CN219716171U - Pop-up mechanism of cashbox - Google Patents

Pop-up mechanism of cashbox Download PDF

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Publication number
CN219716171U
CN219716171U CN202321047008.4U CN202321047008U CN219716171U CN 219716171 U CN219716171 U CN 219716171U CN 202321047008 U CN202321047008 U CN 202321047008U CN 219716171 U CN219716171 U CN 219716171U
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China
Prior art keywords
unlocking
piece
locking
clamping
connecting piece
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CN202321047008.4U
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Chinese (zh)
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请求不公布姓名
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Zhangzhou Meiken Technology Co ltd
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Zhangzhou Meiken Technology Co ltd
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Abstract

The cashbox ejecting mechanism comprises an actuating body, wherein a drawer reset spring is connected to the actuating body, an electronic driving assembly is arranged in the actuating body, the actuating body comprises an upper cover and a bottom shell, a clamping hook piece, an unlocking connecting piece and a tension spring are arranged on the bottom shell, the clamping hook piece and the unlocking connecting piece are respectively sleeved and supported at the middle part of a connecting column, and the connecting column is supported and positioned between the upper cover and the bottom shell; the unlocking connecting piece is positioned behind the clamping hook piece, the front side of the clamping hook piece is provided with a hooking part capable of buckling the locking piece, and two ends of the tension spring are respectively hung on the clamping hook piece and the unlocking connecting piece; the movable hook buckle part is used for locking and unlocking the locking plate, the back side edge of the hook buckle piece is provided with an unlocking stop part and a locking stop part, the front side edge of the unlocking connecting piece is provided with a clamping part, and the clamping part is respectively clamped in the locking stop part or the unlocking stop part when the hook buckle piece is locked or unlocked. The utility model has simple structure, reasonable design, good structural stability and stable and reliable operation.

