Bedside bed

By introducing locking structure and partitioned control blocks into the bedside bed, the problem of unanticipated adjustment of fences is solved, and safety and convenience is improved, ensuring the safe use and operation stability of the crib.

CN120477545APending Publication Date: 2025-08-15ZHEJIANG MUYI ARTS & CRAFTS CO LTD
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Patent Information

Application Number
CN202510848678.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The fence of the existing bedside bed is at high risk of unanticipated adjustment, especially when the baby operates independently, which can easily lead to safety hazards. The existing locking method is easily touched by mistake or the baby operates by mistake, which causes the fence to fall, flip or loosen unexpectedly.

Method used

The locking structure is adopted, including a movable lock block, a locking slot, an elastic member and a locking part. The locking and active state of the fence are switched through two unlocking actions, ensuring that the fence reduces the possibility of lifting and lowering when it is not movable, and the operation convenience and stability are improved through the separated control blocks and plug-in blocks.

Benefits of technology

It improves the safety and operating stability of the bed during use, reduces the risk of lifting and lowering of the fence when it is not movable, realizes convenient fence adjustment for single persons, and enhances overall safety and adaptability of use.

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Abstract

The invention relates to the technical field of furniture equipment, in particular to a bedside bed capable of adjusting a fence. The locking structure is used for positioning a fence arranged on one side of a bed board in a sliding manner and comprises a movable locking block mounted in the fence in a sliding manner; the locking groove is formed in the sliding frame and used for being connected with one end of the movable locking block in a matched and inserted mode; the elastic piece is arranged between the movable locking block and the fence; the movable locking block is inserted into the locking groove or pulled out of the locking groove, so that the fence is in a non-slidable locking state or a slidable adjusting state. The position locking structure further comprises a position locking piece movably installed in the fence, the moving track of the position locking piece is provided with a part coinciding with the sliding track when the movable locking block is pulled out of the position locking groove and another part not coinciding with the sliding track when the movable locking block is pulled out of the position locking groove, and the moving track of the position locking piece is pulled out of the position locking groove by placing the position locking piece on the track coinciding part or driving the position locking piece to leave the track coinciding part. Therefore, the movable locking block is in a locking state which cannot be pulled out or a movable state which can be pulled out.
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Description

Technical Field

[0001] The present invention relates to the technical field of furniture equipment, and more particularly to a bedside bedding capable of performing fence adjustment. Background Art

[0002] In modern families, after a newborn is born, a baby crib (a bedside bedding) is typically placed next to the adult bed, allowing the baby to rest independently while being easily cared for by the parents. To prevent the baby from climbing out of the crib, a protective fence is typically installed around the crib. However, the installation of a fixed fence hinders parents' direct observation of the baby's condition and immediate care. To address this, many existing baby cribs utilize adjustable fence structures, such as hinges, quick-release connections, or lifting and lowering mechanisms to adjust the fence's position. This allows the fence to remain in a protective position while the baby is sleeping, and can be lowered or removed when care is needed, ensuring both safety and convenience.

[0003] However, in actual use, it was found that this type of adjustable fence has the risk of unexpected adjustment: when the fence is in a locked state, the unlocking mechanism may be triggered by non-human control factors such as accidental external force, the baby's independent grasping and pushing, etc., causing the fence to accidentally drop, flip or loosen; especially when the baby has a certain climbing ability and manual gripping ability, their independent operation is more likely to cause unexpected adjustment of the fence, which in turn causes safety hazards such as baby falling and entrapment, and there is a need for improvement. Summary of the Invention

[0004] The purpose of the present invention is to address the deficiencies of the prior art and to provide a bedside bedding that reduces the risk of unexpected adjustment and improves overall safety of use while achieving fence adjustment.

[0005] The overall technical solution of the present invention is as follows: The technical solution of the present invention addresses the safety concerns associated with beds with adjustable rails. Existing bedside beds often utilize "one-touch unlocking" mechanisms to switch between a locked and movable state. While this provides significant convenience, it can often lead to safety issues in actual use. For example, accidental contact with the rails, or accidental contact by an infant with the ability to hold the rails, can cause the rails to rise and fall when they shouldn't, potentially posing a safety risk to the infant.

