Recycling bin and passbook self-service device
By combining the recycling channel, the recycling pressure roller group, and the guide bracket design of the recycling bin, the problems of disordered stacking and insufficient capacity of passbook media in passbook self-service equipment are solved, and the orderly stacking and capacity improvement of passbook media are achieved.
Patent Information
- Application Number
- CN202410165136.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-05
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2044-02-05
AI Technical Summary
The existing self-service passbook recycling bins are prone to folding, bending, and clogging when receiving passbooks of different sizes or with different textures, which affects capacity and maintenance frequency.
A recycling bin was designed, which adopts a combination structure of recycling channel, recycling counter-pressure roller group and guide bracket. Through the extension of the lower plate of recycling channel and the guide surface design of guide bracket, the storage book media is ensured to be stacked in an orderly manner. By using the clamping of recycling counter-pressure roller group and the support of guide bracket, storage book media of different newness and hardness can be orderly entered into the receiving cavity.
It effectively reduces the probability of disorder when passbook media are stacked, significantly reduces the maintenance frequency of the recycling bin, and increases the actual capacity of the recycling bin.
Smart Images

Figure CN118025689B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of self-service equipment, and particularly relates to a recycling box and a passbook self-service equipment. BACKGROUND
[0002] In general, the passbooks recycled by the recycling box of the passbook self-service equipment are both new passbooks and old passbooks recycled from customers, and the new and old degrees, damage conditions and soft and hard degrees of the passbooks may all be different. Under this premise, the recycling box is required to simultaneously receive passbooks of various types stacked in various ways. However, most of the existing recycling boxes are prone to disorder, bending and filling of the recycling space when receiving passbooks of different sizes or different soft and hard degrees, which seriously affects the capacity and maintenance frequency of the recycling box. SUMMARY
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a recycling box and a passbook self-service equipment, which realizes the orderly stacking of passbook media of different new and old degrees and different soft and hard degrees into the recycling box, effectively reduces the probability of disorder of the passbook media when stacked, significantly reduces the maintenance frequency of the recycling box, and improves the actual capacity of the recycling box.
[0004] In a first aspect, the present application provides a recycling box applied to a passbook self-service equipment, comprising:
[0005] a shell;
[0006] a box body movably mounted to the shell, the box body defining a containing cavity;
[0007] a recycling channel, an outlet of the recycling channel being in communication with the containing cavity;
[0008] a recycling pair of compression wheels, a compression point of the recycling pair of compression wheels being located at the outlet of the recycling channel, an end of a channel lower plate of the recycling channel close to the recycling channel outlet extending to protrude from the recycling pair of compression wheels, the recycling pair of compression wheels being configured to drive passbook media to enter the containing cavity through the recycling channel;
[0009] a guide support mounted to the bottom of the containing cavity for supporting the passbook media, a guide surface of the guide support being higher than the bottom of the containing cavity.
[0010] According to the recycling bin of this application, through the above-mentioned recycling channel, recycling pressure roller group and guide bracket, and the structural design of the channel lower plate extending to protrude from the recycling pressure roller group, it is possible to receive passbook media of different ages and softness and hardness into the recycling bin and stack them in an orderly manner, effectively reducing the probability of disorder when stacking passbook media. In the long-term use period, it can significantly reduce the maintenance frequency of the recycling bin, and at the same time, it can receive more passbook media in the same space, thereby increasing the actual capacity of the recycling bin.
[0011] According to one embodiment of this application, the recycling counter-pressure roller assembly is configured to drive the passbook medium toward the receiving cavity until the first end of at least one passbook medium abuts against the end face of the receiving cavity, and the tail end of at least one passbook medium moves to above the upper roller in the recycling counter-pressure roller assembly, and the support position of at least one passbook medium and the guide bracket is located on the side of the binding line of the passbook medium away from the recycling channel outlet.
[0012] According to one embodiment of this application, the lower channel plate extends from one end near the outlet of the recycling channel to protrude beyond the rim of the lower wheel in the recycling counterpressure wheel assembly.
[0013] According to one embodiment of this application, the upper plate of the recycling channel has a guide portion at one end near the outlet of the recycling channel, and the guide portion is inclined upward toward the upper wheel of the recycling counterpressure roller assembly.
[0014] According to one embodiment of this application, the guide portion does not protrude beyond the rim of the upper wheel in the recovery counterpressure wheel assembly.
[0015] According to one embodiment of this application, one end of the guide bracket near the recycling channel is connected to the bottom of the receiving cavity, and the other end is suspended. When the first end of the passbook medium abuts against the guide surface of the guide bracket, the recycling counter-pressure roller assembly is used to drive the first end of the passbook medium to move along the guide surface in a direction away from the recycling channel.
[0016] According to one embodiment of this application, the guide bracket includes a first segment, a second segment, and a third segment connected in sequence, wherein adjacent segments are bent, the first segment is connected to the bottom of the receiving cavity, the second segment and the third segment are suspended, and the first segment has the guide surface.
[0017] According to one embodiment of this application, the recycling bin further includes:
[0018] A stop member is slidably installed on the housing to form the end face of the receiving cavity, used to stop the beginning of the storage medium;
[0019] An elastic element is connected between the stop and the housing, and is located on the side of the stop away from the recycling channel.
[0020] According to one embodiment of this application, the stop member includes a first stop segment and a second stop segment connected together, the second stop segment being located above the first stop segment, and the second stop segment being bent toward the guide bracket relative to the first stop segment.
[0021] According to one embodiment of this application, the housing includes:
[0022] A housing frame, wherein the housing frame and the upper sealing plate of the outer shell define the receiving cavity;
[0023] A guide plate is mounted on the housing frame and defines a groove for sliding engagement with the stop member.
[0024] According to one embodiment of this application, the recycling bin further includes:
[0025] A first sensor and a second sensor are arranged, with the first sensor positioned above the upper wheel of the recycling counterpressure roller assembly and the second sensor positioned below the lower wheel of the recycling counterpressure roller assembly. The first sensor and the second sensor form a photoelectric circuit to detect whether the tail end of the passbook medium has left the recycling channel.
[0026] According to one embodiment of this application, the recycling bin further includes:
[0027] The third sensor and the fourth sensor are arranged separately within the housing and located above the receiving cavity;
[0028] A prism is arranged below the receiving cavity, and the third sensor, the fourth sensor and the prism form a through-beam circuit for detecting whether a passbook medium is stored in the receiving cavity.
[0029] According to one embodiment of this application, the recycling bin further includes:
[0030] A fifth sensor, located at the top of the cavity, is used to detect whether the cavity is full.
[0031] Secondly, this application provides a passbook self-service device, which includes:
[0032] A punching device, used to punch holes in the magnetic strip of a passbook medium;
[0033] A printing device for printing on passbook media;
[0034] A passbook box, which defines a storage space for storing passbook media;
[0035] A recycling bin, which defines a space for storing discarded passbook media;
[0036] A transmission component is connected between the punching device, the printing device, the passbook box, and the recycling box for transferring the passbook medium between the punching device, the printing device, the passbook box, and the recycling box.