Description

Pop-up mechanism of cashbox
Technical Field
The utility model relates to cashier equipment, in particular to an ejection mechanism of a cashbox.
Background
The cashbox mainly comprises a box body and a drawer, wherein the drawer can enter and exit the box body, an ejecting mechanism for ejecting the drawer is arranged between the box body and the drawer, the existing cashbox mainly comprises the box body and the drawer, the drawer is movably inserted in the box body, and the drawer ejecting mechanism is arranged between the box body and the drawer. However, the pop-up mechanism mostly adopts a manual mechanism and an electric mechanism as opening mechanisms of the cashbox, and the existing manual opening mechanisms comprise a manual unlocking pull rod, a manual unlocking connecting rod and other components, so that the structure is complex. In addition, when the existing ejection mechanism closes the drawer, if the force for closing the drawer is too large, the automatic unlocking connecting rod can be pushed far, and the resetting speed of the automatic unlocking connecting rod is lower than that of the unlocking hook, so that the automatic unlocking connecting rod cannot be clamped on the unlocking hook to lock the drawer.
In order to simplify the structure, some pop-up mechanisms are provided with hooks and unlocking connecting pieces, and the unlocking connecting pieces are driven by a pushing plate or an electromagnet. However, the locking hook and the unlocking connecting piece are used for realizing automatic locking and unlocking actions, and the linkage structure between the locking hook and the unlocking connecting piece is still complex. In addition, the clamping hook and the unlocking connection piece are hinged on a frame and are contacted with the supporting surface of the frame, the friction force is large during movement, energy is consumed, if an electromagnet is adopted, the unlocking connection piece can be driven by the electromagnet with high power, so that the large friction force is overcome, and the energy consumption is increased. In addition, the hook and the unlocking connecting piece with the traditional structure are made to be lighter and thinner, and are easy to deform after long-term impact stress. The present case results therefrom.
Disclosure of Invention
The utility model aims to provide a cashbox ejection mechanism which is simple in structure, reasonable in design, good in structural stability and stable and reliable in operation.
In order to achieve the above object, the solution of the present utility model is:
the utility model provides an ejector mechanism of cashbox, set up between the drawer and the box of cashbox, the dorsal part of drawer is fixed with a locking plate, ejector mechanism includes being connected with a drawer reset spring on an executive body, be equipped with the electronic drive subassembly that can electronic drive unblanked in the executive body, executive body includes upper cover and drain pan combination and forms a casing that has the cavity, electronic drive subassembly installs on the drain pan, still install trip piece on the drain pan, unblank connection piece, extension spring, trip piece and unblank connection piece respectively activity riveting are in the middle part of a spliced pole, the spliced pole supports and positions between upper cover and drain pan; defining one side of the actuating body, which faces the drawer, as the front end, the unlocking connecting piece is positioned behind the clamping hook piece, a hooking part capable of buckling the locking piece is arranged at the front side of the clamping hook piece, two ends of the tension spring are respectively hung on the clamping hook piece and the unlocking connecting piece, a first hanging point formed on the clamping hook piece by the tension spring is positioned at the opposite side of the hooking part, a second hanging point formed at the other end of the tension spring is positioned at one side of the rear side edge of the unlocking connecting piece, and the other side of the rear side edge is connected to the electric driving assembly; the movable hook buckle part is used for locking and unlocking the locking plate, the back side edge of the hook buckle piece is provided with an unlocking stop part and a locking stop part, the front side edge of the unlocking connecting piece is provided with a clamping part, and the clamping part is respectively clamped in the locking stop part or the unlocking stop part when the hook buckle piece is locked or unlocked.
