Automobile part storage rack
By designing a combined structure of adjustment and telescopic components, the problems of storage racks not being foldable and storage space being fixed are solved, realizing convenient folding and flexible adjustment storage functions to adapt to the storage of parts of different sizes.
Patent Information
- Application Number
- CN202422720227.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-08
AI Technical Summary
Existing automotive parts storage racks cannot be folded when not in use, take up a lot of space, and cannot be adjusted according to needs, resulting in inconvenient storage and inability to accommodate parts of different sizes.
An automotive parts storage rack was designed, employing a combination of adjustable and telescopic components. It achieves folding functionality via a hinge shaft and adjusts its height and area via a support shaft and locking components to accommodate different storage needs.
The storage rack features convenient folding, reducing space usage, and allows for adjustable storage space to accommodate parts of different sizes, making it more convenient to use.
Smart Images

Figure CN223519660U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of automobile parts processing, and specifically relates to an automobile parts storage rack. BACKGROUND
[0002] The production of an automobile is assembled by many parts, and the production of the parts of the automobile is all mass production, and the parts after production are placed on a storage rack for convenient transportation and storage, and the storage rack is used for classified storage and transfer of the mass parts.
[0003] A patent with the publication number CN216830839U discloses an automobile parts storage rack, relating to the technical field of storage racks, comprising a bearing plate, three slide rods fixedly connected to the upper surface of the bearing plate, a top plate provided above the bearing plate, each slide rod penetrating through the top plate and being in sliding connection with the top plate, a movable plate arranged longitudinally between the bearing plate and the top plate, which can be adjusted by the cooperation of the bearing plate, the slide rod, the top plate, the adjusting mechanism, the supporting spring and the movable plate, and when the distance between layers needs to be adjusted, rotating the adjusting rod drives the bevel gear I to rotate, the bevel gear I drives the bevel gear II to rotate, the bevel gear II drives the rotating rod to rotate, and the rotating rod drives the threaded rod to rotate, which can drive the lifting rod to lift, facilitating the adjustment of the distance between the bearing plate and the movable plate or between the movable plates, and realizing the adjustment of the distance between layers, and being suitable for storing parts of various sizes.
[0004] However, the existing automobile parts storage rack has a fixed overall structure and cannot be folded, occupying a large space when not in use, leading to inconvenient storage, and the storage space of the storage rack cannot be adjusted according to the use requirements, resulting in fixed storage space and inability to store parts of different sizes. Utility model content
[0005] In order to make up for the shortcomings of the prior art, the automobile parts storage rack is proposed to solve the problem that the storage rack cannot be folded and stored when not in use, and the storage space cannot be adjusted according to the use requirements.
[0006] The technical scheme adopted by the utility model to solve the technical problems is: the automobile parts storage rack comprises four vertical columns symmetrically arranged on both sides; a limiting slot vertically arranged is formed between the vertical columns on both sides, a first pin hole vertically arranged is formed in the limiting slot, and a plurality of adjusting assemblies corresponding to the limiting slots are arranged between the vertical columns on both sides.
[0007] The telescopic assemblies horizontally correspond to each other on both sides, and the horizontally corresponding telescopic assemblies on both sides are hinged through a hinge shaft, and the hinge position of the hinge shaft is below the telescopic assemblies on both sides.
[0008] The two ends of the adjusting assembly are respectively locked in a No. 1 pin hole opened between the two upright columns on the same side, the two telescopic assemblies hinged through the hinge shaft are telescopic, and when the two telescopic assemblies hinged through the hinge shaft are unfolded, the end portions thereof rotate around the rotating shaft of the hinge shaft as the axis and abut against each other to be in a horizontal state, so that the storage rack is convenient to fold and store, the occupied space is reduced, and the storage space can be adjusted according to the use condition, and the storage rack is more convenient to use than the traditional storage rack.
[0009] Preferably, the adjusting assembly comprises a support shaft, a rotating groove is opened in the support shaft, a hollow shaft is rotatably arranged in the rotating groove, a fixed strip is fixedly connected to the side of the hollow shaft, and the telescopic assembly is fixedly connected to the side opposite to the fixed strip and the hollow shaft, so that the adjusting assembly can drive the telescopic assembly to adjust the height, and the storage space of the storage rack is adjusted.
