Adjustable combined base
By designing an adjustable combination base and using the combination slide rails and combined sliders, the limitations of the existing figure model bracket in terms of angle and position adjustment are solved, achieving a diversified display of figure models and a rich play experience.
Patent Information
- Application Number
- CN202421315545.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-11
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-11
AI Technical Summary
The existing figure model brackets have limitations in angle and position adjustment, which cannot meet the diverse display needs of collectors, resulting in limited display effects and fun of figure models.
An adjustable combination base is designed. Through the cooperation of the slide rail and the combined slider, users can easily adjust the position and angle of the strut to achieve a variety of display postures.
The design allows the figure model to be displayed in various angles and postures, enriching the user's play experience and improving the display effect, making the figure model more vivid and interesting.
Smart Images

Figure CN222853536U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of model accessories, in particular to an adjustable combined base. Background Art
[0002] As a popular collectible, the display and play methods of action figures have always been the focus of collectors. As an important tool for supporting and displaying action figures, the design of action figure stands directly affects the display effect and play fun of action figures. However, the action figure stands in the prior art have some obvious disadvantages in design.
[0003] Existing technology disadvantage 1:
[0004] Existing model stands have limitations in terms of angle adjustment. Many stands are designed with fixed angles, and the display angle of the model cannot be freely adjusted according to the needs of collectors. This limits the viewing and display effect of the model, making it impossible for the model to show its unique charm at different angles. In addition, due to the fixed angle, collectors cannot easily adjust the display angle of the model, which increases the inconvenience of use.
[0005] The second disadvantage of the existing technology:
[0006] In addition to the problem of fixed angles, existing model stands also have problems with fixed positions and poor adaptability. On the one hand, many stands are designed to have fixed positions, and once a model is placed on the stand, its position is difficult to change. This limits the placement of the model in space, making the display of the model lack flexibility and diversity. On the other hand, due to the wide variety of models, shapes and sizes, existing stands are often unable to adapt to models of different shapes and sizes. This results in the model being unable to be stably placed on the stand, and it is easy to tip over or be damaged, causing unnecessary troubles to collectors. In addition, existing stands are also unable to adapt to other playing postures of the model, limiting the collection value and fun of playing with the model. Summary of the invention
[0007] To solve the above problems, the utility model provides an adjustable combined base. Through the cooperation of the slide rail and the combined slider, the user can easily adjust the position of the support rod. The hinged design of the support rod and the combined slider gives the base a larger adjustment range. The user can freely adjust the angle between the support rod and the base according to the modeling characteristics of the hand model.
[0008] To achieve the above purpose, the technical solution adopted by the utility model is: an adjustable combined base, including a combined base and a support rod, a slide rail is arranged on the surface of the combined base, and a plurality of combined sliders are slidably arranged on the slide rail, and the support rod and the combined slider are hinged to each other.
[0009] Furthermore, the combined slider includes a T-shaped structural piece and a first slider assembly, wherein the T-shaped structural piece includes a vertical portion and a horizontal portion, and a first barb structure is provided at the end of the vertical portion; the first slider assembly is assembled with the horizontal portion, and the support rod is hinged to the first slider assembly; the slide rail includes a first slide rail, and first entry holes for the first barb structure and the vertical portion to enter are provided at both ends of the first slide rail, and the first slider assembly moves along the direction of the first slide rail following the T-shaped structural piece.
[0010] Furthermore, the first slider assembly includes a head fixing main plate, a hinged fixing plate, and a chassis top cover plate, wherein a first mounting hole is provided on the horizontal portion, and first mounting protrusions are respectively provided at both ends of the head fixing main plate, and the head fixing main plate is matched with the first mounting holes of the two T-shaped structural plates through the first mounting protrusions at both ends, and a T-shaped mounting hole is provided on the surface of the head fixing main plate, and a corresponding second barb structure is provided at the bottom of the hinged fixing plate, and the hinged fixing plate is clamped in the T-shaped mounting hole through the second barb structure, and at the same time, the chassis top cover plate covers the surface of the head fixing main plate and is clamped between the two hinged fixing plates; at the same time, the support rod is provided between the two hinged fixing plates and is hinged to the two hinged fixing plates.
