Improved paper archive storage mechanism
The U-shaped socket and arc-shaped slot design of the retaining strip and the hanging plate are designed to interlock, which solves the problems of inconvenient installation of retaining strip and easy deformation of hanging plate in dense filing cabinets. This achieves simple installation and improved durability, and enhances the structural strength of the storage mechanism.
Patent Information
- Application Number
- CN202423200239.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-25
AI Technical Summary
The existing method of installing the baffles in high-density filing cabinets limits the thickness of the hanging panels, making them prone to deformation and causing inconvenience in the installation process, which also affects their service life.
The baffle bar, designed with a U-shaped socket and an arc-shaped slot, achieves a tight connection between the baffle bar and the mounting plate by rotating the plug and the slot. It is easy to install and requires no additional tools. The mounting plate can be made into a thick plate to improve durability, and the impact force is dispersed by the interlocking of adjacent baffle bars.
It improves the ease of installation of the baffle and the durability of the mounting plate, reduces the impact force of a single baffle, extends the service life of the mounting plate, and enhances the structural strength of the storage mechanism.
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Figure CN223627166U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to file management equipment technical field, concretely is an improved paper file storage mechanism. BACKGROUND
[0002] In the school environment, the management of paper files is an important task, and a dense cabinet is usually used to store a large number of file boxes. Compared with the traditional file rack, the dense cabinet has a larger storage capacity and can utilize the space more effectively. However, in practical applications, the dense cabinet also has some defects and deficiencies.
[0003] For example, in the design of the dense file cabinet with application number CN201320763099.1, multiple groups of file cabinets are arranged on the ground rail on the ground. Each group of file cabinets is composed of two groups of vertical columns arranged oppositely, and each group of vertical columns contains multiple vertical columns arranged side by side. The opposite two vertical columns in the two groups of vertical columns are hung with hanging plates. The lower sides of the opposite two hanging plates extend along the sides opposite to each other and are supported by a partition plate. The upper middle part of the two hanging plates is provided with a socket. A blocking strip is arranged between the two hanging plates, which divides the partition plate into two storage areas. The hanging plate is a thin plate, and the two ends of the blocking strip are provided with protrusions corresponding to the sockets on the two hanging plates. When installing the blocking strip, the hanging plate on one side needs to be bent outward to increase the distance between the hanging plate opposite to it, so as to facilitate the insertion of the blocking strip. After the blocking strip is inserted, the hanging plate is loosened to restore its original state, and the assembly of the blocking strip is completed.
[0004] However, this design has some problems. First of all, the installation method of the blocking strip limits the thickness of the hanging plate, so that the hanging plate cannot be too thick. The file box is usually a plastic rectangular box with a certain hardness, which will collide with the blocking strip when placed, causing the hanging plate to deform easily and affecting normal use. Secondly, during the installation of the blocking strip, it is difficult to control the force of bending the hanging plate outward, which can easily deform the hanging plate and make it difficult to restore its original state, which reduces the service life of the hanging plate. UTILITY MODEL CONTENTS
[0005] To solve the technical problems in the background art, the utility model provides an improved paper file storage mechanism.
[0006] The technical solution of the utility model is as follows:
[0007] An improved paper archive storage mechanism comprises a plurality of archive cabinets arranged on a ground rail on the ground, the archive cabinet comprising two oppositely arranged column groups, the column group comprising a plurality of columns arranged side by side, the two column groups being provided with hanging plates between the opposite two columns, the lower part of the opposite two hanging plates being provided with a partition plate, the upper side of the partition plate being provided with a blocking strip connected between the two hanging plates, the partition plate being divided into two storage areas by the blocking strip, the archive box can be placed from both sides of the archive cabinet, and the blocking strip is used for limiting the placement of the archive box.
[0008] It should be noted that the specific structure, connection and working principle of the plurality of archive cabinets and the ground rail are prior art, and the columns, hanging plates and partition plates are also prior art, which will not be described in detail here.
