CN210195554U - Split electronic safety joint control safe panel - Google Patents

Split electronic safety joint control safe panel Download PDF

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Publication number
CN210195554U
CN210195554U CN201822017788.3U CN201822017788U CN210195554U CN 210195554 U CN210195554 U CN 210195554U CN 201822017788 U CN201822017788 U CN 201822017788U CN 210195554 U CN210195554 U CN 210195554U
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China
Prior art keywords
groove
guide
cavity
handle
panel
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Active
Application number
CN201822017788.3U
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Chinese (zh)
Inventor
Lili Chen
陈莉丽
Dengren Yao
姚登仁
Bo Zhang
张波
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningbo Sheng Wei Safety Equipment Co Ltd
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Ningbo Sheng Wei Safety Equipment Co Ltd
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Priority to CN201822017788.3U priority Critical patent/CN210195554U/en
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Publication of CN210195554U publication Critical patent/CN210195554U/en
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Abstract

The utility model provides a split type electronic security joint control safe panel, includes and is used for fixing the shell on the chamber door, its characterized in that: still include electron unblock module, the bottom of electron unblock module is equipped with the winding displacement plug for the electricity is connected, what have the indent on the preceding terminal surface of shell is used for holding the first holding chamber of electron unblock module, the shell back is fixed with the circuit board that is equipped with the winding displacement socket on it, and the winding displacement socket shows the bottom in first holding chamber and inserts in order to supply to arrange the winding displacement plug on the electron unblock module in first holding intracavity and join in marriage, be equipped with muscle groove grafting structure between electron unblock module and the first holding chamber, pass through at electron unblock module under the state of muscle groove grafting structural connection in first holding intracavity, the rethread screw is fixed the electron unblock module in first holding intracavity. Need not to change whole panel, alright upgrade the transformation to this safe panel, reform transform more convenient and fast and with low costs.

Description

Split electronic safety joint control safe panel
Technical Field
The utility model relates to a split type electron safety joint control safe panel.
Background
Various electronic safe boxes are available on the market, wherein an electronic panel of the safe box is an indispensable component, a general electronic coded lock panel structure comprises a substrate with a coded key part, and some electronic safe box panels are also provided with a lock hole for inserting a key and a display screen for displaying time, date or numbers.
For example, a chinese utility model patent No. ZL200720113421.0 (No. CN201095927Y) discloses such a safe panel, which comprises a base with a password input keyboard installation position thereon, a lock hole is further formed on the base, a slide cover capable of covering the lock hole is further disposed on the base, guide rails folded downwards and inwards are disposed on two sides of the lower end surface of the slide cover, two slide grooves matched with the guide rails are disposed at corresponding positions of the base and the lock hole, the guide rails are inserted into the corresponding slide grooves and can horizontally slide along the slide grooves, and a limit structure is further disposed between the base and the slide cover.
For example, chinese patent application No. CN201010106024.7, and chinese patent application No. CN201120101506.3, both disclose safe panels with different structures.
When the electronic safe is assembled, the substrate is arranged on the back of the safe door, and the electronic password input part is fixed on the back of the substrate, so that the electronic password input part corresponding to each electronic panel is in one form, and if the password input part needs to be replaced, the whole safe panel needs to be detached and completely replaced. If a customer replaces the password unlocking mode of the existing safe (for example, the password input is combined with fingerprint input and the password input is combined with face recognition or a card swiping mode is required to be changed originally), the whole safe panel needs to be replaced, the disassembly and the assembly are very inconvenient, and the replacement cost is high.
The handle body of the handle used by the traditional safe door directly extends out of the door plate for a larger distance no matter what state, namely the handle body always exceeds the door surface. In the transportation process of the safe door with the outward-extending handle, the handle body is always exposed, so that the handle is easily damaged by external collision, the appearance of the handle is damaged, and the handle shaft can be seriously broken or deformed, so that the handle integrally loses the use performance, and the normal opening of the safe box is influenced.
