Baby folding cradle frame and baby cradle
By designing a folding baby rocker frame that combines folding and rocking functions, the problem of baby cribs not being able to fold and rock simultaneously has been solved, thus improving portability and soothing function.
Patent Information
- Application Number
- CN202520135047.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing cribs often lack both folding and rocking functions, resulting in deficiencies in carrying and soothing infants to sleep.
A baby folding rocker frame is designed, comprising a control unit, an upper frame unit, a lower frame unit, and a swing unit. The folding and rocking functions are achieved through manual or electric control, and the structure is optimized through a support frame to improve stability.
This design reduces the space occupied by the crib when not in use, making it easier to store and carry. It also features a rocking function to soothe babies to sleep, improving both convenience and safety.
Smart Images

Figure CN223958583U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of baby crib technology, and in particular to a baby folding rocker frame and baby rocker. Background Technology
[0002] As an indispensable product in the growth process of infants and toddlers, the design and function of cribs have been continuously developed and improved. However, cribs currently on the market have some shortcomings, especially in terms of folding and rocking performance.
[0003] A common type of crib is foldable, but these cribs typically lack a rocking function. The folding feature allows for easy storage and transport when not in use, which is very practical for families with limited space or those who frequently travel. However, the lack of a rocking function makes these cribs less effective at soothing babies to sleep. Babies often need to be rocked to soothe them, mimicking the feeling of being held by their mother, thus promoting sleep. Therefore, a crib that cannot rock may not meet the needs of both parents and babies in certain situations.
[0004] Another common type of crib is the rocking crib, but these usually lack a folding mechanism. The rocking function, whether manual or electric, simulates the gentle touch of a mother's embrace, effectively promoting sleep. However, the lack of a folding function makes these cribs inconvenient to carry and store. For families who frequently travel, a non-folding crib undoubtedly increases the difficulty and cost of transporting it. Utility Model Content
[0005] To overcome at least one of the defects described in the prior art, this utility model provides a folding baby rocker frame and a baby rocker. It solves the problem that folding and rocking cannot coexist, greatly improving the practicality of the baby rocker.
[0006] The technical solution adopted by this utility model to solve its problem is:
[0007] A baby folding rocker frame includes: a control unit comprising a main board and a secondary board disposed opposite to each other; an upper frame unit comprising a first upper frame and a second upper frame forming an annular shape, the ends of the first upper frame and the second upper frame being rotatably connected to the main board and the secondary board, respectively; a lower frame unit disposed below the upper frame unit, comprising a first lower frame and a second lower frame forming an annular shape; and a swing unit comprising a first swing member hinged to the main board and a second swing member hinged to the secondary board, the ends of the first lower frame and the second lower frame being hinged to the lower ends of the first swing member and the second swing member, respectively, so that the lower frame unit can swing relative to the upper frame unit; when folded, the first upper frame and the second upper frame rotate and fold towards the lower frame unit, and the first lower frame and the second lower frame rotate and fold away from or towards the upper frame unit.
[0008] By adopting the above solution, when not in use, the first and second upper half frames can be rotated and folded towards the lower half frame unit, while the first and second lower half frames can be rotated and folded away from the upper half frame unit. This design significantly reduces the space occupied by the rocker when not in use, making it convenient for storage and carrying; at the same time, when in use, the rocking unit can be manually or electrically controlled to swing, allowing the baby to be soothed by rocking when crying, thus improving the convenience of use.
[0009] Furthermore, it also includes a first support frame and a second support frame that can be folded in opposite directions. The first support frame and the second support frame each include: a first support rod, the top end of which is hinged to the main board; a second support rod, the top end of which is hinged to the sub-board; and a leg, one end of which is connected to the bottom end of the first support rod and the other end of which is connected to the bottom end of the second support rod.
[0010] By adopting the above solution, through the opposing folding design of the first and second support frames, and the connection of the legs, the structure of the entire rocker frame has been further optimized. This not only improves the stability of the rocker but also reduces possible shaking and tilting during use, thus ensuring the safety of the baby. When the rocker is not in use, not only can the upper and lower frame units be folded, but the support frame itself can also be further folded, thereby greatly reducing the overall space occupied.
[0011] Furthermore, the main board and the sub-board are provided with an unlocking component and a first locking part, and the first upper half frame and the second upper half frame are provided with a second locking part. The first locking part and the second locking part are engaged, and the unlocking component is triggered to drive the first locking part to disengage from the second locking part.