[0010] Preferably, the support shaft is provided with a No. 1 locking assembly at both ends, the No. 1 locking assembly comprises a No. 1 cavity, a No. 1 limiting ring is fixedly connected to the opening of the No. 1 cavity, a No. 1 spring is arranged in the No. 1 cavity, a No. 1 sliding block is slidably arranged in the No. 1 cavity and located between the No. 1 limiting ring and the No. 1 spring, a No. 1 pin rod is fixedly connected to the side of the No. 1 sliding block, the end portion of the No. 1 pin rod penetrates the No. 1 limiting ring and the limiting groove and is inserted into one of the No. 1 pin holes, a No. 1 guide groove is opened through the inner wall of the No. 1 cavity, and a No. 1 pushing rod penetrating the No. 1 guide groove is fixedly connected to the side of the No. 1 sliding block, so that the support shaft is locked to adjust the fixed height of the support shaft.
[0011] Preferably, the telescopic assembly comprises a fixed plate, the fixed plate is fixedly connected to the side of the fixed strip, a hollow plate is slidably arranged at the end opposite to the fixed strip of the fixed plate, a limiting cavity is opened in the hollow plate, and a limiting strip is fixedly connected to the side of the fixed plate located in the limiting cavity, so that the limiting strip and the limiting cavity slide and limit the hollow plate, and the hollow plate is limited to avoid being separated from the fixed plate.
[0012] Preferably, a plurality of No. 2 pin holes are arranged in the transverse direction on the side of the hollow plate, a No. 2 locking assembly is arranged on the side of the limiting strip opposite to the No. 2 pin holes, and the end of the No. 2 locking assembly is locked in one of the No. 2 pin holes, so that the hollow plate is locked outside the fixed plate.
[0013] Preferably, the hollow plate is provided with a through slot parallel to the side surface, the second locking assembly comprises a second cavity, a second limiting ring is fixedly connected in the opening of the second cavity, a second spring is arranged in the second cavity, a second sliding block is slidably arranged in the second cavity and located between the second limiting ring and the second spring, a second pin rod is fixedly connected to the side surface of the second sliding block, and the end of the second pin rod penetrates through the second limiting ring and is inserted into one of the second pin holes, so that the second pin rod is pushed and retracted, and the fixed plate and the hollow plate are fixed in the retracted length.
[0014] Preferably, a second guide slot is formed through the inner wall of the second cavity, a second pulling rod is fixedly connected to the side surface of the second sliding block, and the end of the second pulling rod is arranged to penetrate through the second guide slot and the through slot, so that the second pulling rod can drive the second sliding block to move in the second cavity.
[0015] Preferably, reinforcing rods are vertically arranged and fixed between the two side columns, so as to reinforce the storage rack and ensure the moving support effect of the two side columns.
[0016] The utility model discloses the beneficial effect that:
[0017] 1. The utility model discloses a telescopic assembly's length is contracted to the shortest, and the fixed height of adjusting assembly is reduced to the lowest, then pushes and squeezes the two side columns of inboard, and pushes and squeezes the upper top hinge shaft, makes the hinge shaft both sides hinge's telescopic assembly respectively through with its connection adjusting assembly as the axle center and turns over upward, to make the lower angle of telescopic assembly of the two side columns gradually reduces, and then makes the telescopic assembly between the two side columns fold.
[0018] 2. The utility model discloses two one pulling rods are pulled to inboard, and the one pin rod of support shaft both ends is contracted to inboard, and the fixed height of adjusting assembly can drive the support height of the telescopic assembly connected between two adjusting assemblies after adjusting, and the distance between the upper and lower telescopic assemblies can be adjusted to store different size automobile parts, and two pulling rods are pulled to the side opposite to the second limiting ring, and the end of the second pin rod is removed from the second pin hole, and the hollow plate slides and extends outside the fixed plate, and then the bearing area of the fixed plate and the hollow plate is increased, and then the storage space of the storage rack is further increased. ACCURACY
[0019] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained without creative labor.
[0020] Figure 1 Figure 1 is a first perspective view of the embodiment;
[0021] Figure 2 Figure 2 is an enlarged view of the hinge shaft mounting body structure of the embodiment;
[0022] Figure 3 Figure 3 is an enlarged view of the area A in the hinge shaft mounting body structure of the embodiment;
[0023] Figure 4 Figure 4 is a cutaway view of the adjustment assembly body structure of the embodiment;
[0024] Figure 5 Figure 5 is an enlarged view of the area B in the cutaway view of the adjustment assembly body structure of the embodiment;
[0025] Figure 6 Figure 6 is a cutaway view of the telescopic assembly body structure of the embodiment;
[0026] Figure 7 Figure 7 is an enlarged view of the No. 2 locking assembly body structure of the embodiment.