[0009] As the core technical concept of the present application, the hanging plate of the present storage mechanism is provided with a U-shaped socket with an opening facing upward in the middle, the blocking strip comprises a main body and a plug provided at both ends and vertically inserted into the socket, the middle of the opposite two side walls of the socket is provided with an arc-shaped clamping groove with an opening facing each other, the plug is arranged to be clamped in the clamping groove by rotating, so that the plug and the hanging plate are tightly combined together to prevent loosening or falling off, and the end of the two plugs away from each other is also provided with a matching protrusion and groove.
[0010] In use, first, the two ends of the blocking strip are vertically inserted into the U-shaped socket of the two hanging plates, then the plug is clamped in the clamping groove by rotating the blocking strip, when the archive box is placed and hits the blocking strip, the blocking strip is firmly clamped in the clamping groove to play a limiting role, this design makes the installation of the blocking strip simple and fast, only the two ends of the blocking strip need to be inserted into the U-shaped socket and then rotated to complete the installation, and the installation process of the blocking strip does not need to use additional fasteners or tools and move the hanging plate, and the hanging plate is not limited to a thin plate, but can be set as a thick plate to avoid deformation of the hanging plate after long-term use, improve the durability of the hanging plate, and thus improve the structural strength of the storage mechanism.
[0011] In addition, by arranging the matching protrusion and groove on the end of the two plugs away from each other, the two adjacent blocking strips in the storage mechanism can be connected by inserting after clamping with the corresponding hanging plate, reducing the impact force borne by a single blocking strip, for example, the end of the two adjacent blocking strips away from each other is a protrusion and a groove respectively, after clamping with the corresponding hanging plate, one of the two blocking strips is moved along the length direction to the other blocking strip by pushing, so that the two blocking strips are connected by inserting, in this way, when the archive box hits one of the blocking strips, the impact force is transmitted to the adjacent other blocking strip through the connecting by inserting, so that the impact force originally concentrated on one blocking strip is dispersed to multiple blocking strips, thereby reducing the impact force borne by a single blocking strip.
[0012] As an implementation manner, the blocking strip is a long cylinder, and the two sides of the plug are provided with plug-in planes matched with the plug-in holes. The design of the plug-in planes increases the plug-in contact area of the plug and the plug-in hole, so that the plug-in connection process between the plug and the plug-in hole is more stable, and the accuracy of the subsequent rotating clamping is improved.
[0013] Based on the above design, the clamping groove is a circular arc groove matched with the outer circular surface of the plug, and the center of the circular arc groove is located on the vertical bisector of the plug-in hole. The blocking strip is designed as a long cylinder, so that the plug can be directly clamped with the clamping groove by using the outer circular surface of the plug. No additional processing is required. When in use, the circular arc groove can well adapt to the shape of the plug and provide more stable connection. The outer circular surface of the plug can be tightly fitted with the inner wall of the clamping groove, thereby increasing the friction and preventing loosening or falling off. At the same time, the center of the clamping groove is located on the vertical bisector of the plug-in hole to ensure that the plug always maintains the correct direction and position during the plug-in process.
[0014] Further, the two plug-in holes are of the same size to ensure the consistency and interchangeability of the blocking strip installation, and the two plug-in planes located on the same side of the two plugs are located on the same plane, so that the blocking strip can maintain a horizontal state after installation.
[0015] For easy installation, the protrusion and the groove are arranged perpendicular to the length direction of the blocking strip and parallel to the plug-in plane, so that after the installation of a single blocking strip is completed, the single blocking strip can be moved along the axial direction by pushing to be connected with the adjacent blocking strip.
[0016] Further, the difference between the spacing size between the two hanging plates located at the two ends of the main body and the length size of the main body is not less than the length size of the protrusion in the length direction of the blocking strip. Here, it is preferred to be greater than the length size of the protrusion in the length direction of the blocking strip, so as to reserve sufficient installation space for the installation of each blocking strip, avoiding interference between the adjacent two blocking rods during installation due to processing errors or assembly errors.
[0017] Further, the length size of the protrusion is less than the depth of the groove, and one end of the main body abuts one side of the hanging plate on the side, providing a positioning basis for the installation of the blocking strip, so as to facilitate the smooth installation of the subsequent blocking strip. The design that the length size of the protrusion is less than the depth of the groove further reserves sufficient installation space for the installation of each blocking strip, which helps to smoothly complete the installation of multiple blocking strips.