In view of the above situation, a telescopic handle mechanism has been invented, which can hide the handle body in the recess of the door panel, so that the outer surface of the handle body is flush with the outer end surface of the door panel, thereby ensuring that the handle is not damaged by external collision during transportation, and preventing a lawbreaker from forcibly rotating the handle to damage the driving mechanism and the lock mechanism in the safe without knowing a password or a key.
The telescopic handle mechanism for the safe box, as well as the adjustable telescopic panel lock, as disclosed in the chinese utility model patent with patent number ZL200720191731.4 (publication number CN201125597Y) and the chinese utility model patent with patent number ZL200820085173.8 (publication number CN201176755Y), all disclose a safe box door with a telescopic handle, which is retracted into the safe door under normal state and is only ejected when opened.
The prior telescopic handle mechanism has the following defects: the clutch mechanism is arranged between the handle shaft in the handle and the driving mechanism, namely, the handle shaft is separated from the driving mechanism under the state that the head of the handle is retracted into the door plate, the handle idles, and the handle shaft is connected with the driving mechanism under the state that the head of the handle extends out of the door plate.
In summary, the existing safe panel can be further improved.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a but split type electron safety joint control safe panel that relative base of password input part independently dismantled the change is provided to above-mentioned prior art current situation, need not to change whole panel, alright upgrade the transformation to this safe panel, transform more convenient and fast and with low costs.
The utility model provides a technical scheme that above-mentioned technical problem adopted does: the utility model provides a split type electronic security joint control safe panel, includes and is used for fixing the shell on the chamber door, its characterized in that: still include electron unblock module, the bottom of electron unblock module is equipped with the winding displacement plug for the electricity is connected, what have the indent on the preceding terminal surface of shell is used for holding the first holding chamber of electron unblock module, the shell back is fixed with the circuit board that is equipped with the winding displacement socket on it, and the winding displacement socket shows the bottom in first holding chamber and inserts in order to supply to arrange the winding displacement plug on the electron unblock module in first holding intracavity and join in marriage, be equipped with muscle groove grafting structure between electron unblock module and the first holding chamber, pass through at electron unblock module under the state of muscle groove grafting structural connection in first holding intracavity, the rethread screw is fixed the electron unblock module in first holding intracavity.
Preferably, the rib groove inserting structure comprises a limiting rib arranged on the left side wall and the right side wall of the first accommodating cavity and a limiting groove arranged on the left side wall and the right side wall of the electronic unlocking module and in an L shape, the opening part of the limiting groove is arranged backwards and can be used for the limiting rib to enter, the limiting rib moves upwards relatively after entering the limiting groove from the opening part, the vertical groove part of the limiting groove and the limiting rib form a blocking and matching structure, the electronic unlocking module can slide up and down in the first accommodating cavity, and the periphery of the electronic unlocking module is provided with a blocking edge which is laterally convex and is used for covering the first accommodating cavity. Because of this muscle groove grafting structure realizes locking or unblock through the electron unblock module mode that reciprocates, this is unanimous with the direction that winding displacement plug and winding displacement socket pegged graft each other, whole dismouting process like this only need reciprocate the electron unblock module can, operation process is more reasonable.
In order to prevent the electronic unlocking module from shaking left and right in the first accommodating cavity, the width of the part of the electronic unlocking module entering the first accommodating cavity is matched with the width of the first accommodating cavity. Therefore, the electronic unlocking module and the first accommodating cavity have mutual left-right constraint action, the electronic unlocking module is prevented from shaking left and right in the first accommodating cavity, and the installation is more stable.
In order to enable the electronic unlocking module to be disassembled and assembled and replaced outside the box door, the bottom of the first accommodating cavity is provided with a connecting part which protrudes upwards, a threaded hole is formed in the connecting part, a through hole corresponding to the threaded hole is formed in the electronic unlocking module, the screw penetrates through the through hole and then is in threaded connection with the threaded hole, and a decorative cover used for covering the through hole is detachably installed on the front end face of the electronic unlocking module. When the electronic unlocking module is detached, the electronic unlocking module can be separated from the restraint of the rib groove inserting structure, and meanwhile, the flat cable plug is also separated from the flat cable socket, so that the electronic unlocking module is very convenient to detach.
