Side plate structure with stress buffering function and metal storage device comprising side plate structure
By installing stepped reinforcing modules on the side panels of the metal storage device, impact forces are buffered, solving the deformation problem of the metal storage device when dropped or subjected to force, maintaining the normal appearance and function of the product, and improving mechanical strength.
Patent Information
- Application Number
- CN202423298921.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-31
AI Technical Summary
When metal storage devices are dropped or subjected to force, the side panels and drawer slides are prone to deformation, affecting the product's appearance and lifespan.
It adopts a side plate structure with front and rear reinforcement modules. The modules adopt a stepped structure to form a buffer, reduce the transmission of impact force, and prevent deformation.
It effectively buffers impact forces, prevents deformation of side panels and drawer slides, maintains the product's appearance and normal function, and improves mechanical strength.
Smart Images

Figure CN223574920U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to metal product technical field more specifically, relate to a kind of side plate structure with force buffering and metal storage device comprising the structure. BACKGROUND
[0002] Metal storage device, for example, metal storage box, metal storage cabinet, metal tool car etc., metal storage device is widely used due to having high strength, durable, moisture-proof and corrosion-resistant, high security and the like advantages.
[0003] In the logistics transportation process, metal storage device can exist falling condition;Part of metal storage device is equipped with drawer, drawer guide rail is installed in the inside of metal storage box side plate;If falling side first landing, at the moment of landing side, drawer still exists falling speed, will impact metal storage device's side plate and drawer guide rail etc., make side plate, drawer and drawer guide rail all exist the possibility of deformation.In addition, metal storage box side in strong impact or embrace when clamping, also can be transmitted to drawer guide rail and drawer through side plate, also can cause side plate, drawer and drawer guide rail deformation.
[0004] When side plate, drawer or drawer guide rail deformation occurs, it will affect product appearance, and will make drawer's push-pull action become difficult, which not only needs additional strength to open or close, but also can damage drawer and internal storage goods because of overexertion;Secondly, the incoherent push-pull of drawer will affect overall appearance and service life, because long-term friction and pressure can cause drawer edge wear or guide rail further deformation.In addition, if deformation is more serious, it can cause drawer to jam, cannot be used normally.
[0005] Therefore, product structure needs to be improved to solve the technical problem that side force leads to internal structure deformation. UTILITY MODEL CONTENTS
[0006] The utility model aims at overcoming the defects and deficiencies in the prior art, providing a kind of side plate structure with force buffering and metal storage device comprising the structure;The side plate structure has good mechanical strength, can form buffering between the surface of side plate structure and product internal structure, reduce the transmission of impact force between side panel and product internal structure, avoid leading to side plate structure and product internal structure deformation.
[0007] In order to achieve the above object, the utility model discloses a side plate structure with stress buffering, comprising a side panel, and front and rear reinforcing modules connected to the front and rear sides of the side panel, wherein the front and rear reinforcing modules each comprise an angle panel, a side inner panel, a supporting structure and a connecting plate connected in sequence, wherein the angle panel is further connected to the front side or the rear side of the side panel, and the connecting plate is further attached to and fixed to the inner side of the side panel, and the supporting structure of the front reinforcing module and / or the supporting structure of the rear reinforcing module adopts a stepped structure.
[0008] The side plate structure of the utility model has the front and rear reinforcing modules, and has good mechanical strength, and either one or both of the supporting structures of the front reinforcing module and the rear reinforcing module adopt a stepped structure, which can deform to a certain extent when stressed and return to the original state after the stress disappears, and the yield strength of the metal material is used to form buffering and dilute the impact force, and when the product is dropped or impacted by external force or clamped, the stepped structure can form buffering between the side panel and the internal structure of the product, reduce the transmission of the impact force between the side panel and the internal structure of the product, and avoid causing deformation of the side plate structure and the internal structure of the product, for example, when the utility model is applied to a metal storage device with a drawer, the stepped structure can form buffering between the side panel and the drawer and the drawer guide rail installed in the internal structure of the metal storage device, reduce the transmission of the impact force, prevent the side plate structure, the drawer and the drawer guide rail from deforming to cause the drawer to be unable to be pulled out or pushed into the internal structure of the metal storage device, and keep the product beautiful.