[0018] As described above, the thickness of the hanging plate is 2mm-5mm to ensure that the hanging plate has sufficient strength and rigidity to support the impact borne by the blocking strip and maintain its shape unchanged.
[0019] Preferably, the main body and the plugs at the two ends thereof are coaxially connected as a whole. The coaxial connection design can improve the structural strength and stability of the entire blocking strip, while reducing the manufacturing cost.
[0020] The utility model discloses an improved paper archives storage mechanism, through the design of the plug of baffle both ends and the design of the plug and the slot on the hanging plate, make the installation of baffle become simple and quick, and the installation process does not need to use additional fastener or tool and the hanging plate of breaking, and the hanging plate is not limited to the thin plate, but can be set as the thick plate, can avoid the deformation of hanging plate long -time use, improved the durability of hanging plate, in addition, through the setting of the matching protrusion and the recess of baffle both ends, can carry out the plug -in cooperation of the two adjacent baffle in this storage mechanism after completing the clamping of corresponding hanging plate, reduced the impact force that a single baffle bears. BRIEF DESCRIPTION OF DRAWINGS
[0021] In the drawings:
[0022] Figure 1 It is the installation structure schematic drawing of the improved paper archives storage mechanism (showing the hanging plate and the baffle) of the utility model;
[0023] Figure 2 It is Figure 1 the plan view;
[0024] Figure 3 It is Figure 2 the A-A cross section schematic view;
[0025] Figure 4 It is the structure schematic drawing of the plug and the slot of hanging plate;
[0026] Figure 5 It is the structure schematic drawing of baffle;
[0027] Figure 6 It is the installation schematic drawing of the first plug of baffle and the plug of hanging plate;
[0028] Figure 7 It is the installation schematic drawing of the first plug of baffle and the slot of hanging plate;
[0029] The components represented by the reference signs in the drawings are:
[0030] 1, hanging plate; 11, plug; 12, slot; 2, baffle; 3, baffle; 31, first plug; 311, first plug-in plane; 312, protrusion; 32, second plug; 321, second plug-in plane; 322, recess. DETAILED DESCRIPTION
[0031] The embodiment provides an improved paper archive storage mechanism, which comprises a plurality of groups of archive cabinets arranged on ground rails on the ground, the archive cabinet comprises two groups of oppositely arranged stand column groups, the stand column group comprises a plurality of parallel arranged stand columns, a hanging plate 1 is arranged between two opposite stand columns in the two stand column groups, a partition plate 2 is arranged between the lower parts of the two hanging plates 1, and a blocking strip 3 (such as Figure 1 ) connected between the two hanging plates 1 is arranged at the upper side of the middle part of the partition plate 2, the partition plate 2 is divided into two storage areas by the blocking strip 3, the archive box can be placed from the two sides of the archive cabinet, and the blocking strip 3 is used for limiting the placement of the archive box.
[0032] It should be noted that the specific structure, connection and working principle of the plurality of groups of archive cabinets and the ground rails are prior art, and the stand column, the hanging plate 1 and the partition plate 2 are prior art, and are not shown in the drawings of the embodiment.
[0033] In combination with Figures 1-5 , as the core technical concept of the utility model, the middle part of the hanging plate 1 of the storage mechanism is provided with a U-shaped socket 11 with an opening facing upward, the blocking strip 3 comprises a main body and first and second plug heads 31 and 32 arranged at two ends of the main body and vertically inserted into the sockets 11 of the two hanging plates 1.
[0034] Arc-shaped clamping grooves 12 with openings facing each other are arranged at the middle parts of the opposite two side walls of the socket 11, the first and second plug heads 31 and 32 are arranged to be clamped in the clamping grooves 12 of the hanging plate 1 by rotating, so that the plug head and the corresponding hanging plate 1 can be tightly combined together to prevent loosening or falling off, and the ends of the first and second plug heads 31 and 32 away from each other are respectively provided with a matching protrusion 312 and a recess 322, it should be noted that the connection structure between the hanging plate 1 and the stand column is prior art, and is not shown in the drawings of the embodiment.
