Baby bouncer structure
Patent Information
- Application Number
- CN202610386703.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-04-09
- Filing Date
- 2026-03-27
- Publication Date
- 2026-08-21
AI Technical Summary
[0003]惟,现行许多市售之婴儿弹跳椅大多是直接成型,因此,当要将此婴儿弹跳椅移动至他处时,通常要将整组的婴儿弹跳椅进行移动,并无法透过拆卸婴儿弹跳椅来达到易于携行之目的,再者,也无法依当时的需求来调整婴儿弹跳椅的倾斜角,来提供较佳的视野角度给婴儿;因此,如何提供一易于拆装且兼具可调整斜倾角度之婴儿弹椅,藉此,改善上述之缺点实有其必要
[0014] The main structure of the baby spring chair of the present invention is that the positioning unit of the adjustment limiting module is assembled on the adjustment rod unit of the base rod module. The control component causes the slider to move the locking member away from one of the positioning holes, allowing the positioning unit to slide on the adjustment rod unit to the desired position. Then, the locking member is fixed in one of the positioning holes. At this time, the limiting unit will form the required angle between the support rod module and the adjustment rod unit according to the position of the fixed positioning hole. Furthermore, the baby spring chair structure can be disassembled and assembled as needed, making it easy to carry when going out. Therefore, the baby spring chair structure of the present invention has a structure that is easy to adjust to the required angle for rocking and disassembly.
Smart Images

Figure CN122604189A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a baby chair structure, and more particularly to a baby spring chair structure that is easy to assemble and has an adjustable tilt angle. Background Technology
[0002] To provide infants and children with a better view when placed in the chair, or to help them fall asleep easily by rocking the chair, or to keep them feeling satisfied and curious while in the chair, these types of bouncy chairs allow infants and children to be moved up and down or bounced around, thereby achieving the purpose of making them wait quietly or fall asleep through rocking.
[0003] However, most commercially available baby bouncers are prefabricated, so when moving them to another location, the entire bouncer assembly usually needs to be moved. It is not possible to make them easy to carry by disassembling the bouncer. Furthermore, it is not possible to adjust the tilt angle of the bouncer to provide a better view for the baby. Therefore, it is necessary to provide a baby bouncer that is easy to assemble and disassemble and has an adjustable tilt angle to improve the above-mentioned shortcomings. Summary of the Invention
[0004] The purpose of this invention is to provide an adjustable tilt angle and easy assembly / disassembly structure for an infant spring chair.
[0005] To achieve the above objectives, the present invention provides a baby spring chair structure, which mainly includes a base rod module, an adjustment and limiting module, and a support rod module. The base rod module is provided with an adjustment rod unit, a first fixing unit, and a second fixing unit. The adjustment rod unit is provided with a plurality of positioning holes along its axial direction, and the first fixing unit is assembled at one end of the adjustment rod unit and the second fixing unit is assembled at the other end. The adjustment and limiting module is provided with a positioning unit and a limiting unit pivotally connected to it. One side of the positioning unit is slidably mounted on the adjustment rod unit, and the other side is pivotally connected to the limiting unit. The positioning unit has a control element, a slider, and a locking element. One end of the slider is provided with the control element, and the other end is provided with the locking element. The support rod module is composed of a plurality of tubes, and one side of the support rod module is respectively assembled with the limiting unit and the first fixing unit. The slider of the positioning unit limits the locking element to one of the positioning holes.
[0006] Furthermore, one end of the slider is provided with at least one guide unit, and the other end is provided with a groove. The control member is provided with a control post and assembled in the groove, so that the control member controls the slider to move along the axial direction of the adjustment rod unit. The guide units are provided with a guide slope and an adjacent stop surface, respectively.
[0007] Furthermore, the carding component has a guide block protruding from each of the guide units corresponding to the slider. The guide blocks are respectively wedged between the guide ramps and the stop surfaces of the corresponding guide units. When the control member moves along the axial direction of the adjusting rod unit, the control member causes the guide blocks to move along the guide ramps of the guide units. In this way, the slider controls the guide blocks to limit the carding component to one of the positioning holes.
