second transmission assembly (500) is arranged at one end of the handle base (200) close to the second receiving cavity (220), and the second transmission assembly (500) is movably connected to the handle base (200); Wherein, the pull rope (300) includes a first connection rope (310) and a second connection rope (320), and one end of the first connection rope (310) is connected to the first transmission assembly (400), and the other end passes through the first connection hole (211) and is connected to the first connecting member (111); one end of the second connection rope (320) is connected to the second transmission assembly (500), and the other end passes through the second connection hole (221) and is connected to the second connecting member (112); The handle base (200) is provided with a first mounting portion (230) and a second mounting portion (240), and the first mounting portion (230) is provided with a first mounting hole, and the second mounting portion (240) is provided with a second mounting hole; The first transmission assembly (400) includes: A first transmission rod (410), and at least a part of one end of the first transmission rod (410) away from the first accommodating cavity (210) passes through the first mounting hole; A first stopper (420), which is arranged at one end of the first transmission rod (410) away from the first accommodating cavity (210) to limit the first transmission rod (410) from disengaging from the first mounting hole; The second transmission assembly (500) includes: A second transmission rod (510), and at least a part of one end of the second transmission rod (510) away from the second accommodating cavity (220) passes through the second mounting hole; A second stopper (520), which is arranged at one end of the second transmission rod (510) away from the second accommodating cavity (220) to limit the second transmission rod (510) from disengaging from the second mounting hole; Wherein, one end of the first connecting rope (310) is connected to the first transmission rod (410), and the other end passes through the first connecting hole (211) and is connected to the first connecting member (111); one end of the second connecting rope (320) is connected to the second transmission rod (510), and the other end passes through the second connecting hole (221) and is connected to the second connecting member (112).

2. The handle according to claim 1, wherein The connecting member (110) has a guiding structure that gradually expands from a first end away from the handle body (100) to a second end close to the handle body (100), and the inside of the accommodating cavity has a guiding surface adapted to the guiding structure.

3. The handle according to claim 2, wherein The connecting member (110) is integrally formed with the handle body (100); or The connecting member (110) is separately provided from the handle body (100), and the connecting member (110) is connected to the handle body (100) by a buckle or a screw.

4. The handle according to claim 2, wherein When the handle body (100) is in the closed position, the first accommodating cavity (210) cooperates with the first connecting member (111), and the second accommodating cavity (220) cooperates with the second connecting member (112).

5. The handle according to claim 4, characterized in that, The handle further includes: A first elastic member (430), which is arranged between the first mounting portion (230) and the first stopper (420); Wherein, when the handle body (100) is in the pulled-open position, the first elastic member (430) is in a compressed state; when the handle body (100) is switched from the pulled-open position to the closed position, the first elastic member (430) extends from the compressed state to the natural length state; and / or a second elastic member (530), the second elastic member (530) being disposed between the second mounting portion (240) and the second stopper (520); Wherein, when the handle body (100) is in the pulled-open position, the second elastic member (530) is in a compressed state; when the handle body (100) is switched from the pulled-open position to the closed position, the second elastic member (530) extends from the compressed state to the natural length state.

6. The handle according to any one of claims 4 or 5, characterized in that The handle further includes: a first connecting portion (411), the first connecting portion (411) being disposed at one end of the first transmission rod (410) close to the first receiving cavity (210), and the first connecting portion (411) being provided with a third connecting hole; a first connecting buckle (311), the first connecting buckle (311) being disposed on a side of the first connecting portion (411) away from the first receiving cavity (210); Wherein, the first connecting rope (310) passes through the third connecting hole and cooperates with the first connecting buckle (311); and / or a second connecting portion (511), the second connecting portion (511) being disposed at one end of the second transmission rod (510) close to the second receiving cavity (220), and the second connecting portion (511) being provided with a fourth connecting hole; a second connecting buckle (321), the second connecting buckle (321) being disposed on a side of the second connecting portion (511) away from the second receiving cavity (220); Wherein, the second connecting rope (320) passes through the fourth connecting hole and cooperates with the second connecting buckle (321); and / or a third connecting portion (111a), the third connecting portion (111a) being disposed at one end of the first connecting member (111) away from the handle body (100), and the third connecting portion (111a) being provided with a fifth connecting hole; a third connecting buckle (312), the third connecting buckle (312) being disposed on a side of the first connecting member (111) close to the handle body (100); Wherein, the first connecting rope (310) passes through the fifth connecting hole and cooperates with the third connecting buckle (312); and / or a fourth connecting portion (112a), the fourth connecting portion (112a) being disposed at one end of the second connecting member (112) away from the handle body (100), and the fourth connecting portion (112a) being provided with a sixth connecting hole; a fourth connecting buckle (322), the fourth connecting buckle (322) being disposed on a side of the second connecting member (112) close to the handle body (100); Wherein, the second connecting rope (320) passes through the sixth connecting hole and cooperates with the fourth connecting buckle (322).

7. The handle according to any one of claims 4 or 5, characterized in that, The first transmission rod (410) is provided with a first rack (412), the second transmission rod (510) is provided with a second rack (512), and the handle further includes: A first gear damper (250), and the first gear damper (250) is disposed on the handle base (200); A second gear damper (260), and the second gear damper (260) is disposed on the handle base (200); Wherein, the gear of the first gear damper (250) meshes with the first rack (412), and the gear of the second gear damper (260) meshes with the second rack (512).

8. A vehicle, characterized in that, The vehicle includes: The handle of the vehicle according to any one of claims 1-7; A vehicle ceiling, and the handle is installed on the inner side of the vehicle ceiling.

Citation Information

Patent Citations

  • Hidden handle with telescopic wire harness

    CN221646678U