CN218100346U - Tool storage cabinet for unmanned tool room - Google Patents

Tool storage cabinet for unmanned tool room Download PDF

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Publication number
CN218100346U
CN218100346U CN202222601487.1U CN202222601487U CN218100346U CN 218100346 U CN218100346 U CN 218100346U CN 202222601487 U CN202222601487 U CN 202222601487U CN 218100346 U CN218100346 U CN 218100346U
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China
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opening
tool
translation
closing
driving
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CN202222601487.1U
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Chinese (zh)
Inventor
邓潍杰
陈进京
刘建平
陈煜琳
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Guangzhou Xinke Aerospace Technology Co ltd
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Guangzhou Xinke Aerospace Technology Co ltd
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Priority to CN202222601487.1U priority Critical patent/CN218100346U/en
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Abstract

The utility model discloses a tool storage cabinet for an unmanned tool room, which comprises a tool storage cabinet and a control box; a storage window is arranged on the front side surface of the tool storage cabinet, and each tool access unit for storing and releasing maintenance tools is arranged in the storage window; the control box is fixedly arranged on the side edge of the tool storage cabinet, and a controller, a memory and a wireless communication module are arranged in the control box. This a instrument storing compartment for unmanned instrument room utilizes instrument access unit can realize repair tools's storage and release control to get the mechanism with the instrument of unmanned instrument room and put and cooperate the storage and the release operation that realize repair tools, need not the maintenance personal and look for corresponding repair tools in the instrument storing compartment in person, can effectively improve repair tools's borrow and return efficiency.

