PULL-UP DEVICE CAPABLE OF TRAINING FINGER GRIP FORCE
20200391076 ยท 2020-12-17
Inventors
Cpc classification
A63B2210/50
HUMAN NECESSITIES
A63B23/1209
HUMAN NECESSITIES
A63B23/1227
HUMAN NECESSITIES
International classification
Abstract
The invention discloses a pull-up device capable of training finger grip force. It is equipped with bracket to fix the left and right climbing components in the air. Meanwhile, the climbing component is equipped with knuckle receiving portion to permit the fingers to hold the knuckle receiving portion for pull-ups. With the setting of the climbing component, we no longer hold the crossbar, but just grip the climbing component by the fingers when we do pull-ups. Thus, the grip force of the knuckle muscles is exercised as well as the arm strength.
Claims
1. A pull-up device capable of training finger grip force, comprising: a bracket; and left and right climbing components on the bracket; wherein the climbing component is equipped with a knuckle receiving portion to permit the fingers to hold the knuckle receiving portion for pull-ups.
2. The pull-up device of training finger grip force according to claim 1, wherein the climbing component is round and the knuckle receiving portion is set in a sunken location on an outer edge of the round climbing component.
3. The pull-up device of training finger grip force according to claim 2, wherein a cushion is provided in the sunken location for more comfortable gripping.
4. The pull-up device of training finger grip force according to claim 2, wherein two screw holes are set in the middle of the climbing component for fixed connection with the bracket.
5. The pull-up device of training finger grip force according to claim 4, wherein the bracket consists of a left bracket upright tube, a right bracket upright tube and an upper bracket crossbar, wherein upper ends of the left and right bracket upright tubes extend forward agley, and an upper bracket crossbar is set in a rear side of the climbing component to adapt the sunken location; the two screw holes are located in the upper bracket crossbar to adapt upper and lower sides of the sunken location; via the two screw holes, the left and right climbing components are fixed and connected to the upper ends of the left and right bracket upright tubes, wherein a left end of the upper bracket crossbar is located in the sunken location of the upper bracket crossbar on the left climbing component, and it is fixed between the left climbing component and the left bracket upright tube's upper end via connection of the left climbing component and the upper end of the left bracket, wherein a right end of the upper bracket crossbar is located in the sunken location of the upper bracket crossbar on the right climbing component, and it is fixed between the right climbing component and the right bracket upright tube's upper end via connection of the right climbing component and the upper end of the right bracket upright tube.
6. The pull-up device of training finger grip force according to claim 5, wherein the sunken location on the upper bracket crossbar of the climbing component has left and right ends as the downward sloping pull-up handle.
7. The pull-up device of training finger grip force according to claim 5, wherein the left and right bracket upright tubes are telescopic rods with height adjustable.
8. The pull-up device of training finger grip force according to claim 1, wherein the bracket consists of a left bracket upright tube, a right bracket upright tube, a backrest frame, a backrest fix mount and a backrest; a left end of the backrest fix mount is fixedly connected to a left bracket upright, and a right end of the backrest fix mount is fixedly connected to a right bracket upright; the middle of the backrest fix mount is provided with the backrest frame, and the backrest be back and forth adjusted on the backrest frame.
9. The pull-up device of training finger grip force according to claim 8, wherein the backrest frame consists of a hollow tube frame and a sliding tube frame; the hollow tube frame is fixedly connected to the backrest fixed mount, and the sliding tube frame slide front and back and is connected to the hollow tube frame, wherein holes are set on the side of the hollow tube frame and a front and back adjustment knob bolt for adjusting position of the tube is installed within the through hole; the backrest consists of a backrest pad, a slide rail, and a slide rail seat; the slide rail seat is disposed in an up and down direction and is fixed on the sliding tube frame, wherein the slide rail is coupled to the slide rail seat by up and down adjustment, and the backrest is fixed on the slide rail; the sides of the slide rail seat have through holes set, and a up and down adjustment knob bolt for adjusting position of the slide rail is installed within the through hole.
10. The pull-up device of training finger grip force according to claim 5, wherein a handrail frame is included, and the handrail frame comprises a left connecting crossbar, a left armrest bar, a right connecting crossbar and a right armrest bar; a rear end of the left connecting crossbar is fixedly connected with the left bracket upright tube, and a front end of the left connecting crossbar is connected with the left armrest bar; a rear end of the right connecting crossbar is fixedly connected with the right bracket upright tube, and a front end of the right connecting crossbar is connected with the right armrest bar; the left connecting crossbar and the right connecting crossbar are telescopic rods with length adjustable, which is used for adjusting the position of the handrail frame from left, right, front and back; the left connecting crossbar and the right connecting crossbar are provided with elbow pads.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0028] Further description of the invention with reference to the attached figures will be conducted. The figures are simplified diagrams, and the basic structure of the invention is illustrated in a schematic manner only, thus, only the configurations related to the invention are shown.
