CN212686526U - Mould rack of steamer tray lockable - Google Patents

Mould rack of steamer tray lockable Download PDF

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Publication number
CN212686526U
CN212686526U CN202021394852.0U CN202021394852U CN212686526U CN 212686526 U CN212686526 U CN 212686526U CN 202021394852 U CN202021394852 U CN 202021394852U CN 212686526 U CN212686526 U CN 212686526U
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China
Prior art keywords
storage space
drawer plate
steamer tray
drawer
rack
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Active
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CN202021394852.0U
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Chinese (zh)
Inventor
王栋
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Chengdu Yinfei Intelligent Logistics Equipment Co ltd
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Chengdu Yinfei Intelligent Logistics Equipment Co ltd
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Priority to CN202021394852.0U priority Critical patent/CN212686526U/en
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Abstract

The utility model discloses a mould rack of steamer tray lockable, comprising a frame body, the support body includes a plurality of storage space, and storage space's lower terminal surface is the steamer tray board, the both sides of steamer tray board are all through rail mounting on the support body, the track extends to the outer end from storage space, storage space's storage port department is provided with locking mechanical system, locking mechanical system including the electromagnetic lock that is located steamer tray board both sides. The utility model has the advantages that the device is provided with a locking mechanism, when the drawer plate needs to be locked, the spring bolt is popped out through the switch control, and the drawer plate is limited outside or inside the storage space; the time relay is designed, after the switch is pressed, the spring bolt is retracted, the drawer plate can slide randomly within set time, after the time is up, the spring bolt is ejected, and after the drawer plate is moved in place, the drawer plate can be locked.

