A side sliding storage rack
Patent Information
- Application Number
- CN202521027382.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-05-23
AI Technical Summary
[0003]现有技术中,置物篮与横梁的装配方式存在显著局限性:置物篮仅能以水平姿态放置于置物架的水平承载面上,当用户需要取放物品时,必须将整个置物篮从横梁上完全移出,方可触及篮内物品;这种操作方式在实际使用中暴露缺陷:操作效率低下:尤其当置物篮满载较重物品时,频繁搬运过程显著增加用户体力消耗;空间利用僵化:固定式安放导致无法根据物品尺寸动态调整置物篮角度或高度,空间适配性不足
本实用新型设计一种侧滑式置物架,基于多组滑道装置上下堆叠构成的纵向层架,设计各组滑道装置分别包括空间上分设两侧位于相同高度的两侧滑道,并分别针对两侧滑道具体通过模块组合方式下的位置布局设计,构成水平滑道与斜向滑道,进而针对彼此平行两外侧面上设有外延凸边的目标物,实现目标物的水平放置或斜向放置,不仅实现了纵向层架中空间的灵活应用,提高了空间适配性,而且所实现的多姿态放置,提高了物品观察与拿取的便捷性。
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Figure CN224639329U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a side-sliding shelf, belonging to the field of shelf structure technology. Background Technology
[0002] Shelves, as a common storage device, are widely used in kitchens, bathrooms, laboratories, and other settings. Their core function lies in achieving three-dimensional storage of items through a tiered structure. Traditional shelves typically consist of uprights, beams, and storage baskets, with the baskets fixed to the beams by welding or bolts to form a stable horizontal support surface.
[0003] In existing technologies, the assembly method of the storage basket and the crossbeam has significant limitations: the storage basket can only be placed horizontally on the horizontal support surface of the shelf. When the user needs to retrieve or place items, the entire storage basket must be completely removed from the crossbeam before the items inside can be accessed. This operating method exposes defects in actual use: low operating efficiency: especially when the storage basket is fully loaded with heavy items, the frequent moving process significantly increases the user's physical exertion; rigid space utilization: the fixed placement makes it impossible to dynamically adjust the angle or height of the storage basket according to the size of the items, resulting in insufficient space adaptability. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a side-sliding storage rack with a brand-new slide structure layout design, which can be used for horizontal and diagonal placement, improving the flexibility of storage and the convenience of retrieving items.
[0005] To solve the above-mentioned technical problems, this utility model adopts the following technical solution: This utility model designs a side-sliding shelf, including at least two sets of slide rail devices. The structures of each set of slide rail devices are the same. Each set of slide rail devices includes two side slide rails located at the same height on both sides. Each side slide rail includes a straight horizontal slide rail and a straight oblique slide rail. The surfaces of the horizontal and oblique slide rails in a single side slide rail are vertical. The two horizontal slide rails in the two side slide rails of a single set of slide rail devices are parallel to each other, and the two oblique slide rails are parallel to each other. The slide rail devices are spatially arranged with the two side slide rails corresponding to each other in the vertical direction. Based on the fact that the target object is parallel to each other, straight extended protrusions are respectively provided on the two outer sides of the two side slide rails of the slide rail device, and the two extended protrusions are parallel to each other. The target object is slidably placed in the two horizontal slide rails of the two side slide rails of the slide rail device or slidably placed in the two oblique slide rails of the two side slide rails of the slide rail device with the extended protrusions on its two outer sides, so as to realize the horizontal or oblique placement of the target object on the slide rail device.
[0006] As a preferred technical solution of this utility model: each of the sliding track devices includes a central ramp device and two end horizontal support devices on both sides. In the structure of each side track, the top surfaces of the two end horizontal support devices are horizontally coplanar with each other, and the two end horizontal support devices maintain a preset distance. A horizontal track is formed by a straight path on the top surface of the two end horizontal support devices. The central ramp device is located in the area between the two end horizontal support devices, corresponding to the position directly above the horizontal track. A groove is embedded in the top surface of the outer end of one of the end horizontal support devices in an oblique outward direction. A first ramp is formed on the central ramp device corresponding to the end of one of the end horizontal support devices, pointing obliquely towards the groove on one of the end horizontal support devices. An oblique track is formed by a straight path extending from the groove on one of the end horizontal support devices through the upper surface of the first ramp in the central ramp device pointing towards it. The groove limits the obliquely placed target object.
