Movable part storage frame
By designing a guide surface and adjustable support assembly for a movable parts storage box, the problem of insufficient space utilization in the parts storage box was solved, achieving efficient storage of parts and preventing them from falling.
Patent Information
- Application Number
- CN202520166540.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-23
AI Technical Summary
Existing parts storage boxes cannot make full use of the internal space, causing parts to pile up inside the box and form "small mountains," and some parts will fall out of the box, making it impossible to effectively hold parts.
A movable parts storage frame was designed. The bottom wall of the frame is set with an inclined guide surface, and the support column assembly can adjust the tilt angle. Combined with casters and fasteners, it ensures that the parts slide along the guide surface to the junction of the bottom wall of the frame. The support column assembly can be slidably adjusted to adapt to different discharge end positions, so as to make full use of space.
It can effectively utilize the internal space of the frame in different situations, avoid parts from piling up and falling out, and improve parts storage efficiency.
Smart Images

Figure CN223673163U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of part storage tools, in particular to a movable part storage frame. BACKGROUND
[0002] At present, in the part production line, the part storage frame is generally placed at the discharge end of the production line for storing the parts falling from the production line.
[0003] The existing part storage frame generally comprises a frame bottom plate and a frame wall in the shape of a Chinese character "kou", and the parts on the discharge end of the production line can directly fall into the part storage frame from the frame opening at the top of the frame wall.
[0004] However, since the part storage frame needs to store more parts, the size of the frame opening of the existing part storage frame is generally much larger than the size of the parts to be stored, so that when the parts on the discharge end of the production line fall into the part storage frame, they will gradually form a "mountain" at the position directly below the discharge end of the production line in the frame. When the height of the "mountain" exceeds the height of the frame wall, there is still a lot of space between the bottom of the "mountain" and the inner side wall of the part storage frame to store parts, and the subsequent falling parts will collide with the top of the "mountain" and fall outside the part storage basket, so that the existing part storage frame cannot fully utilize the space inside the part storage frame to accommodate parts.
[0005] Therefore, it is necessary to provide a movable part storage frame. CONTENT OF THE INVENTION
[0006] In order to solve the problem that the existing part storage basket cannot fully utilize the space inside the part storage frame to accommodate parts, the present application provides a movable part storage frame.
[0007] The present application provides a movable part storage frame, which adopts the following technical scheme: comprising a frame body, the frame opening of the frame body is located at the top of the frame body, a material guide surface is formed on the inner bottom wall of the frame body, and the material guide surface is inclined downward in the direction from the discharge end of the production line.
[0008] By adopting the above technical scheme, when the parts at the discharge end of the production line fall into the frame from the frame opening of the frame body, the parts can slide along the inclined material guide surface to the direction away from the discharge end of the production line and stay at the junction of the inner bottom wall and the inner side wall of the frame body, so that when the parts gradually form a "mountain" in the frame body, the bottom of the "mountain" can cover the entire inner bottom wall of the frame body, thereby fully utilizing the space inside the movable part storage frame to accommodate parts.
[0009] Specifically, the frame body further comprises two pillar groups, an inner bottom wall of the frame body is provided with a material distribution protrusion, and both sides of the material distribution protrusion and edges of the inner bottom wall of the frame body are provided with inclined surfaces;
[0010] The two pillar groups are arranged on an outer bottom wall of the frame body, each of the pillar groups comprises at least two pillars, the outer bottom wall of the frame body is provided with a material distribution recess, the material distribution recess is located directly below the material distribution protrusion, the pillars are slidably connected to the outer bottom wall of the frame body, and the pillars in each of the pillar groups are capable of moving towards or away from the material distribution recess along the length direction of the inclined surface;
[0011] When the pipeline discharge end is located directly above the material distribution protrusion, the two pillar groups are away from the material distribution recess, and the two inclined surfaces are formed into the material guide surfaces;
[0012] When the pipeline discharge end is located above one of the two inclined surfaces, the inclined surface is formed into the near material surface, the other of the two inclined surfaces is formed into the far material surface, one of the two pillar groups close to the far material surface is close to the material distribution recess, the near material surface is parallel to the horizontal surface, and the far material surface is formed into the material guide surface.