[0008] Furthermore, the slider is provided with two such guide units, and a connecting recess is provided between the such guide units.
[0009] Furthermore, the adjustment limiting module is provided with a cover, which has a through hole through which the control post of the control component assembled on one side passes, and the control post is assembled in the slot of the slider on the other side of the cover.
[0010] Furthermore, the through hole is rectangular in shape along the axial direction of the adjusting rod unit.
[0011] Furthermore, the first fixing unit is provided with a plurality of pivot members, such that one end of the support rod module is pivotally connected to the pivot members of the first fixing unit, and the support rod module forms an angle adjustment recess at the end pivotally connected to the first fixing unit. When the positioning unit moves along the axial direction of the adjustment rod unit, the limiting unit controls the angle adjustment recess to make the axial direction of the support rod module and the adjustment rod unit have different angles.
[0012] Furthermore, the adjusting rod unit has a connecting member at each end, which can respectively connect the first fixing unit and the second fixing unit.
[0013] Furthermore, the strut module system is equipped with a chair cover unit, which is disposed in the tubes of the strut module.
[0014] The main structure of the baby spring chair of the present invention is that the positioning unit of the adjustment limiting module is assembled on the adjustment rod unit of the base rod module. The control component causes the slider to move the locking member away from one of the positioning holes, allowing the positioning unit to slide on the adjustment rod unit to the desired position. Then, the locking member is fixed in one of the positioning holes. At this time, the limiting unit will form the required angle between the support rod module and the adjustment rod unit according to the position of the fixed positioning hole. Furthermore, the baby spring chair structure can be disassembled and assembled as needed, making it easy to carry when going out. Therefore, the baby spring chair structure of the present invention has a structure that is easy to adjust to the required angle for rocking and disassembly. Attached Figure Description
[0015] Figure 1 : This is a three-dimensional schematic diagram of the infant spring chair structure of the present invention.
[0016] Figure 2 This is a three-dimensional exploded view of the infant spring chair structure of the present invention.
[0017] Figure 3 This is a partially exploded view of the adjustment and limiting module of the baby spring chair structure of the present invention.
[0018] Figure 4 This is a three-dimensional exploded view of the adjustment and limiting module of the baby spring chair structure of the present invention.
[0019] Figure 5 : This is a top view of the infant spring chair structure of the present invention.
[0020] Figure 6 :for Figure 5 A schematic diagram of a cross-section along section AA.
[0021] Figure 7 :for Figure 5 A schematic diagram of a cross-section along the BB line.
[0022] Figure 8 :for Figure 6 Diagram illustrating the adjustment action.
[0023] Figure 9 :for Figure 7 Diagram illustrating the adjustment action.
[0024] Figure 10 : This is a three-dimensional schematic diagram of the assembly of the seat cover unit of the baby spring chair structure of the present invention.
[0025] As shown in the figure: 10: Base rod module, 11: Adjusting rod unit, 111: Positioning hole, 112: Connecting part, 12: First fixing unit, 121: Pivot part, 13: Second fixing unit, 20: Adjustment limit module, 21: Positioning unit, 211: Control part, 212: Slider, 213: Locking part, 2131: Guide block, 214: Cover, 215: Guide unit, 2151: Guide slope, 2152: Stopping surface, 216: Connecting recess, 217: Slot, 218: Control column, 219: Through hole, 22: Limiting unit, 221: Limiting hole, 30: Support rod module, 31: Tube body, 32: Angle adjustment recess, 40: Chair cover unit. Detailed Implementation
[0026] Several preferred embodiments of the technical features and operation methods of this application are described below with reference to the accompanying drawings for examination. Furthermore, the figures in this invention are not necessarily drawn to scale for ease of explanation, and the scale in the figures is not intended to limit the scope of protection sought by this invention.
