Push-up support

By designing a push-up bracket with a snap cavity and a snap structure, the problems of inconvenient adjustment of angles and easy deviation of push-up brackets in the prior art are solved, convenient angle adjustment and locking are achieved, and user experience is improved.

CN222918054UActive Publication Date: 2025-05-30SHENZHEN YANXING SCI&TECH CO LTD
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Patent Information

Application Number
CN202421658885.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-15
Publication Date
2025-05-30
Estimated Expiration
2034-07-15

AI Technical Summary

Technical Problem

The existing push-up brackets are inconvenient when adjusting the angle. The integrated connection type cannot adjust the angle of the left and right brackets separately, and the angle of the separate independent brackets cannot be locked, resulting in easy deviation during use.

Method used

A push-up bracket is designed, adopting a relatively connected first and second support components, each supporting components is provided with a snap cavity and a snap structure, allowing the user to adjust the position of the armrest plate by snapping at different angles, thereby locking a suitable angle.

Benefits of technology

It enables users to easily adjust the angle of the push-up bracket and lock the angle through the snap structure, avoiding angle deviation and improving the convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a push-up support. The push-up support comprises a first supporting assembly and a second supporting assembly which are oppositely connected. The first supporting assembly comprises a first supporting plate and a first handrail plate, a circle of first buckling cavity is formed in the first supporting plate, and the first handrail plate can be located in the first buckling cavity at different angles to be buckled with the first buckling structure in a matched mode; and the second supporting assembly comprises a second supporting plate and a second handrail plate, a circle of second buckling cavity is formed in the second supporting plate, and the second handrail plate can be located in the second buckling cavity at different angles to be buckled with the second buckling structure in a matched mode. A user can adjust the angle of the first armrest plate buckle located in the first buckle cavity in the first supporting plate and adjust the angle of the second armrest plate buckle located in the second buckle cavity in the second supporting plate according to the use requirements of the user. Therefore, a user can hold the push-up exercise by two hands by adjusting the inclination angles of the first armrest plate and the second armrest plate, and the use convenience is good.
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Description

Technical Field

[0001] The utility model relates to the technical field of fitness equipment, in particular to a push-up bracket. Background Art

[0002] A push-up bracket is a fitness equipment, mainly used to assist in doing push-up exercises. It can help users lower their bodies deeper and have a greater range of motion when doing push-ups, so as to obtain a better stretching effect without getting their hands dirty. In addition, the push-up bracket is not limited to doing push-ups, but can also be used for other supporting actions, such as right-angle support, V-shaped support, handstand, etc., providing more exercise methods and choices.

[0003] Currently, the push-up bracket is composed of a left bracket and a right bracket. The left bracket and the right bracket in the push-up brackets on the market have an integral connection type and a separate independent type. However, the integral connection type of push-up bracket only allows users to adjust the angle by changing the placement position of the whole, and does not support users to individually adjust the angles of the left bracket and the right bracket, so it is not convenient to use; and although the separate independent type of push-up bracket supports users to individually adjust the angles of the left bracket and the right bracket by changing the placement position, the adjusted angles of the left bracket and the right bracket cannot be locked, so the angles of the left bracket and the right bracket are prone to deviation during use, and it is also not convenient to use. Content of the Utility Model

[0004] The utility model aims to provide a push-up bracket to solve the problems in the above background art that the integral connection type of push-up bracket only allows users to adjust the angle by changing the placement position of the whole, and does not support users to individually adjust the angles of the left bracket and the right bracket, so it is not convenient to use; and although the separate independent type of push-up bracket supports users to individually adjust the angles of the left bracket and the right bracket by changing the placement position, the adjusted angles of the left bracket and the right bracket cannot be locked, so the angles of the left bracket and the right bracket are prone to deviation during use, and it is also not convenient to use.

[0005] The technical solution adopted by the utility model to solve the technical problems is as follows: A push-up bracket includes a first support assembly and a second support assembly connected relatively; the first support assembly includes a first support plate and a first armrest plate, a first snap cavity is formed in a circle on the first support plate, a first snap structure is arranged in the first snap cavity, and the first armrest plate can be located in the first snap cavity at different angles and be adapted to snap with the first snap structure; the second support assembly includes a second support plate and a second armrest plate, a second snap cavity is formed in a circle on the second support plate, a second snap structure is arranged in the second snap cavity, and the second armrest plate can be located in the second snap cavity at different angles and be adapted to snap with the second snap structure.

[0006] In some embodiments, a first round block is formed in the middle of the first buckle cavity on the first support plate. The first buckle structure includes a plurality of first positioning blocks arranged around the bottom wall of the first buckle cavity, a plurality of first elastic sheets arranged around the bottom wall of the first buckle cavity, and a plurality of first limiting blocks arranged around the outer peripheral wall of the first round block. Each of the first elastic sheets is arranged alternately with each of the first positioning blocks, and a first arc-shaped convex wall is provided on the top surface of each of the first elastic sheets; the first armrest plate includes a first armrest rod and a first chuck, the first armrest rod is connected to the first chuck, a first hollow is formed in the middle of the first chuck, a plurality of first positioning holes equal in number to the first positioning blocks are arranged around the bottom surface of the first chuck, a plurality of first arc-shaped grooves equal in number to the first elastic sheets are arranged around the bottom surface of the first chuck, and a first convex wall is provided on the inner peripheral wall of the first chuck at the first hollow; when the first chuck is located in the first buckle cavity, the first hollow formed in the middle of the first chuck is adapted to accommodate the first round block formed in the middle of the first buckle cavity, and each of the first positioning holes arranged around the bottom surface of the first chuck corresponds to each of the first positioning blocks arranged around the bottom wall of the first buckle cavity respectively in the up and down direction, and each of the first arc-shaped grooves arranged around the bottom surface of the first chuck is respectively clamped with the first arc-shaped convex walls on the tops of the first elastic sheets arranged around the bottom wall of the first buckle cavity, and in addition, each of the first limiting blocks arranged around the outer peripheral wall of the first round block jointly abuts against the top of the first convex wall arranged on the inner peripheral wall of the first chuck.