[0013] By using the above technical scheme, when the position of the pipeline discharge end is large enough to allow the movable part storage frame to be placed anywhere below the pipeline discharge end, the user can place the frame body at a position where the material distribution protrusion is directly below the pipeline discharge end and make the two pillar groups away from the material distribution recess, so that the inclined surfaces on both sides of the material distribution protrusion are formed into the material guide surfaces which are inclined downward in the direction of moving close to or away from the pipeline discharge end. When the position of the pipeline discharge end is too small to allow only one side of the frame body to be located directly below the pipeline discharge end, the user can make one of the two pillar groups close to the far material surface close to the material distribution recess, and the other of the two pillar groups close to the near material surface away from the material distribution protrusion. At this time, the side of the frame body away from the pipeline discharge end in the length direction of the inclined surface will be inclined downward, which not only increases the degree of downward inclination of the far material surface around the material distribution protrusion to form the material guide surface, but also makes the near material surface parallel to the horizontal surface, so that when the parts fall from the frame opening of the frame body to the near material surface, most of the parts can slide along the inclined material guide surface to the direction away from the pipeline discharge end and stay on the side of the frame body away from the pipeline discharge end, thereby fully utilizing the space inside the movable part storage frame to accommodate parts under different conditions.
[0014] Further, a plurality of sliding grooves are formed on the outer bottom wall of the frame body along the length direction of the inclined surface, and each sliding groove corresponds to one of the support columns. The top of each support column is inserted into the corresponding sliding groove and can move towards or away from the material distribution recess along the sliding groove. Each support column is provided with a fixing member, and each fixing member is detachably connected to the groove wall of the corresponding sliding groove. Each fixing member can limit the sliding of the corresponding support column along the corresponding sliding groove.
[0015] By using the above technical solution, the user can first change the inclination of the frame body by sliding the support columns along the sliding grooves, and then limit the sliding of the corresponding support columns along the sliding grooves by using the fixing members.
[0016] Further, the fixing member includes a plug column and a lever. The top end of each support column is provided with a receiving groove, and the bottom end of the plug column is inserted into the receiving groove and can slide along the receiving groove. An inclined hole is formed at one end of each sliding groove wall away from the material distribution recess, and a horizontal hole is formed at one end of each sliding groove wall close to the material distribution recess. The top end of the plug column can be inserted into the inclined hole or the horizontal hole and limit the movement of the support column along the corresponding sliding groove. When one of the two support column groups close to the far material surface is connected to the horizontal hole and the other support column group away from the far material surface is connected to the inclined hole, the near material surface is parallel to the horizontal plane.
[0017] A waist-shaped through hole is formed on the inner groove wall of the receiving groove along the length direction of the receiving groove. One end of the lever passes through the waist-shaped through hole and extends into the receiving groove and is connected to the plug column.
[0018] By using the above technical solution, the user can drive the plug column to be inserted into or withdrawn from the inclined hole or the horizontal hole by using the lever. When the plug columns on the support columns in the two support column groups are all inserted into the inclined hole, the frame opening is parallel to the horizontal plane. When one of the two support column groups close to the far material surface is connected to the horizontal hole and the other support column group away from the far material surface is connected to the inclined hole, the near material surface is parallel to the horizontal plane, and the far material surface is inclined downward around the material distribution protrusion to form a material guide surface.
[0019] Further, the fixing member includes a resilient member arranged between the plug column and the bottom wall of the receiving groove and capable of applying a force to the plug column away from the bottom wall of the receiving groove.
[0020] By using the above technical solution, the resilient member can apply a force to the plug column away from the bottom wall of the receiving groove, so that the plug column can be automatically inserted into the hole opening of the horizontal hole or the inclined hole when the top end of the plug column is aligned with the hole opening.
[0021] Further, the bottom end of each support column is provided with a rolling member.
[0022] By adopting the technical scheme, the movable part storage frame can slide on the ground.
[0023] Further, the rolling member is a universal wheel.
[0024] By adopting the technical scheme, the universal wheel is arranged to enable the movable part storage frame to slide in any direction on the ground, thereby facilitating the use of the movable part storage frame.
[0025] Specifically, the outer side wall of the frame body is provided with a hollow groove, and the width of the hollow groove is smaller than the size of the parts.
[0026] By adopting the technical scheme, the hollow groove is arranged to reduce the weight of the frame body without reducing the volume of the frame body, thereby facilitating the user to carry the movable part storage frame.