Description

Mould rack of steamer tray lockable
Technical Field
The utility model relates to a logistics storage field, concretely relates to mould rack of steamer tray board lockable.
Background
The mold shelf is also called a mold shelf or a drawer type shelf, mainly stores various mold articles, and is divided into a light mold shelf and a heavy mold shelf according to the requirements of layer loading capacity.
In the mould goods shelves, the drawer plate can also be pulled out from the storage position, and then the mould is hoisted away through the hoist or placed behind the drawer plate through the hoist, and then the drawer plate is pushed to enter the storage position.
Because the steamer tray board of mould goods shelves is the rail mounting, the slip appears very easily, if the goods shelves is by the striking back, makes the steamer tray board slip very easily, just need go to reset the steamer tray board, extravagant staff's time to when getting in stock, pull out the steamer tray board, if slide appears in getting in stock, the mould can't put down, just need someone to notice the steamer tray board, avoid appearing the slip when placing the mould, has caused the waste to the manpower like this.
SUMMERY OF THE UTILITY MODEL
It is an object of the present invention to solve at least the above problems and to provide at least the advantages which will be described later.
An object of the utility model is to provide a mould rack that steamer tray board can be locked, for solving current steamer tray board slidable, when the position change appears, need the problem that the staff wasted time to go the adjustment.
In order to achieve these objects and other advantages according to the present invention, a mold placing rack with a lockable drawer plate is provided, which includes a rack body, the rack body includes a plurality of storage spaces, a lower end surface of the storage spaces is the drawer plate, both sides of the drawer plate are mounted on the rack body through rails, the rails extend from the storage spaces to an outer end, when the drawer plate is subjected to an external force to move back and forth on the rails, the drawer plate may be located outside the storage spaces or inside the storage spaces, a storage opening of the storage spaces is provided with a locking mechanism, the locking mechanism includes electromagnetic locks located on both sides of the drawer plate, when the drawer plate is located inside the storage spaces, after the electromagnetic locks are powered off, lock tongues of the electromagnetic locks pop out, and the lock tongues are located at a front end of the drawer plate; when the drawer plate is positioned outside the storage space, after the electromagnetic lock loses power, the spring bolt of the electromagnetic lock is popped up, and the spring bolt is positioned at the rear end of the drawer plate.
The design of the locking mechanism can pop up the spring bolt when the drawer plate completely enters the storage space, so that the drawer plate is prevented from sliding outwards the storage space, and the spring bolt can be popped up when the drawer plate completely leaves the storage space, so that the drawer plate is prevented from sliding inwards the storage space.
In one possible design, the part of the track outside the storage space is supported by a vertical column, and the column is fixedly connected with the track. The track is supported through the stand, avoids the mould to crush the track.
In one possible design, the front end of the bolt is provided with a ball. When one part of the drawer plate is positioned in the storage space and the other part of the drawer plate is positioned outside the storage space, if the electromagnetic lock is powered off, the spring bolt is propped against the side face of the drawer plate, and the balls are arranged, so that friction can be reduced.
In one possible design, the front end face and the rear end face of the drawer plate are provided with placing grooves matched with the lock tongues. The spring bolt is located the standing groove for protect the spring bolt, avoid the spring bolt to expose the outside and damaged by the striking.
In one possible design, guide grooves matched with the lock tongues are arranged on two sides of the drawer plate, and the two sides of each guide groove are connected with the placing grooves. The spring bolt is generally released firstly, then the drawer plate is pushed or pulled, when the drawer plate moves to a specific position, the spring bolt can enter the placing groove, so that the guide groove is formed, the spring bolt can enter the guide groove, and when the spring bolt moves for a long distance, the spring bolt cannot be bent.
In one possible design, the front end face of the drawer plate is provided with a handle. The handle is used for pulling the drawer plate.
In one possible design, the upper end face of the drawer plate is covered with protrusions. The friction force between the drawer plate and the mold is increased by the protrusions, so that the mold is prevented from slipping when the drawer plate moves.
In one possible design, the power supply circuit of the electromagnetic locks on the two sides of the drawer plate is provided with a time relay of a power-off delay type, and the trigger end of the time relay is connected to the key switch. After the key switch is pressed, the relay is communicated, the electromagnetic lock is electrified, the spring bolt is withdrawn, the drawer plate can slide randomly, but generally, a delay time of several seconds is set, the relay is disconnected, and after the electromagnetic lock is electrified, the spring bolt is popped out, so that the drawer plate can be locked at a set position.
In one possible design, the upper end surface of the drawer plate is provided with a baffle plate at the periphery of the periphery. Used for placing the mould to slide out of the drawer plate.
The utility model discloses at least, include following beneficial effect: (1) the device is provided with a locking mechanism, and when the drawer plate needs to be locked, the switch controls the spring bolt to be popped out, so that the drawer plate is limited outside or inside the storage space;
(2) the time relay is designed, after the switch is pressed, the spring bolt is retracted, the drawer plate can slide randomly within set time, after the time is up, the spring bolt is ejected, and after the drawer plate is moved in place, the drawer plate can be locked.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a schematic structural view of the rack;
FIG. 2 is a schematic view of a connection structure of a drawer plate;
FIG. 3 is a schematic view of a connection structure of an electromagnetic lock and a drawer plate;
fig. 4 is a schematic structural diagram of the rear end face of the drawer plate.
Detailed Description
The invention will be further described with reference to the accompanying drawings and specific embodiments. It should be noted that the description of the embodiments is provided to help understanding of the present invention, but the present invention is not limited to the description. Specific structural and functional details disclosed herein are merely illustrative of example embodiments of the invention. The present invention may, however, be embodied in many alternate forms and should not be construed as limited to the embodiments set forth herein.
It is to be noted that the experimental methods described in the following embodiments are all conventional methods unless otherwise specified, and the reagents and materials, if not otherwise specified, are commercially available; in the description of the present invention, the terms "lateral", "longitudinal", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