[0006] Based on this, the present invention provides a bedside bedding that can further improve safety. The bedside bedding includes: a bed board and a sliding frame, wherein the sliding frame is slidably mounted with a fence that slides up and down on one side of the bed board; The fence is positioned and connected to the sliding frame through a locking structure, which includes: A movable locking block is slidably mounted in the fence, with its sliding track extending horizontally, and one end of the movable locking block can slide out of the fence; A locking slot is provided on the sliding frame and is adapted to be plugged into one end of the movable locking block; An elastic member disposed between the movable locking block and the fence, configured to be elastically deformable and exert an elastic force on the movable locking block to drive one end thereof into the locking slot; By inserting the movable locking block into the locking slot or pulling it out from the locking slot, the fence is put into a non-sliding locked state or a slidable adjusted state; The locking structure further includes: a locking member movably mounted in the fence, wherein the moving trajectory of the locking member includes a portion that overlaps with the sliding trajectory of the movable locking block when the movable locking block is pulled out of the locking slot, and another portion that does not overlap. The movable locking block is placed in a locked state that cannot be pulled out, or in a movable state that can be pulled out, by placing the locking member in the overlapping portion of the trajectory or driving the locking member away from the overlapping portion of the trajectory. The locking member is further configured to be positioned at the overlapping portion of the track in the absence of external force so that the movable locking block remains in a locked state.

[0007] In the present application, a locking member is further provided in the locking structure that switches the fence between locked and movable positions. This locking member additionally restricts the movable locking block that controls whether the fence is locked. This ensures that only by activating the movable locking block through the locking member can the movable locking block be controlled to move to unlock the fence and enable it to slide and adjust. In other words, two unlocking actions are required to unlock the fence's movable position, thereby driving the fence to move up and down, which greatly improves the safety of the bed during use and reduces the possibility of the fence moving up and down when it should not move.

[0008] Of course, in some solutions, the aforementioned locking structure arrangement can be achieved by installing a movable locking block on a sliding frame and a locking slot on a fence, thereby enabling the fence to be in a non-sliding locked state or a slidable adjustable state. However, in this case, when the fence needs to be disassembled or raised or lowered, the operator must place one hand on the sliding frame, which serves as the support frame, to apply force to the movable locking block to unlock it, while placing the other hand on the fence to maintain stable movement of the fence, making it difficult to raise or lower the fence. In particular, when two locking structures are provided to secure the fence as described below, even a single person cannot adjust the fence. In contrast, in the solution described above, the operator does not need to place an additional hand on the sliding frame, which serves as the support frame. Instead, the operator can use one hand to apply force to the movable locking block on the fence, while placing the other hand on the fence to maintain stable movement of the fence. In other words, both hands can be used to act on the fence to be moved to perform raising and lowering adjustments, thereby improving the stability and convenience of adjustment. In particular, when two locking structures are provided to fix the fence as described below, the operator can unlock one locking structure with one hand and unlock the other locking structure with the other hand, and both hands apply force on the fence to synchronously drive the fence to be raised and lowered, adjusted and moved, thereby realizing that a single person can adjust the fence.

[0009] In some embodiments, the moving track of the locking member extends vertically, and a track overlap portion is formed at the lower end of the moving track. Under the action of its own weight, the locking member is placed at the lower end of the moving track to keep the movable locking block in a locked state. Inserted in the fence are: a pressure column placed in the area below the sliding track of the movable locking block; The pressure column is configured to slide up and down in the fence, and the upper end of the pressure column is connected to the locking member through the connecting column, and the lower end passes downwardly out of the fence; The movable locking block has a blocking portion that abuts and collides with the locking piece, and the blocking portion is provided with a moving notch opening toward the locking piece, which is configured to allow the connecting column to be inserted but not the locking piece to be inserted in the direction in which the movable locking block is slid out; A clearance space is formed above the blocking portion to allow the locking member to be accommodated when the connecting column is inserted into the movable notch; The locking member can be placed in the avoidance space by pushing the pressure column upward, so that the movable locking block is in a movable state that can be pulled out.

