Deployable container fitness system
By employing a combination of telescopic and rotating mounting racks in the fitness container, the problem of not being able to deploy fitness equipment simultaneously without increasing the container's length has been solved in existing technologies. This enables the effective use and storage of fitness equipment, improving fitness results and space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-13
- Publication Date
- 2026-03-10
AI Technical Summary
Existing fitness shipping containers cannot deploy fitness equipment simultaneously at both the first and second windows without increasing the container's length.
The design combines telescopic and rotating mounting frames. The telescopic mounting frame is pulled out through the first window, while the rotating mounting frame is rotated out through the second window. The two work together to utilize the external space of the container. When stored, the rotating mounting frame is retracted into the container.
It enables the deployment of fitness equipment through two windows without increasing the length of the container, allowing users to exercise using the external space of the container. The compact structure improves the fitness effect and space utilization when stored.
Smart Images

Figure CN117258262B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to fitness equipment, specifically to a deployable container fitness system. Background Technology
[0002] To enable the entire fitness facility to be moved to any location, especially to outdoor areas with good air quality, a fitness container was designed.
[0003] The aforementioned fitness container includes: a container body, a first door, a second door, a guide seat, and a first mounting frame. The container body has a first window and a second window on its side, with the side containing the first window perpendicular to the side containing the second window. The first window is opened and closed by the first door, and the second window is opened and closed by the second door. A guide seat is fixed inside the container body, guiding the first mounting frame to move. The first mounting frame moves in the direction of extension and retraction, which is perpendicular to the side containing the first window. The first mounting frame can be pulled out from the first window, and several fitness equipment are mounted on the first mounting frame.
[0004] The aforementioned fitness container allows the first door to be opened upon arrival at the designated location, enabling the first mounting rack to be pulled out and exposing some fitness equipment to provide ample exercise space. While the first mounting rack can be pulled out through the first window, the fitness container still has the following problems:
[0005] Since the length of the first mounting bracket is perpendicular to the side where the first window is located, and also perpendicular to the side where the second window is located, if a second mounting bracket is installed at the second window, and the extension / retraction direction of the second mounting bracket is perpendicular to the length of the first mounting bracket, the overall length of the container body along the length of the first mounting bracket would be significantly longer. Therefore, how to deploy the fitness equipment at the second window without increasing the overall length of the container body is a pressing issue that needs to be addressed. Summary of the Invention
[0006] The present invention provides a deployable container fitness system, which solves the problem in the prior art that it is impossible to deploy the installation frame of fitness equipment at both the first and second windows without increasing the length of the container.
[0007] To achieve the above objectives, the present invention adopts the following technical solution:
[0008] This invention discloses a deployable container fitness system, comprising: a container body, a telescopic mounting frame, a guide seat, a rotating mounting frame, a hinged seat, a first door, and a second door; the container body has a first window and a second window on its side, the side where the first window is located is perpendicular to the side where the second window is located, the first window is opened and closed by the first door, and the second window is opened and closed by the second door; a guide seat is fixed on the container body, the guide seat guides the telescopic mounting frame to move in the Z direction, the telescopic mounting frame can pass through the first window, and several fitness equipment are installed on the telescopic mounting frame, the length direction of the telescopic mounting frame is the X direction; a hinged seat is installed on the container body, and a rotating mounting frame is installed on the hinged seat, the rotating mounting frame is installed on the rotating mounting frame, the rotating mounting frame is installed on the rotating mounting frame, the rotating mounting frame can rotate to the Z direction and then be blocked inside the container body by the second door, the rotating mounting frame can rotate to the X direction and then pass out through the second window.
[0009] Preferably, the telescopic mounting bracket includes: a telescopic rod, a first upright, and a first support foot. The telescopic rod passes through a guide seat, which guides the telescopic rod to move in the Z direction. The telescopic rod is fixed to the first upright, which is located in the Y direction. The first support foot is installed at the bottom of the first upright and can move relative to the first upright in the Y direction. A bidirectional telescopic positioning device is fixed on the telescopic rod and the first upright. The bidirectional telescopic positioning device can position the telescopic rod on the guide seat and the first support foot on the second upright.