Further, the connecting column comprises a base and a shaft sleeve, a connecting shaft part and a positioning rod are sequentially arranged on the top surface of the base in a protruding mode, the clamping hook piece or the unlocking connecting piece can be rotatably sleeved on the connecting shaft part and then supported on the top surface of the base, and the shaft sleeve is sleeved on the positioning rod and limited above the clamping hook piece or the unlocking connecting piece; the top end of the positioning rod extends out of the shaft sleeve and forms a riveting part, a positioning boss is downwards protruded from the bottom surface of the base, positioning holes are respectively formed in the upper cover and the bottom shell, corresponding to the positioning boss and the riveting part, the positioning boss is clamped into the positioning holes, the riveting part is riveted on the corresponding positioning holes, and the clamping hook piece or the unlocking connecting piece is pressed on the base to limit.
Further, the unlocking stop part and the locking stop part are both positioned between the first hanging joint and the hooking part, the unlocking stop part is positioned at one side close to the first hanging joint, and the locking stop part is positioned at one side close to the hooking part; the lower edge of the clamping hook piece between the unlocking and stopping part and the locking and stopping part forms a first arc-shaped surface, the lower edge of the clamping hook piece between the locking and stopping part and the hooking and buckling part forms a second arc-shaped surface, and the upper edge of the front side of the unlocking connecting piece forms a third arc-shaped surface which is positioned on one side of the clamping and stopping part.
Further, the connecting column for supporting and connecting the trip piece is a first connecting column, the second arc surface is an arc surface drawn by taking the first connecting column as a center point, the connecting column for supporting and connecting the unlocking connecting piece is a second connecting column, and the second connecting column is positioned on one side of the unlocking connecting piece opposite to the abutting part.
Further, the electronic driving assembly comprises an electromagnet capable of electrically driving the unlocking connecting piece and a micro switch, the rear side edge of the unlocking connecting piece outwards extends to form a pulling part which is connected to the electromagnet, and the pulling part drives the unlocking connecting piece to rotate anticlockwise around the second connecting column for a stroke after the electromagnet is sucked, so that the clamping part is switched from being clamped at the locking stopping part to being clamped at the unlocking stopping part.
Further, the hook buckle part comprises a hook, a bayonet and a lug are formed behind the hook, the bayonet is a U-shaped notch formed between the hook and the lug, a locking opening is formed in the locking plate, and the hook penetrates into the locking opening to drive the rear side edge of the locking plate to be clamped in the bayonet.
Further, a first boss and a second boss are respectively arranged on the side edges of the clamping hook piece and the unlocking connecting piece, and a first hanging point and a second hanging point of the tension spring are respectively arranged on the first boss and the second boss.
Further, the actuating body is matched with a transmission component capable of manually driving the unlocking connecting sheet, the transmission component comprises a transmission strip limited on the bottom surface of the drawer, the front panel of the drawer is provided with a lock body, the front end of the transmission strip is positioned on one side of a lock tongue of the lock body, the lock tongue pushes the transmission strip after the lock body is opened, and the rear end of the transmission strip pushes the unlocking connecting sheet, so that the blocking part is switched from being blocked to being blocked at the blocking stop part.
Further, a second boss in the unlocking connection piece protrudes out of a first through hole formed in the bottom shell, the unlocking connection piece is used for unlocking the clamping hook piece after the second boss is stirred, a second through hole is formed in the bottom surface of the cashbox body and located at the outer side of the first through hole, and a cover is locked at the outer side of the second through hole.
After the structure is adopted, in the execution body of the ejection mechanism, the clamping hook piece and the unlocking connecting piece are hinged on the connecting column, so that the problems that the surface contact with the support surface of the support of the execution body is required and the friction force is large are solved, the connecting column support is positioned between the upper cover and the bottom shell to form a stable support, and the clamping hook piece and the unlocking connecting piece are not easy to deform. In addition, the linkage matching structure between the clamping hook piece and the unlocking connecting piece is simple, the design is more reasonable, the operation is simple and convenient, and the production cost can be reduced.
