A medicine storage cabinet
By designing an adjustable sliding partition and stop mechanism, the problem of fixed storage area size is solved, flexible storage area adjustment and glass bottle limit are achieved, and the practicality and stability of drug storage are improved.
Patent Information
- Application Number
- CN202310090497.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-09
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-02-09
AI Technical Summary
The storage area of the existing storage box is fixed in size and cannot be adjusted according to the amount of the drug, resulting in inconvenient storage of the drug and easy to be wasted or damaged.
A medicine storage cabinet is designed to adjust the size of the storage area through a sliding partition and a stop mechanism, and to stop multiple partitions by a stop mechanism to achieve the forming of multiple storage areas, and to incline wedges and arcuate grooves in the second storage area to limit the glass bottle.
It realizes flexible adjustment of the storage area size according to the amount of the drug, avoids waste of drugs and shaking of glass bottles, and improves the practicality and stability of storage.
Smart Images

Figure CN115944175B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of storing articles, and particularly relates to a medicine storage cabinet. Background Art
[0002] A medicine refers to a substance used for preventing, treating, or diagnosing human diseases, which is used to purposefully regulate the physiological functions of humans and is specified with indications, functions, main indications, usage, and dosage, including traditional Chinese medicines, chemical medicines, biological products, etc. At present, medicines are mainly stored in storage boxes. However, the commonly used storage boxes have only one storage area, so that only one type of medicine can be stored, which is not suitable for storing multiple types of medicines. If multiple types of medicines are stored in one storage area at the same time, it is not convenient to find the designated medicine.
[0003] To solve the above problems, Chinese Utility Model Patent with the publication number CN206827182U discloses a household medicine classification storage box, which includes a box body and a box cover. One end of the box cover is rotatably connected to the box body, and a magnetic strip is provided at the other end. The box body is provided with a magnetic matching strip and an opening groove. The inner cavity bottom plate of the box body is provided with a protruding part, and a drawer that can be pulled out from the protruding part is provided on the outside. Two limiting columns are symmetrically provided on the inner cavity side wall of the box body. A plurality of partition plates are slidably connected to the limiting columns and the protruding part. The partition plate includes a rectangular plate body. A card slot is opened at the lower part of the plate body, and sliding grooves are opened on both sides. A slot for storing the partition plate is opened at the lower part of the box body, and the slot is located below the cavity in the protruding part. This patent can classify and store multiple types of medicines through multiple storage areas, which is convenient for directly finding the designated medicine.
[0004] During the actual use of the above patent, the position of the partition plate in the box body remains unchanged, so that the size of each storage area is fixed, that is, the size of each storage area cannot be adjusted. When the quantity of each type of medicine is different, the single storage area for the medicine with a large quantity will overflow, and there will still be remaining space in the single storage area for the medicine with a small quantity, resulting in waste. Moreover, when the glass bottle containing the medicine is placed in the storage area, if the diameter of the glass bottle is smaller than the width of the storage area, the glass bottle will shake during the transfer of the entire storage box, causing damage to the glass bottle. Summary of the Invention
[0005] The present invention aims to provide a medicine storage cabinet to solve the problem that the size of each storage area of the existing storage box cannot be adjusted.
[0006] To achieve the above object, the present invention adopts the following technical solution: A medicine storage cabinet includes a box body and a box cover for sealing the box body. One end of the box cover is hinged to the box body, and the other end of the box cover is detachably connected to the box body. A fixed plate is provided inside the box body, and the interior of the box body is divided into a first storage area and a second storage area by the fixed plate. A plurality of partition plates are slidably connected in the first storage area, and side plates are provided on the partition plates; a sliding groove is provided on one side of the fixed plate close to the first storage area, and the side plates are slidably connected to the sliding groove; a stopping mechanism for simultaneously stopping a plurality of side plates is also included.
[0007] The principle and advantages of this solution are:
[0008] In this solution, a single storage area is the distance between two adjacent partition plates, or the distance between a partition plate and the upper side wall of the first storage area, or the distance between a partition plate and the lower side wall of the first storage area.