[0035] In combination with Figure 5 , the blocking strip 3 of the embodiment is a long cylinder, the two sides of the first and second plug heads 31 and 32 correspond to the sockets 11 and are respectively provided with a first and second plug insertion plane 311 and 321 for plug insertion, the design of the two plug insertion planes increases the plug insertion contact area of the plug head and the socket 11, so that the plug insertion connection process between the plug head and the socket 11 is more stable, and the accuracy of subsequent rotary clamping is improved.
[0036] In combination with Figure 4, the card slot 12 is a circular arc slot matched with the outer circular surface of the plug, and the center of the circular arc slot is located on the vertical bisector of the socket 11, wherein the baffle 3 is designed as a long cylinder, so that the plug can be directly clamped with the outer circular surface of the plug and the card slot 12 without additional processing. When in use, the circular arc slot can well adapt to the shape of the plug and provide more stable connection, and the outer circular surface of the plug can be tightly fitted with the inner wall of the card slot 12, thereby increasing the friction and preventing loosening or falling off. At the same time, the center of the card slot 12 is located on the vertical bisector of the socket 11 to ensure that the plug always maintains the correct direction and position during insertion.
[0037] The two sockets 11 are of the same specification to ensure the consistency and interchangeability of the installation of the baffle 3, and the first plug-in plane 311 and the second plug-in plane 321 located on the same side of the first plug 31 and the second plug 32 are located on the same plane, so that the baffle 3 can maintain a horizontal state after installation.
[0038] In combination Figure 5 , the protrusion 312 and the groove 322 are arranged perpendicular to the length direction of the baffle 3, the groove 322 is located in the middle of the two second plug-in planes 321 on both sides of the second plug 32, the protrusion 312 is located on the same plane as the groove 322 and is parallel to the first plug-in plane 311 and the second plug-in plane 321, so as to facilitate the insertion connection between the single baffle 3 and the adjacent baffle 3 after the installation of the single baffle 3 is completed by pushing the single baffle 3 to move along the axis direction.
[0039] In combination Figure 3 , the difference between the spacing size between the two hanging plates 1 located at both ends of the main body and the length size of the main body is not less than the length size of the protrusion 312 in the length direction of the baffle 3, and here, it is preferably greater than the length size of the protrusion 312 in the length direction of the baffle 3, so as to reserve sufficient installation space for the installation of each baffle 3, avoiding interference between the adjacent two baffles during installation due to processing errors or assembly errors.
[0040] In combination Figure 3 , the length size of the protrusion 312 is less than the depth of the groove 322, and one end of the main body abuts one side of the hanging plate 1 on the side, which provides a positioning basis for the installation of the baffle 3, so as to facilitate the smooth installation of the subsequent baffle 3, and the design that the length size of the protrusion 312 is less than the depth of the groove 322 further reserves sufficient installation space for the installation of each baffle 3, which helps to smoothly complete the installation of multiple baffles 3.
[0041] In combination Figure 6 and Figure 7 , in this embodiment, during installation, first, the first plug-in plane 311 and the second plug-in plane 321 at both ends of the baffle 3 are placed in a vertical state, and then the baffle 3 is vertically inserted into the U-shaped socket 11 of the two hanging plates 1 (as shown in Figure 6Figure 6 is a schematic view of the first plug 31 being inserted into the first plug-in plane 311 of the plug 11 (as shown in Figure 5), and Figure 7 is a schematic view of the first plug 31 being inserted into the first plug-in plane 311 of the plug 11 (as shown in Figure 6) and the stop bar 3 being rotated to make the outer circumferential surface of the two plugs fit into the clamping groove 12 (as shown in Figure 7). Figure 7 Figure 8 is a schematic view of the outer circumferential surface of the first plug 31 being clamped into the clamping groove 12 (as shown in Figure 7), and Figure 9 is a schematic view of the first plug 31 being clamped into the clamping groove 12 (as shown in Figure 8) and the second plug 32 being clamped into the corresponding clamping groove 12 of the corresponding hanging plate 1.