[0011] Furthermore, a second mounting block is provided on the top of the horizontal portion of the T-shaped structural piece, and second mounting holes are provided at both ends of the chassis top cover piece, and the two T-shaped structural pieces are mounted on the second mounting blocks and the second mounting holes of the chassis top cover piece through the second mounting blocks.
[0012] Furthermore, it also includes a lower fastening strip, and the slide rail also includes a second slide rail located on both sides of the first slide rail. Third mounting holes are set on both sides of the surface of the main plate for fixing the machine head. The lower fastening strip is arranged at the bottom of the combined base, and fourth mounting holes are set on both sides of the surface of the lower fastening strip. The connection between the two is achieved by passing screws through the third mounting hole, the second slide rail, and the fourth mounting hole.
[0013] Furthermore, a first hinge hole is arranged on the surface of the hinge fixing plate, and a third hinge hole is arranged at the end of the support rod, and the hinge connection between the two is achieved by passing the damping shaft through the first hinge hole and the third hinge hole.
[0014] Furthermore, it also includes a combined mechanical head, wherein the combined mechanical head includes a special-shaped fixing plate, several decorative modeling plates, a tubular spacer block, and a double-pass copper column, wherein several decorative modeling plates are stacked and placed, and two decorative modeling plates are spaced by a tubular spacer block, and the decorative modeling plates and the tubular spacer blocks are connected by screws passing through several decorative modeling plates and corresponding tubular spacer blocks, wherein the support rod passes through several decorative modeling plates in turn; the special-shaped fixing plates are respectively clamped and connected to both sides of the decorative modeling plates, and a second hinge hole is opened on the special-shaped fixing plates, and a first hinge hole is arranged on the surface of the hinged fixing plate, and the double-pass copper column is placed between the two hinged fixing plates, and the two are hinged by screws passing through the first hinge hole, the second hinge hole and the double-pass copper column.
[0015] Furthermore, a threaded through hole is provided on the surface of the special-shaped fixing plate, and the screw passes through the threaded through hole and stops against the support rod.
[0016] The beneficial effect of the utility model is that through the cooperation of the slide rail and the combined slider, the user can easily adjust the position of the support rod to adapt to figures or models of different sizes and shapes. This design allows the figures to be displayed at various angles and postures, greatly enriching the user's play experience. Secondly, the hinged design of the support rod and the combined slider gives the base a larger adjustment range. Users can freely adjust the angle between the support rod and the base according to the shape characteristics of the figure model, and realize the display of various shapes such as standing, squatting, bending, etc. This design not only improves the display effect, but also makes the figure model more vivid and interesting. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is the schematic diagram of the assembly of the combined base and the T-shaped structural piece.
[0018] Figure 2 It is the assembly principle diagram of the machine head fixed main plate and the hinged fixed plate.
[0019] Figure 3 It is the assembly principle diagram of the machine head fixing main plate, hinged fixing plate, T-shaped structural plate and combined base.
[0020] Figure 4 yes Figure 3 Schematic diagram of the assembly of the foundation and chassis top cover.
[0021] Figure 5 It is a partial assembly schematic diagram of the combined mechanical head.
[0022] Figure 6 It is a partial assembly schematic diagram of the combined mechanical head.
[0023] Figure 7 It is a partial assembly schematic diagram of the combined mechanical head.
[0024] Figure 8 It is a schematic diagram of the assembly of the combined mechanical head to achieve articulation.
[0025] Fig. 9 This is an assembly diagram of state 1 of the combined base.
[0026] Fig.10 This is an assembly diagram of state 2 of the combined base.
[0027] Fig.11 It is an assembly diagram of state 3 of the combined base.
[0028] Fig.12 It is an assembly diagram of state 4 of the combined base.
[0029] Fig.13 It is an assembly diagram of state 5 of the combined base.
[0030] Fig.14 It is an assembly diagram of the combined base after adopting another type of support rod.
[0031] Fig.15 It is a schematic diagram of the assembly of the combined base using two types of support rods.