[0009] 1. This solution adjusts the size of a single storage area according to the quantity of various medicines. Mainly by sliding the partition plates, the partition plates drive the side plates to slide along the path of the sliding groove. When the distance between two adjacent partition plates or the distance between a partition plate and the upper side wall of the first storage area or the distance between a partition plate and the lower side wall of the first storage area meets the requirements, the partition plates and the side plates stop moving, and then the stopping mechanism simultaneously stops a plurality of side plates, thereby realizing the stopping of a plurality of partition plates, that is, realizing the formation of a plurality of storage areas; compared with the prior art, this solution can adjust the size of a single storage area according to the quantity of various medicines, so as to store various medicines with different quantities, and has strong practicability.
[0010] 2. The partition plates in this solution can slide to any position in the first storage area and be stopped, so that the size of a single storage area can be infinitely enlarged or reduced, so as to store various medicines with different quantities; therefore, this solution has stronger flexibility in adjustment, a wider range of use for the size of a single storage area, and stronger practicability.
[0011] 3. This solution can simultaneously stop a plurality of partition plates, that is, can simultaneously complete the formation of a plurality of storage areas, and the operation is more convenient.
[0012] 4. This solution can also use the second storage area to classify and store other medicines or tools, and has strong practicability.
[0013] Further, the stopping mechanism includes a movable block, a vertical groove opened on the partition plate, and a groove opened on the side plate. The movable block is slidably connected to the vertical groove; the vertical groove is located above the sliding groove, the vertical groove communicates with the sliding groove, and the movable block is slidably matched with the groove; a stopping part for stopping a plurality of side plates as the movable block moves vertically is also included.
[0014] With the above settings, the partition is pushed to slide within the first storage area, and the partition drives the side plate to slide within the sliding groove; when the distance between two adjacent partitions or the distance between the upper sidewall of the first storage area of the partition or the distance between the partition and the lower sidewall of the first storage area meets the requirements, the partition and the side plate stop moving; the holding movable block moves downward within the vertical groove, so that the bottom of the movable block slides into the groove, and the movable block abuts against the bottom of the groove; during the downward movement of the movable block, the side plate is stopped by a plurality of stopping parts, and thus a plurality of partitions are stopped.
[0015] Furthermore, the stopping part includes a chamber opened in the partition, a first rack fixedly connected to the sidewall of the movable block, a rotating shaft and a circular shaft rotatably connected to the chamber, and the chamber communicates with the vertical groove and the sliding groove; the first rack is slidably connected to the vertical groove; a first gear for meshing with the first rack is provided on the rotating shaft, a belt is provided between the rotating shaft and the circular shaft, and a cam for simultaneously abutting against a plurality of side plates is provided on the circular shaft.
[0016] With the above settings, the partition is pushed to slide within the first storage area, and the partition drives the side plate to slide within the sliding groove; when the distance between two adjacent partitions or the distance between the upper sidewall of the first storage area of the partition or the distance between the partition and the lower sidewall of the first storage area meets the requirements, the partition and the side plate stop moving; the holding movable block moves downward within the vertical groove, so that the bottom of the movable block slides into the groove, and the movable block abuts against the bottom of the groove; during the downward movement of the movable block, the movable block drives the first rack to move downward, so that the first rack meshes with the first gear to drive the first gear to rotate, the first gear drives the rotating shaft to rotate, the rotating shaft drives the circular shaft to rotate through the belt, and the circular shaft drives the cam to rotate; when the movable block abuts against the bottom of the groove, the convex part of the cam simultaneously abuts against a plurality of side plates, thereby realizing the stopping of a plurality of side plates, and further realizing the stopping of a plurality of partitions, that is, realizing the formation of a plurality of storage areas for storing various medicines in different quantities.
[0017] Furthermore, an arc-shaped first elastic layer is provided at the convex part of the cam, and first anti-slip lines are provided on the first elastic layer; an arc-shaped groove for abutting against the first elastic layer is provided at one end of the side plate away from the partition.
[0018] With the above settings, the first arc-shaped groove is provided on the side plate to make the convex part of the cam rotate to abut against the side plate more smoothly; and when the convex part of the cam rotates towards the first arc-shaped groove, the first elastic layer abuts against the first arc-shaped groove, that is, the first elastic layer is used to replace the direct contact between the cam and the first arc-shaped groove, reducing the wear of the cam and the side plate, and thus extending the service life of both; in addition, the first anti-slip lines are provided on the first elastic layer, and the friction with the first arc-shaped groove can be increased through the first anti-slip lines, thereby improving the stability of stopping the side plate, that is, improving the stability of stopping the partition.