[0037] According to the passbook self-service equipment of this application, the above-mentioned recycling bin setting enables the acceptance of passbook media of different ages and textures into the recycling bin and their orderly stacking, effectively reducing the probability of disorder when stacking passbook media. Over a long period of use, it can significantly reduce the maintenance frequency of the recycling bin, and at the same time, it can accept more passbook media in the same space, thereby increasing the actual capacity of the recycling bin.
[0038] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0039] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0040] Figure 1 This is a schematic diagram of the structure of the recycling bin provided in the embodiments of this application;
[0041] Figure 2 This is one of the schematic diagrams illustrating the recycling process of the passbook medium provided in the embodiments of this application;
[0042] Figure 3 This is the second schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0043] Figure 4 This is the third schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0044] Figure 5 This is the fourth schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0045] Figure 6 This is the fifth schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0046] Figure 7 This is the sixth schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0047] Figure 8 This is the seventh schematic diagram of the passbook medium recycling process provided in the embodiments of this application;
[0048] Figure 9 This is one of the stacked schematic diagrams of multiple passbook media provided in the embodiments of this application;
[0049] Figure 10 This is the second schematic diagram of the stacking of multiple passbook media provided in the embodiments of this application.
[0050] Figure label:
[0051] Recycling bin 100;
[0052] Outer casing 110, upper sealing plate 111;
[0053] Box body 120, box frame 121, guide plate 122,
[0054] Recycling channel 130, upper channel plate 131, guide section 1311, lower channel plate 132.
[0055] Recover the counter-pressure roller assembly 140, upper roller 141, and lower roller 142;
[0056] Guide bracket 150, first section 151, guide surface 1511, second section 152, third section 153.
[0057] Stop component 160, first stop section 161, second stop section 162.
[0058] Elastic component 170, prism 180;
[0059] First sensor 191, second sensor 192, third sensor 193, fourth sensor 194, fifth sensor 195;
[0060] Passbook medium 1 2, Passbook medium 2 3, Passbook medium 3 4, Passbook medium 4 5, Passbook medium 5 6. Detailed Implementation
[0061] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0062] This application discloses a recycling bin 100, which is used in passbook self-service equipment.
[0063] The following is for reference. Figures 1-10 Describes a recycling bin 100 according to an embodiment of this application.
[0064] In some embodiments, such as Figure 1 As shown, the recycling bin 100 includes: an outer shell 110, a bin body 120, a recycling channel 130, a recycling counter-pressure roller assembly 140, and a guide bracket 150.
[0065] The housing 120 is movably mounted on the outer shell 110, and the housing 120 defines a receiving cavity; the outlet of the recycling channel 130 is connected to the receiving cavity; the counter-pressure point of the recycling counter-pressure roller assembly 140 is located at the outlet of the recycling channel 130, and the lower channel plate 132 of the recycling channel 130 extends from one end near the outlet of the recycling channel 130 to protrude from the recycling counter-pressure roller assembly 140, which is configured to drive the storage bag medium through the recycling channel 130 into the receiving cavity; the guide bracket 150 is installed at the bottom of the receiving cavity, and the guide bracket 150 is used to support the storage bag medium, with the guide surface 1511 of the guide bracket 150 being higher than the bottom of the receiving cavity.
[0066] like Figure 1 As shown, the box 120 can be along Figure 1 The device is slidably mounted on the housing 110 in the left and right directions. The recycling channel 130 can be installed on the housing 110, and the inlet of the recycling channel 130 can extend outside the housing 110. The outlet of the recycling channel 130 can extend into the receiving cavity. The upper wheel 141 of the recycling counterpressure wheel assembly 140 can be arranged on the upper channel plate 131 of the recycling channel 130, and the lower wheel 142 of the recycling counterpressure wheel assembly 140 can be arranged on the lower channel plate 132 of the recycling channel 130. The recycling counterpressure wheel assembly 140 can be used to clamp the passbook medium and drive the passbook medium into the receiving cavity. The guide surface 1511 of the guide bracket 150 can be inclined and can face the recycling channel 130.
[0067] In the recovery counterpressure roller assembly 140, one of the upper roller 141 and the lower roller 142 can be the driving roller and the other can be the driven floating roller, or it can be the driving floating roller with driving force. For example, in some embodiments, the lower roller 142 in the recovery counterpressure roller assembly 140 is the driving roller and the upper roller 141 in the recovery counterpressure roller assembly 140 is the driving floating roller. Its power is transmitted from the transmission shaft where the lower roller 142 is located through gear meshing.
[0068] The power for the recovery counter-pressure roller assembly 140 is externally connected to the drive wheel via gears, ensuring that the upper wheel 141 and lower wheel 142 always rotate in opposite directions at the same speed without slippage. This prevents the passbook media conveyed by the recovery counter-pressure roller assembly 140 from slipping and becoming stuck in the recovery channel 130 due to resistance within the recovery box 100. Simultaneously, a one-way bearing can be installed at the end of the shaft containing the drive wheel in the recovery counter-pressure roller assembly 140, ensuring that the upper wheel 141 and lower wheel 142 can only rotate in the direction driving the passbook media into the receiving cavity, and cannot rotate in the reverse direction. This prevents the passbook media from being re-entered into the recovery channel 130.
[0069] In actual implementation, such as Figures 2-5 As shown, when the passbook medium 2 enters the recycling box 100 through the recycling channel 130, the recycling counterweight roller assembly 140 clamps the passbook medium 2. Under the influence of the rigidity of the passbook medium 2 itself, the passbook medium 2 will move along the tangential direction of the pressing point between the upper roller 141 and the lower roller 142 of the recycling counterweight roller assembly 140. Under the guidance of the lower plate 132 of the recycling channel 130, the head end of the passbook medium 2 will land on the guide surface 1511 of the guide bracket 150. The pressure roller assembly 140 continues to drive the passbook medium 2 along the tangential direction of the pressure points of the upper roller 141 and the lower roller 142 in the passbook assembly 140. Under the guidance of the driving force and the guide surface 1511, the head end of the passbook medium 2 can move upward along the guide surface 1511 until it passes the highest point of the guide bracket 150. Under the clamping and pushing of the upper roller 141 and the lower roller 142 in the passbook assembly 140, the passbook medium 2... The head end finally reaches the end of the receiving cavity and stops against the wall of the receiving cavity end. The tail end of the storage medium 2 gradually moves to the point where it disengages from the pressure point between the upper wheel 141 and the lower wheel 142 of the recovery pressure roller group 140. At this time, the storage medium 2 loses its forward pushing power. Under the obstruction of the end of the receiving cavity, the storage medium 2 does not continue to move forward. At the same time, the lower plate 132 of the recovery channel 130 protrudes out of the lower wheel 142 of the recovery pressure roller group 140 and abuts against the storage medium 2. The tail end of the passbook medium 2 moves upward until it abuts against the rim of the upper wheel 141 in the recycling counterweight wheel set 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counterweight wheel set 140 are still rotating. The rim of the upper wheel 141 in the recycling counterweight wheel set 140 drives the tail end of the passbook medium 2 to rise upward, so that the tail end of the passbook medium 2 rests on the rim of the upper wheel 141 in the recycling counterweight wheel set 140. Thus, the passbook medium 2 is completely stored in the recycling box 100.