[0007] In some embodiments, the first armrest rod and the first chuck are integrally formed.

[0008] In some embodiments, a second round block is formed in the middle of the second buckle cavity on the second support plate. The second buckle structure includes a plurality of second positioning blocks arranged around the bottom wall of the second buckle cavity, a plurality of second elastic sheets arranged around the bottom wall of the second buckle cavity, and a plurality of second limiting blocks arranged around the outer peripheral wall of the second round block. Each of the second elastic sheets and each of the second positioning blocks are arranged alternately, and a second arc-shaped convex wall is provided on the top surface of each of the second elastic sheets; the second armrest plate includes a second armrest rod and a second chuck. The second armrest rod is connected to the second chuck. A second hollow is formed in the middle of the second chuck. The same number of second positioning holes as the second positioning blocks are arranged around the bottom surface of the second chuck, and the same number of second arc-shaped grooves as the second elastic sheets are arranged around the bottom surface of the second chuck. A circle of second convex walls is provided on the inner peripheral wall of the second chuck at the second hollow; when the second chuck is located in the second buckle cavity, the second hollow formed in the middle of the second chuck is adapted to accommodate the second round block formed in the middle of the second buckle cavity, and each of the second positioning holes arranged around the bottom surface of the second chuck corresponds to each of the second positioning blocks arranged around the bottom wall of the second buckle cavity respectively from top to bottom, and each of the second arc-shaped grooves arranged around the bottom surface of the second chuck is respectively clamped with the second arc-shaped convex walls on the tops of each of the second elastic sheets arranged around the bottom wall of the second buckle cavity, and in addition, each of the second limiting blocks arranged around the outer peripheral wall of the second round block jointly abuts against the top of the second convex wall provided on the inner peripheral wall of the second chuck.

[0009] In some embodiments, the second armrest rod and the second chuck are integrally formed.

[0010] In some embodiments, a first connecting rod is hinged to one side of the first support plate, and a second connecting rod is hinged to one side of the second support plate; a plurality of first card holes are opened downward on the first connecting rod, and a second convex block is provided on the other side of the second support plate. Any one of the first card holes opened downward on the first connecting rod can be clamped with the second convex block provided on the other side of the second support plate; a plurality of second card holes are opened downward on the second connecting rod, and a first convex block is provided on the other side of the first support plate. Any one of the second card holes opened downward on the second connecting rod can be clamped with the first convex block provided on the other side of the first support plate.

[0011] In some embodiments, a third card hole is opened upward on the first connecting rod, and a third convex block is provided on the other side of the first support plate. The third card hole opened upward on the first connecting rod is used for clamping with the third convex block provided on the other side of the first support plate; a fourth card hole is opened upward on the second connecting rod, and a fourth convex block is provided on the other side of the second support plate. The fourth card hole opened upward on the second connecting rod is used for clamping with the fourth convex block provided on the other side of the second support plate.

[0012] In some embodiments, the tops of the first limiting blocks are all arranged as downward inclined surfaces.

[0013] In some embodiments, the tops of the second limiting blocks are all arranged as downward inclined surfaces.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] In the present utility model, the first armrest plate can be buckled at different angles by the user in the first buckle cavity on the first support plate. The first buckle structure provided in the first buckle cavity can be adapted to buckle the first armrest plate at different angles in the first card cavity, so that the user can adjust the angle at which the first armrest plate is buckled in the first buckle cavity on the first support plate according to his own use needs. The second armrest plate can be buckled at different angles by the user in the second buckle cavity on the second support plate. The second buckle structure provided in the second buckle cavity can be adapted to buckle the second armrest plate at different angles in the second card cavity, so that the user can adjust the angle at which the second armrest plate is buckled in the second buckle cavity on the second support plate according to his own use needs. In the present utility model, the user can hold the first armrest plate on the first support plate and the second armrest plate on the second support plate respectively to do push-up exercises, and the user can also adjust the angle at which the first armrest plate is buckled in the first buckle cavity on the first support plate and adjust the angle at which the second armrest plate is buckled in the second buckle cavity on the second support plate according to his own use needs. Thus, the user can adjust the inclination angles of the first armrest plate and the second armrest plate for holding with both hands to do push-up exercises, so the use convenience is good. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of one side view of the push-up bracket provided by the present utility model in the unfolded state;

[0017] Figure 2 is a schematic structural diagram of the other side view of the push-up bracket provided by the present utility model in the unfolded state;

[0018] Figure 3 is a schematic structural diagram of the push-up bracket provided by the present utility model in a split state from one perspective;

[0019] Figure 4 The enlarged structural schematic diagram of part A in Figure 3 the present utility model;

[0020] Figure 5 The enlarged structural schematic diagram of part B in Figure 3 the present utility model;

[0021] Figure 6 The structural schematic diagram of the push-up bracket provided by the present utility model from another perspective in a split state;

[0022] Figure 7 The enlarged structural schematic diagram of part C in Figure 6 the present utility model;

[0023] Figure 8 The enlarged structural schematic diagram of part D in Figure 6 the present utility model;

[0024] Figure 9 The structural schematic diagram of one side perspective of the push-up bracket provided by the present utility model in a stored state;

[0025] Figure 10 The structural schematic diagram of the other side perspective of the push-up bracket provided by the present utility model in a stored state.