[0027] In summary, the present application has the following beneficial technical effects:
[0028] The frame body is provided with a frame opening at the top of the frame body, an inner bottom wall of the frame body is formed with a material guide surface, and the material guide surface is inclined downward in the direction from the material outlet end of the assembly line to the material outlet end. When the parts at the material outlet end of the assembly line fall into the frame from the frame opening of the frame body, the parts can slide along the inclined material guide surface to the direction away from the material outlet end of the assembly line and stay at the intersection of the inner bottom wall and the inner side wall of the frame body, so that when the parts gradually pile up to form a "small hill" in the frame body, the bottom of the "small hill" can cover the entire inner bottom wall of the frame body, thereby fully utilizing the space inside the movable part storage frame to accommodate parts. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a perspective view of a movable part storage frame of the present application;
[0030] Figure 2 is a bottom view of a movable part storage frame of the present application;
[0031] Figure 3 is a schematic sectional view taken along Figure 2 the A-A direction in FIG.
[0032] FIG. 1 is a frame body; 11 is an inclined plate; 111 is a material distribution protrusion; 112 is a material distribution recess; 113 is a material guide surface; 114 is a near material surface; 115 is a sliding groove; 1151 is an inclined hole; 1152 is a horizontal hole; 12 is a hollow groove; 2 is a support column; 21 is a fixing member; 211 is a plug column; 212 is a lever; 213 is an elastic member; 22 is a universal wheel; 3 is a material outlet end of an assembly line. DETAILED DESCRIPTION
[0033] Figure 1 is a perspective view of a movable spare parts storage frame according to the present application, Figure 2 is a bottom view of a movable spare parts storage frame according to the present application. Referring to Figure 1 and Figure 2 A movable spare parts storage frame according to the present application comprises a frame body 1 and four supporting columns 2. The frame opening of the frame body 1 is located at the top of the frame body 1 and is rectangular. Hollow grooves 12 are formed on the outer side walls of the frame body 1. The hollow grooves 12 can be crescent-shaped. The maximum width of the hollow grooves 12 is smaller than the minimum size of the spare parts in any direction, so that the spare parts cannot fall out of the frame body 1 from the hollow grooves 12. The hollow grooves 12 can reduce the weight of the frame body 1 without reducing the volume of the frame body 1, so that the movable spare parts storage frame is convenient to carry. The bottom wall of the frame body 1 is composed of two symmetrical inclined plates 11. One end of each of the two inclined plates 11 is connected to the side frame wall corresponding to the wide side of the frame opening of the frame body 1. The other end of each of the two inclined plates 11 is inclined upward and converges at the center of the frame body 1. The top of the convergence is formed into a distribution protrusion 111. The bottom of the convergence is formed into a distribution recess 112.
[0034] Figure 3 is a schematic sectional view taken along the direction of A-A in Figure 2 . Referring to Figure 2 and Figure 3 The four supporting columns 2 are arranged at the four corners of the bottom wall of the frame body 1. Two sliding grooves 115 are formed on the bottom surface of each of the two inclined plates 11 along the length direction of the frame body 1. Each of the sliding grooves 115 can be a T-shaped groove. The four supporting columns 2 correspond to the four sliding grooves 115 one by one. The top of each of the supporting columns 2 is provided with a T-shaped block matched with the corresponding sliding groove 115. Each of the supporting columns 2 is inserted into the corresponding sliding groove 115 through the T-shaped block thereof and can approach or move away from the distribution recess 112 along the sliding groove 115. Each of the supporting columns 2 is provided with a fixing member 21. Each of the fixing members 21 comprises an insertion column 211, a lever 212 and a spring 213. The top end of each of the supporting columns 2 is provided with an accommodating groove. The bottom end of the insertion column 211 is inserted into the accommodating groove and can slide along the accommodating groove. A waist-shaped through hole is formed on the inner groove wall of the accommodating groove along the length direction of the accommodating groove. One end of the lever 212 extends into the accommodating groove through the waist-shaped through hole and is connected to the insertion column 211. The spring 213 is arranged between the insertion column 211 and the bottom wall of the accommodating groove. The spring 213 can be a compression spring, so that the compression spring can apply a force to the insertion column 211 away from the bottom wall of the accommodating groove. Therefore, the user can drive the insertion column 211 to be inserted into or withdrawn from the inclined hole 1151 or the horizontal hole 1152 through the lever 212.
