Supporting structure
By designing the triangular support structure and locking member adjustment of the support structure, the problem of fishing umbrella falling in uneven or windy environments is solved, and stable support and flexible adaptability are achieved.
Patent Information
- Application Number
- CN202422441730.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-09
AI Technical Summary
Fishing umbrellas are prone to fall in uneven or windy environments, and the prior art is difficult to provide stable support.
A support structure is designed, including an adapter, a first and a second support member, and a locking member. By forming different triangular support structures, the position and angle of the support foot is adjusted by using the locking member to adapt to different terrain and provide stable support.
In uneven ground and windy environments, the support structure can effectively prevent the fishing umbrella from falling, it is flexible in use, highly adaptable, and provides a stable support effect.
Smart Images

Figure CN223076668U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fishing auxiliary appliances, and particularly relates to a support structure. Background Art
[0002] Fishing is a popular outdoor leisure sport. To protect from the sun, people usually equip themselves with fishing umbrellas. After the fishing umbrella is opened and placed on the ground, since the contact area between the bottom of the umbrella rod of the fishing umbrella and the ground is small, the fishing umbrella is prone to being blown down by the wind in windy conditions. Moreover, the ground in the fishing environment is mostly uneven, so the fishing umbrella is prone to being unstable when placed, and the probability of tipping over is greatly increased. Summary of the Utility Model
[0003] In order to overcome the deficiencies of the prior art, the utility model provides a support structure, which can provide a stable support for the fishing umbrella, and at the same time, the rotation direction of the support structure can be adjusted according to the actual use environment to ensure that the fishing umbrella can be stably placed even on uneven ground.
[0004] The technical solution adopted by the utility model to solve its technical problems is: a support structure, comprising:
[0005] An adapter, which can be connected to the object to be supported;
[0006] A first support member, at least including a first body and a first support foot connected to the first body;
[0007] A second support member, at least including a second body and a second support foot connected to the second body;
[0008] At least one first locking member, which passes through the first body and / or the second body and cooperates with the adapter;
[0009] The first locking member has a locked state and a relaxed state. In the relaxed state, the first body and / or the second body can move relative to the adapter so that the first support foot, the second support foot and the end of the object to be supported form different triangular support structures.
[0010] The utility model forms different triangular support structures through the first support foot, the second support foot and the end of the object to be supported, providing a stable support effect for the object to be supported and preventing the object to be supported from tipping over due to uneven ground or being blown down by the wind; the triangular support structure can be a triangular support structure on a horizontal plane formed on a flat ground, or an inclined triangular support structure at a certain angle to the horizontal plane, which can be adjusted according to the specific use site, facilitating the stable support of the object to be supported on a rough site with high flexibility of use; moreover, the rotation of the first support foot and the second support foot can be locked or relaxed by using the first locking member, so as to timely adjust the support feet to appropriate positions and fix them.
[0011] Further, a transfer portion is formed on the outer wall of the adapter. The transfer portion has an internal thread. The first body and the second body are hollow sleeve structures. The first locking member passes through the first body and the second body and is threadedly connected to the transfer portion. By twisting the first locking member, the first body and the second body are threadedly locked. By twisting the first locking member in the reverse direction, the first body and the second body are threadedly loosened. The operation is simple and convenient for adjustment.
[0012] Further, engaging teeth portions are formed on the opposite sides of the first body and the second body facing each other; engaging teeth portions are formed on the opposite sides of the first body and the transfer portion facing each other. The relative rotational positions of the first support leg and the second support leg are further fixed by meshing between the engaging teeth portions, preventing circumferential deflection of the first body and the second body, and at the same time facilitating the control of the rotation angle of the first body and the second body.
[0013] Further, the first locking member, the first body, and the second body are concentrically and coaxially connected; internal threads are formed on the inner wall of the first body and / or the second body. The concentric and coaxial arrangement enables the first locking member to provide a balanced locking force for the first body and the second body, and the central axis of the first locking member passes through the central axis of the object to be supported in the vertical direction, thereby ensuring more stable support for the object to be supported in all directions;
[0014] Further, a sliding groove is formed on the outer wall of the adapter. The first body and the second body are T-shaped convex portions. The first body and the second body are slidably disposed in the sliding groove. The first locking member respectively passes through the first body and the second body and abuts against the sliding groove to limit and connect the first body and the second body at the target position in the sliding groove. The first body and the second body can slide along the extension direction of the sliding groove to adjust the height of the first support leg or the second support leg, so that the support structure can stably support on uneven ground. The structural design of the T-shaped convex portion is convenient for processing and can form a good anti-disengagement structure with the sliding groove.