[0010] Furthermore, in actual use, the movable locking block often comes too close to the ground due to the need for insertion, which overly compresses the pressing space for the pressure column and causes inconvenience in operation. In particular, when two locking positions are provided as described below, the need to use both hands to press both pressure columns simultaneously places additional demands on the operator's arm span, increasing the difficulty of operation.

[0011] Based on this, in some solutions, the movable locking block includes: a plug-in block for aligning and plugging with the locking groove, and a control block placed on the side of the plug-in block facing away from the locking groove; The control block is formed with a control portion for external force to push and drive the movable locking block to slide; The elastic member is placed between the plug-in block and the fence to exert an elastic force on the plug-in block to drive one end of the plug-in block to insert into the locking groove; The sliding tracks of the plug-in block and the control block are both arranged to extend horizontally, and the plug-in block and the control block are connected by a linkage member so that any one of the plug-in block and the control block can drive the other to move toward the side away from the linkage member.

[0012] By separating the control block for operation and the plug-in block for plugging in, while being able to realize the original function of the movable lock block, the control block can be independently set according to needs to better meet the convenience of operation, thereby improving the convenience of actual use.

[0013] In some solutions, the locking member is configured to act on the control block to enable the movable locking block to be in a non-removable locked state or a removable active state.

[0014] In this way, the locking member and the control block can be placed in a close area, so that the unlocking action can be better exerted.

[0015] In some solutions, the fence is further provided with: a recovery member placed between the fence and the control block; The restoring member is configured to be elastically deformable and to apply an elastic force to the control block to drive the control block to move toward the plug-in block.

[0016] By providing a return member, the control block can be automatically driven to return to the position when the fence is in the locked state without applying external force, thereby improving the stability of the fence when it is in the locked state.

[0017] Wherein, any position on the control block can be formed with a structure for the operator to apply external force.

[0018] Preferably, in some solutions, the upper end of the control block has a portion extending upward from the fence, and the portion is formed with a manipulation portion for applying an external force to drive the control block to move.

[0019] In this way, by forming the operating part to extend upward from the fence, and the pressing end of the pressure column to extend downward from the fence, it is convenient for the operator to perform two unlocking actions with one hand (that is, holding a part of the fence, four fingers press the pressure column upward to make the movable locking block in a movable state that can be pulled out; then the thumb can press and push the operating part to drive the movable locking block to be pulled out of the locking slot and make the fence in a slidable adjustment state).

[0020] In some solutions, in the direction from the plug-in block to the control block, the upper surface of the control portion includes: a valley surface and a peak surface connected to the valley surface; The upward convex height of the valley surface is lower than the upward convex height of the peak surface, which further improves the convenience and stability of applying force to the control part.

[0021] In some embodiments, two sliding frames are provided, and each end of the fence is positioned and connected to a sliding frame through a locking structure, so as to further improve the positioning stability of the entire fence structure and thus improve the safety of the bed.

[0022] In some solutions, a bed end frame is provided at each end of the bed board, and each end of the bed board is connected to a bed end frame through an adjustable connection structure to achieve height adjustment of the bed board; The adjustable connection structure includes: A clamping portion provided at the end of the bed board; A plurality of docking portions are provided on the bed end frame, the plurality of docking portions are arranged at intervals in the vertical direction, and each docking portion is configured to be detachably connected to the clamping portion; By selectively and detachably connecting the clamping portion to any docking portion, the height of the bed board can be adjusted, thereby improving the adaptability of the bed and forming a multi-position adjustable structure.

[0023] In some embodiments, the bedside frame includes several columns for support, with support pads detachably attached to the bottom of the columns to lift the columns off the surface. By replacing different support pads, the bedside frame can be adapted to different floor surfaces to provide stable support and fine-tune the height, allowing the bedside bed to better adapt to the side of the main bed at different heights.

[0024] The main beneficial effects of the above technical solution are: Two unlocking actions are required to unlock the fence's active state, allowing it to be raised or lowered. This significantly improves the safety of the bed during use and reduces the possibility of the fence moving when it shouldn't. Furthermore, the design of the movable locking block mounted on the fence and the locking slot mounted on the sliding frame improves stability during fence adjustment and allows for single-person operation and convenience.