[0019] Further, the second storage area is inclined, and a plurality of transverse grooves are provided on the side of the partition plate close to the second storage area; a wedge block is slidably connected in the transverse groove, a first spring is provided between the wedge block and the transverse groove, and the width of the top of the wedge block gradually increases from the width of the bottom of the wedge block.
[0020] Through the above settings, after storing different amounts of various drugs, the glass bottles containing the drugs are placed one by one in the second storage area; during the placement of a single glass bottle in the second storage area, the glass bottle squeezes the wedge block and slides into the transverse groove, and the first spring is compressed; the glass bottle continues to move downward. When the glass bottle abuts against the bottom of the second storage area, at this time, the inner wall of the second storage area and the wedge block clamp the glass bottle, thereby playing a role in limiting the glass bottle and preventing the glass bottle from shaking during transfer.
[0021] Since the second storage area is inclined, adjacent two glass bottles are staggered, and there will be no situation where adjacent two glass bottles are attached to each other, so as to facilitate the removal of the glass bottles.
[0022] Further, a plurality of second arc-shaped grooves are provided on the side of the second storage area far from the partition plate. The number of the second arc-shaped grooves is the same as the number of the transverse grooves, and the second arc-shaped grooves are arranged transversely opposite to the transverse grooves.
[0023] Through the above settings, the second arc-shaped groove is used to contact the glass bottle instead of the inner wall of the second storage area, and the fitting degree is higher. Furthermore, the second arc-shaped groove and the wedge block clamp the glass bottle, and the clamping effect is better.
[0024] Further, it further includes a tightening block for abutting against the cam. The transverse groove communicates with the chamber. A linkage block capable of sliding in the transverse groove is provided between the tightening block and the wedge block. The tightening block is slidably connected to the transverse groove and the chamber, and the cam is located on the movement track of the tightening block.
[0025] Through the above settings, after storing different amounts of various drugs, the glass bottles containing the drugs are placed one by one in the second storage area; during the placement of a single glass bottle in the second storage area, the glass bottle squeezes the wedge block and slides into the transverse groove, and the wedge block drives the tightening block to move towards the cam through the linkage block, and the first spring is compressed; the glass bottle continues to move downward. When the glass bottle abuts against the bottom of the second storage area, at this time, the second arc-shaped groove and the wedge block clamp the lower half of the glass bottle, thereby playing a role in limiting the glass bottle and preventing the glass bottle from shaking during transfer; and when the glass bottle abuts against the bottom of the second storage area, the tightening block also abuts against the cam, so as to strengthen the stopping effect on the cam, thereby improving the stability of the cam's stopping, that is, improving the stability of the cam's stopping on the side plate and also improving the stability of the cam's stopping on the partition plate.
[0026] Further, the pressing block is V-shaped, and the concave portion of the pressing block faces the cam; second elastic layers for abutting against the cam are provided on both sides of the side wall of the pressing block close to the cam, and second anti-slip lines are provided on the second elastic layers.
[0027] With the above arrangement, in order to use the second elastic layer to directly contact the cam instead of the pressing block, the wear of the cam and the pressing block is reduced, thereby prolonging the service life of both; moreover, the second anti-slip lines are provided on the second elastic layer, and the friction force with the cam can be increased through the second anti-slip lines, thereby improving the stability of stopping the cam, that is, improving the stability of stopping the side plate and the partition plate.
[0028] Further, a plurality of top grooves are provided at the top of the fixing plate, and the number of the top grooves is the same as that of the transverse grooves; the top grooves communicate with the transverse grooves, an auxiliary shaft is rotatably connected in the top grooves, the auxiliary shaft is rotatably connected with the transverse grooves, and a second gear and a third gear are provided on the auxiliary shaft; a second rack meshing with the second gear is provided on the linkage block, and the second rack can slide in the transverse grooves and the chamber; a plurality of guiding grooves are provided at the top of the fixing plate, and the number of the guiding grooves is the same as that of the transverse grooves, and the guiding grooves communicate with the top grooves; a third rack meshing with the third gear is slidably connected in the guiding grooves, and a second spring is provided between the third rack and the guiding grooves, and the moving direction of the third rack is opposite to that of the second rack.