[0012] By adopting the above solution, and through the cooperation of the unlocking components on the main board and the sub-board, as well as the first and second locking parts, users can easily fold and unfold the rocker. When the rocker needs to be folded, simply triggering the unlocking component will cause the first locking part to disengage from the second locking part, allowing the upper frame to fold downwards smoothly. When the locking parts are correctly engaged, the upper and lower frames can form a ring-shaped protective barrier structure, which, together with the support frame, forms a stable overall structure, effectively preventing accidental injury to the baby caused by the rocker shaking or tilting while playing or resting.
[0013] Furthermore, of the first locking part and the second locking part, one is a protruding locking key structure, and the other is a locking structure adapted to the locking key structure.
[0014] By adopting the above solution, the tight fit between the key structure and the locking structure ensures the stability of the shaker during use. When the key structure is fully inserted into the locking structure, the friction between the two is sufficient to resist external interference with the shaker and prevent the shaker from being folded without authorization.
[0015] Furthermore, both the main board and the sub-board include: a first cover, the first cover having a first rotating groove and a second rotating groove, the ends of the first upper half frame and the second upper half frame rotating in the first rotating groove and the second rotating groove respectively; a second cover, the second cover being fastened to the first cover, and two rotating locking mechanisms for locking with the first support frame and the second support frame are provided between the second cover and the first cover.
[0016] By adopting the above scheme, the design of the first rotating groove and the second rotating groove allows the ends of the first upper half frame and the second upper half frame to rotate in the two grooves respectively; two rotating locking mechanisms are provided between the second cover and the first cover, and these two mechanisms are used to lock and connect with the first support frame and the second support frame to prevent the first support frame and the second support frame from easily folding under force.
[0017] Furthermore, the ends of the first upper half frame and the second upper half frame are provided with upper frame connectors, the second locking part is located on the upper frame connector, the unlocking part and the first locking part are located on the first cover, and the upper frame connector is also provided with a rotating shaft groove that is rotatably connected to the first cover.
[0018] By adopting the above solution, the first and second upper half frames can be stably engaged with the first cover when unfolded; the pivot groove is provided on the upper frame connector and forms a rotatable connection with the first cover, so that it can be rotated and folded after the first and second upper half frames are disengaged.
[0019] Furthermore, a push rod is provided between the rotating shaft groove and the first cover body. The rotating locking mechanism includes a first elastic element and a gear. The first elastic element is located between the second cover body and the gear. The ends of the first support frame and the second support frame are provided with gear slots for accommodating the gear. One end of the push rod passes through the rotating shaft groove and abuts against the gear. The other end of the push rod is provided with a first inclined surface arranged circumferentially along the axis of the push rod. A second inclined surface tangent to the first inclined surface is provided in the rotating shaft groove. When the upper frame unit is folded, the first inclined surface and the second inclined surface are tangent, which drives the push rod to move towards the gear, so that the gear compresses the first elastic element and disengages from the gear slot.
[0020] By adopting the above scheme, the push rod is designed so that when the upper frame unit is folded, its first inclined surface can be tangent to the second inclined surface in the rotating shaft groove, thereby driving the push rod to move in the direction of the gear, realizing the unlocking of the gear, and thus enabling the rotation of the first support frame and the second support frame. That is, when the upper frame unit is not folded, the gear is engaged with the gear slot, avoiding the accidental rotation of the first support frame and the second support frame, and improving the overall stability.
[0021] Furthermore, the unlocking component includes an unlocking button and a second elastic element. The first cover has a button hole for exposing the unlocking button, and the second elastic element provides a spring force for the unlocking button to return to the outside of the button hole.
[0022] By adopting the above solution, the combined design of the unlock button and the second elastic element allows users to easily perform unlocking operations, greatly improving ease of use; the second elastic element ensures that the unlock button remains in a stable position when not in use, preventing accidental operation due to accidental touch and enhancing product stability.
[0023] Furthermore, a drive motor is provided in the main board and / or the sub-board, and the output end of the drive motor is connected to the swing unit to drive the first swing member and the second swing member to swing.
[0024] By adopting the above scheme, an electric swing effect can be achieved, enabling intelligent control.
[0025] An infant rocker includes a cover and an infant folding rocker frame, the cover being wrapped between an upper frame unit and a lower frame unit to form a space for accommodating an infant.