As shown in fig. 1 to 4, a mold placing rack with a lockable drawer plate comprises a rack body 100, wherein the rack body 100 comprises a plurality of storage spaces 101, the lower end surface of each storage space 101 is a drawer plate 200, both sides of each drawer plate 200 are mounted on the rack body 100 through rails 102, the rails 102 extend from the storage spaces 101 to the outer end, when the drawer plates 200 move back and forth on the rails 102 under an external force, the drawer plates 200 can be located outside the storage spaces 101 or in the storage spaces 101, a locking mechanism 300 is arranged at a storage port 103 of the storage spaces 101, the locking mechanism 300 comprises electromagnetic locks 301 located at both sides of the drawer plates 200, when the drawer plates 200 are located in the storage spaces 101, after the electromagnetic locks 301 are powered off, lock tongues 302 of the electromagnetic locks 301 are ejected, and the lock tongues 302 are located at the front ends of the drawer plates 200; when the drawer board 200 is located outside the storage space 101, after the electromagnetic lock 301 loses power, the latch bolt 302 of the electromagnetic lock 301 is ejected, and the latch bolt 302 is located at the rear end of the drawer board 200.
The locking mechanism 300 is designed to pop up the latch 302 when the drawer plate 200 completely enters the storage space 101, so as to prevent the drawer plate 200 from sliding out of the storage space 101, and also to pop up the latch 302 when the drawer plate 200 completely leaves the storage space 101, so as to prevent the drawer plate 200 from sliding into the storage space 101.
Certainly, the spring bolt 302 is popped out not necessarily after the drawer board 200 moves to the right position, when the drawer board 200 moves, the spring bolt 302 is popped out, at this time, the end of the spring bolt 302 contacts the side wall of the drawer board 200, but the sliding of the drawer board 200 is not affected, and when the drawer board 200 slides to the right position, the spring bolt 302 is completely popped out to block the drawer board 200.
In one possible design, as shown in fig. 1, the portion of the rail 102 outside the storage space 101 is supported by a vertical column 104, and the column 104 is fixedly connected to the rail 102. The rail 102 is supported by the posts 104 to prevent the mold from crushing the rail 102. Although the rail 102 may be suspended, it is easily bent by pressure and needs to be maintained frequently
In one possible design, as shown in fig. 3, the latch tongue 302 is provided with a ball 303 at the front end. When one part of the drawer plate 200 is located in the storage space 101 and one part of the drawer plate is located outside the storage space 101, if the electromagnetic lock 301 loses power, the lock tongue 302 abuts against the side face of the drawer plate 200, and the ball 303 is arranged, so that friction can be reduced.
Referring to fig. 2 and 3, in one possible design, the front surface 201 and the rear surface 202 of the drawer board 200 are provided with a placement groove 203 for cooperating with a latch 302. The locking tongue 302 is positioned in the placement groove 203 and used for protecting the locking tongue 302 and preventing the locking tongue 302 from being exposed outside and damaged by impact. If the bolt 302 is exposed outside, some damage is easy to occur, and if a worker lifts other molds, the bolt 302 may be collided, so that the bolt 302 is arranged in the placing groove 203 and the bolt 302 can be protected.
Referring to fig. 3 and 4, in one possible design, the drawer plate 200 is provided with guide slots 204 at both sides thereof for engaging with the latch bolts 302, and the guide slots 204 are connected to the placement slots 203 at both sides thereof. The guide groove 204 is provided to allow the latch tongue 302 to enter the guide groove 204, and the latch tongue will not bend when moving a long distance, because the latch tongue 302 is generally released and then pushes or pulls the drawer plate 200, so that the latch tongue 302 enters the placing groove 203 when the drawer plate 200 moves to a specific position. The shape of the guide groove 204 is such that the outer opening is flared to facilitate entry of the latch bolt 302.
In one possible design, as shown in fig. 1, the front face of the drawer plate 200 is provided with a pull tab 205. The pull 205 is used to pull the drawer panel 200.
In one possible design, as shown in fig. 3, the upper end surface of the drawer plate 200 is covered with protrusions 206. The protrusions 206 increase the friction between the drawer plate 200 and the mold 400, preventing the mold 400 from slipping as the drawer plate 200 moves.
Referring to fig. 3 and 4, in one possible design, the power supply circuit of the electromagnetic lock 301 on both sides of the drawer board 200 is provided with a time relay 304 of a power-off delay type, and an activation terminal of the time relay 304 is connected to a key switch 305. After the key switch 305 is pressed, the time relay 304 is connected, the electromagnetic lock 301 is powered on, the bolt 302 is retracted, the drawer plate 200 can slide randomly, but generally, a delay time of several seconds is set, the time relay 304 is disconnected, and after the electromagnetic lock 301 is powered off, the bolt 302 is ejected, so that the drawer plate 200 can be locked at a set position.
The time relay 304 and the electromagnet 306 of the electromagnetic lock 301 are in a power supply loop, and the key switch 305 is connected to the trigger end of the time relay 304.
In the device, if the key switch 305 is arranged on the outermost upright post 104, the two upright posts 104 form a channel 105, when a worker needs to pull out the drawer plate 200, the worker presses the key switch 305 first, the bolt 302 retracts at the moment, then the worker enters the channel 105 and pulls out the drawer plate 200, the bolt 302 pops out, the time for retracting the bolt 302 to pop out is the delay time of the time relay 304, and the time is set to be 5s, which is enough for the worker to enter the channel 105 to pull out the drawer plate 200, because the worker does not need to determine that the position of the drawer plate 200 reaches the external locking position. When the drawer board 200 is pushed, the key switch 305 is pressed first, then the latch 302 is pushed, the staff pushes the drawer board 200 to enter the storage space, the latch 302 can be automatically ejected, and the staff ensures that the latch 302 can lock the drawer board 200.
In the design, the length of the drawer board 200 is matched with the length of the rail 102, namely when the drawer board 200 is positioned at the innermost part of the storage space, the bolt 302 is positioned in the placing groove 203 at the outer end of the drawer board 200, and the drawer board 200 is basically locked without space sliding; when the drawer board 200 is located at the outermost side, the latch 302 is also located in the placement groove 203 at the inner end of the drawer board 200, and the drawer board 200 is basically locked without a space for sliding.
The push switch 305 is of a type PB22E07, and is connected to the time relay 304 to perform on-off control thereof; the time relay 304 adopts a model JS 14A; the model of the electromagnetic lock 301 is DSN-AMY.
In one possible design, as shown in fig. 4, the upper end surface of the drawer panel 200 is provided with a baffle 207 at the peripheral edge. For preventing the mold from sliding out of the drawer plate 200.
While the embodiments of the invention have been described above, it is not intended to be limited to the details shown, or described, but rather to cover all modifications, which would come within the scope of the appended claims, and all changes which come within the meaning and range of equivalency of the art are therefore intended to be embraced therein.