[0042] After the above steps are completed, when the file box is placed and hits the stop bar 3 along the axis direction perpendicular to the stop bar 3, the stop bar 3 is firmly clamped into the clamping groove 12 to play a limiting role. This design makes the installation of the stop bar 3 simple and fast, and only needs to insert the two plugs at the ends of the stop bar 3 into the plug 11 and then rotate to complete the installation. The installation process of the stop bar 3 does not need to use additional fasteners or tools and does not need to move the hanging plate 1. The hanging plate 1 is not limited to a thin plate, but can be set as a thick plate to avoid deformation of the hanging plate 1 after long-term use, improve the durability of the hanging plate 1, and thus improve the structural strength of the storage mechanism.
[0043] In addition, by setting the matching protrusion 312 and recess 322 at the ends of the first plug 31 and the second plug 32, respectively, away from each other, the two adjacent stop bars 3 in the storage mechanism can be clamped into the corresponding hanging plate 1 and then inserted into each other to reduce the impact force borne by a single stop bar 3, for example, in combination with Figure 2 and Figure 3 That is, the ends of the two adjacent stop bars 3, respectively, are the protrusion 312 and the recess 322. After being clamped into the corresponding hanging plate 1, one of the stop bars 3 is pushed to move along the length direction to the other stop bar 3 to achieve the insertion fit of the two stop bars 3. In this way, when the file box hits a stop bar 3, the impact force is transmitted to the adjacent stop bar 3 through the insertion connection. Thus, the impact force originally concentrated on a single stop bar 3 is dispersed to multiple stop bars 3, thereby reducing the impact force borne by a single stop bar 3.
[0044] As described above, the thickness of the hanging plate 1 is 2mm-5mm to ensure that the hanging plate 1 has sufficient strength and rigidity to support the impact borne by the stop bar 3 and keep its shape unchanged.
[0045] Preferably, the main body and the plugs at the two ends thereof are coaxially connected as a whole. The coaxial connection design can improve the structural strength and stability of the entire stop bar 3, while reducing the manufacturing cost.
Claims
1. An improved paper archive storage mechanism, comprising two sets of columns arranged oppositely, wherein a hanging plate (1) is arranged between two opposite columns of the two sets of columns, a partition plate (2) is arranged between lower portions of the two hanging plates (1), and a blocking strip (3) is arranged at an upper middle portion of the partition plate (2) and connected between the two hanging plates (1), characterized in that: a U-shaped socket (11) with an upward opening is arranged at a middle portion of the hanging plate (1), the blocking strip (3) comprises a main body and a plug arranged at two ends of the main body and vertically inserted into the socket (11), arc-shaped clamping grooves (12) with openings facing each other are arranged at middle portions of opposite sidewalls of the socket (11), the plug is arranged to be clamped in the clamping grooves (12) by rotating, and one end of the plug away from the other end is further provided with a protrusion (312) and a groove (322) matched with each other. The blocking strip (3) is a long cylinder, and the two sides of the plug are provided with plug-in planes for plug-in cooperation with the socket (11). The two sockets (11) are of the same size, and the two plug-in planes on the same side of the two plugs are located on the same plane. The protrusion (312) and the groove (322) are arranged along a direction perpendicular to the length direction of the blocking strip (3) and parallel to the plug-in planes.
2. An improved paper archival storage mechanism as claimed in claim 1, wherein, The difference between the spacing size between the two hanging plates (1) and the length size of the main body is not less than the length size of the protrusion (312) in the length direction of the blocking strip (3).
3. An improved paper archival storage mechanism as claimed in claim 2 wherein, The length size of the protrusion (312) is less than the depth of the groove (322), and one end of the main body abuts against one side of the hanging plate (1).
4. An improved paper archival storage mechanism as claimed in claim 3 wherein, The clamping groove (12) is a circular-arc-shaped groove matched with the outer circular surface of the plug, and the center of the circular-arc-shaped groove is located on the vertical bisector of the socket.
5. An improved paper archival storage mechanism as claimed in claim 4 wherein, The thickness of the hanging plate (1) is 2-5 mm.
6. An improved paper archival storage mechanism as claimed in claim 5 wherein, The main body and the plugs at the two ends thereof are coaxially connected as an integral piece.
7. An improved paper archival storage mechanism as claimed in claim 2 wherein, 8. An improved paper archival storage mechanism as claimed in any one of claims 1 to 7 wherein, 9. An improved paper archival storage mechanism as claimed in claim 8, wherein,
Citation Information
Patent Citations
Movable rack for files
CN203555363U