[0010] Preferably, the hinged seat includes an upper hinged seat and a lower hinged seat, the upper hinged seat being fixed to the top wall of the container body, the lower hinged seat being fixed to the bottom wall of the container body, the upper hinged seat being hinged to the top of the rotating mounting bracket, and the lower hinged seat being hinged to the bottom of the rotating mounting bracket.
[0011] Preferably, the rotating mounting bracket includes: an upper rotating arm, a lower rotating arm, a second upright, and a second support foot. One end of the upper rotating arm is hinged to an upper hinge seat, and one end of the lower rotating arm is hinged to a lower hinge seat. The other ends of the upper and lower rotating arms are fixed to the second upright. The second support foot is installed at the bottom of the second upright and can move relative to the second upright in the Y direction.
[0012] Preferably, a telescopic rotation positioning device is installed on the lower rotating arm, which can both position the lower rotating arm on the lower hinge seat and position the second support foot on the second upright.
[0013] Preferably, there are two pairs of hinged mounts and rotary mounting brackets, with the two rotary mounting brackets located between the two hinged mounts when the rotary mounting brackets are in the Z direction.
[0014] Preferably, a blocking arm is fixed on the lower hinge seat, and the blocking arm is used to position the lower rotating arm in the X direction.
[0015] Preferably, the blocking arm includes: a mounting pin, an elastic ring, and a nut. The mounting pin has a T-shaped structure and passes through the elastic ring. The elastic ring is used to fit tightly against the lower rotating arm. The mounting pin is threaded with a nut, which cooperates with the large end of the mounting pin to clamp the elastic ring and the lower hinge seat.
[0016] Preferably, the telescopic rotation positioning device includes: a first movable arm, a surrounding arm, a first spring, and a pin. The first movable arm is mounted on the lower rotating arm and can move relative to the lower rotating arm in a direction parallel to the lower rotating arm. One end of the first movable arm is a rotation-limiting end, and the lower hinge seat forms a slot for the rotation-limiting end to be inserted. The other end of the first movable arm is fixed to the surrounding arm, and a pin is threaded onto the surrounding arm for insertion into the second upright and the second support foot. A first spring is installed between the first movable arm and the lower rotating arm. The first spring is used to maintain a distance between the rotation-limiting end and the slot, and to maintain a distance between the pin and the second upright and the second support foot.
[0017] Preferably, the first movable arm is hinged to a support arm at the middle, and the support arm and the first movable arm are positioned by friction. The support arm is used to be pressed against the second upright by the first movable arm, and the width a of the support arm is less than twice the length b of the support arm.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] In this application, to reduce the length of the container body in the X direction, a telescopic mounting bracket is installed at the first window and a rotating mounting bracket is installed at the second window, achieving the following functions: During use, by pulling out the telescopic mounting brackets at the two parallel first windows, the fitness equipment on the telescopic mounting brackets can be exposed outside the container, allowing users to exercise outdoors. At the second window, the rotating mounting bracket can be rotated out of the fitness container, exposing the fitness equipment on the rotating mounting bracket, also allowing for outdoor exercise, avoiding the limitations of the container's space and allowing users to breathe freely outside the container, improving the fitness effect. After use, the telescopic mounting brackets and the fitness equipment on them at the two first windows can be pushed back into the container for easy storage. Simultaneously, the rotating mounting bracket can be retracted into the container by rotating it. The rotating mounting bracket is located... Because the telescopic mounting frame needs to form multiple moving rods, its length in the X direction is relatively long. When retracted, it occupies most of the space inside the container. If a rotating mounting frame is inserted between two telescopic mounting frames, the width and volume of the container body would need to be increased significantly. Therefore, this application uses a rotating mounting frame in conjunction with the telescopic mounting frame, allowing the rotating mounting frame to rotate at the end of the telescopic mounting frame. This avoids the length of the container body in the X direction caused by the telescopic mounting frame retracting. By opening it through rotation, the longer rotating mounting frame can be extended outside the container body. The telescopic and rotating mounting frames work together to make the internal structure of the container compact when retracted, and to allow the telescopic and rotating mounting frames to be extended outside the container body when extended. This allows the space outside the container to be utilized when using the fitness equipment, ensuring the comfort of exercise.