[0015] Further, the first support leg and / or the second support leg includes an upper body, a lower body, and a second locking member. The upper body forms an upper sleeve, the lower body forms a lower sleeve, and the second locking member can pass through the lower sleeve and be connected to the upper sleeve. By providing the upper body, the lower body, and the second locking member, the rotation direction of the first support leg or the second support leg is further adjusted, the support range is increased, and different usage scenarios with different heights are adapted.
[0016] Further, the central axis of the upper sleeve of the second support leg is perpendicular to the central axis of the first body. The rotation plane of the first support leg is perpendicular to the rotation plane of the second support leg, greatly increasing the support range. The angler can adjust the rotation directions of the first support leg and the second support leg according to different usage sites, and the usage flexibility is high.
[0017] Furthermore, engaging tooth portions are formed on the sides of the upper sleeve and the lower sleeve facing each other; the upper sleeve is formed with internal threads, and the second locking member has external threads. The upper sleeve and the lower sleeve are thread-locked or loosened by the second locking member, so that the engaging tooth portions between the upper sleeve and the lower sleeve are meshed and locked or meshed and loosened.
[0018] Furthermore, the number of the first support members is two, and they are arranged on both sides of the first support member. The two first support members can be relatively unfolded in the same direction, increasing the width of the support in the same direction.
[0019] Furthermore, the object to be supported is the fishing umbrella rod. The adapter includes a first hoop member and a second hoop member that are rotatably connected, and a third locking member. By twisting the third locking member to adjust the tightness between the first hoop member and the second hoop member, the clamping and relaxation of the object to be supported are realized.
[0020] The beneficial effects of the present utility model are as follows: 1) Different triangular support structures are formed by the first support foot, the second support foot and the end of the object to be supported, providing a stable support effect for the object to be supported and preventing the object to be supported from tipping over due to uneven ground or being blown down by the wind; 2) The triangular support structure can be a triangular support structure on a horizontal plane formed on a flat ground, or an inclined triangular support structure at a certain angle to the horizontal plane, which can be adjusted according to the specific use site, with high use flexibility; 3) The rotation of the first support foot and the second support foot is locked or loosened by the first locking member, so as to facilitate timely adjustment of the support feet to a suitable position and fixation; 4) The central axis of the upper sleeve of the second support foot is perpendicular to the central axis of the first body, so that the rotation plane of the first support foot is perpendicular to the rotation plane of the second support foot, greatly increasing the support range. The angler can adjust the rotation directions of the first support foot and the second support foot according to different use sites, with high use flexibility. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a three-dimensional structural schematic diagram when the support structure in the present utility model is used in cooperation with a fishing umbrella and a fishing box.
[0022] Figure 2 is a three-dimensional structural schematic of the support structure in the present utility model Figure 1 , and at this time the support structure is in an unfolded state.
[0023] Figure 3 is Figure 2 an enlarged view of the structure at A in
[0024] Figure 4 is a disassembled structural schematic diagram of the support structure in the present utility model.
[0025] Figure 5 isFigure 4 Enlarged view of the structure at position B.
[0026] Figure 6 Schematic three-dimensional structure of the support structure in the present utility model Figure 2 , at this time the support structure is in a retracted state.
[0027] Figure 7 Side view of the support structure in the present utility model.
[0028] Figure 8 Top view of the support structure in the present utility model.
[0029] Figure 9 Schematic three-dimensional structure diagram when the support structure in another embodiment of the present utility model is used in cooperation with a fishing umbrella and a fishing box.
[0030] Figure 10 Schematic three-dimensional structure of the support structure in another embodiment of the present utility model Figure 1 , at this time the support structure is in an expanded state.
[0031] Figure 11 For Figure 10 Enlarged view of the structure at position C.
[0032] Figure 12 Schematic three-dimensional structure of the support structure in another embodiment of the present utility model Figure 2 , at this time the support structure is in a retracted state.
[0033] Figure 13 Front view of the support structure in another embodiment of the present utility model.
[0034] Figure 14 Top view of the support structure in another embodiment of the present utility model.