[0026] Explanation of reference numerals:

[0027] 1000, push-up bracket; 100, first support assembly; 10, first support plate; 101, first connecting rod; 1011, first card hole; 1012, third card hole; 102, first convex block; 103, third convex block; 104, first buckle cavity; 1041, first buckle structure; 10411, first positioning block; 10412, first elastic sheet; 104121, first arc-shaped convex wall; 10413, first limiting block; 105, first round block; 20, first armrest plate; 201, first armrest rod; 202, first chuck; 2021, first positioning hole; 2022, first arc-shaped groove; 2023, first convex wall; 2024, first hollow; 200, second support assembly; 30, second support plate; 301, second connecting rod; 3011, second card hole; 3012, fourth card hole; 302, second convex block; 303, fourth convex block; 304, second buckle cavity; 3041, second buckle structure; 30411, second positioning block; 30412, second elastic sheet; 304121, second arc-shaped convex wall; 30413, second limiting block; 305, second round block; 40, second armrest plate; 401, second armrest rod; 402, second chuck; 4021, second positioning hole; 4022, second arc-shaped groove; 4023, second convex wall; 4024, second hollow. Detailed implementation manners

[0028] Next, in combination with the accompanying drawings in the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0029] In addition, in the present invention, the descriptions such as "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature.

[0030] Please refer to Figures 1 to 10 As shown, the present invention provides the following technical solution: a push-up bracket 1000, including a relatively connected first support assembly 100 and a second support assembly 200; the first support assembly 100 includes a first support plate 10 and a first armrest plate 20. A first snap cavity 104 is formed in the first support plate 10, and a first snap structure 1041 is arranged in the first snap cavity 104. The first armrest plate 20 can be located in the first snap cavity 104 at different angles and is adaptively snapped with the first snap structure 1041; the second support assembly 200 includes a second support plate 30 and a second armrest plate 40. A second snap cavity 304 is formed in the second support plate 30, and a second snap structure 3041 is arranged in the second snap cavity 304. The second armrest plate 40 can be located in the second snap cavity 304 at different angles and is adaptively snapped with the second snap structure 3041.

[0031] In the push-up support 1000 provided in this embodiment, when a user uses the push-up support 1000 to do push-up exercises, the first support plate 10 of the first support assembly 100 is unfolded and connected to the second support plate 30 of the second support assembly 200 for use. Then, the user can hold the first handrail plate 20 on the first support plate 10 and the second handrail plate 40 on the second support plate 30 with both hands to do push-up exercises. The first handrail plate 20 can be buckled at different angles in the first buckle cavity 104 on the first support plate 10. The first buckle structure 1041 provided in the first buckle cavity 104 can be adapted to buckle the first handrail plate 20 at different angles in the first buckle cavity, so that the user can adjust the angle at which the first handrail plate 20 is buckled in the first buckle cavity 104 on the first support plate 10 according to their own usage needs. The second handrail plate 40 can be buckled at different angles in the second buckle cavity 304 on the second support plate 30. The second buckle structure 3041 provided in the second buckle cavity 304 can be adapted to buckle the second handrail plate 40 at different angles in the second buckle cavity, so that the user can adjust the angle at which the second handrail plate 40 is buckled in the second buckle cavity 304 on the second support plate 30 according to their own usage needs. In this utility model, the user can hold the first handrail plate 20 on the first support plate 10 and the second handrail plate 40 on the second support plate 30 with both hands to do push-up exercises, and the user can also adjust the angle at which the first handrail plate 20 is buckled in the first buckle cavity 104 on the first support plate 10 and the angle at which the second handrail plate 40 is buckled in the second buckle cavity 304 on the second support plate 30 according to their own usage needs. Thus, the user can adjust the inclination angles of the first handrail plate 20 and the second handrail plate 40 for holding with both hands to do push-up exercises, so the usability is good.

[0032] Please refer specifically to Figure 4 and Figure 7As shown, in some embodiments, a first circular block 105 is formed in the middle of the first buckle cavity 104 on the first support plate 10. The first buckle structure 1041 includes a plurality of first positioning blocks 10411 arranged around the bottom wall of the first buckle cavity 104, a plurality of first elastic sheets 10412 arranged around the bottom wall of the first buckle cavity 104, and a plurality of first limiting blocks 10413 arranged around the outer peripheral wall of the first circular block 105. Each first elastic sheet 10412 is arranged alternately with each first positioning block 10411, and a first arc-shaped convex wall 104121 is provided on the top surface of each first elastic sheet 10412; the first armrest plate 20 includes a first armrest rod 201 and a first chuck 202. The first armrest rod 201 is connected to the first chuck 202. A first hollow 2024 is formed in the middle of the first chuck 202. A plurality of first positioning holes 2021 equal in number to the first positioning blocks 10411 are arranged around the bottom surface of the first chuck 202. A plurality of first arc-shaped grooves 2022 equal in number to the first elastic sheets 10412 are arranged around the bottom surface of the first chuck 202. A first convex wall 2023 is provided on the inner peripheral wall of the first chuck 202 at the position of the first hollow 2024; when the first chuck 202 is located in the first buckle cavity 104, the first hollow 2024 formed in the middle of the first chuck 202 is adapted to accommodate the first circular block 105 formed in the middle of the first buckle cavity 104, and each first positioning hole 2021 arranged around the bottom surface of the first chuck 202 corresponds to each first positioning block 10411 arranged around the bottom wall of the first buckle cavity 104 respectively, and each first arc-shaped groove 2022 arranged around the bottom surface of the first chuck 202 is respectively clamped with the first arc-shaped convex wall 104121 on the top of each first elastic sheet 10412 arranged around the bottom wall of the first buckle cavity 104, and in addition, each first limiting block 10413 arranged around the outer peripheral wall of the first circular block 105 jointly abuts against the top of the first convex wall 2023 provided on the inner peripheral wall of the first chuck 202.