[0007] As a preferred technical solution of this utility model: in the structure of each side slide, a groove is embedded in the top surface of the outer end of the other end horizontal support device along the oblique outward direction, and the end of the central ramp device corresponding to the other end horizontal support device forms a first ramp obliquely pointing towards the groove on the other end horizontal support device. The straight path extending from the groove on the other end horizontal support device through the upper surface of the first ramp in the central ramp device pointing towards it constitutes an oblique slide, and the groove limits the obliquely placed target object.
[0008] As a preferred technical solution of this utility model: in the structure of each side slide, a protrusion is provided on the outer side of the corresponding groove on the top surface of the end horizontal support device, and the protrusion limits the horizontally placed target object.
[0009] As a preferred technical solution of this utility model: based on the spatial arrangement of each group of slide devices with the two sides of the slide corresponding to the upper and lower positions in the vertical direction, the two ends of the horizontal support device of each upper position side slide extend inward in the downward direction to form a second slope. The oblique slides of each lower position side slide are respectively extended from the corresponding groove through the corresponding first slope on the central slope device and along the straight line to the second slope on the corresponding end horizontal support device of the adjacent upper position side slide.
[0010] As a preferred technical solution of this utility model: each side slide also includes two tail support blocks. In the structure of each side slide, the two tail support blocks are respectively arranged one-to-one above the grooves of the horizontal support devices at both ends. The top of each tail support block is provided with a third slope inward and downward. In the lower position side slide, each inclined slide extends from the corresponding groove through the corresponding first slope on the central slope device, and along a straight line to the second slope on the corresponding end horizontal support device and the third slope on the corresponding tail support block in the adjacent upper position side slide.
[0011] As a preferred technical solution of this utility model, it also includes two parallel side plates, and the two side slides in each set of slide devices are respectively arranged on the inner sides of the two side plates that are opposite to each other.
[0012] The side-sliding storage rack described in this utility model, compared with the prior art, has the following technical advantages: This utility model designs a side-sliding shelf, based on a vertical shelf composed of multiple sets of sliding track devices stacked one on top of the other. Each set of sliding track devices includes two sliding tracks located at the same height on both sides. The specific position layout of the two sliding tracks is designed through a modular combination method to form horizontal and oblique sliding tracks. This allows for the horizontal or oblique placement of target objects with extended protrusions on the two parallel outer surfaces. This not only realizes the flexible use of space in the vertical shelf and improves spatial adaptability, but also improves the convenience of observing and retrieving items by enabling multi-position placement. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the side slide rail structure in the side-sliding shelf of this utility model design; Figure 2 This is a schematic diagram of the actual application of the side-sliding storage rack designed in this utility model; Figure 3 This is a schematic diagram of the oblique placement of the side-sliding shelf designed in this utility model.
[0014] Among them, 1. Side slide, 1-1. Horizontal slide, 1-2. Inclined slide, 1-3. Central ramp device, 1-3-1. First ramp, 1-4. End horizontal support device, 1-4-1. Groove, 1-4-2. Protrusion, 1-4-3. Second ramp, 1-5. Tail support block, 1-5-1. Third ramp, 2. Side plate. Detailed Implementation
[0015] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings.
[0016] This utility model designs a side-sliding storage rack, such as... Figure 1 and Figure 2 As shown, the design includes at least two sets of slide devices. The structures of each set of slide devices are the same. Each set of slide devices includes two side slides 1 located at the same height on both sides. Each side slide 1 includes a straight horizontal slide 1-1 and a straight inclined slide 1-2. The planes on which the horizontal slide 1-1 and the inclined slide 1-2 are located in a single side slide 1 are vertical planes. In a single set of slide devices, the two horizontal slides 1-1 in the two side slides 1 are parallel to each other, and the two inclined slides 1-2 are parallel to each other.
[0017] Based on the parallel side plates 2, the two side slides 1 of each set of slide devices are respectively set on the inner side surfaces of the two side plates 2 facing each other. The slide devices are spatially arranged with the two side slides 1 corresponding to each other in the vertical direction. Based on the parallel outer side surfaces of the target object, straight extended protrusions are respectively set on the two outer side surfaces of the slide device, and the two extended protrusions are parallel to each other. The target object is slidably placed in the two horizontal slides 1-1 of the two side slides 1 of the slide device with the extended protrusions on its two outer side surfaces, or it is slidably placed in the two oblique slides 1-2 of the two side slides 1 of the slide device, so as to realize the horizontal or oblique placement of the target object on the slide device.