[0027] Please refer to the following: Figures 1 to 10As shown, the present invention provides a baby spring chair structure comprising a base rod module 10, an adjustment and limiting module 20, and a support rod module 30. The support rod module 30 can be configured with different types of seat cover units 40 as needed. The seat cover unit 40 is used to accommodate and secure an infant or child. The base rod module 10 includes an adjusting rod unit 11, a first fixing unit 12, and a second fixing unit 13. The adjusting rod unit 11 has a plurality of positioning holes 111 along its axial direction and a connecting member 112 at each of its opposite ends. The positioning holes 111 are located between the connecting members 112. The first fixing unit 12 is assembled at one end of the adjusting rod unit 11, and one connecting member 112 is used to lock and limit the first fixing unit 12. The second fixing unit 13 is assembled at the other end, and another connecting member 112 is used to lock and limit the second fixing unit 13. The first fixing unit 12 also has a plurality of pivot members 121. The adjustment limiting module 20 is equipped with a positioning unit 21 and a limiting unit 22 pivotally connected to it. One side of the positioning unit 21 is slidably mounted on the adjustment rod unit 11, and the other side is pivotally connected to the limiting unit 22. Please refer to [further details]. Figure 3 and Figure 4As shown, the limiting unit 22 is pivotally connected to the other end of the positioning unit 21 and has a limiting hole 221. The positioning unit 21 has a control member 211, a slider 212, a locking member 213, and a cover 214. The slider 212 has the control member 211 at one end and the locking member 213 at the other end. Two guide units 215 are protruding from one end of the slider 212. A connecting recess 216 is provided, and the other end of the slider 212 is recessed with a slot 217. The slot 217 is adjacent to the connecting recess 216, and the control member 211 is provided with a control post 218 protruding from it and assembled in the slot 217, so that the control member 211 controls the slider 212 to move along the axial direction of the adjusting rod unit 11. In addition, the cover 214 is provided with a through hole 219 through which the control post 218 of the control member 211 assembled on one side passes, and the control post 218 is assembled in the slot 217 of the slider 212 on the other side of the cover 214. In this embodiment, the through hole 219 is rectangular along the axial direction of the adjusting rod unit 11, but it is not limited to this. The guide units 215 are respectively provided with a guide slope 2151 and an adjacent stop surface 2152. In addition, the locking member 213 corresponds to the slider 212. Each of the guide units 215 is provided with a guide block 2131, and the guide blocks 2131 are respectively wedged between the guide ramps 2151 and the stop surfaces 2152 of the corresponding guide units 215. When the control member 211 moves along the axial direction of the adjusting rod unit 11, the control member 211 causes the guide blocks 2131 to move along the guide ramps 2151 of the guide units 215. The support module 30 is composed of a plurality of tubes 31. One side of the support module 30 is respectively assembled into the limiting unit 22 and the first fixing unit 12. One end of the support module 30 is pivotally connected to the pivot members 121 of the first fixing unit 12. An angle adjustment recess 32 is formed at the end of the support module 30 pivotally connected to the first fixing unit 12. This angle adjustment recess 32 can be formed by assembling the tubes 31 or by bending one of the tubes 31. This chair cover unit is number 40; please refer to [further details]. Figure 10 As shown, the chair cover unit 40 is assembled on the support rod module 30 formed by the tubes 31; The slider 212 of the positioning unit 21 causes the guide blocks 2131 of the assembled card component 213 to move along the guide ramps 2151. Please refer to [further details]. Figures 5 to 9 As shown, the card 213 is positioned in one of the positioning holes 111, and when the positioning unit 21 moves along the axial direction of the adjusting rod unit 11, the limiting unit 22 controls the angle adjusting recess 32 to make the support rod module 30 and the adjusting rod unit 11 have different angles.
[0028] Please refer to [further details]. Figures 1 to 10 As shown, the base rod module 10, the adjustment and limiting module 20, and the support rod module 30 are assembled sequentially. The user can then install the seat cover unit 40 onto the tubes 31 of the support rod module 30 as needed, allowing the seat cover unit 40 to provide support and seating for infants or children. Please refer to [link to documentation]. Figures 5 to 9 As shown, the user can control the control element 211 to guide the guide slopes 2151 of the slider 212 to move the guide blocks 2131 of the locking element 213 away from the positioning hole 111, and move the positioning unit 21 along the axis of the adjusting rod unit 11, so that the limiting unit 22 controls the angle between the angle adjustment recess 32 and the adjusting rod unit 11 along their axis, so that the support rod module 30 and the adjusting rod unit 11 have different axial angles, thus facilitating the assembly and adjustment of the required angle for swinging and disassembly.