[0027] In the figure: 1, stand;
[0028] 2, limiting groove;
[0029] 3, No. 1 pin hole;
[0030] 4, adjustment assembly; 41, support shaft; 42, rotating groove; 43, hollow shaft; 44, fixed strip; 45, No. 1 cavity; 46, No. 1 limiting ring; 47, No. 1 sliding block; 48, No. 1 guide groove; 49, No. 1 push rod; 410, No. 1 spring; 411, No. 1 pin rod;
[0031] 5, telescopic assembly; 51, fixed plate; 52, hollow plate; 53, limiting cavity; 54, limiting strip; 55, No. 2 pin hole; 56, No. 2 cavity; 57, No. 2 limiting ring; 58, No. 2 sliding block; 59, No. 2 spring; 510, No. 2 pin rod; 511, through groove; 512, No. 2 push rod;
[0032] 6, hinge shaft;
[0033] 7, reinforcing rod. DETAILED DESCRIPTION
[0034] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0035] Please refer to Figures 1-7 As shown in FIG. 1, an automobile parts storage rack comprises four vertical columns 1 symmetrically arranged on both sides; vertical limiting grooves 2 are arranged between the vertical columns 1 on both sides; a first pin hole 3 is arranged in the limiting groove 2; and a plurality of adjusting assemblies 4 corresponding to the limiting grooves 2 are arranged between the vertical columns 1 on both sides.
[0036] A telescopic assembly 5 is horizontally arranged between the adjusting assemblies 4 on both sides, and the telescopic assemblies 5 on both sides are hingedly connected through a hinge shaft 6, and the hinge shaft 6 is arranged below the telescopic assemblies 5 on both sides.
[0037] The two ends of the adjusting assembly 4 are locked in the first pin hole 3 arranged between the two vertical columns 1 on the same side; the two telescopic assemblies 5 hingedly connected by the hinge shaft 6 are telescopic; and when the two telescopic assemblies 5 hingedly connected by the hinge shaft 6 are unfolded, the end portions thereof are rotated around the rotating shaft of the hinge shaft 6 as the axis, and abut against each other to be in a horizontal state.
[0038] The adjusting assembly 4 comprises a supporting shaft 41, a rotating groove 42 is arranged on the supporting shaft 41, a hollow shaft 43 is rotatably arranged in the rotating groove 42, a fixed strip 44 is fixedly connected to the side of the hollow shaft 43, and the telescopic assembly 5 is fixedly connected to the side opposite to the fixed strip 44 and the hollow shaft 43.
[0039] One end of the supporting shaft 41 is provided with a first locking assembly, the first locking assembly comprises a first cavity 45, a first limiting ring 46 is fixedly connected to the opening of the first cavity 45, a first spring 410 is arranged in the first cavity 45, a first sliding block 47 is slidably arranged in the first cavity 45, the first sliding block 47 is located between the first limiting ring 46 and the first spring 410, a first pin rod 411 is fixedly connected to the side of the first sliding block 47, the end portion of the first pin rod 411 penetrates the first limiting ring 46 and the limiting groove 2 and is inserted into one of the first pin holes 3, a first guide groove 48 is arranged in the inner wall of the first cavity 45, and a first pushing rod 49 is fixedly connected to the side of the first sliding block 47 and penetrates the first guide groove 48.
[0040] The telescopic assembly 5 comprises a fixed plate 51 fixed to the side of the fixed strip 44, a hollow plate 52 slidingly arranged at the opposite end of the fixed plate 51, a limiting cavity 53 formed in the hollow plate 52, a limiting strip 54 fixed to the side of the fixed plate 51 in the limiting cavity 53, and the limiting strip 54 and the limiting cavity 53 cooperating to slidingly limit the hollow plate 52.
[0041] A second pin hole 55 is formed in the side of the hollow plate 52, a second locking assembly is arranged on the side of the limiting strip 54 opposite to the second pin hole 55, and the acting end of the second locking assembly is locked in one of the second pin holes 55, so as to lock the hollow plate 52 outside the fixed plate 51.
[0042] A through slot 511 parallel to the side of the hollow plate 52 is formed in the bottom of the hollow plate 52, the second locking assembly comprises a second cavity 56, a second limiting ring 57 is fixed in the opening of the second cavity 56, a second spring 59 is arranged in the second cavity 56, a second sliding block 58 is slidingly arranged in the second cavity 56, the second sliding block 58 is located between the second limiting ring 57 and the second spring 59, a second pin rod 510 is fixed to the side of the second sliding block 58, and the end of the second pin rod 510 is inserted into one of the second pin holes 55 through the second limiting ring 57.
[0043] A second guide slot is formed in the inner wall of the second cavity 56, a second pulling rod 512 is fixed to the side of the second sliding block 58, and the end of the second pulling rod 512 is arranged in the second guide slot and the through slot 511.