Drawings
FIG. 1 is a schematic view of the structure of the cash register box according to the present utility model;
FIG. 2 is a schematic perspective view of the present utility model;
FIG. 3 is an exploded view of the structure of the present utility model;
FIG. 4 is a schematic view of the present utility model in a locked state;
FIG. 5 is a schematic view of the structure of the utility model in an unlocked state;
FIG. 6 is a cross-sectional view of the actuator body of the present utility model (showing the connecting posts riveted to the top and bottom covers);
FIG. 7 is a schematic diagram of the structure of the actuator body and the transmission assembly according to the present utility model;
fig. 8 is a schematic view of the bottom structure of the cashbox according to the present utility model (showing the second boss protruding from the bottom surface of the cashbox).
Detailed Description
In order to further explain the technical scheme of the utility model, the utility model is explained in detail by specific examples.
As shown in figure 1, the utility model discloses an ejection mechanism of a cashbox, the ejection mechanism is arranged between a drawer (not shown in the figure) of the cashbox and a box body 1, a locking plate 12 is fixed on the back side of the drawer, the ejection mechanism comprises an actuator body 2, a drawer reset spring 11 is connected to the actuator body 2, the actuator body 2 can be arranged on a bottom plate of the cashbox body 1, one end of the drawer reset spring 11 is fixed on the actuator body 2, and the other end of the drawer reset spring is propped against the rear end face of the drawer (not shown in the figure). An electronic driving component capable of electronically driving unlocking can be arranged in the executing body 2, and the electronic driving component 3 in the embodiment comprises an electromagnet 31 and a micro switch 32 capable of electronically driving the unlocking connection piece, which is the prior art and is not described in detail.
Referring to fig. 1 to 6, in the present utility model, an actuator body 2 includes an upper cover 21 and a bottom case 22 combined to form a housing having a cavity, an electronic driving assembly 3 is mounted on the bottom case 22, and a hook piece 4, an unlocking connection piece 5, and a tension spring 6 are further mounted on the bottom case 22. Wherein, trip piece 4 and unblanking connection piece 5 cup joint respectively and support in the middle part of a spliced pole 7, and spliced pole 7 supports between upper cover 21 and drain pan 22. Specifically, as shown in fig. 3 and 6, the connecting post 7 includes a base 71 and a shaft sleeve 72, a connecting shaft 711 and a positioning rod 712 are sequentially protruding from the top surface of the base 71, the hook piece 4 or the unlocking connecting piece 5 is rotatably sleeved on the connecting shaft 711 and then supported on the top surface of the base 71 (the shaft hole is formed in the hook piece 4 or the unlocking connecting piece), and the shaft sleeve 72 is sleeved on the positioning rod 712 and is limited above the hook piece 4 or the unlocking connecting piece 5. The top end of the positioning rod 712 extends out of the shaft sleeve and forms a riveting part 7121, a positioning boss 711 protrudes downwards from the bottom surface of the base 71, positioning holes 211 and 221 are respectively formed in the upper cover 21 and the bottom shell 22 and correspond to the positioning boss and the riveting part, the positioning boss 711 is clamped into the positioning holes, and the riveting part 7121 can be riveted on the corresponding positioning holes, so that the hook piece 4 or the unlocking connecting piece 5 is pressed on the base 71 to limit. The clamping hook piece 4 and the unlocking connecting piece 5 are hinged on the connecting column 71 in a sleeving manner, and the defect of high friction force due to the fact that the clamping hook piece 4 and the unlocking connecting piece are in surface contact with the support surface of the executing body bracket is overcome through pressing limiting; meanwhile, the connecting column 7 can be a column body with longer height and thicker diameter, the clamping hook piece 4 and the unlocking connecting piece 5 can be made thicker according to requirements, and as the connecting column 7 is supported between the upper cover 21 and the bottom shell 22, the two ends form positioning and fixing, a stable support is formed, the stress concentration point of the clamping hook piece 4 or the unlocking connecting piece can be formed, and the clamping hook piece 4 and the unlocking connecting piece 5 are not easy to deform.