Description

Tool storage cabinet for unmanned tool room
Technical Field
The utility model relates to a tool storage cabinet, especially a tool storage cabinet for unmanned tool room.
Background
At present, in order to ensure the safety of airplane navigation, the airplane needs to be overhauled regularly, so that potential safety hazards which may exist can be found in time, and accidents are avoided. But current aircraft maintenance instrument article types are various, borrow the use at the maintenance workman and need longer time to carry out the instrument and seek, must in time return the maintenance instrument after the maintenance work is finished every day in addition, also can have the potential safety hazard if omit the maintenance instrument on the aircraft. Therefore, an unmanned tool room is designed to store the maintenance tools, and in order to achieve automatic taking and placing of the maintenance tools, a tool storage cabinet for the unmanned tool room needs to be correspondingly designed, so that the tool storage cabinet is matched with a tool taking and placing mechanism of the unmanned tool room, and automatic taking and placing operation of the maintenance tools is achieved.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an: the utility model provides a tool storage cabinet for unmanned tool room to get with the instrument of unmanned tool room and put the mechanism and cooperate, realize that maintenance tool's automation is got and is put the operation.
In order to realize the purpose of the utility model, the utility model provides a tool storage cabinet for an unmanned tool room, which comprises a tool storage cabinet and a control box; a storage window is arranged on the front side surface of the tool storage cabinet, and each tool access unit for storing and releasing the maintenance tool is arranged in the storage window; the control box is fixedly arranged on the side edge of the tool storage cabinet, and a controller, a memory and a wireless communication module are arranged in the control box; the controller is electrically connected with the memory and the invalid communication module respectively and is used for driving and controlling each tool access unit.
Further, the tool access unit comprises a rectangular partition plate, a position translation assembly, a door plate locking assembly and an opening and closing driving assembly; the rectangular partition plates of the tool access units are arranged in the storage window in parallel in an up-and-down interval manner; the lower side surface of the rectangular partition plate is provided with door plate mounting grooves at intervals, and the bottom of each door plate mounting groove is provided with a tool placing window penetrating through the upper side surface of the rectangular partition plate; a rectangular door plate is hinged and installed on two side edges of the door plate installation groove, which are parallel to the width edge of the rectangular partition plate in a swinging mode, and the tool placement window is sealed after the two rectangular door plates are upwards closed; the opening and closing driving component is movably arranged on the length edge of the inner side of the rectangular partition plate and is used for opening and closing the rectangular door plate at the position; the position translation assembly is used for moving the opening and closing driving assembly to each door panel mounting groove; the door plate locking assembly is used for locking the two rectangular door plates after the opening and closing driving assembly is moved away; the controller drives and controls the position translation assembly and the opening and closing driving assembly.
Further, the door plate locking assembly comprises a bar-shaped locking rod and a rebound pressure spring; a lock rod mounting hole is formed between the door panel mounting groove and the strip-shaped buckling hole, and the strip-shaped lock rod penetrates through the lock rod mounting hole; the wall of the lock rod mounting hole is provided with a spring mounting hole, and the strip-shaped lock rod is provided with a lock rod lug which extends into the spring mounting hole; lock catch notches are formed in the edges of the ends of the closed positions of the two rectangular door panels; the elastic pressure spring is arranged in the spring mounting hole, is elastically supported on the locking rod lug and is used for pushing one end of the strip-shaped locking rod to move towards the door plate mounting groove, so that the strip-shaped locking rod is simultaneously inserted into the two lock catch grooves when the two rectangular door plates are closed; the other end of the strip-shaped lock rod is positioned in the strip-shaped buckle hole and is provided with an unlocking lug; a triangular lug extending into the strip-shaped buckle hole is arranged on the groove edge of the buckle notch and used for pushing the unlocking lug to enable the strip-shaped lock rod to be separated from the buckle notch when the translation supporting seat moves through.
Furthermore, a guide slope surface is arranged on the edge of the unlocking bump and used for being in contact extrusion with the guide slope surface when the triangular bump passes through.
Further, the position translation assembly comprises a translation supporting seat, a translation driving motor and a translation driving screw rod; strip-shaped buckling holes are formed in the length edge of the inner side of the rectangular partition plate; a buckle notch is arranged on the side surface of the translation supporting seat, and the buckle notch is movably buckled on the length edge of the inner side of the rectangular partition plate; a translation driving threaded hole is formed in the translation supporting seat, and a translation driving screw is installed on the translation driving threaded hole in a penetrating threaded screwing mode; the translation driving screw is rotatably arranged on the length edge of the inner side of the rectangular partition plate, and the translation driving motor is used for driving the translation driving screw to rotate; the opening and closing driving component is arranged on the lower side surface of the translation supporting seat; and a translation driving circuit electrically connected with the controller is arranged in the control box and is electrically connected with the translation driving motor.
