CN107578577B - Locking mechanism, card reading device, reception device and self-service financial terminal - Google Patents

Locking mechanism, card reading device, reception device and self-service financial terminal Download PDF

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Publication number
CN107578577B
CN107578577B CN201710880523.3A CN201710880523A CN107578577B CN 107578577 B CN107578577 B CN 107578577B CN 201710880523 A CN201710880523 A CN 201710880523A CN 107578577 B CN107578577 B CN 107578577B
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China
Prior art keywords
groove
guide groove
sliding block
locking mechanism
connecting part
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CN201710880523.3A
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CN107578577A (en
Inventor
陈晓轩
吕响红
张武松
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Shenzhen Yihua Computer Co Ltd
Shenzhen Yihua Time Technology Co Ltd
Shenzhen Yihua Financial Intelligent Research Institute
Original Assignee
Shenzhen Yihua Computer Co Ltd
Shenzhen Yihua Time Technology Co Ltd
Shenzhen Yihua Financial Intelligent Research Institute
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Priority to CN201710880523.3A priority Critical patent/CN107578577B/en
Publication of CN107578577A publication Critical patent/CN107578577A/en
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Abstract

The invention particularly relates to a locking mechanism, a card reading device, a customer receiving device and a financial self-service terminal. The locking mechanism comprises a supporting plate, a connecting part and a first sliding block, wherein a first guide groove is formed in the supporting plate, a locking area is arranged at a position, close to the end portion, of the first guide groove, the connecting part is further rotatably arranged on the supporting plate, one end of the connecting part is connected with a part to be locked, a first open groove and a second open groove which are communicated in parallel are formed in the other end of the connecting part, the second groove bottom is closer to the rotating center of the connecting part than the first groove bottom, the distance between the first guide groove and the rotating center is gradually increased or is reduced and then increased along the direction from the middle area of the first guide groove to the locking area, and the first sliding block capable of sliding along the inner portion of the first guide groove is arranged in the first guide groove. When the first sliding block is in the locking area in the locking mechanism provided by the invention, the technical problem that the part to be locked is easy to open under the action of external force can be solved.