[0035] Wherein, 1 - adapter, 11 - adapter part, 12 - first hoop, 13 - second hoop, 14 - third locking member, 15 - groove, 16 - chute, 2 - first support member, 21 - first body, 211 - engaging tooth portion, 22 - first support leg, 3 - second support member, 31 - second body, 32 - second support leg, 321 - upper body, 3211 - upper sleeve, 322 - lower body, 3221 - lower sleeve, 323 - second locking member, 4 - first locking member, 5 - fishing umbrella rod, 6 - fishing box. Detailed implementation manner
[0036] To enable those skilled in the art to better understand the solution of the present utility model, the following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0037] As Figures 1-8 shown, a support structure includes an adapter 1, a first support member 2, a second support member 3, and at least one first locking member 4. The adapter 1 can be connected to the object to be supported. After passing through the adapter 1, the object to be supported contacts the ground. Here, the ground generally refers to any position where the object to be supported can be placed. The first support member 2 at least includes a first body 21 and a first support foot 22 connected to the first body 21. The second support member 3 at least includes a second body 31 and a second support foot 32 connected to the second body 31. At least a part of the first locking member 4 can pass through the first body 21 and the second body 31 and then cooperate with the adapter 1.
[0038] The first locking member 4 has a locked state and a relaxed state. In the relaxed state, the first body 21 and the second body 31 can move relative to each other. Specifically in this embodiment, the first body 21 and the second body 31 can rotate relative to each other so that different triangular support structures are formed by the first support foot 22, the second support foot 32, and the end of the object to be supported (taking Figure 2 the state shown as an example). Specifically, the triangular support structure means that the contact points of the first support foot 22 with the ground, the contact points of the second support foot 32 with the ground, and the contact points of the object to be supported with the ground form the three angles of a triangle, thereby making the support structure more stable. In the locked state, the first body 21 and the second body 31 stop rotating relative to each other to fix the positions of the first support foot 22 and the second support foot 32 after rotation, enhancing the stability of the object to be supported placed on the ground. Of course, as Figure 6 shown, the first body 21 and the second body 31 can rotate relative to each other until the first support foot 22 and the second support foot 32 are in contact with each other, so that the support structure is switched from the open state to the closed state, occupying a small overall space and being convenient for storage and carrying.
[0039] The utility model forms different triangular support structures through the first support foot 22, the second support foot 32 and the end of the object to be supported, providing a stable support effect for the object to be supported and preventing the object to be supported from tipping over due to uneven ground or being blown down by the wind; the triangular support structure can be a triangular support structure on a horizontal plane formed on a flat ground, or an inclined triangular support structure at a certain angle to the horizontal plane, and the triangular support structure can be adjusted according to the specific use site. Specifically, in an actual fishing scenario, the ground is not always flat, such as a sloping ground with high and low unevenness or an uneven land, so the height of the first support foot 22 or the second support foot 32 can be further rotated and adjusted according to the site to make the support feet find a suitable position to abut. Even if there are steps in the placement site, the support structure can be placed stably; in addition, the rotation of the first support foot 22 and the second support foot 32 can be locked or relaxed by using the first locking member 4, so as to timely adjust the support feet to a suitable position and fix them.
[0040] As Figure 4 , Figure 5 shown, a transfer portion 11 is formed on the outer wall of the transfer member 1, and the transfer portion 11 has an internal thread. The first body 21 and the second body 31 are hollow sleeve structures. The first locking member 4 sequentially passes through the hollow sleeves of the second body 31 and the first body 21 and is threadedly connected to the transfer portion 11. In other words, here the first locking member 4 passes through the first body 21 and is threadedly connected to the transfer member 1 to achieve cooperation, and the first locking member 4 passes through the second body 31 and is threadedly connected to the transfer member 1 to achieve cooperation. In this embodiment, the first locking member 4 is a screw. In the locked state, the first locking member 4 threadedly locks the first body 21 and the second body 31, so that the positions of the first support foot 22 and the second support foot 32 are relatively fixed; in the relaxed state, the first locking member 4 is rotated to be relaxed, so that the first body 21 and the second body 31 can rotate relative to each other, and further the first support foot 22 and the second support foot 32 can be rotated to a suitable position, and then the first locking member 4 is rotated to be locked.
[0041] Of course, in other embodiments, the first locking member 4 can also be an eccentric wheel type connector, the end of which has a handle. By pulling the handle, the distance between the first locking member 4 and the transfer portion 11 is shortened, so that the first body 21 and the second body 31 are in closer contact and cannot rotate relative to each other, thus reaching the locked state. By pulling the wrench in the reverse direction, the distance between the first locking member 4 and the transfer portion 11 is increased, and thus the relaxation of the first body 21 and the second body 31 is realized.