[0026] By adopting the above solution, a warm and quiet resting environment is provided for the baby, and the baby's safety and comfort in the cradle are ensured; at the same time, the baby folding cradle frame has the functions of rocking and folding, making it an ideal choice for family or outdoor outings.
[0027] In summary, the baby folding rocker frame and baby rocker provided by this utility model have the following technical effects:
[0028] 1. Both the upper and lower frame units can be folded when not in use, significantly reducing space usage. This is especially important for families with limited living space or those who need to frequently move the crib. The folded crib is not only easy to store but also easy to carry, providing great convenience for family outings;
[0029] 2. Through the design of the swing unit, this rocking crib frame can simulate the gentle touch of a mother's embrace, effectively soothing the baby and promoting their sleep. This rocking function is especially useful when the baby is crying or has difficulty falling asleep, helping parents to better care for their infant.
[0030] 3. With its folding and rocking functions, this baby rocker is suitable for various scenarios. Whether used at home or taken outdoors, it provides a comfortable and safe resting environment for the baby, enhancing its dual functionality, ease of use, safety, comfort, and adaptability. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the frame structure of the folding rocker bed with support frame according to Embodiment 1 of this utility model;
[0032] Figure 2 This is an exploded view of the connection structure between the control unit and the upper frame unit support frame in Embodiment 1 of this utility model;
[0033] Figure 3 This is an exploded view of the partial connection structure of the control unit in Embodiment 1 of this utility model;
[0034] Figure 4 This is an exploded view of the partial connection structure of the control unit in Embodiment 1 of this utility model;
[0035] Figure 5 This is a schematic diagram of the cloth sleeve installation structure of Embodiment 1 of this utility model;
[0036] Figure 6 This is a schematic diagram of the partial disassembly structure of the swing unit in Embodiment 1 of this utility model;
[0037] Figure 7 This is a schematic diagram of the folded structure of Embodiment 1 of this utility model;
[0038] Figure 8 This is a schematic diagram of the folding shaker frame structure of the support frame in Embodiment 2 of this utility model;
[0039] Figure 9for Figure 8 Enlarged view of area A in the middle;
[0040] Figure 10 This is a partial disassembly diagram of the folding rocker frame of Embodiment 2 of this utility model;
[0041] Figure 11 This is a partial disassembly diagram of the folding rocker frame of Embodiment 2 of this utility model;
[0042] Figure 12 This is a schematic diagram of the disassembly structure of the drive motor in Embodiment 2 of this utility model;
[0043] Figure 13 This is a schematic diagram of the folded structure of Embodiment 2 of this utility model.
[0044] The meanings of the reference numerals in the attached drawings are as follows: 1. Control unit; 11. Main board; 111. First locking part; 112. Unlocking component; 1121. Unlock button; 1122. Second elastic component; 1123. Assembly slot; 1124. Locking key; 12. Sub-board; 13. First cover; 131. First rotating slot; 132. Second rotating slot; 133. Button hole; 134. Opening; 14. Second cover; 15. Rotating locking mechanism; 151. First elastic component; 152. Gear; 2. Upper frame unit; 21. First upper half frame; 22. Second upper half frame; 3. Lower frame unit; 31. First lower half frame; 32. Second lower half frame; 4. Swing unit; 41. First swing. 42. Second swing component; 43. Locking block; 431. Handheld part; 432. Abutting protrusion; 44. Reserved hole; 5. First support frame; 51. First support rod; 511. Gear slot; 52. Second support rod; 53. Foot; 6. Second support frame; 7. Upper frame connector; 71. Second locking part; 72. Rotating shaft groove; 721. Second inclined surface; 8. Lower frame connector; 81. Rotating connecting arm; 82. Hinge seat; 83. Rotating shaft; 84. Hinge arm; 9. Push rod; 91. First inclined surface; 10. Cloth cover; 20. Drive motor; 201. Grating disk; 202. Sensing component; 203. Fixed seat; 30. Support frame; 301. Connecting column; 40. Motor compartment. Detailed Implementation
[0045] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described and discussed below with reference to the accompanying drawings. Obviously, what is described here is only a part of the examples of this invention, not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the protection scope of this invention.
[0046] To facilitate understanding of the embodiments of this utility model, further explanations and descriptions will be provided below with reference to the accompanying drawings and specific embodiments. These embodiments do not constitute a limitation on the embodiments of this utility model.