[0029] As for the description in the application, it should be noted that the terms of orientation or position relationships such as longitudinal, radial, length, width, thickness, upper, lower, left, right, front, back, vertical, horizontal, top, bottom, inside, outside, etc. are based on the orientation or position relationships shown in the attached figures. They are for easy description of this invention, rather than indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation. Therefore, they cannot be understood as a limitation of the invention. In the description of the application, multiple means two or more unless otherwise stated.
[0030] As for the description in the application, it should be noted that, unless otherwise specifically defined, the terms installation, link, and connection shall be understood broadly. For example, the connection can be fixed, detachable, integral, mechanical or electrical connection; it can be direct connection, or connected indirectly through an intermediation, which can be internal communication between two components. The common technicians in this area can understand the specific meanings of the above terms in the application based on the specific circumstances.
[0031] As shown in
[0032] The above-mentioned technical solution refers to a pull-up device capable of training finger grip force. It is equipped with bracket 1 to fix the left and right climbing component 2 in the air. Meanwhile, the climbing component 2 is equipped with knuckle receiving portion 21 to permit the fingers to hold the knuckle receiving portion 21 for pull-ups. With the setting of the climbing component 2, we no longer hold the crossbar, but just grip the climbing component 2 by the fingers when we do pull-ups. Thus, the grip force of the knuckle muscles is exercised as well as the arm strength. The main embodiment: the original crossbar grip is mainly for exercise of arm strength, and the grip force of the first knuckle and muscles of the palm. Exercises of the muscle grip force on the first knuckle and the second knuckle are incidental to the gripping, but not weight training of the second knuckle and the third knuckle of the fingers. With the climbing components, as the weight of the human body specifically use the fingers to firmly hold the climbing components, so it is mainly for exercise of the arm strength, the muscle grip force of the first knuckle and the second knuckle, while the exercises of the first knuckle and muscles of the palm are incidental.
[0033] It should be noted that the structure on the ground supported by the bracket 1 is also various, and it may be directly supported on the ground or indirectly supported on the ground by suspension mounting. It could be the bracket in
[0034] As shown in
[0035] In some implementations, cushion 211 is provided in the said sunken location 21 for more comfortable gripping. It aims to enhance comfort degree without wearing or scratching your fingers.
[0036] As shown in
[0037] As shown in
[0038] In some implementations, the said sunken location 23 on upper bracket crossbar 13 of the climbing component 2 has its left and right ends as the downward sloping pull-up handle 131.
[0039] In some implementations, the said left bracket upright tube 11 and right bracket upright tube 12 are telescopic rods with height adjustable, which makes the height of climbing component 2 and upper bracket crossbar 13 adjustable and it is suitable for users of different height. There are many setting modes of the telescopic rods. In this implementation, the left bracket upright tube 11 or the right bracket upright tube 12 is divided into upper and lower sections; the upper section is inserted into the lower section, and fastening screw knobs, fixing holes etc. are set as shown in
[0040] As shown in
[0041] As shown in
[0042] In some implementations, handrail frame 17 is included. It comprising left connecting crossbar 171, left armrest bar 172, right connecting crossbar 173 and right armrest bar 174; the rear end of the left connecting crossbar 171 is fixedly connected with the left bracket upright tube 11, and the front end of the left connecting crossbar 171 is connected with left armrest bar 172; the rear end of the right connecting crossbar 173 is fixedly connected with the right bracket upright tube 12, and the front end of the right connecting crossbar 173 is connected with right armrest bar 174; the said left connecting crossbar 171 and the right connecting crossbar 173 are telescopic rods with length adjustable, which is used for adjusting the position of the left handrail frame 172, right handrail frame 174 front and back; the left connecting crossbar 171 and right connecting crossbar 173 are provided with elbow pads 175. Similarly, the telescopic mode of the left bracket upright tube and right bracket upright tube could be adopted for telescopic setting of the left connecting crossbar and right connecting crossbar, or other structures could also be adopted.
[0043] In the application, the descriptions of the left bracket upright tube, the right bracket upright tube, etc. are not specifically the solid tubes, they could be hollow tubes; the tube equals to pole, and all of them belong to the present application. All these belong to the protection scope of this application.
[0044] According to the above implementations of this invention, and based on the said specification, the related staff can make various changes and modifications to this document within the technical scope of the invention. The technical scope of the invention is not limited to the contents of the specification, but shall be determined as per the scope of the claims.