[0009] Preferably, the stepped structure refers to the distance between the supporting structure and the side panel changing in a stepped manner in the thickness direction of the side plate structure.
[0010] Preferably, the stepped structure comprises a supporting plate one, a stepped panel and a supporting plate two, and the side inner panel, the supporting plate one, the stepped panel, the supporting plate two and the connecting plate are connected in sequence, and the adjacent two items are respectively at an angle with each other.
[0011] Preferably, the width size ratio of the supporting plate one and the supporting plate two is in the range of (0.25-2):1, and the width of the stepped panel is in the range of 10-25 mm.
[0012] Preferably, the front and rear reinforcing modules are respectively provided with guide rail mounting holes for mounting the drawer guide rail.
[0013] Preferably, the front reinforcing module is provided with a functional accessory mounting structure for mounting the functional accessory.
[0014] Preferably, the front and rear reinforcing modules are respectively arranged by one of the following two schemes:
[0015] I. integrated molding;
[0016] Two, the front reinforcing module and / or the rear reinforcing module are spliced by using a split structure, the split structure comprises a reinforcing body and a reinforcing mounting structure; the reinforcing body comprises an angle panel, a side inner plate one and an inner support structure one which are sequentially connected; the reinforcing mounting structure comprises an inner support structure two, a side inner plate two and the support structure and a connecting plate which are sequentially connected; the inner support structure one and the inner support structure two are flush and fixed to the inner side of the side panel, so that the side inner plate one and the side inner plate two are spliced into a side inner plate together. The front reinforcing module and / or the rear reinforcing module are spliced by using a split structure, so that functional accessories and drawer guide rails are more convenient to install, and higher mechanical strength is achieved.
[0017] Preferably, the side bottom plate and the support strip are further included; the side bottom plate is connected to the bottom of the side panel; and the support strip is supported below the front reinforcing module and the rear reinforcing module.
[0018] A metal storage device, the side plate of the metal storage device adopts the side plate structure with stress buffering.
[0019] Compared with the prior art, the metal storage device has the following advantages and beneficial effects:
[0020] 1. The metal storage device has the front reinforcing module and the rear reinforcing module, and the side plate structure has good mechanical strength; any one or both of the support structure of the front reinforcing module and the support structure of the rear reinforcing module adopt a stepped structure; when the product is dropped or impacted by external force or clamped, the stepped structure can form buffering between the side panel and the internal structure of the product, reduce the transmission of impact force between the side panel and the internal structure of the product, and avoid deformation of the side plate structure and the internal structure of the product.
[0021] 2. The metal storage device can effectively buffer stress and effectively prevent the internal structure of the metal storage device from deforming.
[0022] 3. The front reinforcing module and / or the rear reinforcing module can be spliced by using a split structure, so that functional accessories and drawer guide rails are more convenient to install, and higher mechanical strength is achieved. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a structural schematic view of the side plate structure with stress buffering of the metal storage device;
[0024] Figure 2 is an exploded view of the side plate structure with stress buffering of the metal storage device;
[0025] Figure 3 is an installation schematic view of the side plate structure with stress buffering of the metal storage device and the drawer guide rail;
[0026] Figure 4 is an example of the metal storage device to which the side plate structure with stress buffering of the metal storage device is applied.
[0027] Wherein, 1 is a side panel, 2 is an angle panel, 3 is a side inner panel, 31 is a side inner panel one, 32 is a side inner panel two, 4 is a connecting plate, 5 is a supporting plate one, 6 is a step panel, 7 is a supporting plate two, 8 is a guide rail mounting hole, 9 is a accessory mounting structure, 10 is a side bottom plate, 11 is a supporting strip, 12 is an inner supporting structure two, 13 is a lock strip, 14 is a drawer guide rail, 15 is a side plate structure, 16 is a front reinforcing module, 17 is a rear reinforcing module. DETAILED DESCRIPTION
[0028] The utility model will be described further in detail below in combination with the drawings and specific embodiments.