[0047] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0048] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0049] See Embodiment 1 of this utility model. Figures 1-7 As shown, a baby folding rocker frame is disclosed, including a control unit 1, an upper frame unit 2, a lower frame unit 3, and a swing unit 4. The control unit 1 includes a main board 11 and a secondary board 12 disposed opposite to each other. The upper frame unit 2 includes a first upper half frame 21 and a second upper half frame 22 forming an annular shape, with the ends of the first upper half frame 21 and the second upper half frame 22 rotatably connected to the main board 11 and the secondary board 12, respectively. The lower frame unit 3 is disposed below the upper frame unit 2 and includes a first lower half frame 31 and a second lower half frame 32 forming an annular shape. The swing unit 4 includes a first swing member 41 hinged to the main board 11 and a second swing member hinged to the secondary board 12. The moving part 42, the ends of the first lower half frame 31 and the second lower half frame 32 are respectively hinged to the lower ends of the first swinging member 41 and the second swinging member 42, so that the lower frame unit 3 can swing relative to the upper frame unit 2; when folded, the first upper half frame 21 and the second upper half frame 22 rotate and fold towards the lower frame unit 3, and the first lower half frame 31 and the second lower half frame 32 rotate and fold away from or towards the upper frame unit 2. When not in use, the first upper half frame 21 and the second upper half frame 22 can rotate and fold towards the lower frame unit 3, while the first lower half frame 31 and the second lower half frame 32 rotate and fold away from the upper frame unit 2. This design significantly reduces the space occupied by the rocker when not in use, making it convenient for storage and carrying; at the same time, when in use, the swinging unit 4 can be manually or electrically controlled to swing, so that the baby can be soothed by rocking when crying, improving the convenience of use.
[0050] Since the upper frame unit 2 and the lower frame unit 3 need to be suspended in the air to achieve the swaying effect, they usually need to be supported by a wall or fixed to some support frame. Specifically, in this embodiment 1, see [reference needed]. Figure 1 As shown, the system also includes a first support frame 5 and a second support frame 6 that can be folded in opposite directions. Both the first support frame 5 and the second support frame 6 include a first support rod 51, a second support rod 52, and a foot bracket 53. The top end of the first support rod 51 is hinged to the main board 11, and the top end of the second support rod 52 is hinged to the auxiliary board 12. Specifically, both the main board 11 and the auxiliary board 12 have a semi-arc structure. The first support rod 51 and the second support rod 52 extend from the two sides of the arc towards the ground, effectively limiting the maximum opening angle between the first support frame 5 and the second support frame 6. One end of the foot bracket 53 is connected to the bottom end of the first support rod 51, and the other end is connected to the bottom end of the second support rod 52. The foot bracket 53 includes legs for supporting on the ground and a leg connecting rod connecting the two legs, ensuring the stability of the first support rod 51 and the second support rod 52. Through the opposing folding design of the first support frame 5 and the second support frame 6, and the connection of the foot bracket 53, the structure of the entire shaking table frame is further optimized. This not only improves the stability of the rocker but also reduces the shaking and tilting that may occur during use, thus ensuring the safety of the baby. When the rocker is not in use, not only can the upper frame unit 2 and the lower frame unit 3 be folded, but the support frame itself can also be further folded, which greatly reduces the overall space occupied.
[0051] In some embodiments, see Figure 2 As shown, both the main board 11 and the sub-board 12 include a first cover 13 and a second cover 14 that interlock with each other, forming a cavity between the first cover 13 and the second cover 14. The first cover 13 is provided with a first rotating groove 131 and a second rotating groove 132, with the openings of the first rotating groove 131 and the second rotating groove 132 facing away from the second cover 14. The ends of the first upper half frame 21 and the second upper half frame 22 rotate in the first rotating groove 131 and the second rotating groove 132, respectively. The second cover 14 is interlocked with the first cover 13. The second cover 14 and the first cover 13 are connected by two rotating locking mechanisms 15 for engaging with the first support frame 5 and the second support frame 6. The design of the first rotating groove 131 and the second rotating groove 132 allows the ends of the first upper half frame 21 and the second upper half frame 22 to rotate within these two grooves respectively. The two rotating locking mechanisms 15 are used to engage with the first support frame 5 and the second support frame 6 to prevent the first support frame 5 and the second support frame 6 from easily folding under force.