[0032] Explanation of the accompanying figures: combined base 1, first slide rail 11, second slide rail 12, first entry hole 13, T-shaped structural piece 2, first barb structure 21, first mounting hole 22, second mounting protrusion 23, machine head fixing main piece 31, first mounting protrusion 311, T-shaped mounting hole 312, third mounting hole 313, hinged fixing piece 32, first hinge hole 321, second barb structure 322, chassis top cover piece 41, lower fastening strip 51, fourth mounting hole 511, combined mechanical head 6, decorative modeling piece 61, tubular spacer block 62, screw 63, special-shaped fixing piece 64, second hinge hole 641, screw thread through hole 642, support rod 7, double-through copper column 8. DETAILED DESCRIPTION
[0033] See also Figure 1-15 As shown, the utility model relates to an adjustable combined base, comprising a combined base 1 and a support rod 7. A slide rail is arranged on the surface of the combined base 1, and a plurality of combined sliding blocks are slidably arranged on the slide rail. The support rod 7 and the combined sliding blocks are hinged to each other.
[0034] The core advantage of this base lies in its flexibility and adjustability. Through the clever combination of the slide rail and the combined slider, the user can easily adjust the position of the support rod 7 to accommodate figures or models of different sizes and shapes. This design allows the figures to be displayed at various angles and postures, greatly enriching the user's play experience. Secondly, the hinged design of the support rod 7 and the combined slider gives the base a larger adjustment range. Users can freely adjust the angle between the support rod 7 and the base according to the shape characteristics of the figure model, and realize the display of various shapes such as standing, squatting, bending, etc. This design not only improves the display effect, but also makes the figure model more vivid and interesting.
[0035] In terms of user experience, its concise and clear design allows users to easily get started and quickly master the operation methods. The base also provides a variety of options for support rods 7 of different lengths and angles, which are convenient for users to replace or combine as needed. In addition, the base also has good scalability, and more slide rails and support rods 7 can be added according to user needs to meet a wider range of display needs.
[0036] See also Figure 1 As shown, the combined slider includes a T-shaped structural piece 2 and a first slider assembly, wherein the T-shaped structural piece 2 includes a vertical portion and a horizontal portion, and a first barb structure 21 is provided at the end of the vertical portion; the first slider assembly is assembled with the horizontal portion, and the support rod 7 is hinged to the first slider assembly; the slide rail includes a first slide rail 11, and first entry holes 13 for the first barb structure 21 and the vertical portion to enter are provided at both ends of the first slide rail 11, and the first slider assembly moves along the direction of the first slide rail 11 following the T-shaped structural piece 2.
[0037] See also Figure 1 As shown, first entry holes 13 are specially provided at both ends of the first slide rail 11. The size and shape of these holes match the vertical portion of the T-shaped structural piece 2 and the first barb structure 21, so that the T-shaped structural piece 2 can smoothly enter the slide rail.
[0038] When the T-shaped structural piece 2 needs to be installed on the first slide rail 11, the user only needs to align the vertical portion and the first barb structure 21 with the first entry hole 13, and then gently push the first slide rail 11. As the T-shaped structural piece 2 gradually goes deeper, once the T-shaped structural piece 2 completely enters the first slide rail 11, the first barb structure 21 plays its key role. Due to the special design of the barb, even under the action of external force, the T-shaped structural piece 2 is difficult to separate from the slide rail, thereby ensuring the stability and safety of the entire structure.
[0039] See also Figure 2-4As shown, the first slider assembly includes a head fixing main plate 31, a hinged fixing plate 32, and a chassis top cover plate 41, wherein a first mounting hole 22 is provided in the horizontal portion, wherein first mounting protrusions 311 are respectively provided at both ends of the head fixing main plate 31, and the head fixing main plate 31 is mounted with the first mounting holes 22 of two T-shaped structural plates 2 through the first mounting protrusions 311 at both ends (i.e., the two T-shaped structural plates 2 clamp one head fixing main plate 31), and a T-shaped mounting hole 312 is provided on the surface of the head fixing main plate 31, and a corresponding second barb structure 322 is provided at the bottom of the hinged fixing plate 32, and the hinged fixing plate 32 is clamped in the T-shaped mounting hole 312 through the second barb structure 322, and at the same time, the chassis top cover plate 41 covers the surface of the head fixing main plate 31 (the chassis top cover plate 41 and the head fixing main plate 31 are fixed by screws 63), and is clamped between the two hinged fixing plates 32.