[0029] Embodiment one
[0030] The side plate structure with stress buffering of the embodiment comprises a side panel 1, a front reinforcing module 16 and a rear reinforcing module 17 connected to the front and rear sides of the side panel 1. Figure 1 And Figure 2 The front reinforcing module 16 and the rear reinforcing module 17 both comprise an angle panel 2, a side inner panel 3, a supporting structure and a connecting plate 4 connected in sequence; wherein the angle panel 2 is also connected to the front side or the rear side of the side panel 1; the connecting plate 4 is also attached to and fixed to the inner side of the side panel 1.
[0031] The supporting structure of the rear reinforcing module adopts a stepped structure. The stepped structure refers to the distance between the supporting structure and the side panel 1 in the thickness direction of the side plate structure changing in a stepped manner.
[0032] The stepped structure comprises a supporting plate one 5, a step panel 6 and a supporting plate two 7; the side inner panel 3, the supporting plate one 5, the step panel 6, the supporting plate two 7 and the connecting plate 4 are connected in sequence, and the adjacent two are respectively at an angle to each other. The width size ratio of the supporting plate one 5 to the supporting plate two 7 ranges from 0.25 to 2:1; the width of the step panel 6 ranges from 10 to 25 mm.
[0033] The side plate structure of the utility model has the front reinforcing module 16 and the rear reinforcing module 17, has good mechanical strength; the supporting structure of the rear reinforcing module 17 adopts a stepped structure; when the product is dropped or impacted by external force or clamped, the stepped structure can form buffering between the side panel and the internal structure of the product, reduce the transmission of impact force between the side panel and the internal structure of the product, and avoid causing the deformation of the side plate structure and the internal structure of the product; for example, when the utility model is applied to a metal storage device with a drawer, when the metal storage device falls on the side, or is impacted on the side, or is clamped, the stepped structure can form buffering between the side panel 1 and the drawer and the drawer guide rail 14 installed in the internal structure of the metal storage device, reduce the transmission of impact force, prevent the drawer and the drawer guide rail 14 from deforming to cause the drawer to be unable to be pulled out or pushed into the internal structure of the metal storage device, and keep the product beautiful.
[0034] In this embodiment, the rear reinforcing module 17 is integrally formed; the front reinforcing module 16 is spliced by a split structure. Specifically, the split structure includes a reinforcing body and a reinforcing mounting structure; the reinforcing body includes the corner panel 2, the side inner plate one 31 and the inner support structure one connected in sequence; the reinforcing mounting structure includes the inner support structure two 12, the side inner plate two 32, and the supporting structure and the connecting plate 4 connected in sequence. In this embodiment, the supporting structure of the front reinforcing module 16 is not a stepped structure, but a conventional structure. The inner support structure one and the inner support structure two 12 are attached and fixed to the inner side of the side panel 1, so that the side inner plate one 31 and the side inner plate two 32 are spliced into the side inner plate 3 together. The reinforcing mounting structure is provided with a accessory mounting structure 9 for mounting functional accessories, such as a lock strip 13. The front reinforcing module has higher mechanical strength and can prevent the lock strip from failing to function.
[0035] In actual application, the front reinforcing module can also be integrally formed instead of being spliced by a split structure.
[0036] The side inner plate 3 of the front reinforcing module 16 is flush with the side inner plate 3 of the rear reinforcing module 17, and both are parallel to the side panel 1.
[0037] When it is necessary to install a drawer guide rail, the front reinforcing module 16 and the rear reinforcing module 17 are respectively provided with a guide rail mounting hole 8. The drawer guide rail 14 is installed through the guide rail mounting hole 8, as shown in Figure 3
[0038] The preferred scheme is that the side plate structure further includes a side bottom plate 10 and a support strip 11; the side bottom plate 10 is connected to the bottom of the side panel 1; and the support strip 11 is supported below the front reinforcing module 16 and the rear reinforcing module 17.