[0052] To make the rotation between the first upper frame 21, the second upper frame 22 and the first rotating groove 131, the second rotating groove 132 more stable, in some embodiments, see [reference needed]. Figure 1-4 As shown, the ends of the first upper half frame 21 and the second upper half frame 22 are provided with upper frame connectors 7. The upper frame connectors 7 have insertion interfaces that are inserted into the ends of the first upper half frame 21 or the second upper half frame 22. Below the insertion interface, there is also a rotating shaft groove 72 that is rotatably connected to the first cover 13. The rotating shaft groove 72 is coaxially arranged with the first rotating groove 131 or the second rotating groove 132 and is rotatably connected by a rotating shaft rod.
[0053] To prevent the upper frame unit 2 and the lower frame unit 3 from automatically folding due to gravity in the folded state, a corresponding locking structure needs to be provided at the hinge to achieve relative fixation in the folded state. Therefore, in some embodiments, see... Figure 2-4 As shown, an unlocking component 112 and a first locking part 111 are provided on the main board 11 and the sub-board 12. A second locking part 71 is provided on the first upper half frame 21 and the second upper half frame 22. Preferably, when the upper frame connector 7 is present, the second locking part 71 is located on the upper frame connector 7, and the unlocking component 112 and the first locking part 111 are located on the first cover 13. The first locking part 111 engages with the second locking part 71, triggering the unlocking component 112 to drive the first locking part 111 to disengage from the second locking part 71. Through the cooperation of the unlocking component 112 and the first locking part 111 and the second locking part 71 on the main board 11 and the sub-board 12, the user can easily fold and unfold the rocker. When the rocker needs to be folded, simply trigger the unlocking part 112 to drive the first locking part 111 to disengage from the second locking part 71, allowing the upper half of the frame to fold downwards smoothly. When the locking parts are properly engaged, the upper half of the frame and the lower half of the frame can form a ring-shaped protective barrier structure, which, together with the support frame, forms a stable overall structure, effectively preventing accidental injury to the baby caused by the rocker shaking or tilting while playing or resting.
[0054] It should be noted that, of the first locking part 111 and the second locking part 71, one is a protruding locking key structure, and the other is a locking structure adapted to the locking key structure. The tight fit between the locking key structure and the locking structure ensures the stability of the shaker during use. When the locking key structure is fully inserted into the locking structure, the friction between the two is sufficient to resist external interference to the shaker and prevent the shaker from being folded without authorization. In this embodiment 1, see... Figure 3-4As shown, the first locking part 111 is an outwardly protruding bump, and the second locking part 71 does not have a corresponding locking hole for engaging with the locking block. In this embodiment, the shape and number of the bump and locking hole are not limited, and include, but are not limited to, rectangular or circular shapes.
[0055] In some embodiments, see Figure 1-3 As shown, the unlocking component 112 includes an unlocking button 1121 and a second elastic element 1122. The first cover 13 has a button hole 133 for exposing the unlocking button 1121. The second elastic element 1122 provides a spring force for the unlocking button 1121 to return to its original position outside the button hole 133. The cooperative design of the unlocking button 1121 and the second elastic element 1122 allows users to easily perform unlocking operations, greatly improving ease of use. The second elastic element 1122 ensures that the unlocking button 1121 remains in a stable position when not in use, preventing accidental operation due to accidental contact and enhancing product stability. Preferably, the second elastic element 1122 is a spring. In this embodiment 1, openings 134 are provided on both sides of the button hole 133 of the first cover 13. An assembly groove 1123 is provided at the end of the unlock button 1121 facing the second cover 14. A locking key 1124 is assembled in the assembly groove 1123, with both ends of the locking key 1124 extending towards both sides of the unlock button 1121. A first locking portion 111 is located at both ends of the locking key 1124, and the first locking portion 111 is positioned directly opposite the opening 134. This means that when the locking key 1124 moves, the first locking portion 111 will pass through the opening 134 and engage with the external second locking structure. Furthermore, the locking blocks of the first locking portion and the latches of the second locking portion can be interchanged, greatly improving manufacturing flexibility.