For the hook piece 4 and the unlocking connection piece 5, combining the illustration, one side of the actuating body 2 facing the drawer can be defined as the front end, the unlocking connection piece 5 is positioned at the rear of the hook piece 4, the front side of the hook piece 4 is provided with a hook and buckle part capable of buckling the locking piece, and two ends of the tension spring 6 are respectively hung on the hook piece 4 and the unlocking connection piece 5. In this embodiment, the hooking portion includes a hook 41, a bayonet 42 and a lug 43 are formed behind the hook 41, and the bayonet 42 is a U-shaped slot formed between the hook 41 and the lug 43. A locking opening (not shown) is formed in the locking plate 12 fixed on the back side of the drawer, and the locking hook 41 can just penetrate into the locking opening to drive the back side edge of the locking plate to be locked in the bayonet 42, so that the drawer is locked. The first hanging point 601 formed on the hook piece 4 by the tension spring 6 is located at the opposite side of the hook portion, the second hanging point 602 formed at the other end of the tension spring 6 is located at one of the rear sides of the unlocking connection piece 5, and the other side of the rear side of the unlocking connection piece 5 is connected to an electric driving component, and can deflect and realize movement in the up-down direction after being driven by the electric driving component. In this embodiment, a first boss 40 and a second boss 50 are respectively disposed on the sides of the hook piece 4 and the unlocking connection piece 5, and a first hanging point 601 and a second hanging point 602 of the tension spring 6 are respectively disposed on the first boss 40 and the second boss 50, so as to facilitate installation of the tension spring 6.
In order to form the locking, as shown in fig. 4 and 5, the back side of the hook piece 4 is formed with an unlocking stop portion 44 and a locking stop portion 45, the unlocking stop portion 44 and the locking stop portion 45 may respectively form an inner corner on the back side, the front side of the unlocking connecting piece 5 is provided with a locking portion 51, the locking portion 51 may form a convex corner which may be locked in the unlocking stop portion 44 and the locking stop portion 45, and the locking portion 51 may be locked in the locking stop portion 45 or the unlocking stop portion 44 when the hook piece 4 is locked or unlocked. The corners of the unlocking stop portion 44, the locking stop portion 45 and the blocking portion 51 form arc surfaces so as to facilitate movement. The unlocking stop portion 44 and the locking stop portion 45 are both located between the first hooking point 601 and the hooking portion, the unlocking stop portion 44 is located on a side close to the first hooking point 601, and the locking stop portion 45 is located on a side close to the hooking portion. The lower edge of the hook piece 4 between the unlocking stop portion 44 and the locking stop portion 45 forms a first arc surface 46, the lower edge of the hook piece 4 between the locking stop portion 45 and the hook portion forms a second arc surface 47, and the upper edge of the front side of the unlocking connecting piece 4 forms a third arc surface 52 on one side of the locking portion 51. As shown in fig. 4, even if the force for closing the drawer is large, the hook piece 4 continues to rotate clockwise after being pushed, at this time, the lug 43 on the hook piece 4 can only move along the third arc surface 52 in the hook portion of the hook piece, and the unlocking connection piece 5 is not affected, so that adverse effects are avoided when the hook piece 4 is impacted, and the hook piece 4 is ensured to be clamped into the locking piece 12 to lock the drawer. The connecting column capable of being positioned for supporting and connecting the hook piece 4 is a first connecting column, the second arc-shaped surface 47 is an arc-shaped surface drawn by taking the first connecting column as a center point, the connecting column for supporting and connecting the unlocking connecting piece 5 is a second connecting column, the second connecting column is positioned on one side of the unlocking connecting piece 5 opposite to the clamping part and is balanced for supporting, and a supporting column can be further arranged on the bottom surface of one side of the unlocking connecting piece with the clamping part 51. Meanwhile, the rear side edge of the unlocking connection piece 5 is extended outwards to form a pulling part 53 connected to the electromagnet 31, and according to the change of fig. 4 to 5, the pulling part 53 can drive the unlocking connection piece 5 to rotate anticlockwise around the second connection column for a stroke after the electromagnet 31 is sucked, the blocking part in the unlocking connection piece 5 moves downwards and then resets by means of elastic reset of the tension spring 6, the blocking part 51 is switched from blocking at the blocking stop part 45 to blocking at the unlocking stop part 44, the blocking limit of the locking piece is released by the blocking piece 4, and the drawer can be ejected by means of the drawer reset spring 11.