Furthermore, a plurality of inner side supporting rollers extending into the strip-shaped buckle holes are rotatably arranged on the upper side groove edge and the lower side groove edge of the buckle groove opening; the bottom of the notch of the buckle is rotatably provided with a plurality of outer side supporting rollers; the outer side supporting roller supports and walks in the roller limiting groove, and the outer side supporting roller and the inner side supporting roller clamp the hole wall of the strip-shaped clamping hole.
Furthermore, the opening and closing driving component comprises a tubular supporting beam, an opening and closing driving motor, an opening and closing driving screw rod and two opening and closing driving rollers; the middle part of the upper side surface of the tubular supporting beam is fixedly arranged on the lower side surface of the translation supporting seat and is parallel to the length edge of the rectangular partition plate; the opening and closing driving screw is rotatably arranged in the tubular supporting beam, and a strip-shaped sliding hole is formed in the tubular supporting beam; two opening and closing driving sliding blocks are arranged in the tubular supporting beam, and a roller supporting shaft horizontally extending out of the strip-shaped sliding hole is arranged on each of the two opening and closing driving sliding blocks; the two opening and closing driving sliding blocks are respectively installed on the two ends of the opening and closing driving screw in a penetrating type threaded screwing manner, and the thread screwing directions of the two ends of the opening and closing driving screw are opposite; the two opening and closing driving rollers are respectively and rotatably arranged on the extending end parts of the two roller supporting shafts and used for pushing and pressing the lower side surfaces of the two rectangular door plates, and the two rectangular door plates are pushed to be tiled in the door plate mounting grooves when the two opening and closing driving rollers are relatively closed; the opening and closing drive motor is used for rotationally driving the opening and closing drive screw, an opening and closing drive circuit electrically connected with the controller is arranged in the control box, and the opening and closing drive circuit is electrically connected with the opening and closing drive motor.
The beneficial effects of the utility model reside in that: the tool storing and releasing control of the maintenance tool can be realized by utilizing the tool storing and releasing unit, so that the maintenance tool storing and releasing operation can be realized by being matched with a tool storing and releasing mechanism of an unmanned tool room, maintenance personnel do not need to personally go to a tool storage cabinet to find a corresponding maintenance tool, and the borrowing and returning efficiency of the maintenance tool can be effectively improved; the wireless communication module can be used for carrying out wireless communication with a tool pick-and-place mechanism of the unmanned tool room, so that coordination control is realized.
Drawings
Fig. 1 is a front view of the tool storage cabinet of the present invention;
FIG. 2 is a schematic top view of the tool storage unit of the present invention;
FIG. 3 is a first schematic sectional view of the tool storage and retrieval unit of the present invention;
FIG. 4 is a second schematic sectional view of the tool storage unit of the present invention
Fig. 5 is a schematic diagram of the circuit structure of the present invention.
Detailed Description
The technical solution of the present invention will be described in detail with reference to the accompanying drawings, but the scope of the present invention is not limited to the embodiments.
Example 1:
as shown in fig. 1-5, the utility model discloses a tool storage cabinet for unmanned tool room includes: a tool storage cabinet 12 and a control box 1; a storage window 14 is provided on a front side of the tool storage cabinet 12, and tool access units for storing and releasing the service tools are provided in the storage window 14, respectively; the control box 1 is fixedly arranged on the side edge of the tool storage cabinet 12, and a controller, a memory and a wireless communication module are arranged in the control box 1; the controller is electrically connected with the memory and the invalid communication module respectively and is used for driving and controlling each tool access unit.
The tool storing and releasing control of the maintenance tool can be realized by utilizing the tool storing and releasing unit, so that the maintenance tool storing and releasing operation can be realized by being matched with a tool storing and releasing mechanism of an unmanned tool room, maintenance personnel do not need to personally go to a tool storage cabinet to find a corresponding maintenance tool, and the borrowing and returning efficiency of the maintenance tool can be effectively improved; the wireless communication module can be used for carrying out wireless communication with a tool picking and placing mechanism of the unmanned tool room, so that coordination control is realized.
Further, the tool access unit comprises a rectangular partition plate 13, a position translation assembly, a door plate locking assembly and an opening and closing driving assembly; the rectangular partition plates 13 of the tool access units are arranged in the storage windows 14 in parallel in an up-and-down interval manner; door plate mounting grooves 36 are distributed on the lower side surface of the rectangular partition plate 13 at intervals, and tool placing windows 17 penetrating through the upper side surface of the rectangular partition plate 13 are arranged at the bottom of each door plate mounting groove 36; two side edges of the door panel mounting groove 36 parallel to the width edge of the rectangular partition plate 13 are respectively provided with a rectangular door panel 18 in a swing-type hinged manner, and the tool placing window 17 is sealed after the two rectangular door panels 18 are upwards closed; the opening and closing driving component is movably arranged on the length edge of the inner side of the rectangular partition plate 13 and is used for opening and closing the rectangular door plate 18 at the position; the position translation assembly is used for moving the opening and closing driving assembly to each door panel mounting groove 36; the door panel locking assembly is used for locking the two rectangular door panels 18 after the opening and closing driving assembly is moved away; the controller drives and controls the position translation assembly and the opening and closing driving assembly.