[0056] To improve the stability of the first support frame 5 and the second support when folding is not required, and to prevent them from easily folding and deforming, a locking and unlocking structure is needed. In some embodiments, this locking and unlocking structure can be set with reference to the unlocking component 112 and the locking structure in the upper frame unit 2. To further simplify the unlocking operation, preferably, refer to... Figure 2-4As shown, the unlocking and folding steps of the first support frame 5 and the second support are linked with the unlocking element 112 and the locking structure in the upper frame unit 2, so that the folding of the upper frame unit 2 becomes a necessary pre-operation for the folding of the first support frame 5 and the second support, achieving the effect of simultaneous folding and storage with one unlocking, without triggering multiple unlocking elements 112. Specifically, a push rod 9 is provided between the pivot groove 72 and the first cover 13, and the rotating locking mechanism 15 includes a first elastic element 151 and a gear 152. The first elastic element 151 is located between the second cover 14 and the gear 152. The ends of the first support frame 5 and the second support frame 6 are provided with gear slots 511 for accommodating the gear 152. When the gear 152 is engaged in the gear slot 511, the first support frame 5 and the second support frame 6 cannot be rotated or folded due to their meshing. One end of the push rod 9 passes through the pivot groove 72 and abuts against the gear 152. The other end of the push rod 9 is provided with a first inclined surface 91 arranged circumferentially along the axis of the push rod 9. The pivot groove 72 is provided with a second inclined surface 721 tangent to the first inclined surface 91. When the upper frame unit 2 is folded, the first inclined surface 91 and the second inclined surface 721 are tangent to each other, which drives the push rod 9 to move towards the gear 152, so that the gear 152 compresses the first elastic element 151 and disengages from the gear slot 511, thereby allowing the folding operation of the first support frame 5 and the second support frame 6 to continue. The design of the push rod 9 allows the first inclined surface 91 on the upper frame unit 2 to be tangent to the second inclined surface 721 in the rotating shaft groove 72 when the upper frame unit 2 is folded. This drives the push rod 9 to move towards the gear 152, thereby unlocking the gear 152 and enabling the rotation of the first support frame 5 and the second support frame 6. That is, when the upper frame unit 2 is not folded, the gear 152 engages with the gear slot 511, preventing accidental rotation of the first support frame 5 and the second support frame 6 and improving overall stability.
[0057] In some embodiments, see Figure 6As shown, the first swing member 41 and the second swing member 42 in the swing unit 4 are rectangular plates, and the ends of the rectangular plates are provided with rotating shafts. The rotating shafts protrude from both sides of the ends of the rectangular plates. The rotating shafts protruding from both sides of the top of the swing unit 4 can be rotatably connected to the main board 11 or the sub-board 12. The rotating shafts protruding from both sides of the bottom of the swing unit 4 can be rotatably connected to the lower frame unit 3. Optionally, the rotating shafts can be integrally formed with the rectangular plates, that is, the ends of the rectangular plates have semi-circular protrusions or columnar rods protruding outwards. Optionally, in the connection between the swing unit 4 and the lower frame unit 3, the lower frame unit 3 may further include a lower frame connector 8 for connecting the first lower half frame 31 and the second lower half frame 32. Specifically, the lower frame connector 8 is a columnar rod structure. The side of the lower frame connector 8 is provided with a rotating connecting arm 81 for rotatingly connecting with the rotating shaft rod on the first swing member 41 or the second swing member 42. One end of the lower frame connector 8 is hinged to the end of the first lower half frame 31, and the other end of the lower frame connector 8 is hinged to the end of the second lower half frame 32.
[0058] In some embodiments, the structure of the lower frame connector 8 can be improved, see details below. Figure 8-10 The lower frame connector 8 has hinge seats 82 at both ends for hinged connection with the first lower half frame 31 and the second lower half frame 32. A rotating shaft 83 is provided between the two hinge seats. The bottom ends of the first swing member 41 and the second swing member 42 are provided with hinge arms 84 for rotatably connected with the rotating shaft 83. Preferably, the bottom ends of the first swing member 41 and the second swing member 42 are each provided with two hinge arms 84. The rotating shaft 83 passes through the two hinge arms 84, making the overall swing process more stable.
[0059] Optionally, a bottom support frame 30 is provided between the bottom ends of the first swing member 41 and the second swing member 42. The bottom support frame 30 has connecting posts 301 at both ends. The connecting posts 301 can be inserted between the two hinge arms 84. At the same time, the connecting posts 301 are hollow inside, so that the rotating shaft 83 can pass through them, so that the connecting posts 301 and the rotating shaft 83 can achieve a rotational connection effect. During the swinging process, the bottom support frame 30 can provide a more stable support effect for the bottom of the lower frame unit 3.