Further, the actuating body 2 is further matched with a transmission component 8 capable of manually driving the unlocking connecting sheet, unlocking is additionally performed in a manual mode, the transmission component 8 comprises a transmission bar 81 limited on the bottom surface of the drawer, the transmission bar is limited on the bottom surface of the drawer through a pressing bar, and the transmission bar can move left and right for a distance. The drawer front panel is provided with the lock body 82, the front end of the transmission bar is positioned on one side of the lock tongue 83 of the lock body 82, the lock tongue 83 pushes the transmission bar 81 after the lock body is opened, the rear end of the transmission bar 81 can push the unlocking connecting piece 5, and the clamping and abutting part 51 of the unlocking connecting piece 5 is switched from being clamped at the locking and stopping part 45 to being clamped at the unlocking and stopping part 44, so that unlocking is realized. As shown in fig. 7, the end of the driving bar 81 forms a push,
further, in order to prevent the electronic driving component from being failed and unable to unlock, and unable to unlock through the transmission component (the transmission component is failed or keyless), as shown in fig. 7 and 8 of the structure diagram, the second boss 50 in the unlocking connection piece 5 protrudes out of the bottom shell 22, a first through hole 222 for protruding the second boss 50 is correspondingly arranged on the bottom surface of the bottom shell 22, the through hole 222 forms a space for the second boss 50 to stir, and the unlocking connection piece 5 can also push the unlocking connection piece 5 after the second boss 50 is stirred, thereby unlocking the hook piece 4. Meanwhile, a second through hole 13 is arranged on the bottom surface of the cashbox body 1 and is positioned outside the first through hole 222, a cover cap 14 is locked on the outer side of the second through hole 13, and the cover cap 14 is locked on the bottom surface of the cashbox body for preventing false dialing and theft.
When the drawer of the cashbox is pushed into the box body, the locking plate 12 at the back side of the drawer is propped against the clamping hook 41 of the clamping hook piece, the impacted clamping hook 41 moves inwards, at the moment, the first arc-shaped surface 46 of the clamping hook piece 4 presses backwards, the clamping hook rotates clockwise, the hooking and buckling part moves inwards until the clamping hook penetrates into the locking opening of the locking plate 12, and meanwhile the clamping and buckling part 51 is clamped into the locking and blocking part 45, so that locking is realized, and the drawer is locked. On the contrary, when the drawer needs to be opened, the electromagnet is started, after the pulling part 53 of the unlocking connection piece 5 is driven to be sucked, the unlocking connection piece 5 is deflected anticlockwise around the second connection column, the unlocking connection piece 5 moves downwards, one end with the clamping part 51 moves downwards and then resets, meanwhile, the hooking part of the clamping piece 5 moves outwards, the clamping part 51 is switched from being clamped at the locking stopping part 45 to being clamped at the unlocking stopping part 44, the clamping piece 4 releases the restriction on the locking piece, and the drawer can be ejected by means of the drawer reset spring 11.
After the structure is adopted, in the execution body of the ejection mechanism, the clamping hook piece and the unlocking connecting piece are hinged on the connecting column, so that the problems that the surface contact with the support surface of the support of the execution body is required and the friction force is large are solved, the connecting column support is positioned between the upper cover and the bottom shell to form a stable support, and the clamping hook piece and the unlocking connecting piece are not easy to deform. In addition, the linkage matching structure between the clamping hook piece and the unlocking connecting piece is simple, the design is more reasonable, the operation is simple and convenient, and the production cost can be reduced.
The above examples and drawings are not intended to limit the form or form of the present utility model, and any suitable variations or modifications thereof by those skilled in the art should be construed as not departing from the scope of the present utility model.