A handle body is arranged at the lower part of the shell in a penetrating manner, the handle body consists of a handle head and a handle shaft connected to the rear part of the handle head, the shell is provided with a second accommodating cavity for accommodating the handle head, a connecting piece which can rotate around the axis of the shell relative to the shell is arranged on the bottom wall of the second accommodating cavity in a penetrating manner, the rear end of the connecting piece extends out of the shell and is connected with a transmission part, a guide cavity is arranged in the connecting piece, the handle shaft extends into and is restrained in the guide cavity to axially slide, the connecting piece can be driven to rotate by the rotation of the handle shaft, and a spring which enables the handle shaft to keep an outward extending trend; a selective positioning structure is arranged between the connecting piece and the handle shaft; when the handle body moves backwards to a state that the handle head is hidden in the second accommodating cavity, the handle shaft is locked by the selective positioning structure and cannot move forwards; under the state that the selective positioning structure is unlocked, the handle body moves forwards under the action of the spring until the handle head extends out of the second accommodating cavity.
The bottom wall of the second accommodating cavity is thinner, and the connecting piece has a certain length, so that the connecting piece can rotate and does not shake, a longer accommodating hole is needed to limit the connecting piece, the connecting piece is further improved, the bottom wall of the second accommodating cavity is fixedly provided with the guide sleeve in a penetrating manner, the connecting piece is arranged in the guide sleeve in a penetrating manner, the front end of the connecting piece is provided with the annular retaining shoulder which is matched with the front end face of the guide sleeve in a retaining manner, and the transmission part is abutted against the rear end face of the guide sleeve. The guide sleeve plays a role in supporting and restraining the installation of the connecting piece, and the connecting piece can be ensured to rotate stably.
In order to firmly fix the guide sleeve and the shell, the middle part of the guide sleeve is provided with an annular flange mounting part, a mounting hole is formed in the bottom wall of the second accommodating cavity, the guide sleeve is arranged in the mounting hole in a penetrating mode, and meanwhile the flange mounting part is fixed on the bottom wall of the second accommodating cavity through screws.
As an improvement, two radial inward convex guide blocks are arranged on the inner wall of the guide cavity of the connecting piece, and guide grooves matched with the guide blocks in a sliding mode are arranged on the corresponding sides of the handle shaft. The cooperation of guide block and guide way guarantees that the handle axle can only be relative connecting piece axial displacement for the rotation of handle axle can drive connecting piece and transmission part and rotate together. In addition, the guide block forms a blocking match on the rear inner wall of the groove, has a restraint effect on the forward movement of the handle shaft and prevents the handle shaft from separating from the guide cavity.
The selective positioning structure comprises a locking plate, the locking plate is rotatably connected to a connecting piece and can swing left and right, a lock column extending downwards is arranged at the front end of the locking plate, a cutting plane is arranged on a handle shaft, a concave cavity and a guide straight groove arranged along the axial direction are arranged on the cutting plane, the guide straight groove is positioned at the rear part of the concave cavity and communicated with the concave cavity, a raised locking platform is arranged in the middle of the bottom surface of the concave cavity, an inwards concave self-locking groove is arranged in the front of the locking platform, a carry guide groove is formed between the right side surface of the locking platform and the right side wall of the concave cavity, a retreat guide groove is formed between the left side surface of the locking platform and the left side wall of the concave cavity; the carry guiding groove can guide the lock cylinder into the self-locking groove, and the retreat guiding groove can guide the lock cylinder into the guiding straight groove from the self-locking groove.
The handle body is pushed backwards, the lock column moves forwards along the guide straight groove in the process that the handle body overcomes the spring and moves backwards, after the lock column enters the carry guide groove, the lock column moves to the tail end of the carry guide groove under the guide of the carry guide groove until the handle shaft cannot move backwards continuously, the lock column moves to the tail end of the carry guide groove, the handle body slightly moves forwards for a short distance under the action of the spring after hands are loosened, the lock column is just clamped into the self-locking groove, the handle shaft cannot move forwards any further due to the blocking of the self-locking groove, and the handle head is just accommodated in the second accommodating cavity and is not exposed; during unlocking, the handle body is slightly pushed backwards, the lock column is separated from the self-locking groove under the guide of the retreating guide groove, the hand is loosened, the handle body moves forwards under the action of the spring, and the lock column slides into the guide groove along the retreating guide groove until the handle body moves forwards under the action of the spring until the handle head extends out of the second accommodating cavity. The selective positioning structure has the advantages of simple structure and convenient operation.