[0033] During specific implementation: The first chuck 202 of the first armrest plate 20 is located in the first buckle cavity 104 of the first support plate 10, and the first hollow 2024 formed in the middle of the first chuck 202 is adapted to accommodate the first round block 105 formed in the middle of the first buckle cavity 104. When the first chuck 202 is located in the first buckle cavity 104 and is adaptively buckled by the first buckle structure 1041, the first arc-shaped grooves 2022 respectively provided around the bottom surface of the first chuck 202 are respectively clamped with the first arc-shaped convex walls 104121 at the tops of the first elastic pieces 10412 respectively provided around the bottom wall of the first buckle cavity 104, and the first limiting blocks 10413 respectively provided around the outer peripheral wall of the first round block 105 jointly abut against the top of the first convex wall 2023 provided on the inner peripheral wall of the first chuck 202, so as to limit and clamp the first chuck 202 up and down in the first buckle cavity 104, and further adaptively buckle and clamp the first armrest plate 20 in the first buckle cavity 104 of the first support plate 10. When a user uses the first armrest plate 20, the user can hold the first armrest rod 201 of the first armrest plate 20 with one hand.When the user needs to adjust the angle at which the first armrest plate 20 is adaptively buckled in the first buckle cavity 104 of the first support plate 10, the user can hold the first armrest rod 201 of the first armrest plate 20 and rotate it. When the first armrest rod 201 is rotated, the first chuck 202 is driven to rotate in the first buckle cavity 104. During the rotation of the first chuck 202, a downward pressure is exerted on each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104, so that each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104 is depressed. Thus, during the rotation of the first chuck 202 in the first buckle cavity 104, it will not be clamped and limited up and down between each of the first limiting blocks 10413 provided around the outer peripheral wall of the first round block 105 and each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104. Then the first chuck 202 can rotate in the first buckle cavity 104. When the first chuck 202 rotates in the first buckle cavity 104, each of the first arc-shaped grooves 2022 provided around the bottom surface of the first chuck 202 and the first arc-shaped convex walls 104121 at the tops of each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104 are disengaged from their original corresponding clamping positions and re-positioned for corresponding clamping. Thus, by changing the different corresponding clamping positions of each of the first arc-shaped grooves 2022 and the first arc-shaped convex walls 104121 at the tops of each of the first elastic pieces 10412, the position where the first chuck 202 is buckled in the first buckle cavity 104 can be changed, and further the angle at which the first armrest plate 20 is buckled in the first buckle cavity 104 of the first support plate 10 can be changed. And when each of the first arc-shaped grooves 2022 provided around the bottom surface of the first chuck 202 and the first arc-shaped convex walls 104121 at the tops of each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104 are re-positioned for corresponding clamping, a sound similar to "click" will be generated when each of the first arc-shaped grooves 2022 and each of the first arc-shaped convex walls 104121 come into contact and are clamped. This sound is used to remind the user that the clamping is completed. At this time, the user can stop rotating the first armrest rod 201 according to this sound signal. Then the first chuck 202 no longer exerts a downward pressure on each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104, so that each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104 rebounds and rises. Thus, the first chuck 202 is clamped and limited up and down between each of the first limiting blocks 10413 provided around the outer peripheral wall of the first round block 105 and each of the first elastic pieces 10412 provided around the bottom wall of the first buckle cavity 104, and the adjustment of the position where the first chuck 202 is adaptively buckled in the first buckle cavity 104 can be completed, and further the adjustment of the angle at which the first armrest plate 20 is adaptively buckled in the first buckle cavity 104 of the first support plate 10 can be completed.When the user holds the first handrail 201 of the first handrail board 20 and does push-ups, the first handrail 201 is subjected to the pressure of the user's hand, so that the first chuck 202 of the first handrail board 20 is pressed down in the first buckle cavity 104. When the first chuck 202 is pressed down in the first buckle cavity 104, the first chuck 202 presses down the first elastic sheets 10412 arranged around the bottom wall of the first buckle cavity 104, so that the first buckle cavity 104 can provide a space for the first chuck 202 to be pressed down. The elastic space for downward movement between the first limiting blocks 10413 disposed around the outer peripheral wall of the first circular block 105 and the first elastic sheets 10412 disposed around the bottom wall of the first buckle cavity 104 is provided. When the first chuck 202 is pressed downward in the first buckle cavity 104, the first elastic sheets 10412 disposed around the bottom wall of the first buckle cavity 104 and the first positioning blocks 10411 disposed around the bottom wall of the first buckle cavity 104 are alternately arranged, so that the first arc disposed around the bottom surface of the first chuck 202 When the first arc-shaped groove 2022 and the first arc-shaped convex wall 104121 on the top of each first elastic sheet 10412 arranged around the bottom wall of the first buckle cavity 104 are replaced and respectively correspondingly connected, the first positioning holes 2021 arranged around the bottom surface of the first chuck 202 and the first positioning blocks 10411 arranged around the bottom wall of the first buckle cavity 104 can also be replaced and respectively correspond up and down, so that the first positioning holes 2021 arranged around the bottom surface of the first chuck 202 respectively accommodate the first positioning blocks 10411 arranged around the bottom wall of the first buckle cavity 104. The first positioning blocks 10411 disposed around the bottom wall of the first buckle cavity 104 limit the first chuck 202 to the left and right, thereby realizing that the first armrest board 20 is limited to the left and right in the first buckle cavity 104 of the first support plate 10 during the process of the user doing push-ups, thereby effectively preventing the user from holding the first armrest bar 201 of the first armrest board 20 to do push-ups, causing the first armrest board 20 to shift to the left and right in the first buckle cavity 104 of the first support plate 10. Through such a setting, the user can freely rotate and adjust the angle of the first armrest board 20 located on the first support plate 10, so as to facilitate the user to hold the first armrest board 20 to do push-ups.