[0020] Other advantages, objectives and features of the present invention will become apparent in part from the following description, and in part from those skilled in the art through study and practice of the invention. Attached Figure Description
[0021] Figure 1 A schematic diagram of the structure of a deployable container fitness system.
[0022] Figure 2 This is a structural diagram of the telescopic mounting bracket and the rotating mounting bracket.
[0023] Figure 3 for Figure 2 A structural diagram of the telescopic mounting bracket.
[0024] Figure 4 This is a schematic diagram of the rotating mounting bracket in Example 1.
[0025] Figure 5 This is a schematic diagram of the rotating mounting bracket in Example 2.
[0026] Figure 6 This is a schematic diagram of the support arm in Example 2.
[0027] Reference numerals: Container body 1, Telescopic mounting frame 2, Telescopic rod 21, First upright 22, First support leg 23, Guide seat 3, Positioning groove 30, Rotary mounting frame 4, Upper rotating arm 40, Lower rotating arm 41, Second upright 42, Second support leg 43, Upper hinge seat 51, Lower hinge seat 52, Slot 520, First door 6, Second door 7, Bidirectional telescopic positioning device 8, Fixed seat 81, Second moving arm 82, Positioning arm 83, Second spring 84, Lifting arm 85, Positioning block 86, Positioning screw 87, Telescopic rotary positioning device 9, First moving arm 91, Encircling arm 92, First spring 93, Pin 94, Blocking arm 10, Support arm 11. Detailed Implementation
[0028] To make the technical means, creative features, objectives, and effects of this invention clearer and easier to understand, the invention will be further described below in conjunction with the accompanying drawings and specific embodiments:
[0029] Example 1:
[0030] like Figures 1 to 4 As shown, this embodiment discloses a deployable container fitness system, including: a container body 1, a telescopic mounting frame 2, a guide seat 3, a rotating mounting frame 4, a hinged seat, a first door 6, and a second door 7; the container body 1 has a first window and a second window on its side, the side where the first window is located is perpendicular to the side where the second window is located, the first window is opened and closed by the first door 6, and the second window is opened and closed by the second door 7; the guide seat 3 is fixed on the container body 1, the guide seat 3 guides the telescopic mounting frame 2 to move in the Z direction, the telescopic mounting frame 2 can pass through the first window, the telescopic mounting frame 2 is equipped with several fitness equipment, the length direction of the telescopic mounting frame 2 is the X direction; a hinged seat is installed on the container body 1, the hinged seat is equipped with a rotating mounting frame 4, the rotating mounting frame 4 is equipped with fitness equipment, the rotating mounting frame 4 can rotate to the Z direction and then be blocked inside the container body 1 by the second door 7, the rotating mounting frame 4 can rotate to the X direction and then pass out through the second window.
[0031] The telescopic mounting bracket 2 includes a telescopic rod 21, a first upright 22, and a first support foot 23. The telescopic rod 21 passes through a guide seat 3, which guides the telescopic rod 21 to move in the Z direction. The first upright 22 is fixed to the telescopic rod 21 and is located in the Y direction. The first support foot 23 is installed at the bottom of the first upright 22 and can move relative to the first upright 22 in the Y direction. A bidirectional telescopic positioning device 8 is fixed on the telescopic rod 21 and the first upright 22. The bidirectional telescopic positioning device 8 can both position the telescopic rod 21 on the guide seat 3 and position the first support foot 23 on the second upright 42. The telescopic rod 21 is guided by the guide seat 3, and the guide seat 3 also cooperates with the telescopic rod 21 to prevent the telescopic rod 21 from detaching from the guide seat 3. Since the telescopic mounting bracket 2 needs to be located inside the container body 1 at its end when retracted, a first support leg 23 is provided. The first support leg 23 can rise and fall relative to the first upright 22. In this way, when the first upright 22 is pulled out of the container body 1, the first support leg 23 can be pulled to bring the first upright 22 to the ground, preventing the first upright 22 from being suspended in the air via the telescopic rod 21, which could cause the telescopic rod 21 to be broken due to excessive force during training. After the first support leg 23 is pulled out and landed, a two-way telescopic positioning device 8 is used to position it so that the first telescopic leg can support the first upright 22, and also to position the telescopic rod 21 on the guide seat 3, preventing the first upright 22 from suddenly moving in the Z direction during movement and causing a safety accident.