[0040] See also Figure 2-4 As shown, as the main bearing part of the first slider assembly, the two ends of the head fixing main plate 31 are respectively provided with first fitting protrusions 311. The first fitting protrusions 311 match the first fitting holes 22 on the T-shaped structural plate 2, ensuring that the head fixing main plate 31 can be stably fixed between the two T-shaped structural plates 2 to form a clamping effect. In addition, a T-shaped fitting hole 312 is also provided on the surface of the head fixing main plate 31 for connecting with the hinged fixing plate 32. A second barb structure 322 is designed at the bottom of the hinged fixing plate 32, which matches the T-shaped fitting hole 312 on the head fixing main plate 31. Through the second barb structure 322, the hinged fixing plate 32 can be firmly clamped in the T-shaped fitting hole 312 to achieve a stable connection with the head fixing main plate 31. Moreover, the fitting principle between the second barb structure 322 and the T-shaped fitting hole 312 is similar to the fitting principle between the first barb structure 21 and the first slide rail 11 described above; and the chassis top cover sheet 41 is covered on the surface of the head fixing main sheet 31, and the chassis top cover sheet 41 and the head fixing main sheet 31 are fixed together using screws 63. Ensure that the chassis top cover sheet 41 is clamped between the two hinged fixing sheets 32 to provide additional stability and safety; at the same time, because the chassis top cover sheet 41 will cover a part of the T-shaped fitting hole 312 when it is fitted on the surface of the head fixing main sheet 31, and the function of this part is similar to the first entry hole 13, it can ensure that the hinged fixing sheet 32 is prevented from falling off.
[0041] See also Figure 3 As shown, as a further optimization solution, a second mounting protrusion 23 is also protruded from the top of the horizontal portion of the T-shaped structural piece 2, and second mounting holes are opened at both ends of the chassis top cover piece 41. The two T-shaped structural pieces 2 are mounted with the second mounting holes of the chassis top cover piece 41 through the second mounting protrusion 23.
[0042] See also Figure 3-4 As shown, the chassis top cover sheet 41 is covered on the surface of the head fixing main sheet 31, and the chassis top cover sheet 41 and the head fixing main sheet 31 are fixed together using screws 63 or other fasteners. During the covering process, ensure that the second fitting hole of the chassis top cover sheet 41 is aligned with the second fitting protrusion 23 on the T-shaped structural sheet 2 and fits tightly. The cooperation between the second fitting hole of the chassis top cover sheet 41 and the second fitting protrusion 23 of the T-shaped structural sheet 2 further enhances the stability and firmness of the entire structure. This design not only improves the overall strength of the structure, but also helps to prevent loosening or deformation caused by external forces.
[0043] See also Figure 4 As shown, as a further optimization solution, it also includes a lower fastening strip 51, and the slide rail also includes a second slide rail 12 located on both sides of the first slide rail 11, wherein third mounting holes 313 are set on both sides of the surface of the head fixing main plate 31, and the lower fastening strip 51 is arranged at the bottom of the combined base 1, and fourth mounting holes 511 are set on both sides of the surface of the lower fastening strip 51, and the connection between the two is achieved by passing the third mounting hole 313 and the fourth mounting hole 511 through the screw 63.
[0044] The main function of the lower fastening strip 51 is that when the user slides the hand or model to a suitable position, the screw 63 passes through the third fitting hole 313 on the head fixing main plate 31 and the fourth fitting hole 511 on the lower fastening strip 51 to achieve the connection and fixation of the two. This design allows the user to accurately adjust the position of the hand or model on the display base and firmly fix it with the fastening strip to prevent displacement or tipping during display.
[0045] Specifically, the user can slide the figurine or model to a suitable position on the slide rail according to the size, shape and display requirements of the figurine or model. Once the ideal position is found, the user can use screws 63 or other fasteners to connect the head fixing main plate 31 with the lower fastening strip 51. This connection method is not only stable and reliable, but also easy to operate, which greatly improves the user experience. The design of the second slide rail 12 is mainly to correspond to the give-way slide rail of the screw 63. Since the lower fastening strip 51 and the head fixing main plate 31 need to be connected by screws 63, and the head and rod of the screw 63 will take up a certain amount of space, it is necessary to set a give-way groove or a give-way hole (second slide rail 12) on the slide rail so that the screw 63 can pass through smoothly and connect the two.