[0035] Referring to Figure 2 and Figure 3The bottom end of each support column 2 is provided with a rolling element, which can be a universal wheel 22, so that the movable part storage frame can slide in any direction on the ground, thereby facilitating the use of the movable part storage frame; when the top plate surface of the inclined plate 11 on one side of the frame body 1 is located directly below the outfeed end 3 of the assembly line, the top plate surface of the inclined plate 11 forms a near-material surface 114, the top plate surface of the other inclined plate 11 forms a far-material surface, an inclined hole 1151 is formed at the end of each chute 115 wall away from the material distribution recess 112, a horizontal hole 1152 is formed at the end of each chute 115 wall close to the material distribution recess 112, the distance between each inclined hole 1151 and the material distribution recess 112 is the same, when the insertion columns 211 of the support columns 2 in the one of the two support column 2 groups located below the far-material surface are connected with the horizontal holes 1152 and the insertion columns 211 of the support columns 2 in the other of the two support column 2 groups located below the near-material surface 114 are connected with the inclined holes 1151, the distance between the abutting position of the rollers in the one of the two support column 2 groups located below the far-material surface and the ground and the near-material surface 114 is equal to the distance between the abutting position of the rollers in the other of the two support column 2 groups located below the near-material surface 114 and the ground and the near-material surface 114, so that the near-material surface 114 is parallel to the horizontal plane at this time.
[0036] The use process of the movable part storage frame in use is as follows:
[0037] When the position of the outfeed end 3 of the assembly line is sufficient for the movable part storage frame to be placed anywhere below the outfeed end 3 of the assembly line, the user can place the frame body 1 at a position where the material distribution protrusion 111 is located directly below the outfeed end 3 of the assembly line and connect the support columns 2 in the two support column 2 groups with the inclined holes 1151, so that the top plate surfaces of the inclined plates 11 on both sides of the material distribution protrusion 111 form guide material surfaces 113 that are inclined downward in the direction close to and away from the outfeed end 3 of the assembly line;
[0038] When the position of the pipeline discharge end 3 is too small to only allow the top plate surface of the inclined plate 11 on one side of the frame 1 to be located directly below the pipeline discharge end 3, the top plate surface of the inclined plate 11 is formed as a near-material surface 114, and the top plate surface of the other inclined plate 11 is formed as a far-material surface. The user can connect the one of the two groups of supports 2 located below the far-material surface with the horizontal hole 1152, and connect the one of the two groups of supports 2 located below the near-material surface 114 with the inclined hole 1151. Therefore, at this time, the side of the frame 1 away from the pipeline discharge end 3 in the length direction of the inclined surface will be inclined downward, which not only increases the degree of inclination of the far-material surface with the material distribution protrusion 111 as the center to form a material guide surface 113, but also enables the near-material surface 114 to be parallel to the horizontal plane. Therefore, when the parts fall from the frame opening of the frame 1 to the near-material surface 114, a larger part of the parts can slide along the inclined material guide surface 113 to the direction away from the pipeline discharge end 3 and stay at the side of the frame 1 away from the pipeline discharge end 3, so that the space inside the movable part storage frame can be fully utilized to accommodate parts under different conditions.
[0039] The working principle of the movable part storage frame of the present application in use is as follows:
[0040] When the position of the flow line discharge end 3 is enough for the movable part storage frame to be placed anywhere below the flow line discharge end 3, the user can place the frame body 1 at the position where the distribution protrusion 111 is directly below the flow line discharge end 3 and connect the struts 2 in both strut groups 2 with the inclined holes 1151, so that the top surfaces of the inclined plates 11 on both sides of the distribution protrusion 111 form downwardly inclined guide surfaces 113 in the direction of approaching and moving away from the flow line discharge end 3; when the position of the flow line discharge end 3 is too small to allow the top surface of the inclined plate 11 on one side of the frame body 1 to be directly below the flow line discharge end 3, the top surface of the inclined plate 11 forms a near-surface 114, and the top surface of the inclined plate 11 in the other of the two inclined plates 11 forms a far-surface, the user can connect the one of the two strut groups 2 that is below the far-surface with the horizontal hole 1152, and connect the one of the two strut groups 2 that is below the near-surface 114 with the inclined hole 1151, so that the side of the frame body 1 away from the flow line discharge end 3 in the length direction of the inclined surface will tilt downward, which not only increases the degree of downward inclination of the far-surface about the distribution protrusion 111 to form a guide surface 113, but also allows the near-surface 114 to be parallel to the horizontal plane, so that when the parts fall from the frame opening of the frame body 1 to the near-surface 114, a larger portion of the parts can slide along the inclined guide surface 113 to the direction away from the flow line discharge end 3 and stay on the side of the frame body 1 away from the flow line discharge end 3, so that when the parts at the flow line discharge end 3 fall from the frame opening of the frame body 1 into the frame, the parts can slide along the inclined guide surface 113 to the direction away from the flow line discharge end 3 and stay at the intersection of the inner bottom wall and the inner side wall of the frame body 1; so that when the parts gradually pile up to form a "mountain" in the frame body 1, the bottom of the "mountain" can cover the entire inner bottom wall of the frame body 1, so that the space inside the movable part storage frame can be fully utilized to accommodate parts under different conditions.