[0070] like Figures 6-8As shown, when the second passbook medium 3 enters the recycling box 100 through the recycling channel 130, the recycling counter-pressure roller assembly 140 clamps the second passbook medium 3. Under the influence of the stiffness of the second passbook medium 3 itself, the second passbook medium 3 will move along the tangential direction of the pressing point between the upper roller 141 and the lower roller 142 in the recycling counter-pressure roller assembly 140. Under the guidance of the lower plate 132 of the recycling channel 130, the first end of the second passbook medium 3 will fall on the guide surface 1511 of the guide bracket 150, and the recycling counter-pressure roller assembly 140 will continue to... The second type of storage medium 3 moves along the tangential direction of the pressing point between the upper wheel 141 and the lower wheel 142 in the recovery pressing wheel set 140. Under the guidance of the driving force and the guide surface 1511, the first end of the second type of storage medium 3 can move upward along the guide surface 1511 until it passes the highest point of the guide bracket 150. Under the clamping and pushing of the upper wheel 141 and the lower wheel 142 in the recovery pressing wheel set 140, the first end of the second type of storage medium 3 finally reaches the end of the receiving cavity and stops at the end of the receiving cavity. Under the obstruction of the end of the receiving cavity, the tail end of the second storage medium 3 gradually moves to the point where it disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recovery pressing wheel group 140. At this point, the second storage medium 3 loses its forward pushing force. Under the frictional resistance of the first storage medium 2 and the clamping resistance formed by the first storage medium 2 and the guide bracket 150, the second storage medium 3 does not continue to move forward. At the same time, the lower plate 132 of the recovery channel 130 protrudes from the lower wheel 142 of the recovery pressing wheel group 140. Partially pressing against the tail end of the passbook medium 3 causes the tail end of the passbook medium 3 to move upward until it stops against the rim of the upper wheel 141 in the recycling counterpressure wheel set 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counterpressure wheel set 140 are still rotating. The rim of the upper wheel 141 in the recycling counterpressure wheel set 140 drives the tail end of the passbook medium 3 to rise upward, and finally the tail end of the passbook medium 3 rests on the rim of the upper wheel 141 in the recycling counterpressure wheel set 140. At this point, the passbook medium 3 is completely stored in the recycling box 100.
[0071] The stacked form of passbook media 1, 2, 3, and 4 can be referenced. Figure 9 The stacked form of passbook media 1, 2, 3, 3, 4, 4, 5, and 6 can be referenced. Figure 10 Similarly, the recycling methods and stacking status of a larger number of passbooks can be deduced from the above process and images.
[0072] The recycling bin 100 provided in this application embodiment, through the aforementioned recycling channel 130, recycling counter-pressure roller group 140 and guide bracket 150, and the structural design of the channel lower plate 132 extending to protrude from the recycling counter-pressure roller group 140, realizes the acceptance of passbook media of different ages and softness and hardness into the recycling bin 100 and their orderly stacking, effectively reducing the probability of disorder when stacking passbook media. Under long-term use, it can significantly reduce the maintenance frequency of the recycling bin 100, and at the same time, it can accept more passbook media in the same space, thereby increasing the actual capacity of the recycling bin 100.
[0073] In some embodiments, such as Figures 2-10 As shown, the recovery counter-pressure roller assembly 140 can be configured to drive the storage book medium to move into the receiving cavity until the first end of at least one storage book medium abuts against the end face of the receiving cavity, and the tail end of at least one storage book medium can move to above the upper roller 141 in the recovery counter-pressure roller assembly 140. The support position of at least one storage book medium and the guide bracket 150 can be located on the side of the binding line of the storage book medium away from the outlet of the recovery channel 130.
[0074] In this embodiment, such as Figures 2-10 As shown, for a single passbook medium being recycled, the passbook medium can move towards the receiving cavity under the clamping action of the recycling counterweight roller group 140 until the first end of the passbook medium abuts against the end face of the receiving cavity. The tail end of the passbook medium can gradually move until it disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recycling counterweight roller group 140. At this point, the passbook medium loses its forward pushing force, and under the resistance of the end face of the receiving cavity, the passbook medium stops moving forward. Under this condition, the tail end of the passbook medium can abut against the rim of the upper wheel 141 of the recycling counterweight roller group 140. Finally... Only when the tail end of the passbook medium can it move along the rotation of the upper wheel 141 in the recovery counterpressure wheel group 140 to the top of the upper wheel 141 in the recovery counterpressure wheel group 140. If the head end of the passbook medium fails to stop at the end face of the receiving cavity, the passbook medium will continue to move forward under the clamping of the recovery counterpressure wheel group. Even if the lower plate of the recovery channel supports the tail end of the passbook medium to prevent it from easily falling to the bottom of the receiving cavity, the tail end of the passbook medium after the position change cannot stop at the rim of the upper wheel in the recovery counterpressure wheel group. Naturally, the tail end of the passbook medium will be difficult to be driven by the upper wheel in the recovery counterpressure wheel group to the top of the upper wheel in the recovery counterpressure wheel group.
[0075] Based on the guide surface 1511 of the guide bracket 150 being an inclined surface facing the recycling channel 130, taking passbook medium 2 and passbook medium 3 as examples, after passbook medium 2 is completely stored in the recycling box 100, when the support position of passbook medium 2 and guide bracket 150 is located on the side of the binding line of passbook medium 2 away from the outlet of recycling channel 130, a certain space can be left between the binding line of passbook medium 2 and the guide surface 1511 of guide bracket 150. When the first end of passbook medium 3 abuts against guide surface 1511, passbook medium 3 can move along the guide surface 1511. As the medium continues to move forward towards surface 1511, when the first end of the second passbook 3 approaches the support position of the first passbook 2 and the guide bracket 150, the first end of the second passbook 3 can use the reserved space to drill into the space between the first passbook 2 and the guide bracket 150. Under the clamping action, the second passbook 3 continues to move until the first end of the second passbook 3 stops at the end face of the receiving cavity. At this time, the support position of the second passbook 3 and the guide bracket 150 is located on the side of the binding line of the second passbook 3 away from the outlet of the recycling channel 130, thereby realizing the stacking of the first passbook 2 and the second passbook 3.