[0029] With the above arrangement, during the movement of the wedge block, the wedge block drives the linkage block to move synchronously, the linkage block drives the second rack to move synchronously, the second rack meshes with the second gear to drive the second gear to rotate, the second gear drives the auxiliary shaft to rotate, the auxiliary shaft drives the third gear to rotate, the third gear meshes with the third rack to drive the third rack to slide along the path of the guiding grooves, and the second spring is stretched; when the third rack continues to move and the glass bottle abuts against the bottom of the second storage area, the third rack abuts against the glass bottle, that is, the upper half of the glass bottle is clamped through the second arc groove and the third rack, so as to enhance the limiting effect on the glass bottle, thereby improving the stability of limiting the glass bottle and preventing the glass bottle from shaking during transfer. Description of the Drawings
[0030] Figure 1 is the front view of an embodiment of a medicine storage cabinet according to the present invention;
[0031] Figure 2 is Figure 1 the top view of the middle box body;
[0032] Figure 3 is Figure 2 the sectional view taken along the A-A direction in
[0033] Figure 4 is Figure 3 the enlarged view at B in Detailed Embodiments
[0034] The following is a further detailed description through specific embodiments:
[0035] The reference numerals in the accompanying drawings of the specification include: box body 10, second magnet 11, first storage area 12, partition 121, side plate 122, first arc groove 1221, second storage area 13, second arc groove 131, box cover 20, first magnet 21, fixing plate 30, movable block 31, holding groove 311, chamber 32, first rack 33, rotating shaft 34, round shaft 35, first gear 36, belt 37, cam 38, first elastic layer 381, wedge block 40, first spring 41, abutting block 42, linkage block 43, second elastic layer 431, auxiliary shaft 50, second gear 51, third gear 52, third rack 53, second spring 54, glass bottle 60.
[0036] Embodiment
[0037] Basically as shown in the attached Figure 1 , attached Figure 2 , attached Figure 3 and attached Figure 4 As shown: A medicine storage cabinet includes a box body 10 and a box cover 20 for sealing the box body 10. The left end of the box cover 20 is hinged to the left end of the box body 10, and the right end of the box cover 20 is detachably connected to the right end of the box body 10. In this embodiment, a first magnet 21 is fixedly connected to the right end of the box cover 20, and a second magnet 11 for attracting the first magnet 21 is fixedly connected to the right end of the box body 10. When the first magnet 21 attracts the second magnet 11, the bottom of the box cover 20 is in contact with the top of the box body 10.
[0038] A fixing plate 30 is fixedly connected inside the box body 10. The interior of the box body 10 is divided into a first storage area 12 and a second storage area 13 by the fixing plate 30. A plurality of partition plates 121 are slidably connected in the first storage area 12, and side plates 122 are fixedly connected to the partition plates 121; a sliding groove is formed on one side of the fixing plate 30 close to the first storage area 12, and the side plate 122 is slidably connected to the sliding groove; further included is a stopping mechanism for simultaneously stopping a plurality of side plates 122. The stopping mechanism includes a movable block 31, a vertical groove formed in the partition plate 121, and a groove formed in the side plate 122. The movable block 31 is slidably connected to the vertical groove; the vertical groove is located above the sliding groove, the vertical groove communicates with the sliding groove, and the movable block 31 is slidably matched with the groove; a holding groove 311 is formed at the top of the movable block 31, and the holding groove 311 facilitates the staff's hand to reach in and lift the movable block 31; further included is a stopping part for stopping a plurality of side plates 122 as the movable block 31 moves vertically. The stopping part includes a chamber 32 formed in the partition plate 121, a first rack 33 fixedly connected to the side wall of the movable block 31, a rotating shaft 34 rotatably connected to the chamber 32, and a round shaft 35 rotatably connected to the chamber 32. The chamber 32 communicates with the vertical groove and the sliding groove; the first rack 33 is slidably connected to the vertical groove; a first gear 36 for meshing with the first rack 33 is fixedly connected to the rotating shaft 34, a belt 37 is fixedly connected between the rotating shaft 34 and the round shaft 35, and a cam 38 for simultaneously abutting against a plurality of side plates 122 is fixedly connected to the round shaft 35.