[0018] Regarding the horizontal slide rail 1-1 and the inclined slide rail 1-2 on the side slide rail 1 in the above design scheme, in actual application, such as Figure 1 and Figure 2 As shown, the design uses a modular structural layout to build each slide. Specifically, each slide 1 in each group of slide devices includes a central ramp device 1-3 and two end horizontal support devices 1-4. In the structure of each side slide 1, the top surfaces of the two end horizontal support devices 1-4 are horizontally coplanar with each other, and the two end horizontal support devices 1-4 maintain a preset distance. The horizontal slide 1-1 is formed by passing through the straight path on the top surface of the two end horizontal support devices 1-4 in sequence.
[0019] like Figure 1 and Figure 2 As shown, the central ramp device 1-3 is located directly above the horizontal slide 1-1 in the area between the two end horizontal support devices 1-4. The top surface of the outer end of one of the end horizontal support devices 1-4 is inlaid with a groove 1-4-1 in an oblique outward direction. The end of the central ramp device 1-3 corresponding to one of the end horizontal support devices 1-4 forms a first ramp 1-3-1 obliquely pointing towards the groove 1-4-1 on one of the end horizontal support devices 1-4. The straight path extending from the groove 1-4-1 on one of the end horizontal support devices 1-4 through the upper surface of the first ramp 1-3-1 in the central ramp device 1-3 forms an oblique slide 1-2. The groove 1-4-1 limits the obliquely placed target object.
[0020] As described above, horizontal slides 1-1 and inclined slides 1-2 are constructed on the side slide 1. In a single slide device, the two horizontal slides 1-1 on both sides of slide 1 are parallel to each other, and the two inclined slides 1-2 are parallel to each other. Furthermore, the distance between the two horizontal slides 1-1 and the distance between the two inclined slides 1-2 on both sides of slide 1 corresponds to the distance between the two sides of the extended protrusion on the target object. Thus, the target object, with its extended protrusion on its two outer surfaces, slides into the two horizontal slides 1-1 on both sides of slide 1, achieving horizontal placement of the target object on the slide device. Alternatively, the target object, with its extended protrusion on its two outer surfaces, slides into the two inclined slides 1-2 on both sides of slide 1, achieving inclined placement of the target object on the slide device. Figure 3 As shown, the groove 1-4-1 limits the outer convex edge end of the obliquely placed target object.
[0021] Based on the above modular design, the inclined slide 1-2 is constructed. In practical applications, according to... Figure 1 As shown, a second inclined slide 1-2 is further designed. Specifically, in the structure of each side slide 1, a groove 1-4-1 is embedded in the top surface of the outer end of the other end horizontal support device 1-4 in an inclined outward direction. The middle ramp device 1-3 forms a first ramp 1-3-1 in an inclined direction pointing towards the groove 1-4-1 on the other end horizontal support device 1-4. The straight path extending from the groove 1-4-1 on the other end horizontal support device 1-4 through the upper surface of the first ramp 1-3-1 in the middle ramp device 1-3 forms the inclined slide 1-2. The groove 1-4-1 limits the inclined target object.
[0022] This creates two inclined slides 1-2 in each direction, which, together with the constructed horizontal slide 1-1, allow the target object to be fed from both ends of the slide device into the position between the two slides 1. Both can be placed horizontally or at an angle, enabling flexible multi-directional object placement. Applying this utility model design to practice, and further considering the structure of each side slide 1, a protrusion 1-4-2 is designed on the outer side of the top surface of the end horizontal support device 1-4 corresponding to the groove 1-4-1. The protrusion 1-4-2 limits the horizontally placed target object. That is, in the application of realizing the horizontal placement of the target object, the protrusion 1-4-2 limits the end of the outer protruding edge of the target object.