[0076] It should be noted that for each newly collected passbook, its first end can rest against the end face of the receiving cavity, and its last end can be positioned above the upper wheel 141 in the collection counterweight roller assembly 140. However, as more and more passbooks are stacked in the collection box 100, the positions of the two ends of each passbook will change. See the attached diagram for details. Figures 8-10 As shown, it can be seen that when the passbook medium 2 is first completely stored in the recycling bin 100, the positions of both ends of it are at the preset target positions. However, as the number of stacked items increases from one to two, then to three, and even to five, the positions of both ends of the passbook medium 2 have already shifted significantly.
[0077] The recycling bin 100 provided in this application embodiment, through the design of the first end of the passbook medium abutting the end face of the receiving cavity, combined with the position design of the binding line of the passbook medium, allows the end face of the receiving cavity to provide sufficient resistance to drive the tail end of the passbook medium to move above the upper wheel 141 in the recycling counterpressure roller group 140. It can also reserve space between the binding line and the support position to control the next passbook medium to reach the preset position. Using this structure, the specific positions of both ends of the passbook medium in the receiving cavity can be controlled more precisely, minimizing the probability of stacking disorder when multiple passbook mediums are stacked.
[0078] In some embodiments, such as Figures 1-10 As shown, the end of the lower plate 132 near the outlet of the recovery channel 130 can extend to the rim of the lower wheel 142 in the recovery counterpressure wheel assembly 140.
[0079] In this embodiment, such as Figures 1-10 As shown, the lower plate 132 of the recycling channel 130 needs to extend a certain length beyond the lower wheel 142 of the recycling counter-pressure roller assembly 140 near the outlet of the recycling channel 130. In actual design, the specific length of the lower plate 132 of the recycling channel 130 needs to ensure that, with the auxiliary guidance of the lower plate 132 of the recycling channel 130, the first end of the storage book medium of different sizes can touch the guide surface 1511 of the guide bracket 150 after falling from the recycling channel 130. The lower plate 132 of the recycling channel 130 also supports the tail end of the storage book medium.
[0080] The recycling bin 100 provided in this application embodiment, through the structural design of the tail end of the lower channel plate 132 protruding from the rim of the lower wheel 142 in the recycling counterpressure roller group 140, enables the head end of the passbook media of different sizes to touch the guide surface 1511 of the guide bracket 150 under the auxiliary guidance of the lower channel plate 132. Since the entire recycling process is quite sensitive to the position and shape of the passbook media in each stage, this structure can improve the recycling bin 100's ability to control the shape of the passbook media. At the same time, the lower channel plate 132 of the recycling channel 130 also supports the tail end of the passbook media to prevent the tail end of the passbook media from falling directly to the bottom of the receiving cavity after it leaves the counterpressure point of the upper wheel 141 and the lower wheel 142 in the recycling counterpressure roller group 140.
[0081] In some embodiments, such as Figures 1-10 As shown, the upper plate 131 of the recycling channel 130 may have a guide portion 1311 at one end near the outlet of the recycling channel 130. The guide portion 1311 may be inclined toward the upper wheel 141 in the recycling counterpressure roller assembly 140.
[0082] The angle of the guide portion 1311 can be 30°, 45° or other values. For example, in some embodiments, the angle of the guide portion 1311 can be 30°.
[0083] With a guide section 1311 at one end of the upper plate 131 of the recycling channel 130 near the outlet of the recycling channel 130, the design of the angled structure can play an auxiliary guiding role for the entire movement process of the tail end of the storage medium from the outlet of the recycling channel 130 to the upper wheel 141 of the pressure roller group, further increasing the control accuracy of the recycling box 100 on the specific position of the tail end of the storage medium.
[0084] In some embodiments, such as Figures 1-10 As shown, the guide portion 1311 may not protrude beyond the rim of the upper wheel 141 in the recovery counterpressure wheel assembly 140.
[0085] Understandably, the tail end of the passbook medium, under the resistance of the end face of the receiving cavity, first abuts against the rim of the upper wheel in the recovery counterpressure roller group, and is finally driven by the upper wheel 141 in the recovery counterpressure roller group 140 to above the upper wheel 141 in the recovery counterpressure roller group 140. If the guide part can protrude beyond the rim of the upper wheel in the recovery counterpressure roller group, the part of the guide part extending beyond the rim of the upper wheel in the recovery counterpressure roller group will block the tail end of the passbook medium, thereby restricting the movement of the tail end of the passbook medium, and even causing the tail end of the passbook medium to fall back into the recovery channel, thus blocking the outlet of the recovery channel and affecting the recovery of the next passbook medium.
[0086] With the guide section 1311 not protruding beyond the rim of the upper wheel 141 in the recovery pressure roller group 140, the movement trajectory of the tail end of the passbook medium from the outlet of the recovery channel 130 to above the upper wheel 141 in the recovery pressure roller group 140 is unobstructed. This prevents the guide section 1311 from being too long and causing the passbook medium to directly block the outlet of the recovery channel 130, and helps subsequent passbook mediums to be stacked in an orderly manner below the previous passbook medium.
[0087] In some embodiments, such as Figure 1 As shown, one end of the guide bracket 150 near the retrieval channel 130 can be connected to the bottom of the receiving cavity, and the other end can be suspended. When the first end of the passbook medium abuts against the guide surface 1511 of the guide bracket 150, the retrieval counter-pressure roller assembly 140 can be used to drive the first end of the passbook medium to move along the guide surface 1511 in a direction away from the retrieval channel 130.
[0088] like Figure 1 As shown, since the guide bracket 150 is a cantilever beam structure with one end suspended and the other end fixed, the free end of the guide bracket 150 has a certain elasticity. In other words, when the passbook medium applies pressure to the guide bracket 150, the guide bracket 150 will undergo visible deformation.
[0089] The guide bracket 150 may be made of materials including but not limited to PC (Polycarbonate), ABS (Acrylonitrile Butadiene Styrene), or stainless steel. For example, in some embodiments, the guide bracket 150 is made of stainless steel.
[0090] In actual implementation, with Figures 2-5For example, when passbook medium 2 enters the recycling box 100 through the recycling channel 130, the recycling counter-pressure roller assembly 140 clamps the passbook medium 2. Under the influence of the rigidity of the passbook medium 2 itself, the passbook medium 2 will move along the tangential direction of the pressing point between the upper roller 141 and the lower roller 142 of the recycling counter-pressure roller assembly 140. Under the guidance of the lower plate 132 of the recycling channel 130, the head end of the passbook medium 2 will fall on the guide surface 1511 of the guide bracket 150. The recycling counter-pressure roller assembly 140 continues to drive the passbook medium... The first item 2 moves along the tangential direction of the pressing point between the upper wheel 141 and the lower wheel 142 in the recovery counter-pressure wheel assembly 140. When the guide bracket 150 is under force, the guide surface 1511 and the highest point of the entire guide bracket 150 will sink. At the same time, the free end of the guide bracket 150 will abut against the bottom wall of the receiving cavity after descending a certain distance, thus stopping further sinking. The first end of the storage medium 2 can move upward along the guide surface 1511 until it passes the highest point of the guide bracket 150. Under the clamping and pushing action of the lower wheel 142 in the recovery counterweight roller group 140, the first end of the storage medium 2 finally reaches the end of the receiving cavity and stops against the wall of the end of the receiving cavity. The tail end of the storage medium 2 gradually moves until it disengages from the pressing point between the upper wheel 141 and the lower wheel 142 in the recovery counterweight roller group 140. At this time, the storage medium 2 loses its forward pushing power. Under the obstruction of the end of the receiving cavity, the storage medium 2 does not continue to move forward. At the same time, the lower plate 132 of the recovery channel 130 protrudes from the lower wheel 142 in the recovery counterweight roller group 140. Part of wheel 142 abuts against the tail end of passbook medium 2, causing the tail end of passbook medium 2 to move upward until it abuts against the rim of the upper wheel 141 in the recycling counterweight wheel group 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counterweight wheel group 140 are still rotating. The rim of the upper wheel 141 in the recycling counterweight wheel group 140 drives the tail end of passbook medium 2 to rise upward, and finally the tail end of passbook medium 2 rests on the rim of the upper wheel 141 in the recycling counterweight wheel group 140. Thus, passbook medium 2 is completely stored in the recycling box 100.