[0025] By separating the control block for operation and the plug-in block for plugging in, while being able to realize the original function of the movable lock block, the control block can be independently set according to needs to better meet the convenience of operation, thereby improving the convenience of actual use.

[0026] The locking member and the control block are placed in a close area to better exert the unlocking action.

[0027] By providing a return member, the control block can be automatically driven to return to the position when the fence is in the locked state without applying external force, thereby improving the stability of the fence when it is in the locked state.

[0028] By forming the operating portion to extend upwardly out of the fence, and the pressing end of the pressure column to extend downwardly out of the fence, it is convenient for the operator to perform two unlocking actions with one hand.

[0029] By forming the valley surface and the peak surface of the stepped structure on the control part, the convenience and stability of applying force to the control part are further improved.

[0030] The two ends of the fence are positioned and connected to a sliding frame through a locking structure, so as to further improve the positioning stability of the entire fence structure and thus improve the safety of the bed.

[0031] The bed board is height-adjustable to improve the adaptability of the bed and form a multi-position adjustable structure.

[0032] The support pad can better adapt to different ground surfaces to form a stable support, and can also fine-tune the height in more detail, so that the bedside bedding can better adapt to the side of the main bed placed at different heights.

[0033] Further or more detailed beneficial effects will be described in conjunction with specific examples in the specific implementation manner. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] The present invention will be further described below with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the overall structure of a bedside bed.

[0035] Figure 2 This is a structural diagram of the locking structure set in the bed.

[0036] Figure 3 This is an overall schematic diagram of the locking structure.

[0037] Figure 4 It is a structural diagram of the plug-in block.

[0038] Figure 5 It is a structural diagram of the control block.

[0039] Figure 6 This is a schematic diagram of the locking structure when the fence is in a locked state.

[0040] Figure 7 A schematic diagram showing a state where the latch is maintained but the lock is not maintained.

[0041] Figure 8 This is a schematic diagram of the locking structure when the fence is in an adjusted state. DETAILED DESCRIPTION

[0042] The present invention is specifically described below with reference to the embodiments: Example

[0043] Bedside bedding, such as Figure 1 and attached Figure 2 As shown, it is a small bed that is placed on the side of the main bed to extend the usable space of the bed, usually used for babies to rest.

[0044] As attached Figure 1 As shown, the bedside bedding includes a bed board 1 for placing a baby, and a bed end frame 8 is provided at each end of the bed board 1, namely a first bed end frame 8.1 and a second bed end frame 8.2. One end of the bed board 1 is connected to the first bed end frame 8.1, and the other end is connected to the second bed end frame 8.2.

[0045] As attached Figure 2 As shown, the bedside bedding further includes a sliding frame 2 , which can be fixedly connected to the bed board 1 , or fixedly connected to any bed end frame 8 .

[0046] At the same time, the bedside bed also includes a fence 3 for forming a protection on one side to prevent the baby on the bed board 1 from falling. The fence 3 is slidably connected to the sliding frame 2 through a sliding connection structure (such as a slide rail) and can slide up and down on one side of the bed board 1.

[0047] Moreover, the fence 3 is positioned and connected to the sliding frame 2 through a locking structure, so that the fence 3 can be conventionally positioned and fixed on the sliding frame 2, and can be raised and lowered according to usage requirements.

[0048] In this embodiment, as shown in the attached Figure 2 and attached Figure 3 As shown, the locking structure includes: a movable locking block 4, a locking groove 2.1, an elastic member 5 and a locking member 6.

[0049] The movable locking block 4 is slidably mounted within the fence 3, and its sliding path (in this embodiment, the path refers to the area of space formed by the movement of the physical part of an object) extends horizontally, allowing it to slide horizontally. Furthermore, the fence 3 allows the movable locking block 4 to be positioned so that one end of the movable locking block 4 can slide out of the fence 3.