As the improvement, the lock plate is rotatably connected to the peripheral wall of the connecting piece, a hole communicated with the guide cavity is formed in the side wall of the connecting piece, and the lock column extends into the guide straight groove after penetrating through the hole. The structure facilitates the assembly of the lock plate.
The bottom wall of the handle shaft is provided with an inwards concave groove, the spring is arranged in the groove, the front end of the spring is propped against the front part of the groove, and the rear end of the spring is propped against the rear wall of the guide cavity.
For convenient assembly, the handle head is detachably connected with the front end of the handle shaft through a screw, and the front end surface of the handle head is stuck with a decorative sheet. The decorative sheet not only plays a role in decoration, but also can shield the screw. The handle head is round, the round handle head is a structure which is commonly adopted, and the handle head can also be an L-shaped handle head. In order to facilitate holding, the periphery of the handle head is provided with lines which are convenient for holding.
Compared with the prior art, the utility model has the advantages of: the shell part of the panel and the electronic unlocking module adopt a split design, the electronic unlocking module can be an integrated block with a password input part and a fingerprint input part, the electronic unlocking module is restrained in a first containing cavity of the shell through a rib groove splicing structure and is fixed in the first containing cavity through a screw, meanwhile, the electronic unlocking module is spliced with a wiring socket fixed on a circuit board at the back of the shell through a wiring plug on the electronic unlocking module, the circuit board can be connected with an electromagnetic valve lock in a bolt structure of a power supply and a safe box through a lead, the circuit board part also adopts a split design, when the electronic unlocking module needs to be replaced, the electronic unlocking module is removed firstly, then the electronic unlocking module is moved to be separated from the restraint of the rib groove splicing structure, and the wiring plug is driven to be separated from the wiring socket, the electronic unlocking module is separated from the shell, and only a new electronic unlocking module, the electronic unlocking module can be an electronic unlocking module with a face recognition function or a card swiping function, during installation, the electronic unlocking module is restrained in the first accommodating cavity through the rib groove inserting structure, the flat cable plug and the flat cable socket are inserted and connected with each other at the moment, and finally the electronic unlocking module is fixed through the screw. The panel does not need to replace the whole shell (the shell does not need to be detached from the safe), and the panel of the safe can be upgraded and transformed, so that the transformation is more convenient and rapid, and the cost is low.
Drawings
Fig. 1 is a schematic perspective view of an embodiment of the present invention (with the handle head extending outward);
FIG. 2 is a schematic perspective view of the embodiment of the present invention (with the handle hidden inside);
fig. 3 is a perspective cross-sectional view of an embodiment of the present invention (with the handle head in an extended state);
FIG. 4 is an enlarged view of FIG. 3 at A;
fig. 5 is an exploded perspective view of an embodiment of the present invention;
fig. 6 is a schematic perspective view of an electronic unlocking module in an embodiment of the present invention;
fig. 7 is a schematic view of a three-dimensional structure of a selective positioning structure in an embodiment of the present invention;
FIG. 8 is a schematic perspective view of a handle shaft according to an embodiment of the present invention;
fig. 9 is a schematic perspective view of a connecting member according to an embodiment of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
As shown in fig. 1 to 9, it is a preferred embodiment of the present invention.
A panel of a split type electronic safety joint control safe box comprises a shell 1 fixed on a box door.