[0091] The recycling bin 100 provided in this application embodiment uses the cantilever beam structure design of the guide bracket 150. Utilizing the slightly elastic characteristics of the cantilever beam, the highest point of the guide bracket 150 descends smoothly when the first end of the passbook applies pressure to the guide surface 1511. This helps the first end of the passbook passbook pass smoothly over the highest point of the guide bracket 150, preventing the rigid design of the bracket from directly blocking the first end of the passbook passbook and causing the entire recycling bin 100 to jam. Furthermore, it limits the maximum downward movement of the guide bracket 150 to ensure that it always protrudes from the bottom wall of the receiving cavity, ensuring that the guiding effect of the guide surface 1511 does not disappear as the cantilever portion of the guide bracket 150 descends.
[0092] In some embodiments, such as Figure 1 As shown, the guide bracket may include a first segment 151, a second segment 152 and a third segment 153 connected in sequence. Adjacent segments may be bent. The first segment 151 may be connected to the bottom of the receiving cavity. The second segment 152 and the third segment 153 may be suspended. The first segment 151 may have a guide surface 1511.
[0093] In this embodiment, such as Figure 1 As shown, the first segment 151 and the second segment 152 can form a right angle, the second segment 152 and the third segment 153 can form an acute angle, the third segment 153 can be bent downwards relative to the second segment 152, the side of the first segment 151 near the recycling channel 130 can have a guide surface 1511, the connection point between the first segment 151 and the second segment 152 can be the highest point of the entire guide bracket 150, and the beginning of the passbook medium after leaving the recycling channel 130 can first abut against the guide surface 151 of the first segment 151. 1. Subsequently, under the driving force of the pressure roller assembly 140, the first end of the passbook medium can move along the guide surface 1511 towards the connection point of the first segment 151 and the second segment 152 until the first end of the passbook medium passes the connection point of the first segment 151 and the second segment 152. During this process, the guide surface 1511 and the connection point of the first segment 151 and the second segment 152 will sink when subjected to force. At the same time, the third segment 153 will abut against the bottom wall of the receiving cavity after descending a certain amount, thereby stopping further sinking.
[0094] In actual design, the distance between the third segment 153 and the bottom wall of the receiving cavity can be 8mm to 12mm. For example, in some embodiments, the distance between the third segment 153 and the bottom wall of the receiving cavity is 10mm. The angle between the guide surface 1511 of the first segment 151 and the tangent of the pressing point of the upper wheel 141 and the lower wheel 142 in the recovery pressing wheel group 140 is 20° to 45°. For example, in some embodiments, the angle between the guide surface 1511 of the first segment 151 and the tangent of the pressing point of the upper wheel 141 and the lower wheel 142 in the recovery pressing wheel group 140 is 45°.
[0095] The recycling bin 100 provided in this application embodiment, through the above-mentioned first section 151, second section 152 and third section 153, realizes the guiding support 150 for the passbook media, elastically unloading and supporting functions, effectively reducing the probability of the passbook media being disordered when stacked. At the same time, the overall structure is simple, the functional areas are clearly defined, and it is easy to process and manufacture, realizing the miniaturization and lightweight design of the guiding support 150.
[0096] In some embodiments, such as Figures 1-10As shown, the recycling bin 100 may also include a stop 160 and an elastic member 170.
[0097] The stop 160 can be slidably installed on the housing 120 to form the end face of the receiving cavity. The stop 160 can be used to stop the first end of the storage medium. The elastic member 170 can be connected between the stop 160 and the housing 120, and the elastic member 170 can be located on the side of the stop 160 away from the recycling channel 130.
[0098] The elastic element 170 may include, but is not limited to, a spring, an elastic sleeve, or a rubber ring, etc., and is not limited herein. For example, in some embodiments, such as Figures 1-10 As shown, the elastic element 170 is a spring.
[0099] like Figures 1-10 As shown, the size of the receiving cavity changes with the position of the stop member 160. Specifically, the stop member 160 can be slidably installed on the housing 120 between a first position and a second position. That is, when the stop member 160 is in the first position, the receiving cavity can accommodate the smallest size passbook medium, and when the stop member 160 is in the second position, the receiving cavity can accommodate the largest size passbook medium.
[0100] In actual operation, when passbook medium 2 enters the recycling box 100 through the recycling channel 130, the recycling counterweight roller assembly 140 clamps the passbook medium 2. Under the influence of the rigidity of the passbook medium 2 itself, the passbook medium 2 will move along the tangential direction of the pressing point between the upper roller 141 and the lower roller 142 of the recycling counterweight roller assembly 140. Under the guidance of the lower plate 132 of the recycling channel 130, the head end of the passbook medium 2 will land on the guide surface 1511 of the guide bracket 150. The recovery counter-pressure roller group 140 continues to drive the passbook medium 2 along the tangential direction of the pressing point between the upper roller 141 and the lower roller 142 in the recovery counter-pressure roller group 140. Under the guidance of the driving force and the guide surface 1511, the head end of the passbook medium 2 can move upward along the guide surface 1511 until it passes the highest point of the guide bracket 150. Under the clamping and pushing of the upper roller 141 and the lower roller 142 in the recovery counter-pressure roller group 140, the head end of the passbook medium 2... Finally, the stopper 160 is pressed against the stopper 160, pushing the stopper 160 forward to compress the elastic element 170 until the tail end of the passbook medium 2 disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recovery counterweight wheel assembly 140. At this point, the passbook medium 2 loses its pushing power. Under the pushing force of the stopper 160 and the elastic element 170, the passbook medium 2 does not continue to move forward. At the same time, the lower plate 132 of the recovery channel 130 protrudes from the lower wheel 142 of the recovery counterweight wheel assembly 140 and presses against the passbook medium. The tail end of medium 2 moves upward until it abuts against the rim of the upper wheel 141 in the recycling counterweight wheel set 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counterweight wheel set 140 are still rotating. The rim of the upper wheel 141 in the recycling counterweight wheel set 140 drives the tail end of medium 2 to rise upward, so that the tail end of medium 2 rests on the rim of the upper wheel 141 in the recycling counterweight wheel set 140. Thus, medium 2 is completely stored in the recycling box 100.