[0060] See Embodiment 2 of this utility model. Figures 8-13As shown, based on Embodiment 1, a drive motor 20 is provided within the main board 11 and / or the sub-board 12. The output end of the drive motor 20 is driven and connected to the swing unit 4 to drive the first swing member 41 and the second swing member 42 to swing. Specifically, the main board 11 and / or the sub-board 12 has a reserved motor compartment 40, which is located below the snap-fit key 1124. A sensing component 202 is installed at one end of the motor compartment 40, and a grating disk 201 is provided at one end of the drive motor 20. The sensing component 202 can sense the grating disk 201, thereby sensing the current rotational speed of the drive motor 20 and realizing intelligent control. Preferably, the drive motor 20 integrates a gearbox, which changes the rotational speed and torque through gear meshing, facilitating better control of the drive motor 20's rotational speed. The other end of the drive motor 20 is an output end, which passes through the other end of the motor compartment 40 and is driven and connected to the swing unit 4 to drive the first swing member 41 and the second swing member 42 to swing synchronously. Preferably, the motor compartment 40 is also provided with a fixing seat 203 for fixing the drive motor 20.
[0061] Optionally, in some embodiments, to improve the stability of the swing unit 4 when no swinging is required, a locking block 43 is provided below the first swing member 41 and the second swing member 42 and slidably connected thereto. The locking block 43 has a handhold 431, and pre-drilled holes 44 are provided on the opposite sides of the first swing member 41 and the second swing member 42 corresponding to the handhold. The bottom of the locking block 43 has an abutting protrusion 432, which extends out from the bottom edge of the first swing member 41 and the second swing member 42 and abuts against the rotating shaft 83 to increase the rotational friction of the rotating shaft 83, thereby improving the stability of the swing unit 4. To avoid swinging, when swinging is required, simply control the handhold 431 to slide upwards, causing the abutting protrusion 432 to disengage from the rotating shaft 83, and the manual or electric swinging effect of the swing unit 4 can continue. This utility model also relates to an infant rocker, see reference. Figure 1 , 5As shown, the device includes a cloth cover 10 and a baby folding rocker frame. The cloth cover 10 wraps between the upper frame unit 2 and the lower frame unit 3 to form a space for accommodating the baby. This design provides a warm and quiet resting environment for the baby and ensures the baby's safety and comfort within the rocker. The baby folding rocker frame also features rocking and folding functions, making it an ideal choice for family use or outdoor outings. When the cloth cover 10 is in place, it provides a pulling effect on the first lower frame 31 and the second lower frame 32, preventing them from folding downwards. When folding is required, removing the cloth cover 10 causes the first lower frame 31 and the second lower frame 32 to automatically fold downwards under gravity. Then, pressing the unlocking mechanism 112 folds the upper frame unit 2. Simultaneously, the folding of the upper frame unit 2 triggers the displacement of the push rod 9, allowing direct rotation of the folding first support frame 5 and the second support frame 6 for folding. (See attached image for folded version). Figure 7 and Figure 13 As shown.
[0062] In summary, the baby folding rocker frame and baby rocker provided by this utility model have the following technical effects:
[0063] 1. When not in use, both the upper frame unit 2 and the lower frame unit 3 can be folded, significantly reducing space occupation. This is especially important for families with limited living space or those who need to frequently move the crib. The folded crib is not only easy to store but also easy to carry, providing great convenience for family outings;
[0064] 2. Through the design of the swing unit 4, the rocking frame can simulate the gentle touch of a mother's embrace, effectively soothing the baby and promoting sleep. This rocking function is especially useful when the baby is crying or has difficulty falling asleep, helping parents to better care for their infant.
[0065] 3. With its folding and rocking functions, this baby rocker is suitable for various scenarios. Whether used at home or taken outdoors, it provides a comfortable and safe resting environment for the baby, enhancing its dual functionality, ease of use, safety, comfort, and adaptability.
[0066] The technical means disclosed in this utility model are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications are also considered within the scope of protection of this utility model.
