A folding electric rocking chair
By designing a detachable rocking mechanism and drive mechanism, and combining chamfering, taper, and balancing components, the electric rocker bed achieves convenient folding and electric rocking, solving the problem of large space occupation and improving stability and portability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ANHUI COOL BABY SCI & TECH DEV CORP
- Filing Date
- 2026-04-20
- Publication Date
- 2026-06-05
AI Technical Summary
Existing electric rocking beds cannot balance electric rocking function with convenient folding in their structural design. They occupy a lot of space and are difficult to adapt to the limited living space and travel needs of modern families.
It adopts a separable rocking mechanism and drive mechanism design, including joint components, balance bar, rocking drive assembly and synchronization bar, etc. The linkage structure realizes the unity of electric rocking and convenient folding. The chamfer or tapered structure is used for guidance and automatic alignment, the balance component ensures the synchronization of the movement, and the translation component realizes horizontal movement and flipping folding.
This technology significantly reduces the size of electric rocking beds when folded, making them easier to store and carry at home. It also improves stability and durability, and solves the problems of fixed structures and large space requirements associated with electric rocking beds.
Smart Images

Figure CN122140096A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of furniture and home furnishings, specifically a folding electric rocking bed. Background Technology
[0002] The mainstream baby rockers on the market are mainly divided into two categories: traditional manual curved rockers and motor-driven electric rockers. Although these products can soothe babies to some extent, they have significant defects in structural design, especially considering the limited living space and increased travel needs of modern families. Therefore, there is a need to design a foldable electric rocker to address this situation. Summary of the Invention
[0003] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0004] A folding electric rocker includes:
[0005] The horizontal rocking mechanism includes at least two folding bodies that can rotate relative to each other, and the folding bodies are rotatably connected by joints;
[0006] The drive mechanism includes at least two relatively movable balance bars and a lateral rocking drive assembly mounted on the balance bars, wherein the lateral rocking drive assembly and the joint are detachably configured.
[0007] In the aforementioned folding electric rocker, the joint component includes a connecting body and a shaft that are perpendicularly arranged and connected to each other. The folding body and the connecting body are rotatably connected. The end of the shaft away from the connecting body is provided with a chamfer or taper for connection to the output end of the horizontal rocking drive assembly.
[0008] In the aforementioned folding electric rocker, a synchronizing rod is rotatably mounted on each folding body. The end of the synchronizing rod away from the corresponding folding body is rotatably connected to a moving body. The moving body is movably mounted on a shaft and moves along the axial direction of the shaft.
[0009] In the aforementioned folding electric rocker, the shaft body has an internal chamber, and a locking tongue is installed in the chamber via a rotating shaft. The locking tongue has a locking groove, and a locking pin is slidably fitted in the locking groove. The locking pin is slidably fitted inside the shaft body. The side of the shaft body has a side groove for the locking tongue to extend out, and a torsion spring is installed between the locking tongue and the rotating shaft.
[0010] In the aforementioned folding electric rocker, the rotation direction of the folding body relative to the joint component and the rotation direction of the balance bar relative to the horizontal rocking drive assembly are perpendicular.
[0011] In the aforementioned folding electric rocker, the horizontal rocking drive assembly includes a base and a drive section installed inside the base, and a balancing component corresponding to the connected balance bar is provided on the base.
[0012] In the aforementioned folding electric rocker, the balancing component includes a spatial groove, in which a linkage pin and a spring are installed. One end of the linkage pin extends out of the spatial groove and contacts the corresponding balance bar.
[0013] In the aforementioned folding electric rocker, a locking pin groove is provided along the length direction on the linkage pin, and a pin body is movably installed in the locking pin groove, with the pin body connected to the machine base.
[0014] In the aforementioned folding electric rocking bed, the folding electric rocking bed further includes translation components rotatably mounted at both ends of the rocking mechanism and a support mechanism that moves relative to the translation components.