[0050] The locking groove 2.1 is a groove provided on the sliding frame 2, which extends horizontally, and the notch of the groove is adapted to the movable locking block 4, so that the locking groove 2.1 is adapted to be plugged into one end of the movable locking block 4 (the end extending out of the fence 3).

[0051] The elastic member 5 is an elastic structure disposed between the movable locking block 4 and the fence 3 and capable of elastic deformation, such as a spring; and the elastic member 5 exerts an elastic force on the movable locking block 4 to drive one end thereof to insert into the locking groove 2.1.

[0052] In this way, as attached Figure 3 When the locking slot 2.1 and the movable locking block 4 are aligned, the elastic member 5 pushes one end of the movable locking block 4 into the locking slot 2.1, thereby locking the fence 3 in a non-sliding position. However, when an external force pushes the movable locking block 4 out of the locking slot 2.1, the elastic member 5 is deformed and the fence 3 is adjusted to a slidable position.

[0053] Furthermore, the locking structure in this embodiment further includes: a locking member 6 .

[0054] The locking member 6 is a movable member that is movably installed (for example, slidably installed or rotatably installed) in the fence 3. The moving trajectory of the locking member 6 has a portion that overlaps with the sliding trajectory of the movable locking block 4 when it is pulled out of the locking groove 2.1, and another portion that does not overlap.

[0055] By applying external force to place the locking member 6 in the overlapping portion of the track, the movable locking block 4 can be put into a locked state that cannot be pulled out, and the fence 3 can be put into a locked state that cannot slide.

[0056] By applying external force to drive the locking member 6 away from the overlapping part of the track, the locking member 6 will not form an obstacle to the pulling out action of the movable locking block 4, so that the movable locking block 4 can be pulled out and active, and then the fence 3 can be slidably adjusted.

[0057] The locking member 6 is further configured to be positioned at the overlapping portion of the track to keep the movable locking block 4 in a locked state when no external force is applied.

[0058] Specifically, in this embodiment, as shown in the attached Figure 3As shown, the locking member 6 is a block slidably installed in the inner cavity of the fence 3, and its moving track is vertically extended. The lower end of the moving track forms a track overlap portion. Under the action of its own weight, the locking member 6 is placed at the lower end of the moving track to keep the movable locking block 4 in a locked state (as shown in the attached figure). Figure 5 and attached Figure 6 shown).

[0059] A pressure post 7 is also slidably inserted into the fence 3 and is located below the sliding track of the movable locking block 4. The pressure post 7 is inserted into a vertically extending channel in the fence 3 to slide up and down in the fence 3. The upper end of the pressure post 7 is connected to the locking member 6 via a connecting post 7.1, and the lower end extends downwardly out of the fence 3.

[0060] Among them, when the locking member 6 is placed at the lowest end of the moving track, the movable locking block 4 is opposite to the locking member 6 in the horizontal direction, and the movable locking block 4 has a blocking portion 4.1 that forms an abutment and collision with the locking member 6. The blocking portion 4.1 is provided with a horizontally extending moving slot 4.2 with an opening toward the locking member 6. The diameter of the moving slot 4.2 is configured so that in the direction in which the movable locking block 4 is slid out, only the connecting column 7.1 is allowed to be inserted, while the locking member 6 is not allowed to be inserted.

[0061] A clearance space 4.3 is formed above the blocking portion 4.1 to allow the locking member 6 to be accommodated when the connecting column 7.1 is inserted into the movable slot 4.2.

[0062] Thus, when the fence 3 is normally in the locked state: The locking member 6 is located at the bottom of its moving track and blocks the blocking portion 4.1 of the movable locking block 4 from moving away from the locking groove 2.1. The movable locking block 4 cannot be pulled out of the locking groove 2.1. The movable locking block 4 is in a locked state and the fence 3 is in a non-sliding locked state (as shown in the attached figure). Figure 6 shown).

[0063] When the fence 3 needs to be raised or lowered: Push the pressure column 7 upwards, and then drive the locking member 6 to move upwards: the locking member 6 is opposite to the avoidance space 4.3, and the moving notch 4.2 is opposite to the connecting column 7.1 (as shown in the attached figure). Figure 7 At this time, the movable locking block 4 is in an active state where it can be pulled out of the locking slot 2.1, while the fence 3 is still in a non-sliding locked state.