[0034] Among them, the above-mentioned first arc-shaped grooves 2022 are grooves with relatively shallow depths, and the above-mentioned first arc-shaped convex walls 104121 are protrusions with slightly higher heights. When the first armrest plate 20 is rotated, the arc-shaped structures of the first arc-shaped grooves 2022 can be detached along the arc-shaped structures of the first arc-shaped convex walls 104121, respectively, and the arc-shaped structures of the first arc-shaped grooves 2022 can also be snapped along the arc-shaped structures of the first arc-shaped convex walls 104121, respectively.

[0035] Please refer to Figure 1As shown, in some embodiments, the first armrest rod 201 and the first chuck 202 are integrally formed.

[0036] Specifically: The integral formation of the first armrest rod 201 and the first chuck 202 can enhance the firmness between the first armrest rod 201 and the first chuck 202. With this setting, the firmness between the first armrest rod 201 and the first chuck 202 is good and it is not easy to break.

[0037] Please refer specifically to Figure 5 and Figure 8 As shown, in some embodiments, a second round block 305 is formed in the middle of the second support plate 30 at the position of the second buckle cavity 304. The second buckle structure 3041 includes a plurality of second positioning blocks 30411 arranged around the bottom wall of the second buckle cavity 304, a plurality of second elastic sheets 30412 arranged around the bottom wall of the second buckle cavity 304, and a plurality of second limiting blocks 30413 arranged around the outer peripheral wall of the second round block 305. Each second elastic sheet 30412 and each second positioning block 30411 are arranged alternately, and a second arc-shaped convex wall 304121 is provided on the top surface of each second elastic sheet 30412; the second armrest plate 40 includes a second armrest rod 401 and a second chuck 402. The second armrest rod 401 is connected to the second chuck 402. A second hollow 4024 is formed in the middle of the second chuck 402. A plurality of second positioning holes 4021 equal in number to the second positioning blocks 30411 are arranged around the bottom surface of the second chuck 402. A plurality of second arc-shaped grooves 4022 equal in number to the second elastic sheets 30412 are arranged around the bottom surface of the second chuck 402. A second convex wall 4023 is provided on the inner peripheral wall of the second chuck 402 at the position of the second hollow 4024; when the second chuck 402 is located in the second buckle cavity 304, the second hollow 4024 formed in the middle of the second chuck 402 is adapted to accommodate the second round block 305 formed in the middle of the second buckle cavity 304, and each second positioning hole 4021 arranged around the bottom surface of the second chuck 402 and each second positioning block 30411 arranged around the bottom wall of the second buckle cavity 304 are respectively vertically corresponding, and each second arc-shaped groove 4022 arranged around the bottom surface of the second chuck 402 and the second arc-shaped convex wall 304121 at the top of each second elastic sheet 30412 arranged around the bottom wall of the second buckle cavity 304 are respectively clamped, and in addition, each second limiting block 30413 arranged around the outer peripheral wall of the second round block 305 jointly abuts against the top of the second convex wall 4023 provided on the inner peripheral wall of the second chuck 402.