[0101] The size of passbook medium 23 is the same as that of passbook medium 12. Its recycling process has been described in detail above and will not be repeated here.
[0102] The following describes part of the process of storing the subsequently recycled passbook in the recycling bin 100 when the size of the subsequently recycled passbook is larger or smaller than the size of the previous passbook.
[0103] by Figure 9For example, the size of passbook medium 3 4 is smaller than the sizes of the previously entered passbook medium 1 2 and passbook medium 2 3. The tail end of passbook medium 3 4 disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recovery counterweight wheel assembly 140. At this time, passbook medium 3 4 loses its forward pushing force. Under the action of the frictional resistance of passbook medium 2 3 and the clamping resistance formed by passbook medium 2 3 and guide bracket 150, passbook medium 3 4 does not continue to move forward. At the same time, the lower plate 132 of the recovery channel 130 protrudes from the lower wheel of the recovery counterweight wheel assembly 140. Part of wheel 142 abuts against the tail end of passbook medium 3 4, causing the tail end of passbook medium 1 2 to move upward until it abuts against the rim of the upper wheel 141 in the recycling counter-pressure wheel set 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counter-pressure wheel set 140 are still rotating. The rim of the upper wheel 141 in the recycling counter-pressure wheel set 140 drives the tail end of passbook medium 1 2 to rise upward, so that the tail end of passbook medium 3 4 rests on the rim of the upper wheel 141 in the recycling counter-pressure wheel set 140. Thus, passbook medium 3 4 is completely stored in the recycling box 100.
[0104] by Figure 10 For example, the size of passbook medium 56 is larger than the sizes of the previously entered passbooks 12, 23, 34, and 45. Before the tail end of passbook medium 56 disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recovery pressing wheel assembly 140, the head end of passbook medium 56 is already against the stop member 160. Under the clamping and pushing of the recovery pressing wheel assembly 140, the stop member 160 moves in the direction where the elastic member 170 is compressed, until the tail end of passbook medium 56 disengages from the pressing point between the upper wheel 141 and the lower wheel 142 of the recovery pressing wheel assembly 140. At this time, passbook medium 56 loses its pushing power, and the tail end of passbook medium 56 is at the stop member 160. Under the thrust of the stop 160 and the elastic element 170, the medium did not continue to move forward. At the same time, the lower plate 132 of the recycling channel 130 protruded from the lower wheel 142 of the recycling counterpressure wheel group 140 and pressed against the tail end of the passbook medium 6, causing the tail end of the passbook medium 6 to move upward until it stopped against the rim of the upper wheel 141 in the recycling counterpressure wheel group 140. At this time, the upper wheel 141 and the lower wheel 142 in the recycling counterpressure wheel group 140 were still rotating. The rim of the upper wheel 141 in the recycling counterpressure wheel group 140 drove the tail end of the passbook medium 6 to rise upward, and finally the tail end of the passbook medium 6 rested on the rim of the upper wheel 141 in the recycling counterpressure wheel group 140. Thus, the passbook medium 6 was completely stored in the recycling box 100.
[0105] It should be noted that in the actual design, the stiffness coefficient K of the elastic element 170 is relatively small, so that the elastic force of the elastic element 170 does not change much within the sliding range of the stop element 160. This makes the resistance experienced by the storage bag media of different sizes during recycling basically the same.
[0106] The recycling bin 100 provided in this application embodiment, through the setting of the stop member 160 and the elastic member 170, can be compatible with passbook media of different sizes and specifications, and can receive passbook media of different sizes and specifications into the recycling bin 100 without stacking, thereby increasing the usability of the recycling bin 100, which is beneficial for promotion and mass production.
[0107] In some embodiments, such as Figure 1 As shown, the stop member 160 may include a first stop section 161 and a second stop section 162 connected together. The second stop section 162 may be located above the first stop section 161, and the second stop section 162 is bent toward the guide bracket 150 relative to the first stop section 161.
[0108] It is understandable that, such as Figures 9-10 As shown, as the number of stacked items increases, the position of the topmost storage medium is continuously raised, causing the beginning of the storage medium to change from being closer to the bottom of the first stop section to being closer to the top of the first stop section. If the second stop section is not bent relative to the first stop section towards the guide bracket, the beginning of the topmost storage medium can easily lift up and slide out of the receiving cavity. This causes the storage medium to get stuck between the recycling box and the outer shell when the relevant operators maintain the recycling box, thus preventing the recycling box from being pulled out.
[0109] When the second stop section 162 is bent toward the guide bracket 150 relative to the first stop section 161, the second stop section 162 can effectively prevent the top end of the storage book medium from tilting up and sliding out of the receiving cavity, thereby preventing the sliding storage book medium from getting stuck between the recycling box 100 and the outer shell 110, making it difficult to pull out the recycling box 100. This can significantly reduce the maintenance frequency of the recycling box 100 and improve the maintainability of the recycling box 100.
[0110] In some embodiments, such as Figure 1 As shown, the housing 120 may include a housing frame 121 and a guide plate 122.
[0111] The housing frame 121 and the upper sealing plate 111 of the outer shell 110 can define a receiving cavity; the guide plate 122 can be installed on the housing frame 121, and the guide plate 122 can define a groove for sliding engagement with the stop member 160.
[0112] The cabinet frame 121 can be similar to a common drawer structure. When the cabinet frame 121 is installed inside the outer shell 110, the upper sealing plate 111 can block the upper opening of the cabinet frame 121. The outer shell 110 can include the shell and the upper sealing plate 111. The upper sealing plate 111 can be installed on the shell. The connection between the upper sealing plate 111 and the shell can be, but is not limited to, integral molding, bolt connection or riveting, etc., which are not limited here.
[0113] The slide can be equipped with a limiting structure in the first and second positions. The stop 160 can slide and engage with the slide between the first and second positions. When the stop 160 is in the first position, the elastic element 170 is in a slightly pre-compressed state, and the recycling box 100 can accommodate the smallest size passbook. When the stop 160 is in the second position, the elastic element 170 is in a maximum compressed state, and the recycling box 100 can accommodate the largest size passbook.
[0114] The recycling bin 100 provided in this application embodiment, through the arrangement of the aforementioned bin frame 121 and guide plate 122, and in conjunction with the position design of the upper sealing plate 111, isolates the receiving cavity from other structural components inside the outer shell 110, preventing the passbook medium from warping and scraping against other structural components, thus preventing damage to the passbook medium. At the same time, the upper sealing plate 111 also serves as a guide, so that the tail end of the passbook medium rests between the upper wheel 141 and the upper sealing plate 111 in the recycling counterpressure roller group 140. In addition, it enables the stop member 160 to slide directionally between the first and second positions along the slide groove, so as to be compatible with passbook media of different sizes and specifications.