[0015] In the aforementioned folding electric rocker, the translation assembly includes a support base and a translation base, the translation base being rotatably mounted at the end of the folding body away from the joint member, and the translation base moving relative to the support base;
[0016] The support base is mounted on the support mechanism and a translation platform is provided on the side facing the translation base. A translation groove is provided on the side of the translation base facing the translation platform. The translation platform is movably installed in the translation groove in a rolling or sliding manner.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. This invention features a detachable joint structure between the rocking mechanism and the connecting part of the drive mechanism. When the rocker is unfolded for use, the joint and connecting parts are connected, and the rocking drive assembly can drive the rocking mechanism to perform reciprocating linear motion, achieving a smooth electric rocking function. When folding for storage, the joint and connecting parts separate, and the folding body rotates relative to the joint to complete the vertical folding, while the balance bar rotates relative to the base to complete the horizontal folding. This structure effectively solves the technical contradiction in existing electric rockers where the drive module and folding function cannot be simultaneously achieved, realizing the organic unity of electric rocking and convenient folding.
[0019] 2. The drive mechanism of this invention includes two sets of balancing components (linkage pins and springs), with each set of linkage pins maintaining constant contact with its corresponding balance bar. During the unfolding or folding of the balance bars, the linkage pins, under the action of the springs, force the two balance bars to move synchronously, thereby automatically balancing the angle and posture of the machine base and ensuring smooth horizontal movement, preventing angular deviations. This balancing and positioning function effectively ensures that the joint components can be accurately inserted into the connecting components during unfolding, improving the reliability and stability of the folding rocker after repeated unfolding and folding.
[0020] 3. The folding mechanism of the present invention includes a movable body and a synchronizing rod. The movable body is movably mounted on the shaft and can move axially. The movable body is rotatably connected to the corresponding folding body through two synchronizing rods. During folding or unfolding, the two sets of folding bodies achieve synchronous rotation through the linkage of the synchronizing rod and the movable body, avoiding the problem of inconsistent deflection angles on both sides of the joint, preventing angular deviations in the joint, and further ensuring that the joint can be accurately inserted into the connecting piece, thus improving the smoothness of movement and the docking accuracy of the folding mechanism.
[0021] 4. The connector and the joint (shaft) of this invention are provided with a chamfer or tapered structure on the opposite side. During unfolding and docking, the chamfer or tapered surface serves as a guide and automatic alignment mechanism, allowing for smooth insertion even with slight positional deviations. Similarly, during folding and separation, the chamfer structure facilitates smooth disengagement. This design reduces the precision requirements for docking, simplifies user operation, and improves ease of use.
[0022] 5. This invention features a translation component at the end of each of the two folding bodies furthest from the joint. The translation component includes a support base, a translation seat, a guide rod, and guide wheels. In the panning mode, the folding body drives the translation seat to move horizontally back and forth relative to the support base, with the guide wheels and guide rods working together to provide smooth guidance. In the folding mode, the folding body can flip up and down relative to the translation seat. This translation component satisfies both the smooth, low-damping guidance required for the panning function and the rotational freedom required for the folding function, resulting in a compact and rational overall structure. It also effectively supports the weight of the bed, improving the overall durability and operational stability of the machine.
[0023] 6. Through the separate design of the rocking mechanism and the drive mechanism, as well as the linkage folding mechanism of each component, the electric rocker of this invention allows the two side support mechanisms to approach each other in the folded state. The railing assembly, rocking mechanism, and drive mechanism fold simultaneously, significantly reducing the overall size and facilitating home storage and transportation. This effectively solves the problems of fixed structure and large space occupation of existing electric rockers. Simultaneously, the drive mechanism moves the rocking mechanism to the folding joint position, improving the stability and durability of the bed structure. Attached Figure Description
[0024] Figure 1 This is a structural diagram of the folding electric rocker proposed in this invention after it has been unfolded.
[0025] Figure 2 This is a combined structural diagram of the lateral rocking mechanism and the translation component.
[0026] Figure 3 This is a top view of the combined structure of the panning mechanism and the translation component.
[0027] Figure 4 for Figure 3Cross-sectional view along the DD direction.
[0028] Figure 5 This is a schematic diagram of the structure between the folding body and the translation component.
[0029] Figure 6 This is a schematic diagram of the drive mechanism.
[0030] Figure 7 , Figure 8 This is a schematic diagram of the internal structure of the machine base.
[0031] Figure 9 This is a schematic diagram of the machine base.
[0032] Figure 10 This is the rear view of the machine base.
[0033] Figure 11 for Figure 10 Cross-sectional view along the AA direction.
[0034] Figure 12 This is a schematic diagram of the combined structure of the connector and the shaft.
[0035] Figure 13 This is a structural diagram of the semi-folded folding electric rocker proposed in this invention.
[0036] Figure 14 This is a structural diagram of the fully folded folding electric rocker proposed in this invention.