[0044] The reinforcing rods 7 are vertically arranged and fixed between the two columns 1.
[0045] In the working process, the existing automobile part storage rack has a fixed overall structure and cannot be folded, so it occupies a large space when not in use, which leads to inconvenient storage and the storage space of the storage rack cannot be adjusted according to the use requirements, so the storage space is fixed and different sizes of parts cannot be stored. In the present scheme, the first spring 410 always pushes the first sliding block 47 on one side of the first limiting ring 46 in the initial state, so that the first sliding block 47 is attached to the side of the first limiting ring 46, and the end of the first pin rod 411 is inserted into one of the first pin holes 3 formed in the limiting slot 2, so as to lock the height of the adjusting assembly 4. The second spring 59 always pushes the second sliding block 58 on one side of the second limiting ring 57, so that the second sliding block 58 is attached to the side of the second limiting ring 57, and the end of the second pin rod 510 is inserted into one of the second pin holes 55, so as to lock the lower hollow plate 52 outside the fixed plate 51.
[0046] When the storage rack needs to be used, the two side adjusting assemblies 4 are connected to the telescopic assemblies 5, which are turned down and unfolded by separating the two side columns 1 to the two sides. When unfolded, the two telescopic assemblies 5 connected by the hinge shaft 6 are gradually unfolded from the upward bending state to the horizontal state, and the included angle between the lower parts of the two telescopic assemblies 5 gradually increases to the horizontal state. Since the hinge shaft 6 is hinged between the two telescopic assemblies 5 and below the two telescopic assemblies 5, when the two telescopic assemblies 5 are unfolded to the horizontal state, the ends of the two telescopic assemblies 5 abut against each other, so that the telescopic assemblies 5 connected by the hinge shaft 6 between the two side columns 1 are unfolded to the horizontal state. When the two telescopic assemblies 5 connected by the hinge shaft 6 are unfolded, the hollow shaft 43 is driven to rotate in the rotating groove 42 by the fixed strip 44. After the two telescopic assemblies 5 connected by the hinge shaft 6 are unfolded, the automobile parts can be placed thereon.
[0047] When the storage space of the storage rack needs to be adjusted, the two first push rods 49 are pushed inward, so that the two first sliding blocks 47 slide inward in the two first cavities 45, and the two first springs 410 are squeezed inward during the sliding process, so that the first spring 410 is contracted, and the first pin rod 411 at both ends of the supporting shaft 41 is contracted inward and retracted into the limiting groove 2 from the first pin hole 3. When the first pin rod 411 is removed from the first pin hole 3, the fixed height of the adjusting assembly 4 can be adjusted. When the fixed height of the adjusting assembly 4 is adjusted, the supporting height of the telescopic assembly 5 connected between the two adjusting assemblies 4 is driven. Then, the two first cavities 45 are loosened, and the end of the first pin rod 411 is re-pinned in one of the first pin holes 3 under the action of the two first springs 410, so as to fix the height of the adjusting assembly 4, and then fix the height of the telescopic assembly 5 connected between the two adjusting assemblies 4. The distance between the upper and lower telescopic assemblies 5 can be adjusted to store automobile parts of different sizes.
[0048] And by pushing the second push rod 512 to the side opposite to the second limiting ring 57, the second limiting ring 57 slides in the second cavity 56 and squeezes the second spring 59 to contract, so that the end of the second pin rod 510 is removed from the second pin hole 55. Then, the column 1 can be pulled to the two sides again, so that the hollow plate 52 slides and extends outside the fixed plate 51, thereby increasing the bearing area of the fixed plate 51 and the hollow plate 52. When the hollow plate 52 extends outside the fixed plate 51, the second push rod 512 slides in the through groove 511. After adjustment, the second push rod 512 is loosened, and the end of the second pin rod 510 is re-pinned in one of the second pin holes 55 under the action of the second spring 59, so as to fix the telescopic length of the fixed plate 51 and the hollow plate 52, thereby further increasing the storage space of the storage rack.
[0049] When the storage rack is not used, by shortening the length of the telescopic assembly 5 to the shortest, and lowering the fixed height of the adjusting assembly 4 to the lowest, then pushing the two side columns 1 inwards and pushing the upper top hinge shaft 6 upwards, the telescopic assembly 5 on both sides of the hinge shaft 6 is respectively turned upwards by the adjusting assembly 4 connected thereto as the axis, so that the lower angle of the telescopic assembly 5 on both sides of the hinge shaft 6 gradually decreases, and then the telescopic assembly 5 between the two side columns 1 is folded, the distance between the two side columns 1 is reduced, and then the occupied space is reduced, and it is convenient to store;
[0050] The cooperation achieves the effect that the storage rack is convenient to fold and store, and then the occupied space is reduced, and the storage space can be adjusted according to the use condition, and the use is more convenient compared with the traditional storage rack.