[0038] During specific implementation: The second chuck 402 of the second armrest plate 40 is located in the second buckle cavity 304 of the second support plate 30, and the second hollow 4024 formed in the middle of the second chuck 402 is adapted to accommodate the second round block 305 formed in the middle of the second buckle cavity 304. When the second chuck 402 is located in the second buckle cavity 304 and is adaptively buckled by the second buckle structure 3041, the second arc-shaped grooves 4022 respectively provided around the bottom surface of the second chuck 402 are respectively clamped with the second arc-shaped convex walls 304121 at the tops of the second elastic pieces 30412 respectively provided around the bottom wall of the second buckle cavity 304, and the second limiting blocks 30413 respectively provided around the outer peripheral wall of the second round block 305 jointly abut against the top of the second convex wall 4023 provided on the inner peripheral wall of the second chuck 402, so as to limit and clamp the second chuck 402 up and down in the second buckle cavity 304, and further adaptively buckle and clamp the second armrest plate 40 in the second buckle cavity 304 of the second support plate 30. When the user uses the second armrest plate 40, the user can hold the second armrest rod 401 of the second armrest plate 40 with one hand.When the user needs to adjust the angle at which the second armrest plate 40 is adaptively buckled in the second buckle cavity 304 of the second support plate 30, the user can hold the second armrest rod 401 of the second armrest plate 40 and rotate it. When the second armrest rod 401 is rotated, the second chuck 402 is driven to rotate in the second buckle cavity 304. During the rotation of the second chuck 402, a downward pressure is exerted on each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304, so that each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304 is depressed. Thus, during the rotation of the second chuck 402 in the second buckle cavity 304, it will not be clamped up and down between each of the second limiting blocks 30413 provided around the outer peripheral wall of the second circular block 305 and each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304. Then the second chuck 402 can rotate in the second buckle cavity 304. When the second chuck 402 rotates in the second buckle cavity 304, each of the second arc-shaped grooves 4022 provided around the bottom surface of the second chuck 402 is disengaged from the original corresponding clamping positions with the second arc-shaped convex walls 304121 at the tops of each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304 and then re-engaged with different corresponding positions. Thus, by changing the different corresponding clamping positions of each of the second arc-shaped grooves 4022 and the second arc-shaped convex walls 304121 at the tops of each of the second elastic pieces 30412, the position where the second chuck 402 is buckled in the second buckle cavity 304 can be changed, and further the angle at which the second armrest plate 40 is buckled in the second buckle cavity 304 of the second support plate 30 can be changed. And when each of the second arc-shaped grooves 4022 provided around the bottom surface of the second chuck 402 is re-engaged with the second arc-shaped convex walls 304121 at the tops of each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304 at different corresponding positions, a sound similar to "click" will be generated when each of the second arc-shaped grooves 4022 contacts and engages with each of the second arc-shaped convex walls 304121. This sound is used to remind the user that the buckling is completed. At this time, the user can stop rotating the second armrest rod 401 according to this sound signal. Then the second chuck 402 no longer exerts a downward pressure on each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304, so that each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304 rebounds and rises. Thus, the second chuck 402 is clamped up and down between each of the second limiting blocks 30413 provided around the outer peripheral wall of the second circular block 305 and each of the second elastic pieces 30412 provided around the bottom wall of the second buckle cavity 304, and the adjustment of the position where the second chuck 402 is adaptively buckled in the second buckle cavity 304 can be completed. Further, the adjustment of the angle at which the second armrest plate 40 is adaptively buckled in the second buckle cavity 304 of the second support plate 30 can be completed.When the user does push - up exercises by holding the second handrail rod 401 of the second handrail plate 40, due to the hand pressure of the user on the second handrail rod 401, the second chuck 402 of the second handrail plate 40 presses down in the second buckle cavity 304. When the second chuck 402 presses down in the second buckle cavity 304, the second chuck 402 presses down on each second elastic piece 30412 provided around the bottom wall of the second buckle cavity 304. Thus, the second buckle cavity 304 can provide an elastic space for the second chuck 402 to move downward between each second limiting block 30413 provided around the outer peripheral wall of the second round block 305 and each second elastic piece 30412 provided around the bottom wall of the second buckle cavity 304. When the second chuck 402 moves downward in the second buckle cavity 304, since each second elastic piece 30412 provided around the bottom wall of the second buckle cavity 304 and each second positioning block 30411 provided around the bottom wall of the second buckle cavity 304 are arranged alternately, when the second arc - shaped groove 4022 provided around the bottom surface of the second chuck 402 and the second arc - shaped convex wall 304121 at the top of each second elastic piece 30412 provided around the bottom wall of the second buckle cavity 304 are transposed and respectively correspond and are clamped, each second positioning hole 4021 provided around the bottom surface of the second chuck 402 and each second positioning block 30411 provided around the bottom wall of the second buckle cavity 304 can also be transposed and respectively correspond up and down. Thus, each second positioning hole 4021 provided around the bottom surface of the second chuck 402 respectively accommodates each second positioning block 30411 provided around the bottom wall of the second buckle cavity 304. Then, each second positioning block 30411 provided around the bottom wall of the second buckle cavity 304 limits the second chuck 402 left and right. Furthermore, when the second handrail plate 40 is under the pressure of the user doing push - ups, it is limited left and right in the second buckle cavity 304 of the second support plate 30. Thus, it effectively prevents the second handrail plate 40 from shifting left and right in the second buckle cavity 304 of the second support plate 30 when the user holds the second handrail rod 401 of the second handrail plate 40 to do push - ups. Through such a setting, the user can freely rotate and adjust the angle of the second handrail plate 40 located on the second support plate 30, thus facilitating the user to hold the second handrail plate 40 to do push - up exercises.

[0039] Among them, each of the above - mentioned second arc - shaped grooves 4022 is a groove with a relatively shallow depth, and each of the above - mentioned second arc - shaped convex walls 304121 is a protrusion with a micro - height. When the second handrail plate 40 is rotated, the arc - shaped structures of each second arc - shaped groove 4022 can respectively and smoothly disengage along the arc - shaped structures of each second arc - shaped convex wall 304121, and the arc - shaped structures of each second arc - shaped groove 4022 can also respectively and smoothly be clamped along the arc - shaped structures of each second arc - shaped convex wall 304121.

[0040] Please refer to Figure 1As shown, in some embodiments, the second armrest rod 401 and the second chuck 402 are integrally formed.

[0041] Specifically: The integral formation of the second armrest rod 401 and the second chuck 402 can enhance the firmness between the second armrest rod 401 and the second chuck 402. With such a setting, the firmness between the second armrest rod 401 and the second chuck 402 is good and not easily broken.

[0042] Please refer specifically to Figure 1 , Figure 2 , Figure 9 and Figure 10 As shown, in some embodiments, a first connecting rod 101 is hinged to one side of the first support plate 10, and a second connecting rod 301 is hinged to one side of the second support plate 30; a plurality of first card holes 1011 are opened downward on the first connecting rod 101, a second convex block 302 is provided on the other side of the second support plate 30, and any one of the first card holes 1011 opened downward on the first connecting rod 101 can be engaged with the second convex block 302 provided on the other side of the second support plate 30; a plurality of second card holes 3011 are opened downward on the second connecting rod 301, a first convex block 102 is provided on the other side of the first support plate 10, and any one of the second card holes 3011 opened downward on the second connecting rod 301 can be engaged with the first convex block 102 provided on the other side of the first support plate 10.

