This application claims priority to China Patent Application No. CN201810461905.7 filed May 15, 2018.
The applications and all patents, patent applications, articles, books, specifications, other publications, documents, and things referenced herein are hereby incorporated herein in their entirety for all purposes. To the extent of any inconsistency or conflict in the definition or use of a term between any of the incorporated publications, documents, or things and the text of the present document, the definition or use of the term in the present document shall prevail.
The present invention belongs to the technical field of exercise equipment and relates to a horizontal bar device, and more particularly to a horizontal bar device capable of height adjustment.
With the continuous development of technology, people gradually pay more attention to physical exercise, but for various reasons, most people do not want or are not willing to exercise in the gym, but prefer to buy home fitness equipment and exercise directly at home.
The existing horizontal bar frame is a relatively common fitness equipment. When the horizontal bar frame is installed indoors, the height of the horizontal bar needs to be adjusted often due to different heights of the people using it. The existing horizontal bar frames generally use holes in the mounting tube, the horizontal bar is plug-connected into the holes of corresponding height, and the horizontal bar is fixed to the mounting tube by bolts. For example, one prior artdiscloses an adjustable four-sided horizontal bars including a base frame and four vertical columns connected to the base frame. A plurality of lateral positioning holes and a plurality of longitudinal positioning holes are disposed in the vertical columns. Lateral horizontal bars are fixed on the vertical columns through the lateral positioning holes and lateral positioning screws, and longitudinal horizontal bars are fixed on the vertical columns through the longitudinal positioning holes and longitudinal positioning screws.
Since the human hands hold onto the horizontal bar during use, the horizontal bar is subjected to vertical downward acting force, and the locking screws lock the sleeves on the vertical columns in the radial direction of the vertical columns, the positions where the locking screws contact the sleeves are subjected to downward pulling stress, and long-term use will cause the locking screws at the portions to be easily deformed and broken. Since the horizontal bar is a straight rod, when a person performs actions on the horizontal bar, the horizontal bar is deformed downwardly at the portion where force is exerted, thereby the sleeves at both ends of the horizontal bar are pulled inwardly, resulting in the tendency of the locking screws to move outward relative to the sleeves, it is easy for the locking screws to disengage from the vertical columns, or it is easy for them to break, which makes the stability of the horizontal bar frame worse. Furthermore, when the horizontal bar frame is not used, the horizontal bar frame can only be completely disassembled and stored, which makes the assembling, disassembling and storage of the horizontal bar frame inconvenient.
One object of one embodiment of the present invention is to solve the above problems in the prior art by providing a horizontal bar device. The technical problems to be solved by the present invention are how to make the horizontal bar convenient to adjust while improving the stability.
One object of one embodiment of the present invention can be achieved by the following technical solutions: a horizontal bar device, comprising at least three vertically disposed struts, and crossbars connected between the two adjacent struts, wherein a plurality of sleeves are sleeved on an upper part of each of the struts with the sleeves being stacked on top of one another, each end of each of the crossbars is fixedly connected to one of the sleeves, and each of the struts has a blocking surface capable of preventing the sleeves from sliding downward.
One embodiment of the three struts can form a three-dimensional frame, and more than three of the struts, such as four or five, can also form a three-dimensional frame to stand up on the ground. The two ends of the crossbar are fixedly connected with the sleeves, and the crossbars are disposed on the struts with the sleeves being stacked on top of one another over the struts. Different stacking orders of the sleeves will produce different heights of the crossbars, and the way in which the sleeves being stacked on top of one another replaces the fixing method of pin insertion. The crossbars are horizontally connected, and the force exerted on the sleeve is only in the axial direction of the sleeve without radial shearing force, which improves the stability.
According to one embodiment of the horizontal bar device described above, the blocking surface can be an annular surface on the strut abutting against a lower end surface of the sleeve, and the annular surface can be an end surface of a tube body or a shoulder formed by compression, or an externally connected shoulder. The blocking surface can also be a convex pin or blocker connected to the strut.
According to one embodiment of the horizontal bar device described above, the sleeves stacking on top of one another are pressed firmly against the blocking surface by a locking sleeve and a fastener, and a positioning structure is disposed between the two adjacent sleeves capable of preventing rotation of the sleeves. Positioning of the positioning structure can be released after the fastener is loosened, and more than four of the struts can be folded, because the two ends of the crossbar are pivotally connected to the struts via the sleeves, and more than four of the crossbars form a movable polygon structure, while the positioning structure can improve the stability of the unfolded horizontal bar device.
According to one embodiment of the horizontal bar device described above, the shape of the strut is also improved, a leg tube of the strut comprises an inclined portion, the inclined portion can be formed into a segmented structure or an integral structure. An upper end of the inclined portion is bent upwardly to form a vertical mounting portion, and a lower end thereof is bent downwardly to form a vertical support portion. The support portion is connected with a footing, an upper surface of each of the footings has a vertical connector, and the support portion is plug-connected to the connector.
One embodiment of the segmented inclined portion comprises at least two tube bodies, and the two neighboring tube bodies are connected, with connection being made through their respective plug-connection to a connecting tube in-between, and such structure allows greater height adjustment.