Claims (9)

1. The utility model provides an ejection mechanism of cashbox, sets up between the drawer and the box of cashbox, and the dorsal part of drawer is fixed with a locking plate, and ejection mechanism includes to be connected with a drawer reset spring on an executive body, is equipped with the electronic drive subassembly that can electronic drive unblanked in the executive body, its characterized in that: the executing body comprises an upper cover and a bottom shell which are combined to form a shell with a cavity, the electronic driving assembly is arranged on the bottom shell, a clamping hook piece, an unlocking connecting piece and a tension spring are also arranged on the bottom shell, the clamping hook piece and the unlocking connecting piece are respectively sleeved and supported at the middle part of a connecting column, and the connecting column is supported and positioned between the upper cover and the bottom shell; defining one side of the actuating body, which faces the drawer, as the front end, the unlocking connecting piece is positioned behind the clamping hook piece, a hooking part capable of buckling the locking piece is arranged at the front side of the clamping hook piece, two ends of the tension spring are respectively hung on the clamping hook piece and the unlocking connecting piece, a first hanging point formed on the clamping hook piece by the tension spring is positioned at the opposite side of the hooking part, a second hanging point formed at the other end of the tension spring is positioned at one side of the rear side edge of the unlocking connecting piece, and the other side of the rear side edge is connected to the electric driving assembly; the movable hook buckle part is used for locking and unlocking the locking plate, the back side edge of the hook buckle piece is provided with an unlocking stop part and a locking stop part, the front side edge of the unlocking connecting piece is provided with a clamping part, and the clamping part is respectively clamped in the locking stop part or the unlocking stop part when the hook buckle piece is locked or unlocked.
2. A cashbox ejection mechanism as in claim 1 wherein: the connecting column comprises a base and a shaft sleeve, a connecting shaft part and a positioning rod are sequentially arranged on the top surface of the base in a protruding mode, the clamping hook piece or the unlocking connecting piece is rotatably sleeved on the connecting shaft part and then supported on the top surface of the base, and the shaft sleeve is sleeved on the positioning rod and limited above the clamping hook piece or the unlocking connecting piece; the top end of the positioning rod extends out of the shaft sleeve and forms a riveting part, a positioning boss is downwards protruded from the bottom surface of the base, positioning holes are respectively formed in the upper cover and the bottom shell, corresponding to the positioning boss and the riveting part, the positioning boss is clamped into the positioning holes, the riveting part is riveted on the corresponding positioning holes, and the clamping hook piece or the unlocking connecting piece is pressed on the base to limit.
3. A cashbox ejection mechanism as in claim 1 wherein: the unlocking stop part and the locking stop part are both positioned between the first hanging point and the hooking part, the unlocking stop part is positioned at one side close to the first hanging point, and the locking stop part is positioned at one side close to the hooking part; the lower edge of the clamping hook piece between the unlocking and stopping part and the locking and stopping part forms a first arc-shaped surface, the lower edge of the clamping hook piece between the locking and stopping part and the hooking and buckling part forms a second arc-shaped surface, and the upper edge of the front side of the unlocking connecting piece forms a third arc-shaped surface which is positioned on one side of the clamping and stopping part.
4. A cashbox ejection mechanism as in claim 3 wherein: the connecting column used for supporting and connecting the clamping hook piece is defined as a first connecting column, the second arc surface is an arc surface drawn by taking the first connecting column as a center point, the connecting column used for supporting and connecting the unlocking connecting piece is defined as a second connecting column, and the second connecting column is positioned on one side of the unlocking connecting piece opposite to the clamping part.
5. A cashbox ejection mechanism as in any one of claims 1 to 4 wherein: the electronic driving assembly comprises an electromagnet capable of electrically driving the unlocking connecting piece and a micro switch, wherein a pulling part is outwards extended from the rear side edge of the unlocking connecting piece and connected to the electromagnet, and the pulling part drives the unlocking connecting piece to rotate anticlockwise around the second connecting column for a stroke after the electromagnet is sucked, so that the clamping part is switched from being clamped at the locking stopping part to being clamped at the unlocking stopping part.
6. A cashbox ejection mechanism as in claim 1 wherein: the hook buckle part comprises a hook, a bayonet and a lug are formed behind the hook, the bayonet is a U-shaped notch formed between the hook and the lug, a locking notch is formed in the locking plate, the hook penetrates into the locking notch, and the rear side edge of the locking plate is driven to be clamped in the bayonet.
7. A cashbox ejection mechanism as in claim 1 wherein: the side edges of the clamping hook piece and the unlocking connecting piece are respectively provided with a first boss and a second boss, and the first hanging point and the second hanging point of the tension spring are respectively arranged on the first boss and the second boss.
8. A cashbox ejection mechanism as in claim 1 wherein: the actuating body is matched with a transmission assembly capable of manually driving the unlocking connecting sheet, the transmission assembly comprises a transmission strip limited on the bottom surface of the drawer, a lock body is arranged on the front panel of the drawer, the front end of the transmission strip is positioned on one side of a lock tongue of the lock body, the lock tongue pushes the transmission strip after the lock body is opened, and the rear end of the transmission strip pushes the unlocking connecting sheet, so that the blocking part is switched from being blocked to being blocked at the locking stopping part.
9. A cashbox ejection mechanism as in claim 7 or 8 wherein: the second boss in the unlocking connection piece protrudes out of a first through hole formed in the bottom shell, the unlocking connection piece is used for unlocking the clamping hook piece after the second boss is stirred, a second through hole is formed in the bottom surface of the cashbox body and located at the outer side of the first through hole, and a cover is locked at the outer side of the second through hole.
CN202321047008.4U 2023-05-05 2023-05-05 Pop-up mechanism of cashbox Active CN219716171U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321047008.4U CN219716171U (en) 2023-05-05 2023-05-05 Pop-up mechanism of cashbox

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321047008.4U CN219716171U (en) 2023-05-05 2023-05-05 Pop-up mechanism of cashbox

Publications (1)

Publication Number Publication Date
CN219716171U true CN219716171U (en) 2023-09-19

Family

ID=87999220

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321047008.4U Active CN219716171U (en) 2023-05-05 2023-05-05 Pop-up mechanism of cashbox

Country Status (1)

Country Link
CN (1) CN219716171U (en)

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