[0023] Based on the structural design of the two side slides 1 in the single-set slide device described above, in practical applications, such as Figure 1 and Figure 2As shown, for each set of slide devices stacked vertically, a further combination scheme is applied. Specifically, based on the spatial arrangement of each set of slide devices with the two side slides 1 corresponding to the vertical positions of the upper and lower parts, the two ends of the horizontal support devices 1-4 at the two ends of each upper side slide 1 extend inwards in a downward direction to form a second slope 1-4-3. In the lower side slide 1, each inclined slide 1-2 extends from the corresponding groove 1-4-1 through the corresponding first slope 1-3-1 on the central slope device 1-3, along a straight line to the second slope 1-4-3 on the corresponding end horizontal support device 1-4 in the adjacent upper side slide 1. That is, in the application of placing the target object at an angle, the path of the inclined slide 1-2 is extended, that is, the outer convex edge of the target object slides and is set along the first slope 1-3-1 and the second slope 1-4-3 in sequence.
[0024] In practical applications, such as Figure 1 and Figure 2 As shown, each side slide 1 is further designed to include two tail support blocks 1-5. In the structure of each side slide 1, the two tail support blocks 1-5 are respectively set above the grooves 1-4-1 of the horizontal support devices 1-4 at both ends. The top of each tail support block 1-5 is respectively set with a third slope 1-5-1 inward and downward. Each inclined slide 1-2 in the lower position side slide 1 extends from the corresponding groove 1-4-1 through the corresponding first slope 1-3-1 on the central slope device 1-3, and extends in a straight line to the second slope 1-4-3 on the corresponding end horizontal support device 1-4 and the third slope 1-5-1 on the corresponding tail support block 1-5 in the adjacent upper position side slide 1. That is, the path of the inclined slide 1-2 is further extended. The outer protruding edge of the target object slides and is set along the first slope 1-3-1, the second slope 1-4-3, and the third slope 1-5-1 in sequence.
[0025] like Figure 1 and Figure 2 As shown, when the outer protruding edge of the target object slides along the horizontal slide 1-1, the top surface of the outer protruding edge is limited by the two downward-sloping ends of the central ramp device 1-3 and the bottom of each tail support block 1-5, which prevents the outer protruding edge from moving upward. When the target object is placed on the horizontal slide 1-1, the outer protruding edge on the target object is simply limited in the outer circumferential direction by the two protrusions 1-4-2 on the horizontal slide 1-1, the two ends of the central ramp device 1-3, and the bottom of the two tail support blocks 1-5, so as to avoid the outer protruding edge of the target object from leaving the horizontal slide 1-1 due to shaking or vibration of the shelf.
[0026] like Figure 1 and Figure 2As shown, similarly, when the outer convex edge of the target object slides along the inclined slide 1-2, the top surface of the outer convex edge is limited from bottom to top by the bottom of the tail support block 1-5, the inner end of the horizontal support device 1-4 at one end, and one end of the central inclined device 1-3. Similarly, on the one hand, the outer convex edge is limited during the sliding process of the target object, and on the other hand, when the target object is placed at an angle, it is limited by the groove 1-4-1 at its bottom end, as well as the ends of the various devices around it and the inclined slope, so as to prevent the outer convex edge of the target object from leaving the inclined slide 1-2 due to shaking or vibration of the shelf.
[0027] When this utility model of a side-sliding shelf is applied in practice, the target object is such as a storage basket. The storage basket is designed to be placed horizontally or diagonally relative to the side-sliding shelf, and the storage basket is designed to support the load. Due to the diagonal placement, it is convenient to observe and find the items in the storage basket.
[0028] The above-mentioned technical solution designs a side-sliding shelf, which is based on a vertical shelf composed of multiple sets of sliding track devices stacked one on top of the other. Each set of sliding track devices includes two sliding tracks 1 located at the same height on both sides. The two sliding tracks 1 are specifically designed with a modular combination to form a horizontal sliding track 1-1 and an oblique sliding track 1-2. This allows for the horizontal or oblique placement of target objects with extended protrusions on their parallel outer surfaces. This not only realizes the flexible use of space in the vertical shelf and improves spatial adaptability, but also improves the convenience of observing and retrieving items by enabling multi-position placement.