[0064] Then, force is applied to push the movable locking block 4 so that the movable locking block 4 slides in a direction away from the locking groove 2.1, and the movable locking block 4 can be separated from the locking groove 2.1, so that the fence 3 is in a slidable adjustment state (such as the attached Figure 8 At this point, the fence 3 can be raised or lowered as needed.

[0065] When it is necessary to restore the locked state of the fence 3, the fence 3 only needs to be raised and lowered until the locking groove 2.1 is opposite to the movable locking block 4. Under the elastic pushing action of the elastic member 5, the movable locking block 4 automatically inserts into the locking groove 2.1 to make the fence 3 in a non-sliding locked state. At the same time, the locking member 6 is placed at the bottom of its moving track under the action of its own weight to keep the movable locking block 4 in the locked state (as shown in the attached figure). Figure 5 and attached Figure 6 Complete the unlocking and locking process.

[0066] In this embodiment, the sliding frame 2 may include a positioning rod 2.2 fixed to the bed end frame 8 or the bed board 1, and a guide rod 2.3 fixed to the positioning rod 2.1. The positioning rod 2.2 is provided with a raised locking block 2.2a, and a locking groove 2.1 is provided in the locking block 2.2a. The positioning rod 2.2 is provided with a plurality of locking blocks 2.2a according to the height adjustment requirements of the fence 3. The plurality of locking blocks 2.2a are arranged in a vertically spaced manner. By inserting the movable locking block 4 of the fence 3 into the locking groove 2.1 of any locking block 2.2a, the fence 3 can be vertically adjusted in height.

[0067] Furthermore, the fence 3 is inserted into the guide rod 2.3 so that the fence 3 can slide vertically along the guide rod 2.3.

[0068] The movable locking block 4 can be an integral component or composed of separate components.

[0069] In this embodiment, as a preferred embodiment, as shown in the attached Figure 3 , Attachment Figure 4 and attached Figure 5 As shown, the movable locking block 4 includes: an inserting block 4a for aligning and inserting with the locking groove 2.1, and a control block 4b placed on the side of the inserting block 4a facing away from the locking groove 2.1.

[0070] Among them, the control block 4b is formed with a control part for external force to push to drive the movable locking block 4 to slide; the elastic member 5 is placed between the plug-in block 4a and the fence 3 to apply elastic force to the plug-in block 4a to drive one end of it to insert into the locking groove 2.1.

[0071] The sliding tracks of the plug-in block 4a and the control block 4b are both arranged to extend horizontally, and the plug-in block 4a and the control block 4b are connected by a linkage 4c (a flexible rope or a rigid rod) so that either the plug-in block 4a or the control block 4b can drive the other to move toward the side away from the linkage 4c. Figure 3 As shown in FIG, driving the plug-in block 4a to move to the left, it is synchronously driven to move to the left by the linkage member 4c; and driving the control block 4b to move to the right, it synchronously drives the plug-in block 4a to move to the right.

[0072] Furthermore, in this embodiment, the locking member 6 is configured to: by acting on the control block 4b, the movable locking block 4 is in a locked state that cannot be pulled out / in an active state that can be pulled out. Figure 3 and attached Figure 5 As shown, the movement trajectory of the locking member 6 matches the sliding trajectory of the control block 4b. In the absence of other external forces, it blocks the plug-in block 4a from being pulled out of the locking groove 2.1 by pushing the control block 4b to slide.

[0073] Furthermore, the fence 3 may be provided with a restoring member 10 placed between the fence 3 and the control block 4b. The restoring member 10 is configured to be elastically deformable and exert an elastic force on the control block 4b to drive it toward the plug-in block 4a. Figure 5 As shown, the return member 10 is a spring that is compressed and arranged between the control block 4b and the fence 3.

[0074] Furthermore, when the control block 4b has a control portion, the upper end of the control block 4b has a portion extending upward from the fence 3, which forms a manipulation portion 4b.1 for applying external force to drive the control block 4b to move.