[0032] There are at least three telescopic mounting frames 2, and a multi-bar exercise bar is installed between the first uprights 22 of two adjacent telescopic mounting frames 2 to enable single bar or multi-bar exercise training.
[0033] The bidirectional telescopic positioning device 8 includes: a fixed base 81, a second movable arm 82, a positioning arm 83, a second spring 84, a lifting arm 85, a positioning block 86, and a positioning screw 87. The fixed base 81 is fixed to the connection between the telescopic rod 21 and the first upright rod 22. The second movable arm 82 is mounted on the fixed base 81 and can move relative to the telescopic rod 21 in the Z direction. The positioning arm 83 is fixed on the second movable arm 82 and is used to extend into the first upright rod 22 and the first support foot 23. A second spring 84 is installed between the second movable arm 82 and the fixed base 81. Two springs 84 are used to keep the positioning arm 83 away from the first upright 22 and the first support foot 23. A lifting arm 85 is suspended on the second moving arm 82. The lifting arm 85 can move relative to the second moving arm 82 in the Y direction. A positioning block 86 is fixed on the lifting arm 85. The positioning block 86 is used to extend into the positioning groove 30 opened in the guide seat 3. A positioning screw 87 is threadedly connected to the lifting arm 85. The positioning screw 87 is used to pass through the second moving arm 82 and threadedly connect to the fixed seat 81 only when the positioning pin extends into the first upright 22 and the first support foot 23. When adjusting the bidirectional telescopic positioning device 8, firstly, the second moving arm 82 and the positioning arm 83 are moved. The positioning arm 83 extends into the first support foot 23 and the first upright 22, restricting the movement of the first support foot 23 relative to the first upright 22. At the same time, the positioning block 86 moves from a position offset from the positioning groove 30 to a position aligned with the positioning groove 30. The second moving arm 82 has a through hole for the positioning bolt to pass through, and at this time, the through hole is aligned with the positioning bolt 87. Then, the positioning bolt 87 located on the lifting arm 85 is rotated. After passing through the through hole, the positioning bolt 87 is threadedly connected to the fixed seat 81. The bottom of the fixed seat 81 has a through groove for the positioning bolt to pass through. The through groove does not contact the positioning bolt. The large end of the positioning bolt 87 is located below the lifting arm 85. The positioning bolt raises the lifting arm 85, causing the positioning block 86 to extend into the positioning groove 30, and simultaneously positioning the positioning arm 83. Thus, rotating the positioning bolt not only positions the positioning block 86 and the lifting seat, but also positions the first support foot 23 on the first upright 22. Meanwhile, the operation steps show that the positioning bolt can only be rotated to the position where it is threaded into the fixed seat 81 when the second positioning pin is inserted into the first support foot 23 inside the first upright 22. This avoids forgetting to adjust the positioning arm 83 and the second moving arm 82 when adjusting the positioning bolt and positioning block 86, simplifying the adjustment operation and making the adjustment operation more convenient and faster.
[0034] The hinge base includes an upper hinge base 51 and a lower hinge base 52. The upper hinge base 51 is fixed to the inner top wall of the container body 1, and the lower hinge base 52 is fixed to the inner bottom wall of the container body 1. The upper hinge base 51 is hinged to the top of the rotary mounting bracket 4, and the lower hinge base 52 is hinged to the bottom of the rotary mounting bracket 4. The upper hinge base 51 and the lower hinge base 52 provide a hinge base for the rotary mounting bracket 4.