[0042] As Figure 5As shown, the first body 21 and the second body 31 form a circumferential meshing tooth portion 211 on the side facing each other, and the first body 21 and the adapter 11 form a meshing tooth portion 211 on the side facing each other, and the meshing tooth portions 211 can mesh with each other to further fix the relative rotation position of the first support leg 22 and the second support leg 32, increase the locking force of the first locking member 4 on the first support member 2 and the second support member 3, and also facilitate the control of the rotation angle of the first body 21 and the second body 31. Of course, in other embodiments, the side facing the first body 21 and the second body 31, and the side facing the first body 21 and the adapter 11 can be a smooth structure, which is not specifically limited.
[0043] like Figure 8 As shown, the first locking member 4, the first body 21, and the second body 31 are connected concentrically and coaxially, the first locking member 4 provides a balanced locking force for the first body 21 and the second body 31, and the central axis of the first locking member 4 passes through the vertical central axis of the object to be supported, thereby ensuring that the support of the object to be supported in all directions is more stable; the inner walls of the first body 21 and the second body 31 form internal threads, or the inner wall of the first body 21 forms internal threads, or the inner wall of the second body 31 forms internal threads, and there is no specific limitation.
[0044] like Figure 5 As shown, the second supporting foot 32 includes an upper body 321, a lower body 322 and a second locking member 323. The upper body 321 forms an upper sleeve 3211, the lower body 322 forms a lower sleeve 3221, and the second locking member 323 can pass through the lower sleeve 3221 to connect with the upper sleeve 3211. Specifically, the upper sleeve 3211 and the lower sleeve 3221 form a meshing tooth portion 211 on the opposite side, and the upper sleeve 3211 and the lower sleeve 3221 are meshed through the meshing tooth portion 211. The upper sleeve 3211 forms an internal thread, and the second locking member 323 has an external thread. The second locking member 323 passes through the lower sleeve 3221 and is threadedly connected to the upper sleeve 3211.
[0045] The second locking member 323 also has a locked state and a relaxed state. In the locked state, the second locking member 323 threadably locks the upper sleeve 3211 and the lower sleeve 3221, so that the meshing tooth portion 211 between the upper sleeve 3211 and the lower sleeve 3221 is meshed and locked, thereby fixing the relative position of the upper body 321 and the lower body 322. In the relaxed state, the second locking member 323 is rotated to relax, and the meshing tooth portion 211 between the upper sleeve 3211 and the lower sleeve 3221 is released from the meshing state, and the upper sleeve 3211 and the lower sleeve 3221 can rotate freely, and then the lower body 322 can be rotated to a suitable position relative to the upper body 321, and then screwed and locked by the second locking member 323.
[0046] The central axis of the upper sleeve 3211 of the second support leg 32 is perpendicular to the central axis of the first body 21. Specifically, in this embodiment, as Figure 8 shown, define the plane in which the first body 21 drives the first support leg 22 to rotate as the first plane, the plane in which the second body 31 drives the second support leg 32 to rotate as the second plane, and the plane in which the lower sleeve 3221 drives the lower body 322 to rotate as the third plane. The first body 21 and the second body 31 are concentrically and coaxially connected. Therefore, the first plane in which the first support leg 22 rotates and the second plane in which the second support leg 32 rotates are parallel. The lower sleeve 3221 is concentrically and coaxially connected to the upper sleeve 3211 and is perpendicular to the central axis of the first body 21. Therefore, the third plane in which the lower body 322 rotates is perpendicular to the first plane. Specifically, in this embodiment, taking the direction shown in Figure 8 as an example, the first plane and the second plane are horizontal directions perpendicular to the paper surface, and the third plane is a vertical direction perpendicular to the paper surface. After the first support leg 22 and the second support leg 32 rotate left and right in the horizontal direction respectively, the lower body 322 of the second support leg 32 further rotates up and down in the vertical direction, greatly increasing the support range. The angler can adjust the rotation direction and height of the first support leg 22 and the second support leg 32 according to different use sites, so that the support legs are always in a stable support position, ensuring that the object to be supported can be placed stably even on uneven ground, and the use flexibility is high.