The utility model discloses a main improvement point lies in: the electronic unlocking device further comprises an electronic unlocking module 10, wherein the electronic unlocking module 10 in the embodiment is an integrated block with a password input part and a fingerprint input part, a flat cable plug 13 for electric connection is arranged at the bottom of the electronic unlocking module 10, the front end surface of the shell 1 is provided with a first concave containing cavity 11 for containing the electronic unlocking module, the back surface of the shell 1 is fixed with a circuit board 14 on which a flat cable socket 15 is arranged, and the flat cable socket 15 is exposed out of the bottom of the first accommodating cavity 11 for the flat cable plug 13 on the electronic unlocking module 10 arranged in the first accommodating cavity 11 to be inserted and matched, the flat cable plug 13 is arranged on the circuit board in the electronic unlocking module 10, a rib groove inserting structure is arranged between the electronic unlocking module 10 and the first accommodating cavity 11, under the state that electronic unlocking module 10 passes through muscle groove grafting structure connects in first holding chamber 11, rethread screw is fixed electronic unlocking module 10 in first holding chamber 11.
The rib groove inserting structure comprises a limiting rib 111 arranged on the left side wall and the right side wall of the first accommodating cavity 11 and a limiting groove 101 arranged on the left side wall and the right side wall of the electronic unlocking module 10 and in an L shape, an opening portion 102 of the limiting groove 101 faces backwards and can be used for the limiting rib to enter, the limiting rib 111 enters the limiting groove 101 from the opening portion 102 and then moves upwards relatively, a vertical groove portion 103 of the limiting groove 101 and the limiting rib 111 form a blocking fit, the electronic unlocking module 10 can slide up and down in the first accommodating cavity 11, the width of the electronic unlocking module 10 entering the first accommodating cavity 11 is matched with the width of the first accommodating cavity 11, and the periphery of the electronic unlocking module 10 is provided with a shielding edge 104 which is laterally convex and is used for shielding the first accommodating cavity 11.
The bottom of the first accommodating cavity 11 is provided with a connecting portion 112 protruding upwards, the connecting portion 112 is provided with a threaded hole 113, the electronic unlocking module 10 is provided with a through hole 105 corresponding to the threaded hole 113, a screw passes through the through hole 105 and then is in threaded connection with the threaded hole 113, the front end face of the electronic unlocking module 10 is detachably provided with a decorative cover 106 covering the through hole 105, and the decorative cover 106 is connected to the front end face of the electronic unlocking module 10 in a buckling mode.
The electronic unlocking module 10 is replaced as follows: the decoration cover 106 is detached, the screw is screwed out, the electronic unlocking module 10 is pushed upwards, the electronic unlocking module 10 moves upwards, the flat cable plug 13 is separated from the flat cable socket 15, meanwhile, the limiting rib 111 is located at the opening portion 102 position of the limiting groove 101, the electronic unlocking module 10 is separated from the restraint of the rib groove insertion structure, and therefore the electronic unlocking module 10 can be taken out of the first accommodating cavity 11. When the electronic unlocking module is replaced, a new electronic unlocking module 10 is arranged in the first accommodating cavity 11, the limiting rib 111 enters from the opening part 102 of the limiting groove 101, the electronic unlocking panel 10 moves downwards, the limiting rib 111 forms blocking matching along the vertical groove part 103 of the limiting groove 101, the electronic unlocking module 10 is restrained in the front and back direction, the flat cable plug 13 is inserted into the flat cable socket 15, the electronic unlocking module 10 can work after being connected successfully, then the flat cable plug passes through the through hole 105 and then is in threaded connection with the threaded hole 113, the electronic unlocking module 10 is fixed, and finally the decorative cover 106 is covered.
The handle body 2 is arranged at the lower part of the shell 1 in a penetrating way, the handle body 2 consists of a handle head 21 and a handle shaft 22 connected at the rear part of the handle head 21, the handle head 21 is detachably connected at the front end of the handle shaft 22 through a screw, and a decorative sheet 24 is adhered to the front end surface of the handle head 21. The handle head 21 is circular, and the periphery of the handle head 21 is provided with lines 211 convenient for holding by hands.