[0039] An arc-shaped first elastic layer 381 is fixedly connected to the protruding part of the cam 38. The first elastic layer 381 is a rubber layer, and first anti-slip lines are provided on the first elastic layer 381; a first arc-shaped groove 1221 for abutting against the first elastic layer 381 is formed at one end of the side plate 122 away from the partition plate 121, and the cam 38 drives the first elastic layer 381 to be able to turn into the first arc-shaped groove 1221.
[0040] The second storage area 13 is inclined, and a plurality of transverse grooves are formed on one side of the partition plate 121 close to the second storage area 13; a wedge block 40 is slidably connected in the transverse groove, a first spring 41 is fixedly connected between the wedge block 40 and the transverse groove, and the width of the top of the wedge block 40 gradually increases to the width of the bottom of the wedge block 40. A plurality of second arc grooves 131 are formed on one side of the second storage area 13 far from the partition plate 121. The number of the second arc grooves 131 is the same as that of the transverse grooves, and the second arc grooves 131 are arranged transversely opposite to the transverse grooves. It further includes a pressing block 42 for pressing against the cam 38. The transverse groove communicates with the chamber 32. A linkage block 43 capable of sliding in the transverse groove is fixedly connected between the pressing block 42 and the wedge block 40. The pressing block 42 is slidably connected to the transverse groove and the chamber 32, and the cam 38 is located on the movement track of the pressing block 42. The pressing block 42 is V-shaped, and the concave portion of the pressing block 42 faces the direction of the cam 38; second elastic layers 431 for abutting against the cam 38 are fixedly connected to both sides of the side wall of the pressing block 42 close to the cam 38. The second elastic layer 431 is a rubber layer, and second anti-slip lines are arranged on the second elastic layer 431.
[0041] A plurality of top grooves are formed at the top of the fixing plate 30. The number of the top grooves is the same as that of the transverse grooves; the top grooves communicate with the transverse grooves. An auxiliary shaft 50 is rotatably connected in the top grooves. The auxiliary shaft 50 is rotatably connected to the transverse grooves. A second gear 51 and a third gear 52 are fixedly connected to the auxiliary shaft 50. The third gear 52 is rotatably connected to the fixing plate 30; a second rack meshing with the second gear 51 is fixedly connected to the linkage block 43, and the second rack can slide in the transverse groove and the chamber 32; a plurality of guiding grooves are formed at the top of the fixing plate 30. The number of the guiding grooves is the same as that of the transverse grooves, and the guiding grooves communicate with the top grooves; a third rack 53 meshing with the third gear 52 is slidably connected in the guiding grooves. A second spring 54 is fixedly connected between the third rack 53 and the guiding grooves, and the movement direction of the third rack 53 is opposite to the movement direction of the second rack.
[0042] The specific implementation process is as follows:
[0043] In this solution, the size of a single storage area is adjusted according to the dosage of various medicines. The single storage area is the distance between two adjacent partition plates 121, or the distance between the partition plate 121 and the upper side wall of the first storage area 12, or the distance between the partition plate 121 and the lower side wall of the first storage area 12.
[0044] Specific adjustment method: Push the partition plate 121 to slide within the first storage area 12, and the partition plate 121 drives the side plate 122 to slide within the chute; when the distance between two adjacent partition plates 121 or the distance between the upper sidewall of the partition plate 121 and the first storage area 12 or the distance between the partition plate 121 and the lower sidewall of the first storage area 12 meets the requirements, the partition plate 121 and the side plate 122 stop moving; the staff drives the movable block 31 to move downward within the vertical groove by holding the groove 311, so that the bottom of the movable block 31 slides into the groove, and the bottom of the movable block 31 abuts against the bottom of the groove; during the downward movement of the movable block 31, the movable block 31 drives the first rack 33 to move downward, so that the first rack 33 meshes with the first gear 36 to drive the first gear 36 to rotate, the first gear 36 drives the rotating shaft 34 to rotate, the rotating shaft 34 drives the round shaft 35 to rotate through the belt 37, and the round shaft 35 drives the cam 38 to rotate; when the movable block 31 abuts against the bottom of the groove, the convex part of the cam 38 abuts against multiple side plates 122 at the same time, so as to realize the stopping of multiple side plates 122, and further realize the stopping of multiple partition plates 121, that is, realize the formation of multiple storage areas for storing various medicines with different weights.