[0037] In the diagram: 10. Support mechanism; 11. Support base; 12. Translation stage; 13. Guide rod;
[0038] 20. Fence components;
[0039] 30. Horizontal rocking mechanism; 31. First folding body; 32. Second folding body; 321. Connecting part; 322. Arc groove; 33. Connecting body; 331. Slot; 34. Shaft; 35. Moving body; 351. Inserted body; 36. Synchronizing rod; 37. Translation seat; 38. Translation groove; 39. Guide wheel; 310. Guide groove; 311. Locking tongue; 312. Side groove; 313. Locking pin;
[0040] 40. Drive mechanism; 41. First balance bar; 42. Second balance bar; 43. Base; 431. Motor assembly; 432. Handle; 433. Linkage rod; 434. Guide rail; 44. Connecting component; 45. Mounting slot; 46. Spatial slot; 47. Linkage pin; 48. Locking pin slot; 481. Pin body. Detailed Implementation
[0041] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0042] like Figure 1 As shown, a folding electric rocking bed includes support mechanisms 10 located on both sides, a fence assembly 20 for connecting the two sets of support mechanisms 10, a rocking mechanism 30, and a drive mechanism 40, with the rocking mechanism 30 located above the drive mechanism 40.
[0043] like Figure 1 As shown, taking two sets of folding bodies as an example, the horizontal rocking mechanism 30 includes a first folding body 31, a second folding body 32 and a joint. One end of the first folding body 31 and the second folding body 32 rotates relative to the joint.
[0044] like Figure 6 As shown, taking two sets of balance bars as an example, the drive mechanism 40 includes a first balance bar 41, a second balance bar 42 and a sway drive assembly. One end of the first balance bar 41 and the second balance bar 42 are rotatably connected to the sway drive assembly for folding and unfolding. A connector 44 is installed at the output end of the sway drive assembly. The joint and the connector 44 are compatible.
[0045] The rotation of the first balance bar 41 and the second balance bar 42 relative to the rocking drive assembly is synchronized with the rotation of the first folding body 31 and the second folding body 32 relative to the joint.
[0046] The first balance bar 41 and the second balance bar 42 rotate in the up-down direction relative to the rocking drive assembly, while the first folding body 31 and the second folding body 32 rotate in the horizontal direction relative to the joint.
[0047] Among them, such as Figure 1 As shown, in some embodiments, the support mechanism 10 is a telescopic component that can further retract after the bed is folded to reduce the storage volume of the bed, making it convenient for storage and transportation. The fence assembly 20 is a folding component and may have a locking structure. The support mechanism 10 and the fence assembly 20 are mature products in the field of folding beds and will not be described in detail here.
[0048] A bed board can be installed on the first folding body 31 and the second folding body 32 to facilitate the baby's sleeping position.
[0049] The first balance bar 41 and the second balance bar 42 are horizontally rotatably mounted on the support mechanism 10 at the ends away from the rocking drive assembly.
[0050] like Figure 12As shown, in some embodiments, the joint includes a connecting body 33 and a shaft 34 that are vertically connected and have an overall T-shaped structure. The connecting body 33 has a plate-like structure, and the shaft 34 is mounted on the connecting body 33 facing downward.
[0051] like Figure 4 , Figure 12 As shown, in some embodiments, in order to ensure that the two folded bodies can be synchronized during the folding action, a movable body 35 can be movably installed on the shaft 34. The movable body 35 can move along the length direction of the shaft 34. The movable body 35 is rotatably connected to the corresponding folded body through two synchronizing rods 36. One end of the synchronizing rod 36 is rotatably connected to the movable body 35, and the other end is rotatably connected to the corresponding folded body, thereby realizing the simultaneous folding action of the two folded bodies.
[0052] like Figure 12 As shown, the connector 33 is provided with a slot 331, and the movable body 35 is provided with a plug body 351 that is adapted to the slot 331 and has an arc-shaped top.
[0053] like Figure 4 , 12 As shown, in some embodiments, the movable body 35 can be a connecting sleeve that slides onto the outside of the shaft 34. Alternatively, it can be a slider hinged to the end of the synchronizing rod 36, which can slide along the length of the shaft 34. This also enables the two folding bodies to fold synchronously, ensuring that the shaft 34 always faces downwards during the folding action. The bottom of the shaft 34 is chamfered or tapered (larger at the top, smaller at the bottom) to facilitate insertion and adaptation with the connecting member 44. The connecting member 44 has a cylindrical structure, and its inner top is chamfered or tapered (larger at the top, smaller at the bottom).