The two rectangular door plates 18 are hinged in the door plate mounting grooves 36, so that the maintenance tool can fall down in the middle after the two rectangular door plates 18 are opened, and the maintenance tool can smoothly fall into a tool taking and placing mechanism of an unmanned tool room to release the maintenance tool; the tool placement window 17 can be used for limiting the maintenance tool, so that the maintenance tool is stabilized on the rectangular door plate 18 when the tool placement mechanism of the unmanned tool room stores the maintenance tool into the tool storage cabinet 12.
Further, the door panel locking assembly comprises a bar-shaped lock rod 23 and a rebound pressure spring 32; a lock rod mounting hole 37 is arranged between the door panel mounting groove 36 and the strip-shaped buckling hole 16, and the strip-shaped lock rod 23 penetrates through the lock rod mounting hole 37; the hole wall of the locking rod mounting hole 37 is provided with a spring mounting hole 30, and the bar-shaped locking rod 23 is provided with a locking rod lug 31 extending into the spring mounting hole 30; lock catch notches 35 are formed in the end edges of the closed positions of the two rectangular door panels 18; the rebound compression spring 32 is arranged in the spring mounting hole 30, is elastically supported on the locking rod bump 31 and is used for pushing one end of the bar-shaped locking rod 23 to move towards the door panel mounting groove 36, so that the bar-shaped locking rod 23 is simultaneously inserted into the two lock catch notches 35 when the two rectangular door panels 18 are closed; the other end of the bar-shaped lock rod 23 is positioned in the bar-shaped buckling hole 16, and the other end of the bar-shaped lock rod 23 is provided with an unlocking bump 24; a triangular projection 29 extending into the strip-shaped snap hole 16 is provided on the groove side of the snap notch 75 for pushing the unlocking projection 24 to disengage the strip-shaped lock lever 23 from the snap notch 35 when the translation support base 20 moves past.
The triangular lug 29 can push the unlocking lug 24 to enable the strip-shaped lock rod 23 to be separated from the lock catch notch 35 when passing by, so that the two rectangular door panels 18 are synchronously unlocked; when the triangular convex block 29 leaves the unlocking convex block 24, the bar-shaped lock rod 23 is pushed in time to be inserted into the two lock catch notches 35 to realize locking by using the rebound pressure spring 32; the two rectangular door panels 18 are installed by the door panel installation grooves 36, so that the lower side surfaces of the rectangular partition plates 13 are kept flat after the two rectangular door panels 18 are closed.
Further, a guide slope is provided on an edge of the unlocking protrusion 24 for being able to contact and press with the guide slope when the triangular protrusion 29 passes. By the cooperation of the guiding slope surface and the triangular bump 29, the triangular bump 29 can be ensured to smoothly push the unlocking bump 24 when contacting with the unlocking bump 24.
Further, the position translation assembly comprises a translation supporting seat 20, a translation driving motor 15 and a translation driving screw 19; strip-shaped buckling holes 16 are formed in the length edge of the inner side of the rectangular partition plate 13; a buckle notch 75 is formed in the side face of the translation support seat 20, and the buckle notch 75 is movably buckled on the length edge of the inner side of the rectangular partition plate 13; a translation driving threaded hole 25 is formed in the translation supporting seat 20, and the translation driving screw 19 is installed on the translation driving threaded hole 25 in a penetrating type threaded screwing mode; the translation driving screw rod 19 is rotatably arranged on the length edge of the inner side of the rectangular partition plate 13, and the translation driving motor 15 is used for driving the translation driving screw rod 19 to rotate; the opening and closing driving component is arranged on the lower side surface of the translation supporting seat 20; a translation driving circuit electrically connected with the controller is arranged in the control box 1, the translation driving circuit is electrically connected with the translation driving motor 15, and the controller drives and controls the translation driving motor 15 through the translation driving circuit.
The buckling notches 75 are matched with the length edge of the inner side of the rectangular partition plate 13, so that the mounting stability can be enhanced; the translation support seat 20 can be driven in translation by matching the translation driving screw rod 19 with the translation driving threaded hole 25.
Further, a plurality of inner side supporting rollers 28 extending into the strip-shaped buckle holes 16 are rotatably mounted on the upper and lower side groove edges of the buckle groove opening 75; the inner length edge of the rectangular partition plate 13 is also provided with a roller limiting groove 27, and the bottom of the buckle notch 75 is rotatably provided with a plurality of outer support rollers 26; the outer support roller 26 is supported and travels in the roller limiting groove 27, and the outer support roller 26 and the inner support roller 28 are opposite to the hole wall of the strip-shaped buckling hole 16.
With the relative clamping of the inboard support roller 28 and the outboard support roller 26, the stability of the translation can be further enhanced and the translation resistance can be reduced.
