A ticket-selling device for tourism
Through the integrated banknote processing system of transmission, downward and leveling mechanisms, the problem of traditional ticket vending machines being difficult to identify wrinkles, folded corners or stained banknotes is solved, and a fast and accurate banknote transaction process is achieved, which improves the flexibility of equipment and ticket purchase efficiency.
Patent Information
- Application Number
- CN202510592258.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-05-09
AI Technical Summary
Traditional cash ticket machines are difficult to identify wrinkles, corners or stains, resulting in inefficient ticket purchases, especially during peak tourist seasons.
A banknote processing system with integrated transmission, downward pressure and leveling mechanism is designed to realize flexible movement of the equipment through universal wheels, and combined with the identification mechanism to ensure that the banknotes are flat and wrinkled and then identified.
It improves the accuracy and transaction efficiency of banknote identification, reduces the risk of banknote damage, enhances the flexibility and adaptability of equipment, and improves the ticket purchase experience of tourists.
Smart Images

Figure CN120108093B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of automatic ticket vending machines, and more particularly, to a ticket selling device for tourism. Background Art
[0002] With the intensification of competition in the tourism industry and the improvement of tourists' experience requirements, tourist attractions and service providers are constantly seeking innovative ways to optimize the tourist experience. Mobile ticket selling devices have developed in this context. They not only improve the speed and efficiency of ticket selling, but also enhance the flexibility and response speed of services. Especially during large-scale festivals, short-term exhibitions or peak tourist seasons with dense crowds, mobile ticket selling devices can be quickly deployed to effectively relieve the ticket selling pressure and improve the overall tourist experience.
[0003] In the ticket selling link of offline ticket selling tourist attractions, due to the quantity and distribution of ticket vending machines usually not being well adapted to actual needs, during peak tourist seasons with dense crowds, tourists have to queue up for a long time to buy tickets manually. Currently, both manned and unmanned ticket vending machines are fixed in specific positions, lacking flexibility. And for tourists who use cash to buy tickets, if the banknotes have wrinkles, corners folded or stains, the ticket vending machine may not be able to recognize these banknotes. This will not only reduce the ticket buying efficiency, but also affect the tourist experience. Especially during peak tourist seasons, the above problems will be more prominent, easily causing congestion of tourists and further affecting the normal operation of the scenic area. Summary of the Invention
[0004] In order to overcome the above-mentioned disadvantages of the prior art, the present invention provides a ticket selling device for tourism, which solves the problem that traditional cash ticket vending machines are not easy to recognize banknotes with wrinkles, corners folded or stains.
[0005] The technical solution is as follows: A ticket-selling device for tourism, including a ticket vending machine. The ticket vending machine serves as the main body of this ticket-selling device. At the bottom of the outer shell of the ticket vending machine, a mounting plate is fixedly assembled. At the four corners of the bottom surface of the mounting plate, universal wheels are rotatably installed, and brake parts are built into the universal wheels. It also includes a banknote processing mechanism built into the ticket vending machine. The banknote processing mechanism is located inside the banknote acceptor of the ticket vending machine and is composed of a transmission mechanism, a pressing mechanism, and a flattening mechanism. The transmission mechanism includes a transmission rack fixedly connected to the inner side of the banknote acceptor housing of the ticket vending machine. Two first transmission rollers are rotatably installed on the transmission rack, and a first transmission belt is wound around the two first transmission rollers. The first transmission belt is used to transmit the banknotes put into the banknote acceptor. One side of the transmission rack is fixedly installed with a first motor, and the output shaft of the first motor is connected to one of the first transmission rollers. On the inner wall of the ticket vending machine housing close to the banknote acceptor, a receiving plate is fixedly connected, and the receiving plate is flush with the first transmission belt. The flattening mechanism includes a second cylinder fixedly connected to the inner side of the banknote acceptor housing of the ticket vending machine. There are two second cylinders symmetrically arranged and located above the transmission rack. The telescopic rod of the second cylinder faces downward and is fixedly connected to a first electric slide rail. At the bottom surface of the housing on the side of the two first electric slide rails close to the banknote acceptor, a pressure roller is fixedly installed. The pressure roller is used to limit one end of the banknote on the first transmission belt. A slider is slidably installed at the bottom of the first electric slide rail, and a flattening roller is fixedly installed between the two sliders on both sides. The flattening roller is used to flatten the banknotes on the first transmission belt. A recognition mechanism for recognizing banknote information is arranged in the ticket vending machine near the banknote processing mechanism.
[0006] As a further preferred solution, the pressing mechanism includes a first cylinder fixedly installed on the inner wall of the ticket vending machine housing close to the banknote acceptor. There are two first cylinders and they are located directly above the transmission rack. The telescopic rods of the two first cylinders face downward and are fixedly installed with a mounting rack. Two second transmission rollers are rotatably installed on the mounting rack, and a second transmission belt is wound around the two second transmission rollers. The second transmission belt is used to cooperate with the first transmission belt to synchronously transmit the put-in banknotes. One side of the mounting rack is fixedly installed with a second motor, and the output shaft of the second motor is connected to one of the second transmission rollers. The two first cylinders synchronously drive the second transmission belt on the mounting rack to press down on the banknotes on the surface of the first transmission belt to perform a preliminary flattening operation on the banknotes. At the same time, the first transmission belt and the second transmission belt are used to stably transmit the flattened banknotes, improving the flattening operation of the subsequent flattening mechanism on the flattened banknotes.