[0046] As a further optimization solution, the surface of the hinged fixing plate 32 is provided with a first hinge hole 321, and the end of the support rod 7 is provided with a third hinge hole, and the two are hinged by passing the damping shaft through the first hinge hole 321 and the third hinge hole. The hinged fixing plate 32 is connected to the support rod 7 through the damping shaft, and the user can adjust the display angle or height of the hand or model as needed. During the adjustment process, the damping shaft will provide a certain resistance to ensure that the hand or model can stay stably in the desired position after the adjustment stops, and will not shake or change position due to slight external force.
[0047] See also Figure 6-8 As shown, as a further optimization scheme, it also includes a combined mechanical head 6, wherein the combined mechanical head 6 includes a special-shaped fixing sheet 64, several decorative modeling sheets 61, a tubular spacer block 62, and a double-pass copper column 8, wherein several decorative modeling sheets 61 are stacked, and two decorative modeling sheets 61 are spaced by a tubular spacer block 62, and the decorative modeling sheets 61 and the tubular spacer block 62 are connected by screws 63 passing through several decorative modeling sheets 61 and corresponding tubular spacer blocks 62, wherein the support rod 7 passes through several decorative modeling sheets 61 in turn; the special-shaped fixing sheets 64 are respectively clamped and connected to the two sides of the decorative modeling sheets 61, and the special-shaped fixing sheets 64 are provided with a second hinge hole 641, and the surface of the hinged fixing sheet 32 is provided with a first hinge hole 321, and the double-pass copper column 8 is placed between the two hinged fixing sheets 32, and the two are hinged by screws 63 passing through the first hinge hole 321, the second hinge hole 641 and the double-pass copper column 8.
[0048] In this specific embodiment, a unique stacked hollowing effect is formed by the through-hole design of the decorative modeling sheet 61 and the spacing effect of the tubular spacer block 62. This effect makes the display space more layered and changeable, bringing a new visual experience to the user. The shape, pattern and through-hole design of the decorative modeling sheet 61 are diverse, and users can make personalized choices and combinations according to their preferences and needs. This flexibility makes this design have a wide range of application prospects and market demand.
[0049] Moreover, a threaded through hole 642 is provided on the surface of the special-shaped fixing piece 64, and the screw passes through the threaded through hole 642 and stops against the support rod 7.
[0050] The design feature of the special-shaped fixing plate 64 is the threaded through holes 642 on its surface. These threaded through holes 642 have internal threads, so that screws can be screwed in and firmly fix the support rod 7. This design not only enhances the stability of the connection, but also provides a convenient installation and adjustment method. By simply rotating the screw 63, the connection between the support rod 7 and the special-shaped fixing plate 64 can be easily achieved, ensuring the stability and reliability of the support structure.
[0051] See also Figure 6-8As shown, the surface of the hinged fixing plate 32 is provided with a first hinge hole 321, and the special-shaped fixing plate 64 is provided with a second hinge hole 641. A double-pass copper column 8 is placed between the two hinged fixing plates 32, and a screw 63 is passed through the first hinge hole 321, the double-pass copper column 8 and the second hinge hole 641 to achieve a hinged connection between the hinged fixing plate 32 and the special-shaped fixing plate 64. This connection method can ensure that the head can stay stably at the desired position after adjusting the angle to prevent accidental shaking.
[0052] See also Figure 9-13 , which is the use effect state of the combined base 1 in the present application. The user can adjust the support rod 7 at different positions and different angles according to actual needs, such as at both ends of the first slide rail 11, different angles of the support rod 7, etc.
[0053] See also Figure 14-15 As another embodiment, two combined sliders can be arranged on the slide rail, and then one of the combined sliders is hinged to a strut 7, and the other combined slider is hinged to a strut 7 of another shape through the above-mentioned combined mechanical head 6, and then one strut 7 is fixedly connected to the other strut 7. In order to cope with the scenario where the weight of the work to be supported is too large or the shape is peculiar, and the stability requirement is higher, we propose an embodiment of a combined mechanical head 6 based on a triangular stable support structure. This design arranges two combined sliders on the slide rail, and hinges them to two struts 7 of different shapes respectively, and finally forms a triangular fixed structure by fixing the two struts 7, thereby providing a more stable support effect.