Shell 1 has and is used for holding the second holding chamber 12 of handle head 21, the diapire in second holding chamber 12 is worn to be equipped with and can 1 and around the rotatory connecting piece 3 of self axis relatively, 3 rear ends of connecting piece stretch out shell 1 and fixed with drive disk assembly 4, direction chamber 31 has in the connecting piece 3, handle axle 22 is the platykurtic, handle axle 22 stretches into and retrains and can slide in the axial of direction chamber 31, and handle axle 22's rotatory ability drives connecting piece 3 rotatory, it is equipped with two radial protruding guide blocks 32 in on the direction chamber 31 inner wall of connecting piece 3, handle axle 22's the side that corresponds is equipped with the guide way 23 with guide block 32 sliding fit. A spring 5 which enables the handle shaft 22 to keep extending trend is arranged in the guide cavity 31; the bottom wall of the handle shaft 22 is provided with an inward concave groove 222, the spring is arranged in the groove 222, the front end of the spring 5 is supported against the front part of the groove 222, and the rear end of the spring 5 is supported against the rear wall of the guide cavity 31. The diapire of second holding chamber 12 is worn to establish and is fixed with uide bushing 6, and connecting piece 3 wears to establish in uide bushing 6, and the front end of connecting piece 3 has the annular that keeps off the shoulder 33 of joining in marriage with the preceding terminal surface fender of uide bushing 6, and drive disk assembly 4 then supports and leans on the rear end face of uide bushing 6. The middle part of uide bushing 6 has annular flange mounting portion 61, and it has the mounting hole to open on the diapire of second holding chamber 12, and uide bushing 6 wears to establish in this mounting hole, and flange mounting portion 61 passes through the fix with screw on the diapire of second holding chamber 12 simultaneously.
A selective positioning structure is arranged between the connecting piece 3 and the handle shaft 22; when the handle body 2 moves backwards to the state that the handle head 21 is hidden in the second accommodating cavity 12, the handle shaft 22 is locked by the positioning structure and can not move forwards; in the state that the selective positioning structure is unlocked, the handle body 2 moves forwards under the action of the spring 5 until the handle head 21 extends out of the second accommodating cavity 12.
The selective positioning structure in the embodiment comprises a locking plate 7, the locking plate 7 is rotatably connected to the connecting piece 3 and can swing left and right, a locking column 71 extending downwards is arranged at the front end of the locking plate 7, a cutting plane 221 is arranged on the handle shaft 22, a concave cavity 8 and a guide straight groove 8a arranged along the axial direction are arranged on the cutting plane 221, the guide straight groove 8a is positioned at the rear part of the concave cavity 8 and communicated with the concave cavity, a convex locking platform 9 is arranged in the middle of the bottom surface of the concave cavity 8, an inwards concave self-locking groove 91 is arranged in front of the locking platform 9, a carry guide groove 8b is formed between the right side surface of the locking platform 9 and the right side wall of the concave cavity 8, a retreat guide groove 8c is formed between the left side surface of the locking platform 9 and the left side wall of the concave cavity 8, and both the carry guide; the carry guide groove 8b can guide the lock cylinder 71 into the self-lock groove 91, and the retreat guide groove 8c can guide the lock cylinder 71 from the self-lock groove 91 into the guide straight groove 8 a.
The locking plate 7 is rotatably connected to the peripheral wall of the connecting piece 3, a hole 34 communicated with the guide cavity 31 is formed in the side wall of the connecting piece 3, and the locking column 71 extends into the guide straight groove 8a after passing through the hole 34.
When the handle is operated, the handle body 2 is pushed backwards, in the process that the handle body 2 overcomes the spring 5 and moves backwards, the lock column 71 moves forwards along the guide straight groove 8a firstly, after the lock column 71 enters the carry guide groove 8b, the lock column 71 is guided by the carry guide groove 8b until the handle shaft 22 cannot move backwards continuously, at the moment, the lock column 71 moves to the tail end of the carry guide groove 8b, the handle body 2 slightly moves forwards for a short distance under the action of the spring 5 after the hand is released, the lock column 71 is just clamped in the self-locking groove 91, the handle shaft 22 is locked by the self-locking groove 91 and cannot move forwards any further, and the handle head 21 is just accommodated in the second accommodating cavity 12 and is not exposed; when unlocking, the handle body 2 is slightly pushed backwards, the locking column 71 is separated from the self-locking groove 91 under the guide of the retreat guide groove 8c, the hand is loosened, the handle body 2 moves forwards under the action of the spring 5, and the locking column 71 slides into the guide groove 8a along the retreat guide groove 8c until the handle body 2 moves forwards under the action of the spring 5 until the handle head 21 extends out of the second accommodating cavity 12.