[0041] It should be noted that the above are preferred embodiments of the present application, and do not limit the protection scope of the present application, therefore: any equivalent changes made in structure, shape, principle, etc. according to the present application should be covered within the protection scope of the present application.
Claims
1. A mobile parts container for receiving parts falling from the end of a flow line (3), characterized in that: The frame (1) is provided with a top opening, and a material guiding surface (113) is formed on the inner bottom wall of the frame (1) and inclined downward from the direction close to the pipeline discharge end (3) to the direction away from the pipeline discharge end (3).
2. The portable part storage frame according to claim 1, wherein: Two groups of support columns (2) are arranged on the outer bottom wall of the frame (1), and a material distribution protrusion (111) is formed on the inner bottom wall of the frame (1) and provided with an inclined surface between the two sides of the material distribution protrusion (111) and the edge of the inner bottom wall of the frame (1). Each group of support columns (2) comprises at least two support columns (2), and a material distribution recess (112) is formed on the outer bottom wall of the frame (1) and located directly below the material distribution protrusion (111), the support columns (2) are in sliding connection with the outer bottom wall of the frame (1), and the support columns (2) in each group of support columns (2) can move close to or away from the material distribution recess (112) along the length direction of the inclined surface. When the pipeline discharge end (3) is located directly above the material distribution protrusion (111), the two groups of support columns (2) are away from the material distribution recess (112) and the two inclined surfaces form the material guiding surface (113). When the pipeline discharge end (3) is located above one of the two inclined surfaces, the inclined surface forms a near material surface (114), the other inclined surface forms a far material surface, one of the two groups of support columns (2) close to the far material surface is close to the material distribution recess (112) and the near material surface (114) is parallel to the horizontal plane, and the far material surface forms the material guiding surface (113).
3. The portable part storage frame of claim 2, wherein: A plurality of sliding grooves (115) are formed on the outer bottom wall of the frame (1) along the length direction of the inclined surface, the sliding grooves (115) correspond to the support columns (2) one by one, the top of each support column (2) is inserted into the corresponding sliding groove (115) and can move close to or away from the material distribution recess (112) along the sliding groove (115), each support column (2) is provided with a fixing member (21), each fixing member (21) is detachably connected with the groove wall of the corresponding sliding groove (115), and each fixing member (21) can limit the corresponding support column (2) to slide along the corresponding sliding groove (115).
4. The portable part storage frame of claim 3, wherein: The fixing member (21) comprises a post (211) and a lever (212), the top end of each of the support posts (2) is provided with a receiving groove, the bottom end of the post (211) is inserted into the receiving groove and can slide along the receiving groove, the groove wall of each of the sliding grooves (115) is provided with an inclined hole (1151) at the end away from the material distribution recess (112), the groove wall of each of the sliding grooves (115) is provided with a horizontal hole (1152) at the end close to the material distribution recess (112), the top end of the post (211) can be inserted into the inclined hole (1151) or the horizontal hole (1152) and limit the movement of the support post (2) along the corresponding sliding groove (115), when one of the two groups of support posts (2) close to the near material surface is connected with the horizontal hole (1152) and the other of the two groups of support posts (2) away from the far material surface is connected with the inclined hole (1151), the near material surface (114) is parallel to the horizontal plane; The inner groove wall of the receiving groove is provided with a waist-shaped through hole along the length direction of the receiving groove, one end of the lever (212) extends into the receiving groove through the waist-shaped through hole and is connected with the post (211).
5. The portable part storage frame of claim 4, wherein: The fixing member (21) comprises an elastic member (213), the elastic member (213) is arranged between the post (211) and the bottom wall of the receiving groove and can apply a force away from the bottom wall of the receiving groove to the post (211).
6. The portable part storage frame of claim 2, wherein: The bottom end of each of the support posts (2) is provided with a rolling member.
7. The portable part storage frame of claim 6, wherein: The rolling member is a universal wheel (22).
8. The portable part housing frame according to claim 1, wherein: The outer side wall of the frame body (1) is provided with a hollow groove (12), the width of the hollow groove (12) is smaller than the size of the part. The bottom end of each of the support posts (2) is provided with a rolling member.