[0047] In this embodiment, only the second support leg 32 forms the upper body 321, the lower body 322 and the second locking member 323. Of course, in other embodiments, the upper body 321, the lower body 322 and the locking member can also be added to the first support leg 22, so that after the first support leg 22 rotates in the horizontal direction, it continues to rotate in the vertical direction, thereby expanding the support range of the first support leg 22. The specific details are not limited.
[0048] In this embodiment, the support leg is further rotated by setting upper and lower sleeves to adjust the support position and support angle of the support leg. Of course, in other embodiments, any telescopic structure in the prior art can be provided on the support leg to further adjust the length of the support leg.
[0049] In this embodiment, the number of the first support members 2 is two, which are arranged on both sides of the second support member 3. Specifically, taking Figure 8Taking the direction shown as an example, the first bodies 21 of the two first support members 2 are successively sleeved along the axial direction of the first locking member 4. Thus, the two first support members 2 can be unfolded relatively left and right in the horizontal direction, increasing the width of the support of the first support members 2 in the horizontal direction. Moreover, the two first support feet 22, the second support feet 32 and the end of the object to be supported form different quadrilateral support structures, not only increasing the support range of the support structure but also enhancing the stability of the support. Of course, in other embodiments, the number of the first support members 2 can be one, and the first support feet 22, the second support feet 32 and the end of the object to be supported form different triangular support structures, which also have a stable support effect and are not specifically limited.
[0050] As Figure 5 shown, the adapter 1 includes a first hoop member 12 and a second hoop member 13 that are rotatably connected, and a third locking member 14. One ends of the first hoop member 12 and the second hoop member 13 are joined together to form a groove 15 and are rotatably connected together through a shaft body. The third locking member 14 passes through the other end of the first hoop member 12 and is threadedly connected to the second hoop member 13. The object to be supported passes through the groove 15 and is connected to the adapter 1. By twisting the third locking member 14, the tightness between the first hoop member 12 and the second hoop member 13 is adjusted, thereby realizing the clamping and relaxation of the object to be supported.
[0051] In this embodiment, the object to be supported is the fishing umbrella rod 5. The fishing umbrella rod 5 passes through the groove 15 and is connected to the adapter 1. By unfolding the first support member 2 and the second support member 3, a supporting effect is provided for the fishing umbrella to prevent the fishing umbrella from being placed unstably or being blown down by the wind. As Figure 1 shown, the fishing umbrella can be used in cooperation with the fishing box 6. Specifically, the lower end of the fishing umbrella rod 5 is connected to the fishing box 6 through other connection structures, and this connection structure can be realized through the prior art. At this time, the fishing box 6 is located on one side of the fishing umbrella rod 5, and the first support member 2 and the second support member 3 are concentrated on the other side opposite to the fishing box 6. The fishing box 6 and the support structure provide support for the fishing umbrella from both sides of the fishing umbrella rod 5, avoiding the problem that the fishing umbrella rod 5 is only supported on one side and is unstable.
[0052] The usage process of the present utility model: During use, pass the object to be supported through the groove 15 and connect it to the adapter 1, and twist the third locking member 14 to lock the object to be supported. Twist the first locking member 4 to the relaxed state, so that the engaging teeth 211 between the first body 21 and the second body 31 and the engaging teeth 211 between the first body 21 and the adapter portion 11 are unlocked and relaxed. The first body 21 and the second body 31 can rotate relative to each other. Furthermore, the first support leg 22 and the second support leg 32 rotate and expand on the first plane and the second plane respectively until they rotate to the appropriate position, and then twist the first locking member 4 in the reverse direction to rotate and lock it. Further, twist the second locking member 323 to the relaxed state, and the engaging teeth 211 between the upper sleeve 3211 and the lower sleeve 3221 are unlocked and relaxed. The upper sleeve 3211 and the lower sleeve 3221 can rotate freely. Furthermore, the lower body 322 rotates on the third plane until it reaches the appropriate position, and then is screwed and locked by the second locking member 323 to fix the position of the lower body 322. Finally, the first support leg 22, the second support leg 32 and the end of the object to be supported form a triangular support structure, so as to achieve a stable support effect on the object to be supported.
[0053] After use, twist the third locking member 14 to loosen the object to be supported, take out the object to be supported from the adapter 1, and then twist the first locking member 4 and the second locking member 323 to the relaxed state. Rotate the first support leg 22 and the second support leg 32 until they fit together, so that the support structure switches from the open state to the folded state, with a small overall occupied space, which is convenient for storage and carrying.