[0054] In some implementations, if the fence assembly 20 does not employ a locking structure, the following approach is used: Figure 4 As shown, a locking structure is provided on the joint component, and a chamber is provided inside the shaft 34. The top of the chamber is open. A locking tongue 311 is installed in the chamber through a rotating shaft. A locking groove is provided on the locking tongue 311. A locking pin 313 is slidably fitted in the locking groove. The locking pin 313 is slidably fitted inside the shaft 34, and the sliding direction is the axial direction of the shaft 34. A side groove 312 is provided on the side of the shaft 34 for the locking tongue 311 to extend out. The locking tongue 311 can be provided in two sets in a front-to-back and left-to-right symmetrical arrangement.
[0055] A torsion spring is installed on the rotating shaft connecting the locking tongue 311 and the shaft 34 for resetting the locking tongue 311 and the locking pin 313. A pull strap is installed on the locking pin 313, which extends from the top of the shaft 34 for operation. By lifting the pull strap, the locking pin 313 is driven upward. Under the guidance of the locking groove, the locking tongue 311 rotates from the side groove 312 into the cavity, which facilitates the downward movement of the moving body 35 and the folding action of the two sets of folding bodies. When the two sets of folding bodies are fully unfolded, the locking tongue 311 will lock them from the bottom of the moving body 35. When the moving body 35 is a sliding slider, it should be noted that the sliding path of the slider must at least partially cover the side groove 312.
[0056] In some implementations, to ensure that the two sets of balance bars remain in a balanced state relative to the base 43 during the folding action without angular deviation:
[0057] like Figure 6 , 9 As shown in Figures 10 and 11, in some embodiments, the panning drive assembly includes a base 43 and a drive section located inside the base 43. The base 43 has a horizontally positioned mounting groove 45. Two sets of balance bars are distributed within the mounting groove 45. The two balance bars can be connected to the center of the base 43 via the same pivot shaft, or each can be connected to the base 43 via its own pivot shaft. The base 43 is equipped with balancing components corresponding to the connected balance bars. Taking the example of two balance bars being connected to the base 43 via the same pivot shaft, the balancing components include two spatial grooves 46 symmetrically distributed about the pivot shaft within the mounting groove 45. A linkage pin 47 is installed within each spatial groove 46. A locking pin groove 48 is provided along the length of the linkage pin 47. A pin body 481 is slidably installed within the locking pin groove 48. The pin body 481 is connected to the base 43 and serves to prevent the linkage pin 47 from separating from the spring within the spatial groove 46. A spring is installed within the spatial groove 46 to act on the linkage pin. One end of 47 is positioned so that the other end of the linkage pin 47 is exposed outside the space slot 46 and is always in contact with (or in contact with) the corresponding balance bar. The contact surface is arc-shaped, which ensures that the base 43 moves linearly in the horizontal direction when the two sets of balance bars are horizontally unfolded or folded. The position of the connecting piece 44 is always parallel to the movement path of the base 43 and will not deviate angularly around the pivot connecting the balance bar and the base 43. This ensures that the shaft 34 and the connecting piece 44 are plugged in and connected when unfolded, thus achieving the effect of balancing the position of the base 43.
[0058] In some embodiments, to enable the connecting member 44 and the shaft 34 to perform reciprocating linear motion after connection, the following scheme is adopted:
[0059] like Figures 7 to 8As shown, the drive unit includes a motor assembly 431 and a guide rail 434 installed inside the base 43. A rocker arm 432 is installed at the output end of the motor assembly 431. One end of the rocker arm 432 is connected to a slider for mounting the connector 44 via a connecting rod 433 or is directly connected to the connector 44.
[0060] In some embodiments, in order to guide the linear movement of the connector 44, one method is that the slider or connector 44 can move linearly on the guide rail 434, which is fixedly set; another method is that the slider or connector 44 and the guide rail 434 are fixedly connected and move back and forth relative to the machine base 43 together, and the machine base 43 constrains the guide rail 434 so that it can only move linearly, and the direction of movement is horizontal back and forth.
[0061] Since the connector 44 moves horizontally back and forth and the shaft 34 moves vertically, a certain amount of positional deviation will occur when the connector 44 and the shaft 34 are plugged in during actual use. The taper or chamfer at the bottom of the shaft 34 can be used to adaptively adjust the position of the connector 44 in its own direction of movement to deal with the positional deviation until the plugging connection is completed.