Description

Locking mechanism, card reading device, reception device and self-service financial terminal
Technical Field
The invention relates to the technical field of financial equipment, in particular to a locking mechanism, a card reading device, a customer receiving device and a financial self-service terminal.
Background
With the popularization of electronic devices, the financial industry has begun to adopt a large number of financial self-service terminals such as automated teller machines. An ATM (Automatic Teller Machine) is a highly precise mechatronic device, which uses a magnetic code card or a smart card to realize self-service of financial transactions, instead of the work of bank counter personnel. The cardholder can use a credit card or a savings card to realize the operations of withdrawing cash, inquiring balance, transferring funds and the like based on the ATM according to the set password, and in addition, the cardholder can also perform the operations of other related services such as cash deposit, check deposit, bankbook subsidy, intermediate services and the like.
Some modules in the ATM have higher safety requirements, such as a cash deposit and withdrawal door, and the cash deposit and withdrawal door is not allowed to be opened by a user by external force except for automatic control of the ATM; for another example, the card reading device does not allow a customer to insert a card-like object at will, such as a business card, and such illegal actions can cause machine abnormality and failure, which brings unnecessary economic loss.
However, the current ATM modules with higher safety requirements are usually plugged structurally at the possibly unsafe positions or monitored by using micro-motion tact switches, but these methods are not ideal for improving the safety performance of the modules.
Disclosure of Invention
In view of the above, a first object of the present invention is to provide a locking mechanism, which solves the technical problem that a member to be locked is easy to be opened by an external force.
The second objective of the present invention is to provide a card reading device, which is used to solve the technical problem that the gate is easy to open under the action of external force, so as to improve the safety performance of the card reading device.
A third object of the present invention is to provide a passenger receiving device, which is used to solve the technical problem that a banknote door is easy to be opened by an external force, so as to improve the safety performance of the passenger receiving device.
The fourth purpose of the invention is to provide a financial self-service terminal with high safety performance.
In order to achieve the purpose, the invention adopts the following technical scheme:
a locking mechanism comprising:
the supporting plate is provided with a first guide groove, and a locking area is arranged at the position, close to the end part, of the first guide groove;
the connecting part is rotatably connected with the supporting plate, one end of the connecting part is connected with a part to be locked, the other end of the connecting part is provided with a first open slot and a second open slot which are parallel and communicated, the first slot bottom of the first open slot and the second slot bottom of the second open slot are step-shaped, the second slot bottom is close to the rotating center of the connecting part compared with the first slot bottom, and the distance between the first guide slot and the rotating center is gradually increased or is firstly reduced and then increased along the middle area of the first guide slot towards the locking area; and
the first sliding block is arranged in the first guide groove and can slide along the first guide groove;
when the first sliding block moves from the middle area to the locking area, the first sliding block drives the connecting part to rotate along a first direction, the first sliding block is clamped into the first open slot from the second open slot, so that when external force is applied to enable the part to be locked to rotate along the direction opposite to the first direction, the first sliding block is clamped by the side wall of the first guide groove together at the first slot bottom, and the part to be locked is prevented from rotating.
Further, the method also comprises the following steps:
and the two ends of the spring are respectively connected with the supporting plate and the first sliding block, and the spring pulls the first sliding block to slide towards the locking area.
Further, the method also comprises the following steps:
and the driving part is electrically connected with the first sliding block and drives the first sliding block to slide along the first guide groove.
Further, the method also comprises the following steps:
the controller is electrically connected with the driving component and used for controlling the operation of the driving component; and
and the sensor is electrically connected with the controller and used for sending a signal to the controller when detecting that the first sliding block slides to the locking area, and the controller controls the driving part to stop running after receiving the signal.
Further, the second groove bottom is located on one side of the guide groove close to the rotation center.
Furthermore, the first groove bottom is connected with the second groove bottom through a connecting wall, and the joint of the first groove bottom and the connecting wall is arranged at an obtuse angle.
Further, the first sliding block is made of rubber.
A card reading device comprising:
the locking mechanism as described above;
the part to be locked is a gate, one of the gate and one end of the connecting part is provided with a third opening groove, the other one is provided with a second sliding block, and the second sliding block is arranged in the third opening groove and can slide along the third opening groove; and
a card insertion member comprising:
a card inserting opening; and
the second guide way, with the plug-in card mouth switches on mutually, the free end of gate is located in the second guide way, just the gate can be followed the second guide way slides, and the realization is right the switching of plug-in card mouth.
A reception apparatus comprising:
the locking mechanism as described above; and
the part to be locked is a cash door.
A financial self-service terminal comprising a card reading device as described above and/or a customer reception device as described above.
The invention has the beneficial effects that:
the invention provides a locking mechanism which comprises a supporting plate, a connecting part and a first sliding block, wherein a first guide groove is formed in the supporting plate, a locking area is arranged at the position, close to the end part, of the first guide groove, the connecting part is further rotatably arranged on the supporting plate, one end of the connecting part is connected with a part to be locked, a first open groove and a second open groove which are communicated side by side are formed in the other end of the connecting part, the first groove bottom of the first open groove and the second groove bottom of the second open groove are step-shaped, the second groove bottom is closer to the rotating center of the connecting part than the first groove bottom, the distance between the first guide groove and the rotating center is gradually increased or is reduced and then increased along the direction from the middle area of the first guide groove to the locking area, and a first sliding block capable of sliding along the inside of the first guide groove is arranged in the first guide groove. When the first sliding block in the locking mechanism provided by the invention moves from the middle area to the locking area, the first sliding block drives the connecting part to rotate along the first direction, and the first sliding block is clamped into the first opening groove from the second opening groove. When external force causes the to-be-locked part to rotate along the direction opposite to the first direction, the first sliding block is clamped by the side walls of the first groove bottom and the first guide groove together, the to-be-locked part is prevented from rotating, and the technical problem that the to-be-locked part is easy to open under the action of the external force can be solved.
Drawings
FIG. 1 is a first schematic structural diagram of a locking mechanism provided by the present invention;
FIG. 2 is a second schematic structural view of the locking mechanism provided by the present invention;
FIG. 3 is a third schematic structural view of the locking mechanism provided by the present invention;
FIG. 4 is a fourth schematic structural view of the locking mechanism provided by the present invention;
FIG. 5 is a connection diagram of the drive unit, controller and sensors;
FIG. 6 is a first schematic structural diagram of a card reading device according to the present invention;
FIG. 7 is a second schematic structural diagram of a card reading device according to the present invention;
FIG. 8 is a third schematic structural diagram of a card reading device according to the present invention;
FIG. 9 is a schematic structural diagram of a financial self-service terminal provided by the invention.
In the figure:
300-a card reading device; 400-a guest receiving device;
1-a locking mechanism;
11-a support plate; 12-a connecting member; 13-a first slider; 14-a spring; 15-connecting walls; 16-a controller; 17-a sensor; 18-a third open slot; 19-a gate; 20-a card insertion component; 21-a drive member; 22-an insert;
111-a first guide groove; 121-a first open slot; 122-a second open slot; 191-a second slider; 201-a card slot; 202-a second guide groove;
1211-first groove bottom; 1221-second trough bottom.
Detailed Description
In order to make the technical scheme of the invention better understood by those skilled in the art, the technical scheme of the invention is further explained by the specific embodiments in the following combined with the attached drawings.
As shown in fig. 1 to 4, the locking mechanism 1 provided in this embodiment includes a supporting plate 11, a connecting part 12, and a first slider 13, wherein the supporting plate 11 is provided with a first guiding groove 111, and a locking region is disposed at a position of the first guiding groove 111 near an end portion, the supporting plate 11 is further provided with the connecting part 12 in a rotating manner, one end of the connecting part 12 is connected to a component to be locked, and the other end is provided with a first opening groove 121 and a second opening groove 122 that are parallel and communicated, a first groove bottom 1211 of the first opening groove 121 and a second groove bottom 1221 of the second opening groove 122 are step-shaped, the second groove bottom 1221 is closer to a rotation center of the connecting part 12 than the first groove bottom 1211, a distance between the first guiding groove 111 and the rotation center is gradually increased or is first decreased and then increased in a direction from a middle area of the first guiding groove 111 to the locking region, and the first slider 13 capable of sliding along an inside of the first guiding groove 111 is disposed in the first guiding groove 111. When the first slider 13 in the locking mechanism 1 provided by the present invention moves from the middle region to the locking region, the first slider 13 drives the connecting component 12 to rotate in the clockwise direction (i.e., the first direction rotates) with reference to fig. 1, and the first slider 13 is clamped into the first opening groove 121 from the second opening groove 122. When an external force is applied to rotate the to-be-locked component in the counterclockwise direction (i.e. the direction opposite to the first direction) based on fig. 1, the first groove bottom 1211 and the side wall of the first guide groove 111 clamp the first slider 13 together, so as to prevent the to-be-locked component from rotating, and thus the technical problem that the to-be-locked component is easily opened under the action of the external force can be solved.
In this embodiment, as shown in fig. 1 to 4, the locking mechanism 1 further includes a spring 14, two ends of the spring 14 are respectively connected to the support plate 11 and the first slider 13, the spring 14 can pull the first slider 13 to slide toward the locking area, and when the spring 14 is in a balanced state, the first slider 13 can be kept at the position of the locking area, so as to prevent the to-be-locked component from being opened under the action of an external force. In addition, the spring 14 can also enable the first sliding block 13 to automatically reset, and when no other external force acts on the first sliding block 13, the spring 14 can enable the first sliding block 13 to reset to a locking area, so that the locking device is simple and convenient, and saves energy.