[0029] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A side-sliding storage rack, characterized in that: It includes at least two sets of slide devices, each set of slide devices having the same structure. Each set of slide devices includes two side slides (1) located at the same height on both sides. Each side slide (1) includes a straight horizontal slide (1-1) and a straight inclined slide (1-2). The planes on which the horizontal slide (1-1) and the inclined slide (1-2) are located in a single side slide (1) are vertical. In a single set of slide devices, the two horizontal slides (1-1) in the two side slides (1) are parallel to each other, and the two inclined slides (1-2) are parallel to each other. The slide devices are parallel to each other, and the two slides (1) on both sides are spatially arranged in the vertical direction. Based on the fact that the target objects are parallel to each other, straight extended protrusions are set on the two outer surfaces of the slide device, and the two extended protrusions are parallel to each other. The target objects are slidably placed in the two horizontal slides (1-1) of the two slides (1) on both sides of the slide device, or slidably placed in the two oblique slides (1-2) of the two slides (1) on both sides of the slide device, so as to realize the horizontal or oblique placement of the target objects on the slide device.
2. The side-sliding storage rack according to claim 1, characterized in that: Each set of slide devices includes a central ramp device (1-3) and two end horizontal support devices (1-4) in each side slide (1). In the structure of each side slide (1), the top surfaces of the two end horizontal support devices (1-4) are horizontally coplanar with each other, and the two end horizontal support devices (1-4) maintain a preset distance. The straight path passing through the top surfaces of the two end horizontal support devices (1-4) in sequence forms a horizontal slide (1-1). The central ramp device (1-3) is located in the area between the two end horizontal support devices (1-4) and is directly above the horizontal slide (1-1). One of the end horizontal support devices... (1-4) A groove (1-4-1) is embedded in the top surface of the upper outer end along the oblique outward direction. The middle ramp device (1-3) forms a first ramp (1-3-1) obliquely pointing to the groove (1-4-1) on one of the end horizontal support devices (1-4) at the end of one of the end horizontal support devices (1-4). The straight path extending from the groove (1-4-1) on one of the end horizontal support devices (1-4) through the upper surface of the first ramp (1-3-1) in the middle ramp device (1-3) pointing to it forms an oblique slide (1-2). The groove (1-4-1) limits the obliquely placed target object.
3. The side-sliding storage rack according to claim 2, characterized in that: In the structure of each side slide (1), the top surface of the outer end of the other end horizontal support device (1-4) is inlaid with a groove (1-4-1) in the direction of oblique outward. The middle ramp device (1-3) forms a first ramp (1-3-1) in the direction of obliquely pointing to the groove (1-4-1) on the other end horizontal support device (1-4) at the end of the other end horizontal support device (1-4). The straight path extending from the groove (1-4-1) on the other end horizontal support device (1-4) through the upper surface of the first ramp (1-3-1) in the middle ramp device (1-3) pointing to it constitutes an oblique slide (1-2). The groove (1-4-1) limits the obliquely placed target object.
4. The side-sliding storage rack according to claim 3, characterized in that: In the structure of each side slide (1), the top surface of the end horizontal support device (1-4) is provided with a protrusion (1-4-2) at the outer position of the corresponding groove (1-4-1), and the protrusion (1-4-2) limits the horizontally placed target object.
5. A side-sliding shelf according to claim 3, characterized in that: Based on the spatial arrangement of each group of slide devices with the two sides of the slide (1) corresponding to the vertical positions of the upper and lower sides, the two ends of the horizontal support device (1-4) of each upper side slide (1) extend inward in a downward direction to form a second slope (1-4-3). The oblique slides (1-2) of each lower side slide (1) are respectively connected by the corresponding groove (1-4-1), the corresponding first slope (1-3-1) on the central slope device (1-3), and the second slope (1-4-3) on the corresponding end of the horizontal support device (1-4) in the adjacent upper side slide (1).
6. A side-sliding shelf according to claim 5, characterized in that: Each side slide (1) also includes two tail support blocks (1-5). In the structure of each side slide (1), the two tail support blocks (1-5) are respectively set above the grooves (1-4-1) of the horizontal support devices (1-4) at both ends. The top of each tail support block (1-5) is respectively set with a third slope (1-5-1) inward and downward. Each inclined slide (1-2) in the lower position side slide (1) extends from the corresponding groove (1-4-1) through the corresponding first slope (1-3-1) on the central slope device (1-3) along a straight line to the second slope (1-4-3) on the corresponding end horizontal support device (1-4) and the third slope (1-5-1) on the corresponding tail support block (1-5) in the adjacent upper position side slide (1).
7. A side-sliding shelf according to claim 6, characterized in that: It also includes two parallel side plates (2), and the two side slides (1) in each set of slide devices are respectively set on the inner side surfaces of the two side plates (2) opposite to each other.