Further, the opening and closing driving component comprises a tubular supporting beam 22, an opening and closing driving motor 21, an opening and closing driving screw 39 and two opening and closing driving rollers 34; the middle part of the upper side surface of the tubular supporting beam 22 is fixedly arranged on the lower side surface of the translation supporting seat 20 and is parallel to the length edge of the rectangular partition plate 13; the opening and closing driving screw rod 39 is rotatably arranged in the tubular support beam 22, and a strip-shaped sliding hole 38 is arranged on the tubular support beam 22; two opening and closing driving sliding blocks are arranged in the tubular supporting beam 22, and a roller supporting shaft 33 horizontally extending out of the strip-shaped sliding hole 38 is arranged on each of the two opening and closing driving sliding blocks; the two opening and closing driving sliding blocks are respectively installed on the two ends of the opening and closing driving screw rod 39 in a penetrating type threaded screwing manner, and the thread screwing directions of the two ends of the opening and closing driving screw rod 39 are opposite; the two opening and closing driving rollers 34 are respectively and rotatably mounted on the extending end parts of the two roller supporting shafts 33 and used for pushing and pressing the lower side surfaces of the two rectangular door panels 18, and when the two opening and closing driving rollers 34 are relatively closed, the two rectangular door panels 18 are pushed to be flatly laid in the door panel mounting grooves 36; the opening and closing drive motor 21 is used for rotationally driving the opening and closing drive screw 39, an opening and closing drive circuit electrically connected with the controller is arranged in the control box 1, the opening and closing drive circuit is electrically connected with the opening and closing drive motor 21, and the controller drives and controls the opening and closing drive motor 21 through the opening and closing drive circuit.
The opening and closing driving screw rod 39 is used for synchronously driving the two opening and closing driving slide blocks, so that the two opening and closing driving rollers 34 are subjected to displacement control, the two rectangular door plates 18 are supported and released, and the two rectangular door plates 18 are driven to open and close; the two opening and closing driving rollers 34 can be tightly attached to the lower side surface of the rectangular partition plate 13 to roll, so that the two rectangular door plates 18 can be completely closed in place, and when the triangular convex block 29 leaves the unlocking convex block 24, the strip-shaped lock rod 23 can be simultaneously inserted into the two lock catch notches 35 to realize locking; the two rectangular door panels 18 can be separately supported by the two opening and closing driving rollers 34, so that when the triangular convex block 29 leaves the unlocking convex block 24, the two opening and closing driving rollers 34 are still supported below the two rectangular door panels 18, and the two opening and closing driving rollers 34 are ensured to leave in a completely locked state of the two rectangular door panels 18.
In the tool storage cabinet for the unmanned tool room, the controller adopts the existing single chip microcomputer control module for realizing coordination control; the memory adopts the existing memory module and is used for realizing data storage; the wireless communication module adopts the existing wireless communication module, such as a WiFi module, a 4G module or a 5G communication module, so as to realize remote data transmission; the translation driving circuit and the opening/closing driving circuit both adopt the existing motor driving circuit for respectively driving and controlling the translation driving motor 15 and the opening/closing driving motor 21.
The utility model discloses a tool storage cabinet for unmanned tool room when using, borrow and the instrument operation step that returns including the instrument:
a tool lending step: after the controller receives a tool taking-out instruction sent by a tool taking-out mechanism of the unmanned tool room, the controller drives and controls the translation driving motor 15 through a translation driving circuit, so that the translation supporting seat 20 moves to the corresponding tool placing window 17, at the moment, the triangular bump 29 pushes the unlocking bump 24 to enable the strip-shaped locking rod 23 to be separated from the locking notch 35, and the two opening and closing driving rollers 34 respectively carry out stable supporting on the two rectangular door plates 18; then the controller drives and controls the opening and closing driving motor 21 through the opening and closing driving circuit, so that the two opening and closing driving rollers 34 move towards two ends, the two rectangular door plates 18 are opened downwards under the action of gravity, a maintenance tool to be taken out slides into a tool taking and placing mechanism below, and the opening and closing driving motor 21 is controlled reversely, so that the two opening and closing driving rollers 34 move towards the middle; and controlling the translation driving motor 15 to move the translation supporting seat 20 to the initial position, and when the triangular convex block 29 leaves the unlocking convex block 24, the rebounding pressure spring 32 pushes the bar-shaped lock rod 23 to be simultaneously inserted into the two lock catch notches 35, and the two opening and closing driving rollers 34 leave the two rectangular door plates 18 after the movement is continued, so that the taking-out matching control of the maintenance tool is completed.
Tool returning step: the tool picking and placing mechanism of the unmanned tool room can tilt the maintenance tool to be returned onto the two rectangular door plates 18 to finish the returning of the maintenance tool.
As noted above, while the invention has been shown and described with reference to certain preferred embodiments, it is not to be construed as limited to the invention itself. Various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (7)