[0115] In some embodiments, such as Figures 1-10 As shown, the recycling bin 100 may also include: a first sensor 191 and a second sensor 192.
[0116] The first sensor 191 can be arranged above the upper wheel 141 in the recovery counterpressure wheel assembly 140, and the second sensor 192 can be arranged below the lower wheel 142 in the recovery counterpressure wheel assembly 140. The first sensor 191 and the second sensor 192 can form a photoelectric circuit. The first sensor 191 and the second sensor 192 can be used to detect whether the tail end of the passbook medium has left the recovery channel 130.
[0117] In actual implementation, such as Figures 1-10As shown, the first sensor 191 and the second sensor 192 can be through-beam photoelectric sensors, that is, one of the first sensor 191 and the second sensor 192 can be a transmitter, and the other of the first sensor 191 and the second sensor 192 can be a receiver, and the transmitter's emission port faces the receiver's reception port. By placing the first sensor 191 and the second sensor 192 on both sides of the exit of the recycling channel 130, the target object is detected by whether the projected light is blocked. Specifically, when the end of the passbook medium has not left the recycling channel 130, the end of the passbook medium will block at least part of the light, thereby reducing the light intensity in the receiver; when the end of the passbook medium has left the recycling channel 130, all the light will not be blocked, so that the receiver can receive all the light.
[0118] The recycling bin 100 provided in this application embodiment, through the setting of the first sensor 191 and the second sensor 192, realizes the detection of whether the outlet of the recycling channel 130 is blocked by the tail end of the passbook medium. This prevents the next passbook medium from being blocked at the outlet of the recycling channel 130 when the previous passbook medium is being recycled, thus preventing the next passbook medium from getting stuck in the recycling channel 130 and being unable to enter the receiving cavity normally. This maintains the normal operation of the recycling bin 100 and improves the performance of the recycling bin 100.
[0119] In some embodiments, such as Figure 1 As shown, the recycling bin 100 may also include: a prism 180, a third sensor 193, and a fourth sensor 194.
[0120] The third sensor 193 and the fourth sensor 194 can be arranged separately within the housing 110, and the third sensor 193 and the fourth sensor 194 can be located above the receiving cavity; the prism 180 can be arranged below the receiving cavity, and the third sensor 193, the fourth sensor 194 and the prism 180 can form a through-beam circuit, and the third sensor 193, the fourth sensor 194 and the prism 180 can be used to detect whether there is a passbook medium stored in the receiving cavity.
[0121] In actual implementation, such as Figure 1As shown, the third sensor 193 and the fourth sensor 194 can be through-beam photoelectric sensors, meaning that one of the third sensor 193 and the fourth sensor 194 can be a transmitter, and the other of the third sensor 193 and the fourth sensor 194 can be a receiver. The bottom of the housing frame 121 can have an upper base plate and a lower base plate. The prism 180 can be arranged between the upper base plate and the lower base plate, and the upper base plate is designed to avoid the mirror surface of the prism 180. The mirror surface of the prism 180 can face into the receiving cavity. When no storage medium is stored in the receiving cavity, all the light emitted by the transmitter can be reflected to the receiver through the prism 180. When a storage medium is stored in the receiving cavity, the storage medium will block at least part of the light, thereby reducing the light intensity in the receiver.
[0122] The recycling bin 100 provided in this application embodiment, through the setting of the third sensor 193 and the fourth sensor 194, realizes the detection of whether there is a passbook medium stored in the containing cavity, preventing the waste of human resources caused by cleaning the recycling bin 100 in an empty state, thereby making it easier for relevant personnel to have a more detailed understanding of the specific situation of the recycling bin 100.
[0123] In some embodiments, such as Figures 1-10 As shown, the recycling bin 100 may also include a fifth sensor 195.
[0124] The fifth sensor 195 can be arranged on the top of the cavity, and the fifth sensor 195 can be used to detect whether the cavity is full.
[0125] In actual implementation, such as Figure 1 As shown, the end face of the fifth sensor 195 can be vertically facing the bottom of the cavity. The fifth sensor 195 can have a transmitting end and a receiving end. When the cavity is not full, at least part of the light emitted by the transmitting end can be reflected to the receiving end through the uppermost storage medium within a certain period of time. When the cavity is full, the light intensity in the receiver is too low because the uppermost storage medium is too close to the transmitting end, or even directly blocks the transmitting end.
[0126] The recycling bin 100 provided in this application embodiment, through the setting of the fifth sensor 195, realizes the detection of whether the receiving cavity is full, preventing the recycling bin 100 from continuing to store passbook media into the receiving cavity after it is full, which would cause the subsequently stored passbook media to be unable to completely enter the recycling bin 100 and get stuck in the recycling channel 130, causing equipment failure alarm. At the same time, it can also serve as a reminder to relevant personnel, making it convenient for them to regularly clean and maintain the recycling bin 100.
[0127] This application also discloses a passbook self-service device.
[0128] In some embodiments, the passbook self-service device includes: a punching device, a printing device, a passbook issuing box, a transmission component, and a recycling bin 100 as described above.
[0129] The punching device is used to punch holes in the magnetic strip of the passbook medium.
[0130] The punching device can be positioned near the entrance of the passbook medium into the device. The position of the punching device can ensure that the punching operation can be performed on passbook medium with an unfolded length of less than 200mm. For example, in some embodiments, the punching device can punch passbook medium with a length of 180mm.
[0131] In actual operation, when the punching device punches holes in the passbook medium that needs to be recycled, the passbook medium enters from the inlet of the entire device. After information printing, the passbook medium is transferred to the punching device. When the passbook medium is in a fixed state, the punching device physically destroys the magnetic strip of the passbook medium.
[0132] The printing device is used to print passbook media.
[0133] The printing device can be located at the rear of the entire passbook self-service device. The printing device can be used to print passbook media or for other purposes. For example, in some embodiments, in addition to its own printing function, the printing device also has magnetic stripe reading and writing, passbook media scanning and correction functions.
[0134] In actual operation, when the printing device prints, scans or performs other operations on the passbook medium, the passbook medium enters the inlet of the printing device. The printing device's own correction function first corrects the orientation of the passbook medium. After the passbook medium is aligned, the printing device then prints, scans or performs other corresponding operations on the passbook medium.
[0135] The aforementioned printing device, through its own correction function, can correct the posture of the passbook medium entering the printing device and rectify the tilt state of the passbook medium, thereby improving the accuracy of the printing device's operation and ensuring that the information is printed to the accurate position on the passbook medium.
[0136] The passbook box defines the space for storing passbook media.
[0137] The passbook box can be a storage facility for new passbook media before they are issued. There can be one or more passbook boxes. For example, in some embodiments, the entire device is equipped with a large passbook box.