[0045] This solution can stop multiple partition plates 121 at the same time, that is, can complete the formation of multiple storage areas at the same time, and the operation is more convenient; in this solution, the partition plate 121 can slide to any position within the first storage area 12 and stop, so as to infinitely expand or reduce a single storage area for storing various medicines with different weights; therefore, this solution has stronger flexibility in adjustment, a wider range of use for the size of a single storage area, and stronger practicability.
[0046] The first arc-shaped groove 1221 is provided on the side plate 122 to make the convex part of the cam 38 rotate to abut against the side plate 122 more smoothly; and when the convex part of the cam 38 rotates towards the first arc-shaped groove 1221, the first elastic layer 381 abuts against the first arc-shaped groove 1221, that is, the first elastic layer 381 is used to contact the first arc-shaped groove 1221 instead of the cam 38 directly, reducing the wear of the cam 38 and the side plate 122, and further prolonging the service life of both; in addition, the first elastic layer 381 is provided with first anti-slip lines, and the friction force with the first arc-shaped groove 1221 can be increased through the first anti-slip lines, thereby improving the stability of stopping the side plate 122, that is, improving the stability of stopping the partition plate 121.
[0047] After storing different quantities of various drugs, the glass bottles 60 containing the drugs are successively placed into the second storage area 13 one by one. During the process of a single glass bottle 60 being placed into the second storage area 13, the glass bottle 60 presses the wedge block 40 to slide into the transverse groove. The wedge block 40 drives the abutting block 42 to move towards the direction of the cam 38 through the linkage block 43, and the first spring 41 is compressed. The glass bottle 60 continues to move downward. When the glass bottle 60 abuts against the bottom of the second storage area 13, at this time, the second arc-shaped groove 131 and the wedge block 40 clamp the lower half of the glass bottle 60, thereby playing a role in limiting the glass bottle 60 and preventing the glass bottle 60 from shaking during transfer. Moreover, when the glass bottle 60 abuts against the bottom of the second storage area 13, the abutting block 42 also abuts against the cam 38, thereby strengthening the stopping effect on the cam 38, and further improving the stability of stopping the cam 38, that is, improving the stability of stopping the cam 38 on the side plate 122 and also improving the stability of stopping the partition plate 121.
[0048] In this solution, second elastic layers 431 for abutting against the cam 38 are fixedly connected to both sides of the side wall of the abutting block 42 close to the cam 38, so as to use the second elastic layers 431 to replace the direct contact between the abutting block 42 and the cam 38, reduce the wear of the cam 38 and the abutting block 42, and further extend the service life of both; moreover, second anti-slip lines are provided on the second elastic layers 431, and the friction force with the cam 38 can be increased through the second anti-slip lines, thereby improving the stability of stopping the cam 38, that is, improving the stability of stopping the side plate 122 and the partition plate 121.
[0049] During the movement of the wedge block 40, the wedge block 40 drives the linkage block 43 to move synchronously, the linkage block 43 drives the second rack to move synchronously, the second rack meshes with the second gear 51 to drive the second gear 51 to rotate, the second gear 51 drives the auxiliary shaft 50 to rotate, the auxiliary shaft 50 drives the third gear 52 to rotate, the third gear 52 meshes with the third rack 53 to drive the third rack 53 to slide along the path of the guide groove, and the second spring 54 is stretched. The third rack 53 continues to move. When the glass bottle 60 abuts against the bottom of the second storage area 13, the third rack 53 abuts against the glass cup, that is, the upper half of the glass bottle 60 is clamped by the second arc-shaped groove 131 and the third rack 53, thereby strengthening the limiting effect on the glass cup and further improving the stability of limiting the glass cup to prevent the glass bottle 60 from shaking during transfer. Moreover, due to the inclined setting of the second storage area 13, adjacent two glass bottles 60 are staggered, and there will be no situation where adjacent two glass bottles 60 are in contact with each other, so as to facilitate the taking out of the glass bottle 60.