Further, in the present embodiment, the locking mechanism 1 further includes a driving member 21 electrically connected to the first slider 13, and the driving member 21 may be an electromagnetic valve, a motor, or the like, and is configured to drive the first slider 13 to slide along the first guide groove 111. The driving member 21 can drive the first slider 13 to slide towards the locking area, so that the first slider 13 is located at the locking area. Illustratively, when the supporting plate 11 is disposed along the vertical direction, the locking mechanism 1 may be disposed with the spring 14 and the driving part 21 at the same time, the driving part 21 may enable the first slider 13 to be quickly positioned in the locking area, the pulling force provided by the spring 14 to the first slider 13 may counteract the gravity of the first slider 13 itself, so that the first slider 13 is kept in the locking area, thereby achieving the effect that the locking mechanism 1 is prevented from rotating due to external force. In addition, the driving part 21 is arranged to drive the first slider 13 to slide in a direction away from the locking area, the first slider 13 slides for a distance and then enters the second opening groove 122 from the first opening groove 121 (as shown in fig. 2), and after the first slider 13 abuts against the side wall of the second opening groove 122 (as shown in fig. 3), the first slider 13 continues to slide again, so that the connecting part 12 can be driven to rotate counterclockwise around the rotation center (as shown in fig. 4), and the opening of the part to be locked, which is arranged at one end of the connecting part 12, is realized.
Specifically, in the present embodiment, as shown in fig. 1 to 4, the first groove bottom 1211 and the second groove bottom 1221 are connected by the connecting wall 15, and a connection position between the first groove bottom 1211 and the connecting wall 15 forms an obtuse angle, so that when the first slider 13 slides from the first opening groove 121 to the second opening groove 122, or slides from the second opening groove 122 to the first opening groove 121, the sliding of the first slider 13 is smooth, and the abrasion of the first slider 13 can be effectively reduced.
Specifically, in this embodiment, as shown in fig. 1 to 4, the second groove bottom 1221 is located on one side of the guide groove close to the rotation center, so that when the first slider 13 slides in a direction away from the locking area, the first slider 13 does not abut against the second groove bottom 1221, and the phenomenon that the to-be-locked component is locked in the opening process does not occur.
Furthermore, in the present embodiment, as shown in fig. 5, the locking mechanism 1 further includes a controller 16 and a sensor 17 electrically connected to each other, wherein the controller 16 is electrically connected to the driving member 21. Illustratively, the sensor 17 is a position sensor, the sensor 17 is configured to send a signal to the controller 16 when detecting that the first slider 13 slides into the locking area, and the controller 16 controls the driving part 21 to stop operating after receiving the signal, so that the first slider 13 stays in the locking area. In addition, the sensor 17 can also be used for detecting the position of the part to be locked, which is opened to the maximum extent, when the locking part is opened to the maximum extent, the sensor 17 sends a trigger signal to the controller 16, and the controller 16 controls the driving part 21 to stop running after receiving the trigger signal, so that the damage of the locking mechanism 1 caused by the excessive sliding of the first slider 13 can be avoided. In addition, the controller 16 can control the traveling position of the first slider 13 to stop the first slider 13 at a desired position.
In the embodiment, the first sliding block 13 is made of rubber, and due to the good abrasion resistance of the rubber, when the first sliding block 13 is clamped by the side walls of the first groove bottom 1211 and the first guide groove 111 for multiple times and collides with the connecting part 12 during sliding, the service life of the first sliding block 13 can be effectively prolonged, and the maintenance of the locking mechanism 1 can be reduced.
As shown in fig. 6 to 8, the present embodiment further provides a card reading device 300, where the card reading device 300 includes a gate 19 (i.e. a component to be locked), a card insertion component 20, and the locking mechanism 1, where one end of the connecting component 12 is opened with a third opening slot 18, the gate 19 is provided with a second slider 191, and the second slider 191 is disposed in the third opening slot 18 and can slide along the third opening slot 18. The card insertion part 20 includes a card insertion opening 201 and a second guide groove 202 communicated with the card insertion opening 201, the free end of the shutter 19 is located in the second guide groove 202, and the shutter 19 can slide along the second guide groove 202. By controlling the connecting part 12 to rotate around the rotation center, the second slider 191 is driven to slide along the third opening groove 18, and the gate 19 slides along the second guide groove 202, so that the opening and closing of the bayonet 201 by the gate 19 are controlled. In addition, a third opening groove may be formed in the gate, a second slider may be formed in the connecting member, the second slider may be disposed in the third opening groove and may slide along the third opening groove, and the opening and closing of the bayonet by the gate may be controlled by controlling the connecting member.
In the present embodiment, as shown in fig. 6, when the first slider 13 is located in the locking region, the gate 19 blocks the card slot 201, and the insert 22 located outside the card slot 201 cannot enter the card insertion member 20 through the card slot 201, even if an external force prys the gate 19, the gate 19 can be effectively prevented from being opened by the external force due to the provision of the locking mechanism 1 as mentioned above, thereby improving the safety performance of the card reading device 300.
The embodiment also provides a customer reception device, which comprises a cash door and the locking mechanism 1, and can solve the technical problem that the cash door is easy to open under the action of external force, so that the safety performance of the customer reception device is improved.
As shown in fig. 9, the present embodiment further provides a financial self-service terminal including any one or both of the card reading device 300 and the customer service device 400 mentioned above, so as to improve the security performance of the financial self-service terminal.
It should be noted that the card reading device, the customer receiving device and the financial self-service terminal in the embodiment belong to the same technical concept as the locking mechanism. Therefore, details that are not described in detail in the card reading device, the customer receiving device, and the financial self-service terminal may refer to the locking mechanism in this embodiment, and are not described herein again.
It is noted that the foregoing illustrates and describes the general principles and features of the present invention, together with the advantages thereof. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the present invention, but that various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined by the appended claims and their equivalents.