[0138] The crimping box may include two crimping boxes of the same shape and size, or it may include one large crimping box. For example, in some embodiments, such as... Figure 1As shown, the entire device is equipped with two passbook boxes of the same shape and size, namely the first passbook box and the second passbook box. The first passbook box and the second passbook box can store passbook media of the same specifications or passbook media of different specifications.
[0139] The recycling bin 100 defines the space for storing discarded passbook media.
[0140] The recycling bin 100 can be located in the lower part of the entire device. The recycling bin 100 can be an open storage device, which can be a pull-out drawer, a sliding cabinet or other storage device. For example, in some embodiments, the recycling bin 100 is a drawer-type recycling bin 100 that can be pulled out from the inside to facilitate the disposal of old passbook media.
[0141] The transmission component is connected between the punching device, the printing device, the passbook box, and the recycling box 100, and is used to transfer the passbook media between the punching device, the printing device, the passbook box, and the recycling box 100.
[0142] In actual operation, when discarded passbooks enter the equipment, they are sent to the printing device for information registration via the transmission component, then to the punching device for punching, and finally to the printing device for scanning. When the equipment issues new passbooks, the first passbook box issues passbook 1 (2), or the second passbook box issues passbook 2 (3), which are sent to the printing device for information entry via the transmission component and then sent out of the equipment via the transmission component.
[0143] It should be noted that self-service passbook devices may also include a counterfeit detection device and / or a stamping device. Usually, due to space limitations, only one of the counterfeit detection device and the stamping device can be added. However, when there are no strict restrictions on the size of the self-service passbook device, it is possible to flexibly consider introducing both the counterfeit detection device and the stamping device into the self-service passbook device in the actual design.
[0144] The passbook self-service device provided in this application embodiment, through the above-mentioned recycling bin 100 setting, enables the acceptance of passbook media of different ages and softness / hardness into the recycling bin 100 and their orderly stacking, effectively reducing the probability of disorder when stacking passbook media. Over a long period of use, it can significantly reduce the maintenance frequency of the recycling bin 100, and at the same time, it can accept more passbook media in the same space, increasing the actual capacity of the recycling bin 100.
[0145] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0146] In the description of this application, it should be understood that the terms "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0147] In the description of this application, "first feature" and "second feature" may include one or more of the features.
[0148] In the description of this application, "multiple" means two or more.
[0149] In the description of this application, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or the first and second features being in contact through another feature between them.
[0150] In the description of this application, the terms "above," "over," and "on top" for the first feature and the second feature include the first feature being directly above or diagonally above the second feature, or simply indicate that the first feature is at a higher horizontal level than the second feature.
[0151] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0152] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.
Claims
1. A recycling bin, used in passbook self-service equipment, characterized in that, include: shell; A housing, which is movably mounted on the outer shell and defines a receiving cavity; A recycling channel, the outlet of which is connected to the receiving cavity; The counter-pressure roller assembly is used for recycling. The counter-pressure point of the counter-pressure roller assembly is located at the outlet of the recycling channel. The lower plate of the recycling channel extends from one end near the outlet of the recycling channel to protrude from the counter-pressure roller assembly. The counter-pressure roller assembly is configured to drive the passbook medium through the recycling channel into the receiving cavity. A guide bracket, installed at the bottom of the receiving cavity, supports the passbook medium. The guide surface of the guide bracket is higher than the bottom of the receiving cavity and inclined towards the recycling channel. One end of the guide bracket near the recycling channel is connected to the bottom of the receiving cavity, while the other end is suspended, allowing the free end of the guide bracket to be elastic. When the first end of the passbook medium abuts against the guide surface of the guide bracket, the recycling counter-pressure roller assembly drives the first end of the passbook medium to move along the guide surface in a direction away from the recycling channel. The recycling counter-pressure roller assembly is configured to drive the storage book medium toward the receiving cavity until the first end of at least one storage book medium abuts against the end face of the receiving cavity, and the tail end of at least one storage book medium moves to above the upper roller in the recycling counter-pressure roller assembly, and the support position of at least one storage book medium and the guide bracket is located on the side of the binding line of the storage book medium away from the recycling channel outlet.
2. The recycling bin according to claim 1, characterized in that, The lower plate of the channel extends from one end near the outlet of the recycling channel to protrude from the rim of the lower wheel in the recycling counterpressure wheel assembly.
3. The recycling bin according to claim 1, characterized in that, The upper plate of the recycling channel has a guide section at one end near the outlet of the recycling channel, and the guide section is inclined upward toward the upper wheel of the recycling counterpressure roller assembly.
4. The recycling bin according to claim 3, characterized in that, The guide portion does not protrude beyond the rim of the upper wheel in the recovery counterpressure wheel assembly.
5. The recycling bin according to claim 1, characterized in that, The guide bracket includes a first section, a second section, and a third section connected in sequence, wherein adjacent sections are bent, the first section is connected to the bottom of the receiving cavity, the second section and the third section are suspended, and the first section has the guide surface.
6. The recycling bin according to any one of claims 1-5, characterized in that, Also includes: A stop member is slidably installed on the housing to form the end face of the receiving cavity, used to stop the beginning of the storage medium; An elastic element is connected between the stop and the housing, and is located on the side of the stop away from the recycling channel.
7. The recycling bin according to claim 6, characterized in that, The stop member includes a first stop section and a second stop section connected together, the second stop section being located above the first stop section, and the second stop section being bent toward the guide bracket relative to the first stop section.
8. The recycling bin according to claim 6, characterized in that, The enclosure includes: A housing frame, wherein the housing frame and the upper sealing plate of the outer shell define the receiving cavity; A guide plate is mounted on the housing frame and defines a groove for sliding engagement with the stop member.
9. The recycling bin according to any one of claims 1-5, characterized in that, Also includes: A first sensor and a second sensor are arranged, with the first sensor positioned above the upper wheel of the recycling counterpressure roller assembly and the second sensor positioned below the lower wheel of the recycling counterpressure roller assembly. The first sensor and the second sensor form a photoelectric circuit to detect whether the tail end of the passbook medium has left the recycling channel.
10. The recycling bin according to any one of claims 1-5, characterized in that, Also includes: The third sensor and the fourth sensor are arranged separately within the housing and located above the receiving cavity; A prism is arranged below the receiving cavity, and the third sensor, the fourth sensor and the prism form a through-beam circuit for detecting whether a passbook medium is stored in the receiving cavity.
11. The recycling bin according to any one of claims 1-5, characterized in that, Also includes: A fifth sensor, located at the top of the cavity, is used to detect whether the cavity is full.
12. A passbook self-service device, characterized in that, include: A punching device, used to punch holes in the magnetic strip of a passbook medium; A printing device for printing on passbook media; A passbook box, which defines a storage space for storing passbook media; The recycling bin as described in any one of claims 1-11 defines a receiving space for storing discarded passbook media; A transmission component is connected between the punching device, the printing device, the passbook box, and the recycling box for transferring the passbook medium between the punching device, the printing device, the passbook box, and the recycling box.
Citation Information
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