[0054] The above implementation modes are merely descriptions of the preferred implementation modes of the present invention, and are not intended to limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering and technical personnel in the field shall fall within the protection scope determined by the claims of the present invention.
Claims
1. An adjustable combined base, characterized in that: It comprises a combined base and a support rod. The surface of the combined base is provided with a slide rail, and a plurality of combined sliding blocks are slidably provided on the slide rail. The support rod and the combined sliding blocks are hinged to each other. The combined slider includes a T-shaped structural piece and a first slider assembly, wherein the T-shaped structural piece includes a vertical portion and a horizontal portion, and a first barb structure is provided at the end of the vertical portion; the first slider assembly is assembled with the horizontal portion, and the support rod is hinged with the first slider assembly; the slide rail includes a first slide rail, and first entry holes for the first barb structure and the vertical portion to enter are provided at both ends of the first slide rail, and the first slider assembly moves along the direction of the first slide rail following the T-shaped structural piece; The first slider assembly includes a head fixing main plate, a hinged fixing plate, and a chassis top cover plate, wherein a first mounting hole is arranged on the horizontal portion, and first mounting protrusions are respectively arranged on both ends of the head fixing main plate, and the head fixing main plate is matched with the first mounting holes of the two T-shaped structural plates through the first mounting protrusions at both ends, and a T-shaped mounting hole is provided on the surface of the head fixing main plate, and a corresponding second barb structure is provided on the bottom of the hinged fixing plate, and the hinged fixing plate is clamped in the T-shaped mounting hole through the second barb structure, and at the same time, the chassis top cover plate covers the surface of the head fixing main plate and is clamped between the two hinged fixing plates; at the same time, the support rod is arranged between the two hinged fixing plates and is hinged to the two hinged fixing plates.
2. The adjustable combined base according to claim 1, characterized in that: The top of the horizontal part of the T-shaped structural piece is also provided with a second mounting protrusion, and the two ends of the chassis top cover piece are provided with second mounting holes. The two T-shaped structural pieces are mounted with the second mounting protrusions and the second mounting holes of the chassis top cover piece through the second mounting protrusions.
3. The adjustable combined base according to claim 2, characterized in that: It also includes a lower fastening strip, and the slide rail also includes a second slide rail located on both sides of the first slide rail. Third mounting holes are set on both sides of the surface of the main plate for fixing the machine head. The lower fastening strip is arranged at the bottom of the combined base, and fourth mounting holes are set on both sides of the surface of the lower fastening strip. The connection between the two is achieved by passing screws through the third mounting hole, the second slide rail, and the fourth mounting hole.
4. The adjustable combined base according to claim 3, characterized in that: A first hinge hole is arranged on the surface of the hinge fixing plate, and a third hinge hole is arranged at the end of the support rod. The hinge connection between the two is realized by the damping shaft passing through the first hinge hole and the third hinge hole.
5. The adjustable combined base according to claim 3, characterized in that: It also includes a combined mechanical head, wherein the combined mechanical head includes a special-shaped fixing plate, several decorative modeling plates, a tubular spacer block, and a double-pass copper column, wherein several decorative modeling plates are stacked and placed, and two decorative modeling plates are spaced by a tubular spacer block, and the decorative modeling plates and the tubular spacer blocks are connected by screws passing through several decorative modeling plates and corresponding tubular spacer blocks, wherein the support rod passes through several decorative modeling plates in turn; the special-shaped fixing plates are respectively clamped and connected to the two sides of the decorative modeling plates, and a second hinge hole is opened on the special-shaped fixing plates, and a first hinge hole is arranged on the surface of the hinged fixing plates, and the double-pass copper column is placed between the two hinged fixing plates, and the two are hinged by screws passing through the first hinge hole, the second hinge hole and the double-pass copper column.
6. The adjustable combined base according to claim 5, characterized in that: A screw thread through hole is provided on the surface of the special-shaped fixing plate, and the screw passes through the screw thread through hole and stops against the support rod.