It should be noted that in the description of the present embodiment, the terms "front, back", "left, right", "up, down", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for convenience of description of the present invention and simplification of description, but does not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.

Claims (10)

1. The utility model provides a split type electronic security joint control safe panel, includes and is used for fixing shell (1) on the chamber door, its characterized in that: the electric unlocking device further comprises an electronic unlocking module (10), a flat cable plug (13) for electric connection is arranged at the bottom of the electronic unlocking module (10), the front end surface of the shell (1) is provided with a first concave containing cavity (11) for containing the electronic unlocking module, the back surface of the shell (1) is fixed with a circuit board (14) on which a flat cable socket (15) is arranged, and the flat cable socket (15) exposes the bottom of the first accommodating cavity (11) for the insertion and the matching of a flat cable plug (13) on the electronic unlocking module (10) arranged in the first accommodating cavity (11), a rib groove inserting structure is arranged between the electronic unlocking module (10) and the first containing cavity (11), under the condition that the electronic unlocking module (10) is connected in the first accommodating cavity (11) through the rib groove inserting structure, and the electronic unlocking module (10) is fixed in the first accommodating cavity (11) through a screw.
2. The panel of the split type electronic safety joint control safe box of claim 1, wherein: spacing muscle (111) on the lateral wall about locating first holding chamber (11) and locating electron unblock module (10) about, be spacing groove (101) of L shape on the lateral wall, opening (102) of spacing groove (101) set up towards the back and can supply spacing muscle to get into, move up relatively again after opening (102) gets into spacing groove (101) at spacing muscle (111), vertical slot part (103) and spacing muscle (111) of spacing groove (101) form the fender and join in marriage, electron unblock module (10) can slide from top to bottom in first holding chamber (11), and the periphery of electron unblock module (10) has the shielding limit (104) that the side is protruding to be used for hiding first holding chamber (11).
3. The panel of the split type electronic safety joint control safe box of claim 2, wherein: the width of the part, entering the first accommodating cavity (11), of the electronic unlocking module (10) is matched with the width of the first accommodating cavity (11).
4. The panel of the split type electronic safety joint control safe box of claim 1, wherein: the bottom of first holding chamber (11) has bellied connecting portion (112) that makes progress, and it has screw hole (113) to open on connecting portion (112), be equipped with on electronic unblock module (10) and punch hole (105) that correspond with screw hole (113), the screw pass punch hole (105) back with screw hole (113) threaded connection, install on the preceding terminal surface of electronic unblock module (10) with dismantling and be used for decorating lid (106) that cover perforation (105).
5. The panel of the split type electronic safety joint control safe box according to any one of claims 1 to 4, characterized in that: the handle is characterized in that a handle body (2) is arranged on the lower portion of the shell (1) in a penetrating mode, the handle body (2) is composed of a handle head (21) and a handle shaft (22) connected to the rear portion of the handle head (21), the shell (1) is provided with a second accommodating cavity (12) used for accommodating the handle head (21), a connecting piece (3) capable of rotating relative to the shell (1) and around the axis of the shell is arranged on the bottom wall of the second accommodating cavity (12) in a penetrating mode, the rear end of the connecting piece (3) extends out of the shell (1) and is connected with a transmission part (4), a guide cavity (31) is arranged in the connecting piece (3), the handle shaft (22) extends into and is restrained in axial sliding in the guide cavity (31), the connecting piece (3) can be driven to rotate by rotation of the handle shaft (22), and a spring (5) enabling the handle shaft (22) to; a selective positioning structure is arranged between the connecting piece (3) and the handle shaft (22); when the handle body (2) moves backwards to a state that the handle head (21) is hidden in the second accommodating cavity (12), the handle shaft (22) is locked by the selective positioning structure and cannot move forwards; under the state that the selective positioning structure is unlocked, the handle body (2) moves forwards under the action of the spring (5) until the handle head (21) extends out of the second accommodating cavity (12).