[0075] As attached Figure 5 As shown, in the direction from the plug-in block 4a to the control block 4b (i.e. Figure 5 From left to right, the upper surface of the control portion 4b.1 includes, in sequence: a valley surface 4b.2 and a peak surface 4b.3 connected to the valley surface 4b.2; the upward protrusion height of the valley surface 4b.2 is lower than the upward protrusion height of the peak surface 4b.3, so as to form a stepped structure for finger pressure.

[0076] In either of the above solutions, two slide frames 2 are provided, for example, one fixed to the first bed end frame 8.1 and the other fixed to the second bed end frame 8.2. Furthermore, each end of the fence 3 is positioned and connected to a slide frame 2 via a locking structure. In this case, the movable locking blocks 4 at both ends of the fence 3 must be simultaneously removed from the corresponding locking slots 2.1, so that the fence 3 can be adjusted in a slidable state for vertical adjustment.

[0077] Furthermore, based on any of the above solutions, both ends of the bed board 1 can be connected to a bed end frame 8 through an adjustable connection structure, so that the height of the bed board 1 can be adjusted.

[0078] Specifically, the adjustable connection structure includes a snap-fit portion (e.g., a raised block) disposed at the end of the bed board 1, and multiple docking portions (e.g., slots for the block to engage) disposed on the bed end frame 8. The multiple docking portions are vertically spaced apart, and each docking portion is configured to be removably connected to the snap-fit portion.

[0079] The height position of the bed board 1 can be adjusted by selectively and detachably connecting the clamping portion to any docking portion.

[0080] Furthermore, each bed end frame 8 may also include a plurality of columns 8.1 for forming a support structure. The bottom of each column 8.1 is detachably connected to a support pad 9, such as a plug-in structure, for lifting the column 8.1 from the placement surface. By installing different support pads 9, the height of the bed end frame 8 can be changed, thereby changing the corresponding height of the bed board 1.

[0081] The above are only preferred embodiments of the present invention and are not intended to limit the scope of the present invention. In addition, the terms "vertical", "horizontal", "front", "rear" and the like mentioned in the embodiments of the present invention indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or the orientations or positional relationships in which the product is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. It should be further explained that, unless otherwise expressly specified and limited, the terms "install", "connect", "connect", "fix" and the like in the description should be understood in a broad sense. For example, "connect" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection, an indirect connection through an intermediate medium, or a connection between the two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.

[0082] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the claims and their equivalents.

Claims

1. Bedside furniture, including: A bed board (1) and a sliding frame (2), wherein the sliding frame (2) is slidably mounted with a fence (3) that slides up and down on one side of the bed board (1); It is characterized in that the fence (3) is positioned and connected to the sliding frame (2) through a locking structure, and the locking structure includes: A movable locking block (4) is slidably mounted in the fence (3), wherein the sliding track of the movable locking block (4) is arranged to extend horizontally, and one end of the movable locking block (4) can slide out of the fence (3); A locking groove (2.1) is provided on the sliding frame (2) and is adapted to be plugged into one end of the movable locking block (4); An elastic member (5) disposed between the movable locking block (4) and the fence (3), configured to be elastically deformable and to exert an elastic force on the movable locking block (4) to drive one end thereof into the locking slot (2.1); By inserting the movable locking block (4) into the locking slot (2.1) or pulling it out from the locking slot (2.1), the fence (3) is placed in a non-sliding locked state or a slidable adjusted state; The locking structure further comprises: a locking member (6) movably mounted in the fence (3), the moving track of which has a portion overlapping with the sliding track of the movable locking block (4) when it is pulled out of the locking slot (2.1), and another portion not overlapping, and by placing the locking member (6) in the overlapping portion of the track / driving the locking member (6) away from the overlapping portion of the track, the movable locking block (4) is placed in a locked state that cannot be pulled out / in a movable state that can be pulled out; The locking member (6) is also configured to be positioned at the overlapping portion of the track in the absence of external force so that the movable locking block (4) remains in a locked state.