1. A tool storage cabinet for an unmanned tool room, characterized in that: comprises a tool storage cabinet (12) and a control box (1); a storage window (14) is arranged on the front side surface of the tool storage cabinet (12), and each tool access unit for storing and releasing maintenance tools is arranged in the storage window (14); the control box (1) is fixedly arranged on the side edge of the tool storage cabinet (12), and a controller, a memory and a wireless communication module are arranged in the control box (1); the controller is electrically connected with the memory and the invalid communication module respectively and is used for driving and controlling each tool access unit.
2. The tool storage cabinet for an unmanned tool room of claim 1, wherein: the tool access unit comprises a rectangular partition plate (13), a position translation assembly, a door plate locking assembly and an opening and closing driving assembly; rectangular partition plates (13) of each tool access unit are arranged in parallel in a storage window (14) in an up-and-down interval manner; the lower side surface of the rectangular partition plate (13) is distributed with various door plate mounting grooves (36) at intervals, and the bottom of each door plate mounting groove (36) is provided with a tool placing window (17) penetrating through the upper side surface of the rectangular partition plate (13); a rectangular door plate (18) is hinged and installed on two side edges of the door plate installation groove (36) parallel to the width edge of the rectangular partition plate (13) in a swinging mode, and the tool placement window (17) is sealed after the two rectangular door plates (18) are closed upwards; the opening and closing driving component is movably arranged on the length edge of the inner side of the rectangular partition plate (13) and is used for opening and closing the rectangular door panel (18) at the position; the position translation assembly is used for moving the opening and closing driving assembly to each door panel mounting groove (36); the door plate locking assembly is used for locking the two rectangular door plates (18) after the opening and closing driving assembly is moved away; the controller is used for driving and controlling the position translation assembly and the opening and closing driving assembly.
3. The tool storage cabinet for an unmanned tool room of claim 2, wherein: the door panel locking assembly comprises a strip-shaped lock rod (23) and a rebound pressure spring (32); a lock rod mounting hole (37) is arranged between the door panel mounting groove (36) and the strip-shaped buckling hole (16), and the strip-shaped lock rod (23) penetrates through the lock rod mounting hole (37); a spring mounting hole (30) is arranged on the wall of the locking rod mounting hole (37), and a locking rod lug (31) extending into the spring mounting hole (30) is arranged on the bar-shaped locking rod (23); lock catch notches (35) are formed in the edges of the ends of the closed positions of the two rectangular door panels (18); the rebound compression spring (32) is arranged in the spring mounting hole (30), is elastically supported on the locking rod bump (31) and is used for pushing one end of the strip-shaped locking rod (23) to move towards the door panel mounting groove (36), so that the strip-shaped locking rod (23) is simultaneously inserted into the two lock catch notches (35) when the two rectangular door panels (18) are closed; the other end of the strip-shaped lock rod (23) is positioned in the strip-shaped buckle hole (16) and is provided with an unlocking lug (24); and a triangular lug (29) extending into the strip-shaped buckle hole (16) is arranged on the groove edge of the buckle notch (75) and used for pushing the unlocking lug (24) to enable the strip-shaped lock rod (23) to be separated from the buckle notch (35) when the translation supporting seat (20) moves through.
4. The tool storage cabinet for an unmanned tool room of claim 3, wherein: a guide slope is arranged on the edge of the unlocking lug (24) and is used for being in contact with and extruded by the guide slope when the triangular lug (29) passes by.