[0039] Figure 4 is an example of a metal storage device to which the side plate structure 15 of this embodiment is applied, and the metal storage device has a drawer; in actual application, the side plate structure can also be applied to other metal storage devices with a drawer; the side plate structure can also be applied to metal storage devices without a drawer to prevent deformation of other structures inside the product due to stress on the side of the product.
[0040] Embodiment Two
[0041] This embodiment is a side plate structure with stress buffering, and the difference from Embodiment One is that in this embodiment, the supporting structure of the rear reinforcing module does not adopt a stepped structure, while the supporting structure of the front reinforcing module adopts a stepped structure; the stepped structure is as described in Embodiment One. The remaining structures of this embodiment are the same as those of Embodiment One.
[0042] Embodiment Three
[0043] The side plate structure with stress buffering of the embodiment is different from the first embodiment in that the supporting structure of the front reinforcing module and the supporting structure of the rear reinforcing module are both in a stepped structure; the stepped structure is as described in the first embodiment.
[0044] Embodiment four
[0045] The side plate structure with stress buffering of the embodiment is different from the first embodiment in that the rear reinforcing module is spliced by split structures; the split structure is the same as that of the first embodiment.
[0046] The above embodiments are the preferred embodiments of the utility model, but the embodiments of the utility model are not limited by the above embodiments, and any change, modification, replacement, combination, simplification made without departing from the spirit and principle of the utility model should be an equivalent replacement mode and should be included in the protection scope of the utility model.
Claims
1. A side plate structure with stress buffer, characterized in that: It includes a side panel, and a front reinforcing module and a rear reinforcing module connected to the front and rear sides of the side panel; the front reinforcing module and the rear reinforcing module each include a corner panel, an inner side panel, a support structure and a connecting plate connected in sequence; wherein, the corner panel is also connected to the front or rear side of the side panel; the connecting plate is also attached to and fixed to the inner side of the side panel; the support structure of the front reinforcing module and / or the support structure of the rear reinforcing module adopts a stepped structure.
2. The side plate structure with force buffer according to claim 1, characterized in that: The stepped structure refers to a structure in which the distance between the supporting structure and the side panel changes in a stepped manner in the thickness direction of the side panel structure.
3. The side plate structure with force buffer according to claim 2, characterized in that: The stepped structure includes a first support plate, a stepped panel, and a second support plate; the inner side plate, the first support plate, the stepped panel, the second support plate, and the connecting plate are connected in sequence, and adjacent items form an angle with each other.
4. The side plate structure with force buffer according to claim 3, characterized in that: The width ratio of the first support plate to the second support plate is (0.25~2):1; the width of the stepped panel is 10~25mm.
5. The side plate structure with force buffer according to claim 3, characterized in that: The front reinforcing module and the rear reinforcing module are each provided with guide rail mounting holes for installing drawer guide rails.
6. The side plate structure with force buffer according to claim 1, characterized in that: The front reinforcement module is provided with an accessory mounting structure for installing functional accessories.
7. The side plate structure with force buffer according to claim 1, characterized in that: The front reinforcement module and the rear reinforcement module are respectively configured using one of the following two schemes:
1. It adopts a one-piece molding process; 2. It is constructed using a modular structure, which includes a reinforcing body and a reinforcing mounting structure. The reinforcing body includes a corner panel, a side inner panel 1, and an inner support structure 1 connected in sequence. The reinforcing mounting structure includes an inner support structure 2, a side inner panel 2 connected in sequence, as well as the support structure and a connecting plate. The inner support structure 1 and the inner support structure 2 are flush with each other and fixed to the inner side of the side panel, so that the side inner panel 1 and the side inner panel 2 are joined together to form the side inner panel.
8. The side plate structure with force buffer according to claim 1, characterized in that: It also includes a side base plate and a support strip; the side base plate is connected to the bottom of the side panel; the support strip is supported below the front reinforcement module and the rear reinforcement module.
9. A metal storage device, characterized in that: The side panel of the metal storage device adopts the side panel structure with force buffer as described in any one of claims 1 to 8.