[0054] In addition, in other embodiments, such as Figures 9-14 As shown, when the first locking member 4 is in the relaxed state, the first body 21 and the second body 31 can move relative to the adapter 1 so that the first support leg 22, the second support leg 32 and the end of the object to be supported form different triangular support structures.
[0055] Such as Figure 11 As shown, a chute 16 is formed on the outer wall of the adapter 1. Taking the direction shown in Figure 11 As an example, at least two sides of the adapter 1 are formed with chutes 16, and the chutes 1 extend vertically. The first body 21 and the second body 31 are slidably arranged in the chute 16. The first locking member 4 passes through the first body 21 and abuts against the chute 16, and another first locking member 4 passes through the second body 31 and abuts against another chute 16 to limit and connect the first body 21 and the second body 31 at the target position of the chute 16.
[0056] Specifically, as shown in Figure 14As shown, the cross-section of the sliding groove 16 is T-shaped. The first body 21 and the second body 31 are T-shaped protrusions. The first body 21 and the second body 31 are inserted into the opening at the end of the sliding groove 16 and translated along the extending direction of the sliding groove 16. The first locking member 4 passes through the first body 21 and the second body 31 respectively and abuts against the inner bottom surface of the sliding groove 16. In other words, here, the first locking member 4 passes through the first body 21 and abuts against the sliding groove 16 of the adapter 1 to achieve cooperation, and the other first locking member 4 passes through the second body 31 and abuts against the sliding groove 16 of the adapter 1 to achieve cooperation. And the outer wall of the first locking member 4 has an external thread, and the inner wall of the through holes of the first body 21 and the second body 31 has an internal thread. The first locking member 4 is threadedly connected to the first body 21 and the second body 31. By twisting the first locking member 4, the frictional force generated after the first locking member 4 abuts against the inner bottom surface of the sliding groove 16 makes the positions of the first body 21 and the second body 31 relatively fixed. By twisting the first locking member 4 in the reverse direction, the first locking member 4 is separated from the inner bottom surface of the sliding groove 16, so that the first body 21 and the second body 31 can move.
[0057] The number of the bodies is the same as the number of the sliding grooves 16 and the number of the first locking members 4, ensuring that each body has a sliding groove 16 and a first locking member 4 for cooperation. In this embodiment, the number of the sliding grooves 16 is three. Taking the direction shown as an example, the sliding grooves 16 are located on the left and right sides and below the adapter 4. The sliding grooves 16 on the left and right sides of the adapter 1 are respectively connected to two first bodies 21, and the sliding groove 16 below the adapter 1 is connected to a second body 31. The first body 21 and the second body 31 are limited and connected in the sliding groove by the first locking member 4. Figure 14 As shown, on the side of the adapter 1 where the sliding groove 16 is not provided, the object to be supported is assembled and connected to the fishing box 6. Specifically, the object to be supported is the fishing umbrella pole 5. The fishing umbrella pole 5 is passed through the groove 15 and connected to the adapter 1. On the side of the adapter 1 where the sliding groove 16 is not provided, the fishing umbrella pole 5 and the fishing box 6 are connected through an existing connection structure. The fishing box 6 is located on one side of the fishing umbrella pole 5, and the support structure is located on the other side of the fishing box 6. The fishing box 6 and the support structure can provide support for the fishing umbrella from both sides of the fishing umbrella pole 5 to prevent the fishing umbrella from tipping over.
[0058] As Figure 9 shown, on the side of the adapter 1 where the sliding groove 16 is not provided, the object to be supported is assembled and connected to the fishing box 6. Specifically, the object to be supported is the fishing umbrella pole 5. The fishing umbrella pole 5 is passed through the groove 15 and connected to the adapter 1. On the side of the adapter 1 where the sliding groove 16 is not provided, the fishing umbrella pole 5 and the fishing box 6 are connected through an existing connection structure. The fishing box 6 is located on one side of the fishing umbrella pole 5, and the support structure is located on the other side of the fishing box 6. The fishing box 6 and the support structure can provide support for the fishing umbrella from both sides of the fishing umbrella pole 5 to prevent the fishing umbrella from tipping over.