[0035] The rotating mounting bracket 4 includes an upper rotating arm 40, a lower rotating arm 41, a second upright 42, and a second support leg 43. One end of the upper rotating arm 40 is hinged to an upper hinge seat 51, and one end of the lower rotating arm 41 is hinged to a lower hinge seat 52. The other ends of the upper rotating arm 40 and the lower rotating arm 41 are fixed to the second upright 42. The second support leg 43 is installed at the bottom of the second upright 42 and can move relative to the second upright 42 in the Y direction. The arrangement of the upper rotating arm 40 and the lower rotating arm 41 creates a distance between the second upright 42 and the hinge seat, thus ensuring that the fitness equipment located on the second upright 42 can rotate outside the container body 1. The second upright 42 is the mounting base for the fitness equipment. The second support leg 43 provides support when the second upright 42 is extended and is not obstructed by the container body 1 when it is retracted.
[0036] A telescopic rotation positioning device 9 is installed on the lower rotating arm 41. The telescopic rotation positioning device 9 can both position the lower rotating arm 41 on the lower hinge seat 52 and position the second support foot 43 on the second upright 42. This achieves the goal of positioning the second support foot 43 on the second upright 42 while simultaneously positioning the lower rotating arm 41 on the lower hinge seat 52.
[0037] There are two pairs of hinged seats 52 and rotating mounting brackets 4. When the rotating mounting brackets 4 are located in the Z direction, the two rotating mounting brackets 4 are located between the two hinged seats. The two pairs of hinged seats and rotating mounting brackets 4 can install at least two pieces of fitness equipment, and there is a large gap between them during exercise so that they do not interfere with each other.
[0038] The telescopic rotary positioning device 9 includes a first movable arm 91, a surrounding arm 92, a first spring 93, and a pin 94. The first movable arm 91 is mounted on the lower rotating arm 41 and can move relative to the lower rotating arm 41 in a direction parallel to the lower rotating arm 41. One end of the first movable arm 91 is a rotation-limiting end, and the lower hinge seat 52 forms a slot 520 for the rotation-limiting end to be inserted. The other end of the first movable arm 91 is fixed to the surrounding arm 92, and a pin 94 is threaded onto the surrounding arm 92. The pin 94 is used to insert into the second upright 42 and the second support foot 43. The first spring 93 is installed between the first movable arm 91 and the lower rotating arm 41. The first spring 93 is used to maintain a distance between the rotation-limiting end and the slot 520, and to maintain a distance between the pin 94 and the second upright 42 and the second support foot 43. The telescopic rotary positioning device 9 has two states: a released state and a locked state. When in the released state: Under the elastic force of the first spring 93, a distance is maintained between the rotation-limiting end on the first moving arm 91 and the slot 520, thus facilitating the subsequent rotation of the lower rotating arm 41 to a position parallel to the X direction. When in the locked state: Pushing the first moving arm 91 causes its upper rotation-limiting end to extend into the slot 520, restricting the rotation of the lower rotating arm 41 and the second upright 42 relative to the container body 1 during training, ensuring that no safety accidents will occur due to the rotation of the fitness equipment during subsequent training; then, rotating the pin 94 causes it to extend into the second upright 42 and the second support leg 43, positioning the upper rotation-limiting end of the first moving arm 91 to restrict the rotation of the lower rotating arm 41 relative to the container body 1. As can be seen from the above process, the pin 94 can only be aligned with the second upright 42 and the second support leg 43 when the rotation-limiting end performs its rotation-limiting function. This not only improves positioning efficiency but also avoids forgetting to limit the rotation when positioning the second upright 42 and the second support leg 43.
[0039] Example 2:
[0040] This embodiment adds a blocking arm 10 and a support arm 11 to the existing embodiment 1, while keeping other structures unchanged.