6. The panel of the split type electronic safety joint control safe box of claim 5, wherein: a guide sleeve (6) is fixedly arranged on the bottom wall of the second accommodating cavity (12) in a penetrating manner, the connecting piece (3) is arranged in the guide sleeve (6) in a penetrating manner, an annular retaining shoulder (33) which is matched with the front end surface of the guide sleeve (6) in a retaining manner is arranged at the front end of the connecting piece (3), and the transmission part (4) is abutted against the rear end surface of the guide sleeve (6); the middle part of uide bushing (6) has annular flange installation department (61), it has the mounting hole to open on the diapire in second holding chamber (12), uide bushing (6) are worn to establish in this mounting hole, simultaneously flange installation department (61) pass through the fix with screw on the diapire in second holding chamber (12).
7. The panel of the split type electronic safety joint control safe box of claim 5, wherein: two radial inward convex guide blocks (32) are arranged on the inner wall of a guide cavity (31) of the connecting piece (3), and a guide groove (23) matched with the guide blocks (32) in a sliding mode is arranged on the corresponding side of the handle shaft (22).
8. The panel of the split type electronic safety joint control safe box of claim 5, wherein: the selective positioning structure comprises a locking plate (7), the locking plate (7) is rotatably connected on the connecting piece (3) and can swing left and right, the front end of the locking plate (7) is provided with a locking column (71) extending downwards, the handle shaft (22) is provided with a cutting plane (221), the cutting plane (221) is provided with a cavity (8) and a guide straight groove (8a) arranged along the axial direction, the guide straight groove (8a) is positioned at the rear part of the cavity (8) and communicated with the cavity, the middle part of the bottom surface of the cavity (8) is provided with a raised locking platform (9), the front of the locking platform (9) is provided with an inwards concave self-locking groove (91), a carry guide groove (8b) is formed between the right side surface of the locking platform (9) and the right side wall of the cavity (8), a retreat guide groove (8c) is formed between the left side surface of the locking platform (9) and the left side wall of the cavity (8), and the carry guide groove (8b) and the retreat guide groove (8c) are both communicated with the top of the guide; the carry guiding groove (8b) can guide the lock cylinder (71) into the self-locking groove (91), and the retreat guiding groove (8c) can guide the lock cylinder (71) from the self-locking groove (91) into the guiding straight groove (8 a).
9. The panel of the split type electronic safety joint control safe box of claim 8, wherein: the locking plate (7) is rotatably connected to the peripheral wall of the connecting piece (3), a hole (34) communicated with the guide cavity (31) is formed in the side wall of the connecting piece (3), and the lock column (71) penetrates through the hole (34) and then extends into the guide straight groove (8 a).
10. The panel of the split type electronic safety joint control safe box of claim 5, wherein: the bottom wall of the handle shaft (22) is provided with an inwards concave groove (222), the spring is arranged in the groove (222), the front end of the spring (5) is propped against the front part of the groove (222), and the rear end of the spring (5) is propped against the rear wall of the guide cavity (31).
CN201822017788.3U 2018-12-03 2018-12-03 Split electronic safety joint control safe panel Active CN210195554U (en)

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Application Number Priority Date Filing Date Title
CN201822017788.3U CN210195554U (en) 2018-12-03 2018-12-03 Split electronic safety joint control safe panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822017788.3U CN210195554U (en) 2018-12-03 2018-12-03 Split electronic safety joint control safe panel

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CN210195554U true CN210195554U (en) 2020-03-27

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CN201822017788.3U Active CN210195554U (en) 2018-12-03 2018-12-03 Split electronic safety joint control safe panel

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109339630A (en) * 2018-12-03 2019-02-15 宁波盛威卓越安全设备有限公司 The safe joint control safe panel of separated electronic

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109339630A (en) * 2018-12-03 2019-02-15 宁波盛威卓越安全设备有限公司 The safe joint control safe panel of separated electronic

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