5. The tool storage cabinet for an unmanned tool room of claim 2, wherein: the position translation assembly comprises a translation supporting seat (20), a translation driving motor (15) and a translation driving screw (19); strip-shaped buckling holes (16) are formed in the length edge of the inner side of the rectangular partition plate (13); a clamping notch (75) is formed in the side face of the translation supporting seat (20), and the clamping notch (75) is movably clamped on the length edge of the inner side of the rectangular partition plate (13); a translation driving threaded hole (25) is formed in the translation supporting seat (20), and a translation driving screw rod (19) is installed on the translation driving threaded hole (25) in a penetrating type threaded screwing mode; the translation driving screw (19) is rotatably arranged on the length edge of the inner side of the rectangular partition plate (13), and the translation driving motor (15) is used for driving the translation driving screw (19) to rotate; the opening and closing driving component is arranged on the lower side surface of the translation supporting seat (20); a translation driving circuit electrically connected with the controller is arranged in the control box (1), and the translation driving circuit is electrically connected with a translation driving motor (15).
6. The tool storage cabinet for an unmanned tool room of claim 5, wherein: a plurality of inner side supporting rollers (28) extending into the strip-shaped buckle holes (16) are rotatably arranged on the upper side groove edge and the lower side groove edge of the buckle notch (75); the length edge of the inner side of the rectangular partition plate (13) is also provided with a roller limiting groove (27), and the bottom of the buckle notch (75) is rotatably provided with a plurality of outer side supporting rollers (26); the outer side supporting roller (26) is supported and walks in the roller limiting groove (27), and the outer side supporting roller (26) and the inner side supporting roller (28) are opposite to the hole wall of the clamping strip-shaped buckling hole (16).
7. The tool storage cabinet for an unmanned tool room of claim 5, wherein: the opening and closing driving component comprises a tubular supporting beam (22), an opening and closing driving motor (21), an opening and closing driving screw rod (39) and two opening and closing driving rollers (34); the middle part of the upper side surface of the tubular supporting beam (22) is fixedly arranged on the lower side surface of the translation supporting seat (20) and is parallel to the length edge of the rectangular partition plate (13); the opening and closing drive screw rod (39) is rotatably arranged in the tubular support beam (22), and a strip-shaped sliding hole (38) is arranged on the tubular support beam (22); two opening and closing driving sliding blocks are arranged in the tubular supporting beam (22), and a roller supporting shaft (33) horizontally extending out of the strip-shaped sliding hole (38) is arranged on each of the two opening and closing driving sliding blocks; the two opening and closing driving sliding blocks are respectively installed on the two ends of the opening and closing driving screw rod (39) in a penetrating type threaded screwing manner, and the thread screwing directions of the two ends of the opening and closing driving screw rod (39) are opposite; the two opening and closing driving rollers (34) are respectively and rotatably arranged on the extending end parts of the two roller supporting shafts (33) and used for pushing and pressing the lower side surfaces of the two rectangular door plates (18) and pushing the two rectangular door plates (18) to be tiled in the door plate mounting grooves (36) when the two opening and closing driving rollers (34) are relatively closed; the opening and closing drive motor (21) is used for rotationally driving the opening and closing drive screw (39), an opening and closing drive circuit electrically connected with the controller is arranged in the control box (1), and the opening and closing drive circuit is electrically connected with the opening and closing drive motor (21).
CN202222601487.1U 2022-09-30 2022-09-30 Tool storage cabinet for unmanned tool room Active CN218100346U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222601487.1U CN218100346U (en) 2022-09-30 2022-09-30 Tool storage cabinet for unmanned tool room

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222601487.1U CN218100346U (en) 2022-09-30 2022-09-30 Tool storage cabinet for unmanned tool room

Publications (1)

Publication Number Publication Date
CN218100346U true CN218100346U (en) 2022-12-20

Family

ID=84455924

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222601487.1U Active CN218100346U (en) 2022-09-30 2022-09-30 Tool storage cabinet for unmanned tool room

Country Status (1)

Country Link
CN (1) CN218100346U (en)

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