[0041] like Figure 1 , Figure 2 , Figure 3 , Figure 5 as well as Figure 6As shown, in order to achieve rotational positioning of the rotary mounting bracket 4 in the X direction and prevent the rotation angle from being too large or too small, a blocking arm 10 is fixed on the lower hinge seat 52. When the rotary mounting bracket 4 rotates outward to the X direction, the lower rotating arm 41 is blocked by the blocking arm 10 and cannot continue to rotate, thereby achieving accurate positioning of the rotary mounting bracket 4. At this time, the first moving arm 91 is pushed so that the rotation-limiting end of the first moving arm 91 extends into the slot 520, thereby limiting the rotation of the rotary mounting bracket 4. Then, the pin 94 is rotated so that the pin 94 extends into the second upright 42 and the second support foot 43 at the same time, so as to simultaneously achieve positioning of the rotation-limiting end of the first moving arm 91 and positioning of the second support foot 43 in the height direction. The blocking arm 10 includes a mounting pin, an elastic ring, and a nut. The mounting pin is T-shaped and passes through the elastic ring, which is used to tightly fit against the lower rotating arm 41. The mounting pin is threaded with a nut, which engages with the large end of the mounting pin to clamp the elastic ring and the lower hinge seat 52. The elastic ring is made of elastic material, thus buffering and preventing the rotation of the lower rotating arm 41. This achieves the installation of the elastic ring by the mounting pin and nut. After the mounting pin passes through the elastic ring and the bottom of the lower hinge seat 52, rotating the nut will position and clamp the elastic ring.
[0042] The first movable arm 91 is hinged to a support arm 11 in the middle. The support arm 11 and the first movable arm 91 are positioned by friction. The support arm 11 is used to be pressed against the second upright 42 by the first movable arm 91. The width a of the support arm 11 is less than twice the length b of the support arm 11. When retracting, the two lower rotating arms 41 need to be rotated to the Z direction, and the fitness equipment is installed on the second upright 42. At this time, the wrap-around arm 92 also extends into the middle of the second window. Since the width of the second window is limited, the length of the wrap-around arm 92 around the second upright 42 when retracting cannot be too long. If it is too long, it will affect the retraction of the rotating mounting bracket 4. Therefore, the length needs to be limited so that the length of the entire first moving arm 91 is small. In particular, the distance between the first moving arm 91 and the slot 520 cannot be too large under the elastic force of the first spring 93. Thus, a support arm 11 is set. The support arm 11 is installed on the first moving arm 91. Under the elastic force of the first spring 93, the first moving arm 91 drives the support arm 11 to press against the second upright 42. At this time, the side of the support arm 11 with length b is parallel to the lower rotating arm 41, so that the wrap-around arm 92 will not exceed the second upright 42 by too much.
[0043] However, during the use of the lower rotating arm 41, the lower rotating arm 41 is in constant contact with the blocking arm 10, which can easily cause the blocking arm 10 to break. Therefore, the blocking arm 10 is designed to be replaceable.
[0044] When replacing the blocking arm 10, because the limiting end of the first moving arm 91 and the blocking arm 10 are vertically misaligned, the blocking arm 10 will not obstruct the movement of the limiting end. Furthermore, due to the width limitation of the second window, when the lower rotating arm 41 is retracted, the length of the surrounding arm 92 extending towards the center of the second window is too long. The two surrounding arms 92 will obstruct the retraction of the lower rotating arm 41, meaning that the limiting end of the first moving arm 91 will not move too far away from the slot. This tight positioning relationship will significantly hinder the replacement of the blocking arm 10. Therefore, in order to facilitate the replacement of the blocking arm 10 and ensure that the lower rotating arm 41 can function normally, the support arm 11 is set to be rotatable, and twice the width a of the support arm 11 is less than the length b of the support arm 11.
[0045] The steps for replacing the blocking arm 10 are as follows: First, rotate the lower rotating arm 41 to the unfolded position, that is, the lower rotating arm 41 protrudes from the second window; then rotate the support arm 11 until the side of length a is parallel to the lower rotating arm 41, so that the rotation-limiting end of the first moving arm 91 is fully away from the blocking arm 10, and the lower hinge seat 52 has a space below it for the movement of the previous rotation-limiting end, thus facilitating the installation of the blocking arm.
[0046] After the blocking arm is installed, rotate the support arm 11 so that the side of the support arm b is parallel to the lower rotating arm 41. This reduces the range of movement of the first moving arm 91, and the surrounding arm 92 will not obstruct the lower rotating arm 41 from achieving normal retraction.