[0029] In summary, the infant spring chair structure of the present invention mainly involves assembling the positioning unit 21 of the adjustment limiting module 20 onto the adjustment rod unit 11 of the base rod module 10. The control member 211 causes the slider to move the locking member 213 away from one of the positioning holes 111, allowing the positioning unit 21 to slide on the adjustment rod unit 11 to the desired position. Then, the locking member 213 is positioned within one of the positioning holes 111. At this point, the limiting unit 22, based on the position of the positioned hole 111, creates a desired angle between the support rod module 30 and the adjustment rod unit 11 along their axes. Furthermore, the infant spring chair structure can be disassembled and assembled as needed, making it easy to carry when going out. Therefore, the infant spring chair structure of the present invention has a structure that allows for easy adjustment of the desired angle for rocking and disassembly, thus providing convenience in use.
[0030] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the invention, such designs should fall within the protection scope of the present invention.
Claims
1. A baby spring chair structure, characterized in that... The infant spring chair structure includes: A base rod module is provided with an adjusting rod unit, a first fixing unit and a second fixing unit. The adjusting rod unit is provided with a plurality of positioning holes along its axial direction. The first fixing unit is assembled at one end of the adjusting rod unit and the second fixing unit is assembled at the other end. An adjustment and limiting module includes a positioning unit and a limiting unit pivotally connected to it. One side of the positioning unit is slidably mounted on the adjustment rod unit, and the other side is pivotally connected to the limiting unit. The positioning unit includes a control element, a slider, and a locking element. One end of the slider is fitted with the control element, and the other end is fitted with the locking element. A strut module is composed of a plurality of tubes, and one side of the strut module is respectively assembled into the limiting unit and the first fixing unit; The slider of the positioning unit causes the assembled card component to be positioned in one of the positioning holes.
2. The infant spring chair structure as described in claim 1, characterized in that one end of the slider has at least one guide unit protruding from it, and the other end has a recessed groove, and the control member is provided with a control post protruding from it and assembled in the groove, so that the control member controls the slider to move axially along the adjustment rod unit, wherein, Each of these guide units is provided with a guide ramp and an adjacent stop surface.
3. The infant spring chair structure as described in claim 2, characterized in that the locking member has a guide block protruding from each of the guide units corresponding to the slider, and the guide blocks are respectively wedged between the guide ramps and the stop surfaces of the corresponding guide units, wherein, When the control member moves axially along the adjusting rod unit, the control member causes the guide blocks to move along the guide ramps of the guide units, thereby the slider controls the guide blocks to limit the locking member to one of the positioning holes.
4. The infant spring chair structure as described in claim 2, characterized in that the slider is provided with two such guide units, and a connecting recess is provided between the such guide units.
5. The infant spring chair structure as described in claim 2, characterized in that the adjustment limiting module has a cover, the cover has a through hole through which the control post of the control member assembled on one side passes, and the control post is assembled in the slot of the slider on the other side of the cover.
6. The infant spring chair structure as described in claim 5, characterized in that the through hole is rectangular in shape along the axial direction of the adjusting rod unit.
7. The infant spring chair structure as described in claim 5, characterized in that the first fixing unit is provided with a plurality of pivot members, such that one end of the support rod module is pivotally connected to the pivot members of the first fixing unit, and the support rod module forms an angle adjustment recess at the end pivotally connected to the first fixing unit, such that when the positioning unit moves along the axial direction of the adjustment rod unit, the limiting unit controls the angle adjustment recess to make the axial direction of the support rod module and the adjustment rod unit have different angles.
8. The infant spring chair structure as described in claim 1, characterized in that the adjustment rod unit has a connecting member at each end, which can respectively connect the first fixing unit and the second fixing unit.
9. The infant spring chair structure as described in claim 1, characterized in that the support module is provided with a seat cover unit, the seat cover unit being disposed in the tubes of the support module.