2. The bedside bedding according to claim 1, characterized in that: The moving track of the locking member (6) is vertically extended, and a track overlap portion is formed at the bottom of the moving track. Under the action of its own weight, the locking member (6) is placed at the bottom of the moving track to keep the movable locking block (4) in a locked state; The fence (3) is provided with: a pressure column (7) placed in the area below the sliding track of the movable locking block (4); The pressure column (7) is configured to slide up and down in the fence (3), and the upper end of the pressure column (7) is connected to the locking member (6) through a connecting column (7.1), and the lower end passes downwardly out of the fence (3); The movable locking block (4) has a blocking portion (4.1) that forms an abutment collision with the locking member (6), and the blocking portion (4.1) is provided with a moving notch (4.2) opening toward the locking member (6), and is configured to allow the connecting column (7.1) to be inserted but not allow the locking member (6) to be inserted in the direction in which the movable locking block (4) is slid out; A relief space (4.3) is formed above the blocking portion (4.1) to allow the locking member (6) to be accommodated when the connecting column (7.1) is inserted into the movable notch (4.2); The locking member (6) can be driven to be placed in the avoidance space (4.3) by pushing the pressure column (7) upwards, so that the movable locking block (4) is in a movable state that can be pulled out.

3. The bedside bedding according to claim 1, characterized in that: The movable locking block (4) comprises: a plug-in block (4a) for being plugged into the locking slot (2.1) in alignment, and a control block (4b) disposed on a side of the plug-in block (4a) facing away from the locking slot (2.1); The control block (4b) is formed with a control portion for being pushed by an external force to drive the movable locking block (4) to slide; The elastic member (5) is placed between the plug-in block (4a) and the fence (3) to apply an elastic force to the plug-in block (4a) to drive one end thereof to be inserted into the locking groove (2.1); The sliding tracks of the plug-in block (4a) and the control block (4b) are both arranged to extend horizontally, and the plug-in block (4a) and the control block (4b) are connected via a linkage (4c), so that any one of the plug-in block (4a) and the control block (4b) can drive the other to move toward a side away from the linkage (4c).

4. The bedside bedding according to claim 3, characterized in that: The locking member (6) is configured to act on the control block member (4b) so as to place the movable locking block (4) in a non-removable locked state or a removable active state.

5. The bedside bedding according to claim 4, characterized in that: The fence (3) is further provided with: a return member (10) placed between the fence (3) and the control block member (4b); The return member (10) is configured to be elastically deformable and to apply an elastic force to the control block (4b) to drive the control block (4b) to move toward the plug-in block (4a).

6. The bedside bedding according to claim 4, characterized in that: The upper end of the control block (4b) has a portion extending upward from the fence (3), and the portion is formed with a manipulation portion (4b.1) for applying an external force to drive the control block (4b) to move.

7. The bedside bedding according to claim 6, characterized in that: In the direction from the plug-in block (4a) to the control block (4b), the upper surface of the control portion (4b.1) sequentially comprises: a valley surface (4b.2) and a peak surface (4b.3) connected to the valley surface (4b.2); The upward convex height of the valley surface (4b.2) is lower than the upward convex height of the peak surface (4b.3).

8. The bedside bedding according to any one of claims 1 to 7, characterized in that: Two sliding frames (2) are provided, and both ends of the fence (3) are respectively positioned and connected to one of the sliding frames (2) via a locking structure.

9. The bedside bedding according to claim 1, characterized in that: A bed end frame (8) is provided at each end of the bed board (1), and each end of the bed board (1) is connected to one of the bed end frames (8) via an adjustable connection structure, so as to achieve height adjustment of the bed board (1); The adjustable connection structure comprises: A clamping portion provided at the end of the bed board (1); A plurality of docking portions are provided on the bed end frame (8), the plurality of docking portions are arranged at intervals in the vertical direction, and each of the docking portions is configured to be detachably connected to the clamping portion; The height position of the bed board (1) can be adjusted by selectively and detachably connecting the clamping portion to any of the docking portions.

10. The bedside bedding according to claim 9, characterized in that: The bed end frame (8) comprises a plurality of columns (8.1) for forming a support, and the bottoms of the columns (8.1) are detachably connected to support pads (9) for lifting the columns (8.1) from a placement plane.