[0047] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. An expandable container gym system, characterized by, The utility model relates to a container type gymnasium, including: The container body, telescopic mounting frame, guide seat, rotary mounting frame, hinged seat, first box door and second box door; The container body side is equipped with first window and second window, and the side where first window is located is perpendicular to the side where second window is located, first window is opened and closed by first box door, and second window is opened and closed by second box door; The guide seat is fixed on the container body, and the guide seat guides the telescopic mounting frame to move in the Z direction, the telescopic mounting frame can pass through the first window, the telescopic mounting frame is equipped with a plurality of fitness equipment, and the length direction of the telescopic mounting frame is the X direction; The hinged seat is installed on the container body, the rotary mounting frame is installed on the hinged seat and can rotate, the fitness equipment is installed on the rotary mounting frame, the rotary mounting frame can be rotated to the Z direction and is blocked in the container body by the second box door, and the rotary mounting frame can be rotated to the X direction and passes out from the second window; The hinged seat includes: upper hinged seat and lower hinged seat, the upper hinged seat is fixed to the inner top wall of the container body, the lower hinged seat is fixed to the inner bottom wall of the container body, the upper hinged seat is hinged to the top of the rotary mounting frame, and the lower hinged seat is hinged to the bottom of the rotary mounting frame; The rotary mounting frame includes: upper rotary arm, lower rotary arm, second vertical rod and second support foot, one end of the upper rotary arm is hinged to the upper hinged seat, one end of the lower rotary arm is hinged to the lower hinged seat, the other end of the upper rotary arm and the other end of the lower rotary arm are fixed to the second vertical rod, the second support foot is installed at the bottom of the second vertical rod, and the second support foot can move in the Y direction relative to the second vertical rod; The telescopic rotary positioning device is installed on the lower rotary arm, and the telescopic rotary positioning device can position the lower rotary arm on the lower hinged seat and position the second support foot on the second vertical rod; The telescopic rotary positioning device includes: first moving arm, ring arm, first spring and bolt, the first moving arm is installed on the lower rotary arm, the first moving arm can move in the direction parallel to the lower rotary arm relative to the lower rotary arm, one end of the first moving arm is a limited rotation end, the lower hinged seat forms a clamping groove, the clamping groove is used for inserting the limited rotation end, the other end of the first moving arm is fixed to the ring arm, the bolt is screw-connected to the ring arm, the bolt is used for inserting into the second vertical rod and the second support foot, the first spring is installed between the first moving arm and the lower rotary arm, and the first spring is used for keeping a distance between the limited rotation end and the clamping groove and keeping a distance between the bolt and the second vertical rod and the second support foot.
2. The deployable shipping container gym system of claim 1, wherein, The telescopic mounting frame includes: telescopic rod, first vertical rod and first support foot, the telescopic rod passes through the guide seat, the guide seat guides the telescopic rod to move in the Z direction, the telescopic rod is fixed with the first vertical rod, the first vertical rod is located in the Y direction, the first support foot is installed at the bottom of the first vertical rod, the first support foot can move in the Y direction relative to the first vertical rod, and the bidirectional telescopic positioning device is fixed on the telescopic rod and the first vertical rod, and the bidirectional telescopic positioning device can position the telescopic rod on the guide seat and position the first support foot on the first vertical rod.
3. The deployable shipping container gym system of claim 2, wherein, The hinged seat and the rotary mounting frame have two pairs, and when the rotary mounting frame is located in the Z direction, the two rotary mounting frames are located between the two hinged seats.
4. The deployable shipping container gym system of claim 3, wherein, The blocking arm is fixed on the lower hinged seat, and the blocking arm is used for positioning the lower rotary arm in the X direction.
5. The deployable shipping container gym system of claim 4, wherein, The blocking arm comprises a mounting pin, an elastic ring and a nut, the mounting pin is of T-shaped structure, the mounting pin passes through the elastic ring, the elastic ring is used for abutting against the lower rotating arm, the mounting pin is threadedly connected with the nut, and the nut is matched with the large end of the mounting pin to clamp the elastic ring and the lower hinge seat.
6. The deployable shipping container gym system of claim 1, wherein, The middle part of the first moving arm is hingedly connected to a supporting arm, the supporting arm and the first moving arm are positioned through friction force, the supporting arm is used for being pressed on the second vertical rod by the first moving arm, and the width a of the supporting arm is less than twice the length b of the supporting arm.
Citation Information
Patent Citations
Multifunctional integrated fitness cabinet
CN217489669U