[0062] As the two sets of folding bodies fold and unfold in the vertical direction, and the two sets of balance bars fold and unfold in the horizontal direction, the bottom of the shaft 34 and the top of the connector 44 are used to automatically guide the position during the process of connecting the shaft 34 and the connector 44. During the guidance, the position of the connector 44 will change in the direction of movement. After the shaft 34 and the connector 44 are connected, the motor unit 431 can automatically drag the connector 44 back to its original position.
[0063] Similarly, when the shaft 34 and the connecting piece 44 separate, the connecting piece 44 will also change position in the direction of movement. After separation, the motor unit 431 can automatically drag the connecting piece 44 back to the initial set position.
[0064] In some embodiments, the following scheme is adopted to realize the translational and rotational folding actions of the lateral rocking mechanism 30 relative to the support mechanism 10:
[0065] like Figure 1 , 2 As shown in Figures 3 and 13, each of the two sets of support mechanisms 10 has a translation component on its opposite side, and the translation component is located below the fence assembly 20.
[0066] Two sets of translation components are rotatably connected to the corresponding folding bodies. The folding bodies flip up and down relative to the translation components to achieve folding. The translation components are used to drive the corresponding folding bodies to translate, and work with the drive mechanism 40 to achieve the panning action.
[0067] Specifically, such as Figure 5As shown, the translation assembly includes a support base 11 mounted on the support mechanism 10. A translation platform 12 is provided in the middle of the support base 11 near the translation mechanism 30. A set of guide rods 13 is provided on each of the front and rear sides of the translation platform 12. Each set of guide rods 13 includes two rods distributed vertically. A translation seat 37 is installed at the end of the first folding body 31 and the second folding body 32 away from the connecting body 33. Connecting parts 321 are installed at both ends of the translation seat 37. The connecting parts 321 are tubular, cylindrical, or sleeve-shaped structures. The connecting parts 321 and the corresponding folding bodies are connected by connecting pins. The folding body is connected to the joint. The end of the folding body away from the joint is provided with an arc-shaped groove 322 for the folding body to flip up and down. The arc-shaped groove 322 is located inside the connecting part 321. The connecting pin can move in the arc-shaped groove 322. The connecting pin and the arc-shaped groove 322 are used together to control the folding body to have two extreme positions. One extreme position is that it is horizontal after unfolding. The other extreme position is that the distance between the two sets of support mechanisms 10 is the design distance when folded (that is, to meet the thickness requirements of the shaker after folding). This can facilitate the storage and transportation of the shaker.
[0068] The translation seat 37 is provided with a translation groove 38 on the side facing the translation platform 12. The translation platform 12 is movably installed in the translation groove 38, so that the translation seat 37 restricts the guide wheel 39 from disengaging from the guide rod 13 in the front and back. Each end of the translation groove 38 is provided with a set of guide grooves 310. Guide wheels 39 are installed in both sets of guide grooves 310. The guide wheels 39 and guide rods 13 are movably installed. The two rods are distributed on the upper and lower sides of the guide wheels 39 and are used to guide the translation seat 37 in the horizontal direction. The lower guide rod 13 is used to support the two sets of folding bodies to realize the overall horizontal rocking mechanism 30 relative to the support mechanism 10.
[0069] like Figures 1 to 14 As shown, when unfolded, the connecting body 33 moves downward, and the two sets of support mechanisms 10 move away from each other synchronously. During the downward movement of the connecting body 33, the moving body 35 drives the two sets of folding bodies to unfold synchronously via the synchronizing rod 36, and the shaft 34 moves downward and gradually approaches the connecting piece 44. At the same time, the two sets of balance rods rotate horizontally relative to the support mechanism 10 and unfold. Under the action of the two linkage pins 47 on the left and right, the base 43 moves gradually downward towards the shaft 34. A chamfer or conical structure is provided at the end where the shaft 34 and the connecting piece 44 are connected to facilitate the connection between the two. During the connection between the two, the connecting piece 44 will change position in the direction of movement under the action of the shaft 34. After the shaft 34 and the connecting piece 44 are connected, the motor unit 431 can automatically drag the connecting piece 44 back to its original position.