[0043] During specific implementation: When the first support plate 10 of the first support assembly 100 and the second support plate 30 of the second support assembly 200 are unfolded and connected to each other for use, any one of the first card holes 1011 in the first connecting rod 101 of the first support plate 10 can be clamped with the second convex block 302 of the second support plate 30, and any one of the second card holes 3011 in the second connecting rod 301 of the second support plate 30 can be clamped with the first convex block 102 of the first support plate 10, so as to realize the unfolded connection and use of the first support plate 10 of the first support assembly 100 and the second support plate 30 of the second support assembly 200. When adjusting the distance between the first support plate 10 of the first support assembly 100 and the second support plate 30 of the second support assembly 200, by manually adjusting different first card holes 1011 in the first connecting rod 101 of the first support plate 10 to be clamped with the second convex block 302 of the second support plate 30, and correspondingly adjusting different second card holes 3011 in the second connecting rod 301 of the second support plate 30 to be clamped with the first convex block 102 of the first support plate 10, the adjustment of the distance between the first support plate 10 of the first support assembly 100 and the second support plate 30 of the second support assembly 200 can be completed. Through such a setting, the user can freely adjust the distance between the first support plate 10 of the first support assembly 100 and the second support plate 30 of the second support assembly 200, and further can realize the adjustment of the distance between the first armrest rod 201 on the first support plate 10 and the second armrest rod 401 on the second support plate 30, so as to facilitate the user to hold the first armrest rod 201 on the first support plate 10 and the second armrest rod 401 on the second support plate 30 with both hands respectively to do push-up exercises.

[0044] Please refer to Figure 1 , Figure 2 , Figure 9 and Figure 10 shown. In some embodiments, a third card hole 1012 is opened upward on the first connecting rod 101, and a third convex block 103 is provided on the other side of the first support plate 10. The third card hole 1012 opened upward on the first connecting rod 101 is used to be clamped with the third convex block 103 provided on the other side of the first support plate 10; a fourth card hole 3012 is opened upward on the second connecting rod 301, and a fourth convex block 303 is provided on the other side of the second support plate 30. The fourth card hole 3012 opened upward on the second connecting rod 301 is used to be clamped with the fourth convex block 303 provided on the other side of the second support plate 30.

[0045] During specific implementation: When the first support component 100 and the second support component 200 are stacked and stored, the user can reversely rotate the first connecting rod 101 on the first support plate 10, so that the first locking hole 1011 of the first connecting rod 101 is disengaged from the second convex block 302 of the second support plate 30, and the third locking hole 1012 of the first connecting rod 101 is engaged with the third convex block 103 of the first support plate 10. Then, the first support plate 10 completes the retraction of the first connecting rod 101. Next, the second connecting rod 301 is reversely rotated on the second support plate 30, so that the second locking hole 3011 of the second connecting rod 301 is disengaged from the first convex block 102 of the first support plate 10, and the fourth locking hole 3012 of the second connecting rod 301 is engaged with the fourth convex block 303 of the second support plate 30. Then, the second support plate 30 completes the retraction of the second connecting rod 301. Finally, the opposite side of the first support plate 10 with the first armrest plate 20 buckled is overlapped with the opposite side of the second support plate 30 with the second armrest plate 40 buckled, and the overlapping storage of the first support component 100 and the second support component 200 can be completed. Thus, the user can optionally store the overlapped first support component 100 and second support component 200, such as in a backpack. Through such a setting, the first support component 100 and the second support component 200 can be overlapped and stored by the user.

[0046] Please refer particularly to Figure 4 and Figure 7 As shown, in some embodiments, the top of each first limiting block 10413 is provided with a downward inclined surface.

[0047] During specific implementation: When the first armrest plate 20 is buckled and assembled in the first buckle cavity 104 of the first support plate 10, the first chuck 202 of the first armrest plate 20 can be manually pressed into the first buckle cavity 104 of the first support plate 10. When the first chuck 202 of the first armrest plate 20 is pressed into the first buckle cavity 104 of the first support plate 10, since the top of each first limiting block 10413 is a downward inclined surface, the first convex wall 2023 provided around the inner wall of the hollow part of the first chuck 202 of the first armrest plate 20 can slide along the downward inclined surface of the top of each first limiting block 10413, pass through each first limiting block 10413, and reach the bottom of the first limiting block 10413 to abut against the first limiting block 10413, thereby buckling the first chuck 202 in the first buckle cavity 104 of the first support plate 10, and further completing the buckling and assembly of the first armrest plate 20 in the first buckle cavity 104 of the first support plate 10. Through such a setting, it is convenient to buckle and assemble the first armrest plate 20 in the first buckle cavity 104 of the first support plate 10.

[0048] Please refer particularly to Figure 5and Figure 8 As shown in Figure 8 , in some embodiments, the top of each second limiting block 30413 is provided with a downward inclined surface.

[0049] During specific implementation: when the second armrest plate 40 is snap - assembled into the second snap - cavity 304 of the second support plate 30, the second chuck 402 of the second armrest plate 40 can be manually pressed into the second snap - cavity 304 of the second support plate 30. When the second chuck 402 of the second armrest plate 40 is pressed into the second snap - cavity 304 of the second support plate 30, since the top of each second limiting block 30413 is a downward inclined surface, the second convex wall 4023 circumferentially arranged on the inner wall of the hollow part of the second chuck 402 can slide along the downward inclined surface of the top of each second limiting block 30413, pass through each second limiting block 30413, and reach the bottom of the second limiting block 30413 to abut against the second limiting block 30413, thereby snapping the second chuck 402 in the second snap - cavity 304 of the second support plate 30, and further completing the snap - assembly of the second armrest plate 40 into the second snap - cavity 304 of the second support plate 30. Through such a setting, it is convenient to snap - assemble the second armrest plate 40 into the second snap - cavity 304 of the second support plate 30.