Compared with the prior art, one embodiment of the horizontal bar device of the present invention has the following advantages:
1. During use, the human hands hold onto the crossbar, and the crossbar is subjected to vertical downward acting force, so that the sleeves connected to the crossbar are pressured downwardly, and the force exerted is only in the axial direction of the sleeves without radial shearing force. When the stacked sleeves transmit the force to the blocking structure, because the blocking surface is an annular surface, especially the annular surface formed by an end surface of the strut, the force exerted is also along the axial direction, and therefore the stability is very high. The fastener connected to the locking sleeve is only subjected to its own tightening force, and is not subjected to the shearing force and thrust of the sleeve connected with the crossbar, thereby ensuring the stability of the connection.
2. The fastener is rotated to move outward a certain distance. At this time, the sleeves and the locking sleeve are both loosened, and the two diagonal struts are drawn close to each other by an external force. After the two diagonal struts abut with each other, the entire horizontal bar device is flat, and the horizontal bar device is convenient for folding and storage.
and
The technical solutions of the present invention are further described below with reference to the specific embodiments of the present invention in conjunction with the accompanied drawings, but the present invention is not limited to these embodiments.
One embodiment of a horizontal bar device is a three-dimensional frame that can be folded, or disassembled to be stored, or unfolded to be placed on a horizontal ground. As shown in
An outer peripheral surface of the upper end portion of one embodiment of the strut 1 has a blocking surface 13 capable of preventing the sleeves 2 from sliding downward. More than two of the sleeve 2 on each of the struts 1 is provided, and the bottommost sleeve 2 abuts against the blocking surface 13. An upper end of the strut 1 is sleeved with a locking sleeve 4 that cooperates with the blocking surface 13 to press the sleeves 2 tightly, and the locking sleeve 4 is locked on the strut 1 by a fastener 5.
As shown in
In order to further improve the stability, as shown in
When the horizontal bar device is unfolded to form the three-dimensional frame, as shown in
One embodiment of the sleeves 2 sleeved over the straight tube 1b are rotatable with the straight tube 1b as an axis. When the horizontal bar device needs to be folded for storage, the fastener 5 is unscrewed loose to release the pressing state of the locking sleeve 4, so that sufficient clearance is provided between the sleeves 2 to release the restriction of the positioning structure in order to allow the sleeves 2 to be capable of rotating freely. Then, the two diagonal struts 1 are pressed towards the center and close to each other, and the other two diagonal struts 1 are moved outwardlyaway from each other, thereby the horizontal bar device is folded flatly to be stored away.
For ease of storage, as shown in
The horizontal bar device is placed on a flat ground for use, one embodiment of the sleeves 2 are sleeved all together on top of one another on the strut 1, and the sleeves 2 of each of the crossbars 3 are sleeved at corresponding heights as needed. Then the locking sleeve 4 is sleeved, and the sleeves 2 are pressed tightly between the blocking surface 13 and the locking sleeve 4 by the fastener 5. By the positioning structure, the sleeves 2 cannot be rotated relative to the strut 1, and finally the footings 9 are plug-connected to form the stable three-dimensional frame. During use, the human hands hold onto the crossbar 3, and the crossbar 3 is subjected to vertical downward acting force, so that the sleeves 2 connected to the crossbar 3 are pressured downwardly without being pushed upwardly. At this time, the fastener 5 connected to the locking sleeve 4 is only subjected to its own tightening force, and is not subjected to the shearing force and thrust of the sleeve 2 connected with the crossbar 3. During use, the fastener 5 and the strut 1 are thread connected more securely, which prevents the fastener 5 from loosening during use, and improves the stability of the horizontal bar device. In addition, some of the sleeves 2 are fixedly connected with the crossbar 3, and some of the sleeves 2 are not fixedly connected with the crossbar 3, so it is only necessary to take out the fastener 5, to take out the locking sleeve 4, to take out the sleeves 2 to be adjusted, and then the sleeves 2 can be re-arranged and combined as needed to achieve height adjustment of the crossbars 3.
When the horizontal bar device is not in use, one embodiment of the fastener 5 is unscrewed to retract outward a certain distance. At this time, the sleeves 2 and the locking sleeve 4 are both loosened, and both the sleeves 2 and the locking sleeve 4 are rotatable relative to the strut 1 and are capable of sliding upward and downward along the strut 1. The two diagonal struts 1 are drawn close to each other by an external force. After the two diagonal struts 1 abut with each other, the entire horizontal bar device is flat, and the horizontal bar device is convenient for folding and storage.
The embodiment 2 is basically the same as the embodiment 1, the difference lie in the blocking surface 13 as shown in
The embodiment 3 is basically the same as the embodiment 1, as shown in
The embodiment 4 is basically the same as the embodiment 1, as shown in
The specific embodiments described herein are merely illustrative of the spirit of the present invention. Technical personnel skilled in the art to which the present invention pertains can make various modifications or additions to the specific embodiments described or replace them in a similar manner, without departing from the spirit of the present invention or beyond the scope defined by the appended claims.
Number | Date | Country | Kind |
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201810461905.7 | May 2018 | CN | national |