[0070] When the machine is rocking horizontally, the motor unit 431 drives the rocker arm 432 to rotate, which in turn drives the connecting piece 44 to reciprocate linearly relative to the base 43 via the connecting rod 433. Since the connecting piece 44 is connected to the shaft 34, under the guidance of the guide rod 13 and the guide wheel 39, the two sets of folding bodies drive the translation seats 37 at the ends to move back and forth relative to the support seat 11.
[0071] When folding, if a locking tongue 311 is provided on the shaft 34, the locking tongue 311 is released from the moving body 35 by pulling the locking pin with the operating strap, and then the connecting body 33 is moved upward; if no locking tongue 311 is provided on the shaft 34, the connecting body 33 is moved upward directly; then the two sets of folding bodies rotate relative to the translation seat 37, and the support mechanisms 10 on both sides move closer to each other, while the two sets of balance bars move closer horizontally, and the base 43 moves horizontally. During the movement, the connecting piece 44 and the shaft 34 first keep sliding vertically. When they are disengaged, the motor unit 431 can automatically drag the connecting piece 44 back to the initial set position.
[0072] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. The substitutions may be replacements of some structures, devices, or method steps, or they may be complete technical solutions. Equivalent substitutions or modifications made to the technical solutions and inventive concepts of the present invention should all be covered within the scope of protection of the present invention.
Claims
1. A folding electric rocker, characterized in that, include: The horizontal rocking mechanism (30) includes at least two folding bodies that can rotate relative to each other, and the folding bodies are rotatably connected by joints; The drive mechanism (40) includes at least two relatively movable balance bars and a lateral rocking drive assembly mounted on the balance bars, wherein the lateral rocking drive assembly and the joint are detachably configured.
2. A folding electric rocking bed according to claim 1, characterized in that, The joint includes a connecting body (33) and a shaft (34) that are perpendicular to each other and connected. The folding body and the connecting body (33) are rotatably connected. The end of the shaft (34) away from the connecting body (33) is provided with a chamfer or taper for connection to the output end of the horizontal rocking drive component.
3. A folding electric rocking bed according to claim 2, characterized in that, Each of the folding bodies is rotatably mounted with a synchronizing rod (36). The end of the synchronizing rod (36) away from the corresponding folding body is rotatably connected to a moving body (35). The moving body (35) is movably mounted on a shaft (34) and moves along the axial direction of the shaft (34).
4. A folding electric rocking bed according to claim 2 or 3, characterized in that, The shaft (34) has a cavity inside, and a locking tongue (311) is installed in the cavity through a rotating shaft. The locking tongue (311) has a locking groove, and a locking pin (313) is slidably fitted in the locking groove. The locking pin (313) is slidably fitted inside the shaft (34). The side of the shaft (34) has a side groove (312) for the locking tongue (311) to extend out. A torsion spring is installed between the locking tongue (311) and the rotating shaft.
5. A folding electric rocking bed according to any one of claims 1 to 3, characterized in that, The rotation direction of the folding body relative to the joint is perpendicular to the rotation direction of the balance bar relative to the horizontal rocking drive assembly.
6. A folding electric rocking bed according to any one of claims 1 to 3, characterized in that, The lateral rocking drive assembly includes a base (43) and a drive section installed inside the base (43). The base (43) is provided with a balance component corresponding to the connected balance bar.
7. A folding electric rocking bed according to claim 6, characterized in that, The balancing component includes a space groove (46), in which a linkage pin (47) and a spring are installed. One end of the linkage pin (47) extends out of the space groove (46) and contacts the corresponding balance bar.
8. A folding electric rocking bed according to claim 7, characterized in that, The linkage pin (47) is provided with a locking pin groove (48) along the length direction, and a pin body (481) is movably installed in the locking pin groove (48), and the pin body (481) is connected to the base (43).
9. A folding electric rocking bed according to claim 1, characterized in that, The folding electric rocking bed also includes translation components rotatably mounted at both ends of the rocking mechanism (30) and a support mechanism (10) that moves relative to the translation components.
10. A folding electric rocking bed according to claim 9, characterized in that, The translation assembly includes a support base (11) and a translation base (31). The translation base (31) is rotatably mounted on the end of the folding body away from the joint member, and the translation base (31) moves relative to the support base (11). The support base (11) is installed on the support mechanism (10) and a translation platform (12) is provided on the side facing the translation base (31). A translation groove (38) is provided on the side of the translation base (31) facing the translation platform (12). The translation platform (12) is installed in the translation groove (38) in a rolling or sliding manner.