Claims
1. A folding baby rocker frame, characterized in that, include: Control unit (1), the control unit (1) includes a main board (11) and a sub-board (12) disposed opposite to each other; The upper frame unit (2) includes a first upper half frame (21) and a second upper half frame (22) forming a ring. The ends of the first upper half frame (21) and the second upper half frame (22) are rotatably connected to the main board (11) and the sub-board (12), respectively. The lower frame unit (3) is located below the upper frame unit (2) and includes a first lower half frame (31) and a second lower half frame (32) forming a ring. The swing unit (4) includes a first swing member (41) hinged to the main board (11) and a second swing member (42) hinged to the auxiliary board (12). The ends of the first lower half frame (31) and the second lower half frame (32) are respectively hinged to the lower ends of the first swing member (41) and the second swing member (42) so that the lower frame unit (3) can swing relative to the upper frame unit (2). When folding, the first upper half frame (21) and the second upper half frame (22) are rotated and folded toward the lower half frame unit (3), and the first lower half frame (31) and the second lower half frame (32) are rotated and folded away from or toward the upper half frame unit (2).
2. The infant folding rocker frame according to claim 1, characterized in that, It also includes a first support frame (5) and a second support frame (6) that can be folded in opposite directions, each of the first support frame (5) and the second support frame (6) comprising: The first support rod (51) is hinged to the top of the main board (11); The second support rod (52) is hinged to the top of the auxiliary plate (12); The tripod (53) has one end connected to the bottom end of the first support rod (51) and the other end connected to the bottom end of the second support rod (52).
3. The infant folding rocker frame according to claim 2, characterized in that, The main board (11) and the sub-board (12) are provided with an unlocking component (112) and a first locking part (111). The first upper half frame (21) and the second upper half frame (22) are provided with a second locking part (71). The first locking part (111) and the second locking part (71) are engaged, and the unlocking component (112) is triggered to drive the first locking part (111) to disengage from the second locking part (71).
4. The infant folding rocker frame according to claim 3, characterized in that, Of the first locking part (111) and the second locking part (71), one is a protruding locking key structure, and the other is a locking structure adapted to the locking key structure.
5. The infant folding rocker frame according to claim 3, characterized in that, Both the mainboard (11) and the sub-board (12) include: The first cover (13) is provided with a first rotating groove (131) and a second rotating groove (132). The ends of the first upper half frame (21) and the second upper half frame (22) rotate in the first rotating groove (131) and the second rotating groove (132) respectively. The second cover (14) is fastened to the first cover (13), and two rotating locking mechanisms (15) are provided between the second cover (14) and the first cover (13) for locking with the first support frame (5) and the second support frame (6).
6. The infant folding rocker frame according to claim 5, characterized in that, The ends of the first upper half frame (21) and the second upper half frame (22) are provided with upper frame connectors (7), the second locking part (71) is located on the upper frame connector (7), the unlocking part (112) and the first locking part (111) are located on the first cover (13), and the upper frame connector (7) is also provided with a rotating shaft groove (72) that is rotatably connected to the first cover (13).
7. The infant folding rocker frame according to claim 6, characterized in that, A push rod (9) is provided between the rotating shaft groove (72) and the first cover (13). The rotating locking mechanism (15) includes a first elastic element (151) and a gear (152). The first elastic element (151) is located between the second cover (14) and the gear (152). The ends of the first support frame (5) and the second support frame (6) are provided with gear slots (511) for accommodating the gear (152). One end of the push rod (9) passes through the rotating shaft groove (72) and engages with the gear. The wheels (152) abut against each other. The other end of the push rod (9) is provided with a first inclined surface (91) arranged circumferentially along the axis of the push rod (9). The rotating shaft groove (72) is provided with a second inclined surface (721) tangent to the first inclined surface (91). When the upper frame unit (2) is folded, the first inclined surface (91) and the second inclined surface (721) are tangent to each other, which drives the push rod (9) to move towards the gear (152) so that the gear (152) compresses the first elastic element (151) and disengages from the gear slot (511).
8. The infant folding rocker frame according to claim 5, characterized in that, The unlocking component (112) includes an unlocking button (1121) and a second elastic element (1122). The first cover (13) is provided with a button hole (133) for exposing the unlocking button (1121). The second elastic element (1122) provides the unlocking button (1121) with a spring force to reset it outward from the button hole (133).
9. A baby folding rocker frame according to any one of claims 1-8, characterized in that, The main board (11) and / or the sub-board (12) are provided with a drive motor (20), the output end of the drive motor (20) is connected to the swing unit (4) to drive the first swing member (41) and the second swing member (42) to swing.
10. A baby rocker, characterized in that, Includes a cloth cover (10) and a baby folding rocker frame as described in any one of claims 1-9, wherein the cloth cover (10) is wrapped between the upper frame unit (2) and the lower frame unit (3) to form a space for accommodating a baby.