[0059] In this embodiment, both the first support foot 22 and the second support foot 32 include an upper body 321, a lower body 322 and a second locking member 323. After the first body 21 and the second body 31 slide in the sliding groove 16 and are fixed to a certain height, by the relative rotation of the lower body 322 relative to the upper body 321, the first support foot 22 and the second support foot 32 are respectively adjusted to the target positions, and the upper body 321 and the lower body 322 are threadedly locked by the second locking member 4.
[0060] Specifically asFigure 13 Taking the direction shown as an example, twist the first locking member 4 to the relaxed state. The first body 21 and the second body 31 can move up and down in the chute 16 to adjust the vertical heights of the first support foot 22 and the second support foot 32. Twist the first locking member 4 in the reverse direction to lock it, and limit and fix the first body 21 and the second body 31 at the target position in the chute 16. Further, twist the second locking member 323 to the relaxed state, and the engaging teeth 211 between the upper sleeve 3211 and the lower sleeve 3221 are unlocked and relaxed. The upper sleeve 3211 and the lower sleeve 3221 can rotate freely. The lower body 322 of the first support foot 22 can rotate left and right around the second locking member 323 in a direction parallel to the paper surface, and the lower body 322 of the second support foot 32 can rotate up and down around the second locking member 323 in a vertical direction perpendicular to the paper surface, and is locked by the second locking member 323 in a spiral manner. Finally, the first support foot 22, the second support foot 32 and the end of the object to be supported form a triangular support structure, so as to achieve a stable support effect on the object to be supported.
[0061] The above specific embodiments are used to explain and illustrate the present invention, rather than to limit the present invention. Any modifications and changes made to the present invention within the spirit and scope of the claims of the present invention fall within the protection scope of the present invention.
Claims
1. A support structure, characterized in that, Comprising: An adapter (1), which can be connected to the object to be supported; A first support member (2), at least including a first body (21) and a first support leg (22) connected to the first body (21); A second support member (3), at least including a second body (31) and a second support leg (32) connected to the second body (31); At least one first locking member (4), which passes through the first body (21) and / or the second body (31) and then cooperates with the adapter (1); The first locking member (4) has a locked state and a relaxed state. In the relaxed state, the first body (21) / or the second body (31) can move relative to the adapter (1) so that different triangular support structures are formed by the first support leg (22), the second support leg (32) and the end of the object to be supported.
2. The support structure according to claim 1, wherein: An adapter portion (11) is formed on the outer wall of the adapter (1), The adapter portion (11) has an internal thread. The first body (21) and the second body (31) are hollow sleeve structures. After passing through the first body (21) and the second body (31), the first locking member (4) is threadedly connected to the adapter portion (11).
3. The support structure according to claim 2, characterized in that: Engaging teeth (211) are formed on the opposite sides of the first body (21) and the second body (31); Engaging teeth (211) are formed on the opposite sides of the first body (21) and the adapter portion (11).
4. The support structure according to claim 1, wherein: The first locking member (4), the first body (21), and the second body (31) are concentrically and coaxially connected; Internal threads are formed on the inner wall of the first body (21) and / or the second body (31).
5. The support structure according to claim 1, characterized in that: A chute (16) is formed on the outer wall of the adapter (1). The first body (21) and the second body (31) are T-shaped protrusions. The first body (21) and the second body (31) are slidably disposed in the chute (16). The first locking member (4) passes through the first body (21) and the second body (31) respectively and abuts against the chute (16) to limit and connect the first body (21) and the second body (31) at the target position in the chute (16).
6. The support structure according to claim 1, wherein: The first support leg (22) and / or the second support leg (32) includes an upper body (321), a lower body (322), and a second locking member (323). The upper body (321) forms an upper sleeve (3211), the lower body (322) forms a lower sleeve (3221), and the second locking member (323) can pass through the lower sleeve (3221) and be connected to the upper sleeve (3211).
7. The support structure according to claim 6, wherein: The central axis of the upper sleeve (3211) of the second support leg (32) is perpendicular to the central axis of the first body (21).
8. The support structure according to claim 6, characterized in that: Engaging teeth (211) are formed on the opposite sides of the upper sleeve (3211) and the lower sleeve (3221); Internal threads are formed on the upper sleeve (3211), and the second locking member (323) has external threads.
9. The support structure according to claim 1, wherein: The number of the first support members (2) is two, and they are disposed on both sides of the second support member (3).
10. The support structure according to claim 1, characterized in that: The object to be supported is a fishing umbrella rod (5). The adapter (1) includes a first hoop member (12) and a second hoop member (13) rotatably connected, and a third locking member (14).