[0050] The above are only embodiments of the present invention. Specific technical solutions and / or common knowledge such as characteristics well known in the art are not described in detail herein. It should be noted that for those skilled in the art, without departing from the technical solution of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the implementation effect of the present invention and the practicability of the patent. The protection scope required by this application shall be subject to the content of its claims, and the specific implementation manners and the like recorded in the specification can be used to interpret the content of the claims.
Claims
1. A medicine storage cabinet, comprising a box body and a box cover for sealing the box body, one end of the box cover is hinged to the box body, and the other end of the box cover is detachably connected to the box body, characterized in that: A fixed plate is provided inside the box body. The interior of the box body is divided into a first storage area and a second storage area by the fixed plate. A number of partition boards are slidably connected in the first storage area, and side plates are provided on the partition boards; on one side of the fixed plate close to the first storage area, a sliding groove is provided, and the side plates are slidably connected with the sliding groove; a stopping mechanism for simultaneously stopping a plurality of side plates is also included; The stopping mechanism includes a movable block, a vertical groove opened on the partition board, and a groove opened on the side plate. The movable block is slidably connected with the vertical groove; the vertical groove is located above the sliding groove, the vertical groove communicates with the sliding groove, and the movable block is slidably matched with the groove; a stopping part for stopping a plurality of side plates as the movable block moves vertically is also included; The stopping part includes a chamber opened in the partition board, a first rack fixedly connected to the side wall of the movable block, a rotating shaft and a circular shaft rotatably connected to the chamber. The chamber communicates with the vertical groove and the sliding groove; the first rack is slidably connected with the vertical groove; a first gear for meshing with the first rack is provided on the rotating shaft, a belt is provided between the rotating shaft and the circular shaft, and a cam for simultaneously abutting against a plurality of side plates is provided on the circular shaft; An arc-shaped first elastic layer is provided at the protruding part of the cam, and first anti-slip lines are provided on the first elastic layer; a first arc-shaped groove for abutting against the first elastic layer is provided at one end of the side plate away from the partition board.
2. The medicine storage cabinet according to claim 1, wherein: The second storage area is inclined. A number of transverse grooves are provided on one side of the partition board close to the second storage area; a wedge block is slidably connected in the transverse groove, a first spring is provided between the wedge block and the transverse groove, and the width of the top of the wedge block gradually increases from the top to the bottom.
3. The medicine storage cabinet according to claim 2, wherein: A number of second arc-shaped grooves are provided on one side of the second storage area away from the partition board. The number of the second arc-shaped grooves is the same as the number of the transverse grooves, and the second arc-shaped grooves and the transverse grooves are arranged transversely opposite to each other.
4. The medicine storage cabinet according to claim 3, characterized in that: A pressing block for abutting against the cam is also included. The transverse groove communicates with the chamber. A linkage block capable of sliding in the transverse groove is provided between the pressing block and the wedge block. The pressing block is slidably connected with the transverse groove and the chamber, and the cam is located on the movement track of the pressing block.
5. The medicine storage cabinet according to claim 4, wherein: The pressing block is V-shaped, and the concave part of the pressing block faces the cam; second elastic layers for abutting against the cam are provided on both sides of the side wall of the pressing block close to the cam, and second anti-slip lines are provided on the second elastic layers.
6. The medicine storage cabinet according to claim 5, characterized in that: A number of top grooves are provided on the top of the fixed plate. The number of the top grooves is the same as the number of the transverse grooves; the top grooves communicate with the transverse grooves. An auxiliary shaft is rotatably connected in the top grooves, and the auxiliary shaft is rotatably connected with the transverse grooves. A second gear and a third gear are provided on the auxiliary shaft; a second rack meshing with the second gear is provided on the linkage block, and the second rack can slide in the transverse groove and the chamber; a number of guiding grooves are provided on the top of the fixed plate. The number of the guiding grooves is the same as the number of the transverse grooves, and the guiding grooves communicate with the top grooves; a third rack meshing with the third gear is slidably connected in the guiding grooves, and a second spring is provided between the third rack and the guiding grooves. The movement direction of the third rack is opposite to the movement direction of the second rack.
Citation Information
Patent Citations
Domestic medicine classification storage box
CN206827182U
Space-adjustable storehouse medicine storage rack
CN217447070U