[0050] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above - mentioned exemplary embodiments, and without departing from the spirit or basic features of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non - restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0051] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A push-up stand, characterized in that: It includes a first support component and a second support component that are relatively connected; the first support component includes a first support plate and a first armrest plate, the first support plate is provided with a circle of first snap-in cavities, the first snap-in cavity is provided with a first snap-in structure, the first armrest plate can be located in the first snap-in cavity at different angles and snap-fit ​​with the first snap-in structure; the second support component includes a second support plate and a second armrest plate, the second support plate is provided with a circle of second snap-in cavities, the second snap-in cavity is provided with a second snap-in structure, the second armrest plate can be located in the second snap-in cavity at different angles and snap-fit ​​with the second snap-in structure.

2. The push-up stand according to claim 1, characterized in that: A first round block is formed on the first supporting plate in the middle of the first buckle cavity, and the first buckle structure includes a plurality of first positioning blocks arranged around the bottom wall of the first buckle cavity, a plurality of first elastic sheets arranged around the bottom wall of the first buckle cavity, and a plurality of first limiting blocks arranged around the outer peripheral wall of the first round block, each of the first elastic sheets and each of the first positioning blocks is alternately arranged, and the top surface of each of the first elastic sheets is provided with a first arc-shaped convex wall; the first handrail plate includes a first handrail rod and a first chuck, the first handrail rod is connected to the first chuck, a first hollow is opened in the middle of the first chuck, a bottom surface of the first chuck is surrounded by a first positioning hole of the same number as the first positioning block, and a first positioning hole is arranged around the bottom surface of the first chuck There are the same number of first arc-shaped grooves as the first elastic sheet, and the inner wall of the first chuck located at the first hollow is provided with a circle of first convex walls; when the first chuck is located in the first buckle cavity, the first hollow opened in the middle of the first chuck is adapted to accommodate the first round block formed in the middle of the first buckle cavity, and the first positioning holes arranged around the bottom surface of the first chuck correspond to the first positioning blocks arranged around the bottom wall of the first buckle cavity respectively, and the first arc-shaped grooves arranged around the bottom surface of the first chuck are respectively clamped with the first arc-shaped convex walls on the top of the first elastic sheets arranged around the bottom wall of the first buckle cavity, and the first limit blocks arranged around the outer wall of the first round block jointly abut the top of the first convex wall arranged on the inner wall of the first chuck.

3. The push-up stand according to claim 2, characterized in that: The first handrail and the first chuck are integrally formed.

4. The push-up stand according to claim 1, characterized in that: A second round block is formed on the second supporting plate in the middle of the second buckle cavity, and the second buckle structure includes a plurality of second positioning blocks arranged around the bottom wall of the second buckle cavity, a plurality of second elastic sheets arranged around the bottom wall of the second buckle cavity, and a plurality of second limiting blocks arranged around the outer peripheral wall of the second round block, each of the second elastic sheets and each of the second positioning blocks are arranged alternately, and the top surface of each of the second elastic sheets is provided with a second arc-shaped convex wall; the second armrest plate includes a second armrest rod and a second chuck, the second armrest rod is connected to the second chuck, a second hollow is opened in the middle of the second chuck, a second positioning hole of the same number as the second positioning block is arranged around the bottom surface of the second chuck, and a second positioning hole of the same number as the second positioning block is arranged around the bottom surface of the second chuck There are the same number of second arc grooves as the second elastic sheet, and the inner wall of the second chuck located at the second hollow part is provided with a circle of second convex walls; when the second chuck is located in the second buckle cavity, the second hollow opened in the middle of the second chuck is adapted to accommodate the second round block formed in the middle of the second buckle cavity, and the second positioning holes arranged around the bottom surface of the second chuck and the second positioning blocks arranged around the bottom wall of the second buckle cavity respectively correspond to each other up and down, and the second arc grooves arranged around the bottom surface of the second chuck are respectively clamped with the second arc convex walls on the top of the second elastic sheets arranged around the bottom wall of the second buckle cavity, and the second limit blocks arranged around the outer wall of the second round block jointly abut the top of the second convex wall arranged on the inner wall of the second chuck.

5. The push-up stand according to claim 4, characterized in that: The second handrail and the second chuck are integrally formed.

6. The push-up stand according to claim 1, characterized in that: A first connecting rod is hinged on one side of the first support plate, and a second connecting rod is hinged on one side of the second support plate; a plurality of first clamping holes are opened downward on the first connecting rod, and a second protrusion is provided on the other side of the second support plate, and any first clamping hole of each first clamping hole opened downward on the first connecting rod can be clamped with the second protrusion provided on the other side of the second support plate; a plurality of second clamping holes are opened downward on the second connecting rod, and a first protrusion is provided on the other side of the first support plate, and any second clamping hole of each second clamping hole opened downward on the second connecting rod can be clamped with the first protrusion provided on the other side of the first support plate.

7. The push-up stand according to claim 6, characterized in that: A third clamping hole is opened upward on the first connecting rod, and a third protrusion is provided on the other side of the first support plate. The third clamping hole opened upward on the first connecting rod is used to clamp with the third protrusion provided on the other side of the first support plate; a fourth clamping hole is opened upward on the second connecting rod, and a fourth protrusion is provided on the other side of the second support plate. The fourth clamping hole opened upward on the second connecting rod is used to clamp with the fourth protrusion provided on the other side of the second support plate.

8. The push-up stand according to claim 2, characterized in that: The top of each of the first limiting blocks is configured as a downwardly inclined surface.

9. The push-up stand according to claim 4, characterized in that: The top of each of the second limit blocks is configured as a downwardly inclined surface.

Citation Information

Cited By

  • Push-up support

    CN118698103A