Claims (10)

1. A locking mechanism, comprising:
the supporting plate (11) is provided with a first guide groove (111), and a locking area is arranged at the position, close to the end part, of the first guide groove (111);
the connecting part (12) is rotatably connected with the supporting plate (11), one end of the connecting part (12) is connected with a part to be locked, the other end of the connecting part is provided with a first open groove (121) and a second open groove (122) which are side by side and communicated, the first groove bottom (1211) of the first open groove (121) and the second groove bottom (1221) of the second open groove (122) are step-shaped, the second groove bottom (1221) is closer to the rotating center of the connecting part (12) than the first groove bottom (1211), and the distance between the first guide groove (111) and the rotating center is gradually increased or is reduced and then increased along the direction from the middle area of the first guide groove (111) to the locking area; and
a first slider (13) which is provided in the first guide groove (111) and is slidable along the first guide groove (111);
when the first sliding block (13) moves from the middle area to the locking area, the first sliding block (13) drives the connecting part (12) to rotate along a first direction, the first sliding block (13) is clamped into the first opening groove (121) from the second opening groove (122), so that when an external force is applied to enable the part to be locked to rotate along a direction opposite to the first direction, the first sliding block (13) is clamped by the first groove bottom (1211) and the side wall of the first guide groove (111) together, and the part to be locked is prevented from rotating;
a driving part (21) which is an electromagnetic valve or a motor.
2. The latch mechanism of claim 1, further comprising:
the two ends of the spring (14) are respectively connected with the supporting plate (11) and the first sliding block (13), and the spring (14) pulls the first sliding block (13) to slide towards the locking area.
3. Locking mechanism according to claim 2, characterized in that said actuating member (21) is electrically connected to said first slider (13) to actuate said first slider (13) to slide along said first guide slot (111).
4. The latch mechanism of claim 3, further comprising:
a controller (16) electrically connected to the driving member (21) for controlling the operation of the driving member (21); and
the sensor (17) is electrically connected with the controller (16), the sensor (17) is used for detecting that the first sliding block (13) slides to the locking area and sending a signal to the controller (16), and the controller (16) controls the driving part (21) to stop running after receiving the signal.
5. Locking mechanism according to any of claims 1-4, characterized in that the second groove bottom (1221) is located at the side of the guide groove near the centre of rotation.
6. Locking mechanism according to one of claims 1 to 4, characterized in that the first groove base (1211) is connected to the second groove base (1221) by a connecting wall (15), the connection of the first groove base (1211) to the connecting wall (15) being arranged at an obtuse angle.
7. Locking mechanism according to any of claims 1 to 4, characterized in that the first slider (13) is made of rubber.
8. A card reading device, comprising:
the locking mechanism (1) according to any one of claims 1 to 7;
the part to be locked is a gate (19), one of the gate (19) and one end of the connecting part (12) is provided with a third opening groove (18), the other one is provided with a second sliding block (191), and the second sliding block (191) is arranged in the third opening groove (18) and can slide along the third opening groove (18); and
card insertion member (20) comprising:
a card slot (201); and
the second guide groove (202) is communicated with the inserting opening (201), the free end of the gate (19) is located in the second guide groove (202), and the gate (19) can slide along the second guide groove (202) to realize opening and closing of the inserting opening (201).
9. A guest receiving device, comprising:
the locking mechanism (1) according to any one of claims 1 to 7; and
the part to be locked is a cash door.
10. Financial self-service terminal, comprising a card reading device (300) according to claim 8 and/or a guest receiving device (400) according to claim 9.
CN201710880523.3A 2017-09-26 2017-09-26 Locking mechanism, card reading device, reception device and self-service financial terminal Active CN107578577B (en)

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CN108171870B (en) * 2018-02-07 2024-02-06 深圳怡化电脑股份有限公司 Passenger receiving module and self-service financial equipment

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