[0051] The basic principle, main characteristics and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed.
Claims
1. An automotive parts storage rack characterized by: It includes four columns (1) which are symmetrically arranged on both sides; the vertical limiting grooves (2) are arranged between the columns (1) on both sides, the first pin holes (3) are arranged in the limiting grooves (2), and the adjusting assemblies (4) corresponding to the limiting grooves (2) are arranged between the columns (1) on both sides; The telescopic assemblies (5) are horizontally arranged between the adjusting assemblies (4) on both sides, the hinged shafts (6) are hinged between the horizontally corresponding telescopic assemblies (5) on both sides, and the hinged positions of the hinged shafts (6) are below the telescopic assemblies (5) on both sides; The two ends of the adjusting assembly (4) are locked in the first pin holes (3) arranged between the two columns (1) on the same side, the two telescopic assemblies (5) hinged by the hinged shaft (6) are telescopic, and the end portions of the two telescopic assemblies (5) hinged by the hinged shaft (6) rotate around the rotating shaft of the hinged shaft (6) when the two telescopic assemblies (5) are unfolded, and the end portions abut against each other to be in a horizontal state.
2. The storage rack of claim 1, wherein: The adjusting assembly (4) comprises a supporting shaft (41), the rotating groove (42) is arranged on the supporting shaft (41), the hollow shaft (43) is rotatably arranged in the rotating groove (42), the fixed strip (44) is fixedly connected to the side of the hollow shaft (43), and the telescopic assembly (5) is fixedly connected to the side, opposite to the fixed strip (44), of the hollow shaft (43).
3. The storage rack of claim 2, wherein: The supporting shaft (41) is provided with the first locking assembly at both ends, the first locking assembly comprises the first cavity (45), the first limiting ring (46) is fixedly connected to the opening of the first cavity (45), the first spring (410) is arranged in the first cavity (45), the first sliding block (47) is slidably arranged in the first cavity (45), the first sliding block (47) is located between the first limiting ring (46) and the first spring (410), the first pin rod (411) is fixedly connected to the side of the first sliding block (47), the end portion of the first pin rod (411) penetrates the first limiting ring (46) and the limiting groove (2) and is inserted into one of the first pin holes (3), the first guide groove (48) is arranged in the inner wall of the first cavity (45), and the first driving rod (49) penetrates the first guide groove (48) and is fixedly connected to the side of the first sliding block (47).
4. The storage rack of claim 1, wherein: The telescopic assembly (5) comprises the fixed plate (51), the fixed plate (51) is fixedly connected to the side of the fixed strip (44), the hollow plate (52) is slidably arranged at the end, opposite to the fixed strip (44), of the fixed plate (51), the limiting cavity (53) is arranged in the hollow plate (52), the limiting strip (54) is fixedly connected to the side of the fixed plate (51) in the limiting cavity (53), and the limiting strip (54) and the limiting cavity (53) are matched to slide and limit the hollow plate (52).
5. The storage rack of claim 4, wherein: The hollow plate (52) is provided with a plurality of second pin holes (55) arranged transversely on the side surface, the limiting strip (54) is provided with a second locking assembly on the side surface opposite to the second pin holes (55), and the acting end of the second locking assembly is locked in one of the second pin holes (55) so as to lock the hollow plate (52) outside the fixed plate (51).
6. The storage rack of claim 5, wherein: The bottom of the hollow plate (52) is provided with a through groove (511) parallel to the side surface, the second locking assembly comprises a second cavity (56), the opening of the second cavity (56) is fixedly connected with a second limiting ring (57), the second cavity (56) is provided with a second spring (59), the second cavity (56) is slidably provided with a second sliding block (58), the second sliding block (58) is located between the second limiting ring (57) and the second spring (59), the side surface of the second sliding block (58) is fixedly connected with a second pin rod (510), and the end of the second pin rod (510) is inserted into one of the second pin holes (55) through the second limiting ring (57).
7. The storage rack of claim 6, wherein: The inner wall of the second cavity (56) is provided with a second guide groove, the side surface of the second sliding block (58) is fixedly connected with a second pushing rod (512), and the end of the second pushing rod (512) is inserted into the second guide groove and the through groove (511).
8. The storage rack of claim 1, wherein: The reinforcing rods (7) are vertically arranged and fixed between the two columns (1).
Citation Information
Patent Citations
Automobile part storage rack
CN216830839U