Claims (9)

1. Mould rack of steamer tray lockable, a serial communication port, comprising a frame body, the support body includes a plurality of storage space, and storage space's lower terminal surface is the steamer tray board, the both sides of steamer tray board are all through rail mounting on the support body, the track extends to the outer end from storage space, and when the steamer tray board received external force and is the back and forth movement on the track, the steamer tray board can be located storage space outside or be located storage space, storage space's storage port department is provided with locking mechanical system, locking mechanical system including the electromagnetic lock that is located steamer tray board both sides, when the steamer tray board is located storage space, after the electromagnetic lock loses the electricity, the spring bolt of electromagnetic lock pops out, and the spring bolt is located the front end of steamer tray board: when the drawer plate is positioned outside the storage space, after the electromagnetic lock loses power, the spring bolt of the electromagnetic lock is popped up, and the spring bolt is positioned at the rear end of the drawer plate.
2. The rack of claim 1, wherein the portion of the track outside the storage space is supported by a vertical post, the post being fixedly connected to the track.
3. The rack of claim 1, wherein the front end of the locking bolt is provided with a ball.
4. The rack of claim 1, wherein the front end face and the rear end face of the drawer plate are provided with placing grooves matched with the lock tongues.
5. The rack of claim 4, wherein the drawer plate is provided with guide grooves at two sides thereof for matching with the lock tongues, and the guide grooves are connected at two sides thereof with the placement grooves.
6. The rack of claim 1, wherein the front face of the drawer panel is provided with a handle.
7. The rack of claim 1 wherein the upper end of the drawer panel is lined with projections.
8. The rack of claim 1, wherein the power supply circuit of the electromagnetic locks on the two sides of the drawer plate is provided with a time relay of a power-off delay type, and the trigger end of the time relay is connected to a key switch.
9. The rack of claim 1, wherein the upper end face of the drawer plate is provided with a baffle at the periphery of the periphery.
CN202021394852.0U 2020-07-15 2020-07-15 Mould rack of steamer tray lockable Active CN212686526U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021394852.0U CN212686526U (en) 2020-07-15 2020-07-15 Mould rack of steamer tray lockable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021394852.0U CN212686526U (en) 2020-07-15 2020-07-15 Mould rack of steamer tray lockable

Publications (1)

Publication Number Publication Date
CN212686526U true CN212686526U (en) 2021-03-12

Family

ID=74897440

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021394852.0U Active CN212686526U (en) 2020-07-15 2020-07-15 Mould rack of steamer tray lockable

Country Status (1)

Country Link
CN (1) CN212686526U (en)

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