[0007] As a further preferred solution, the bottom surface of the roller body of the pressure roller is a flat surface, and a contact pad is fixedly assembled on the bottom surface of the roller body of the pressure roller. The bottom contact surface of the contact pad is provided with uneven textures. The contact pad is made of rubber material and is used to contact and press the banknotes on the first transmission belt, improving the stability of the flattening roller when flattening the banknotes.
[0008] As a further preferred solution, the cross-section of the flattening roller is integrally streamlined. One end of the flattening roller along the rolling direction is a tip. The bottom surface of the roller body of the flattening roller is smooth and is in flat contact with the first conveyor belt. A gas delivery groove is axially formed on the bottom surface of the roller body of the flattening roller. The flattening roller driven by the first electric slide rail can quickly flatten the banknotes on the first conveyor belt.
[0009] As a further preferred solution, the flattening roller is made of a heat-conducting material. A heating wire is assembled on the top of the roller body of the flattening roller. The heating wire is attached to the surface of the roller body of the flattening roller. The heating wire is used to heat the flattening roller.
[0010] As a further preferred solution, air pumps are fixedly installed on the inner sides of the housings of the two first electric slide rails. A cavity is formed inside the roller body of the flattening roller. The cavity inside the flattening roller communicates with the gas delivery groove at the bottom. The air outlets of the two air pumps on both sides are connected to the cavity inside the flattening roller through air pipes. The air pumps are used to blow air into the flattening roller and blow it out from the gas delivery groove. Cooperating with the heating wire to heat the flattening roller, so that the heat can be efficiently conducted to the flattened banknotes.
[0011] As a further preferred solution, the recognition mechanism includes a fixing plate, a first bracket, a first scanning camera, a second bracket and a second scanning camera. The fixing plate is horizontally and fixedly connected to the inner wall of the ticket vending machine housing far away from the banknote acceptor. The top surface of the fixing plate is fixedly connected to the first bracket. The end of the first bracket is vertically downward and is equipped with a first scanning camera. The bottom surface is fixedly connected to the second bracket. The end of the second bracket is vertically upward and is equipped with a second scanning camera. The second scanning camera penetrates the fixing plate. The first scanning camera cooperates with the second scanning camera to be used for photographing and scanning the front and back sides of the flattened banknotes.
[0012] As a further preferred solution, a clamping mechanism for moving the banknotes from the banknote processing mechanism is arranged on the fixing plate. The clamping mechanism includes second electric slide rails symmetrically arranged on both side walls of the fixing plate. A support plate is slidably installed between the two second electric slide rails. A set of third electric slide rails symmetrically arranged up and down are formed on the upper part of the plate body of the support plate. A clamping plate is assembled between a set of third electric slide rails on the support plate through a mounting block. The clamping plate is located between the first scanning camera and the second scanning camera. The clamping plate is used for clamping the flattened banknotes on the banknote processing mechanism.
[0013] The present invention has the following advantages:
[0014] 1. The banknote processing mechanism of the present invention, which integrates a transmission mechanism, a pressing mechanism, and a flattening mechanism, can efficiently receive, transmit, press, and sort banknotes, ensuring that the banknotes are flat and free of wrinkles, solving the problem of unrecognizable banknotes. Then, combined with the recognition mechanism, it can efficiently recognize banknotes and achieve a fast and accurate banknote ticket-selling transaction process.
[0015] 2. The pressing roller of the present invention is provided with a contact pad. With the design of heating wires and air pumps, it can not only improve the stability of banknotes during the flattening process, reduce the possibility of deviation and damage when flattening banknotes, but also further reduce the risk of tearing of banknotes during processing by heating and softening the banknote fibers.
[0016] 3. The present invention can also be equipped with universal wheels with braking parts at the bottom of the ticket vending machine, allowing staff to easily move the ticket vending equipment to different locations for ticket selling, improving the flexibility and adaptability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.
[0018] Figure 2 It is a schematic diagram of the ticket vending machine, mounting plate, universal wheels, and banknote processing mechanism of the present invention.
[0019] Figure 3 It is a connection relationship diagram of the ticket vending machine, transmission mechanism, and pressing mechanism of the present invention.
[0020] Figure 4 It is a schematic diagram of the cooperation relationship between the first conveyor belt, second conveyor belt, and flattening mechanism of the present invention.
[0021] Figure 5 It is a schematic diagram of the specific components of the transmission mechanism and pressing mechanism of the present invention.
[0022] Figure 6 It is a schematic diagram of the cooperation relationship between the transmission mechanism and the flattening mechanism of the present invention.
[0023] Figure 7 It is a connection relationship diagram of components such as the pressing roller, contact pad, and flattening roller of the present invention.
[0024] Figure 8 It is a schematic diagram of the flattening roller, air pump, air duct, and heating wire of the present invention.
[0025] Figure 9 It is a schematic diagram of the air delivery groove inside the flattening roller of the present invention.
[0026] Figure 10 It is a schematic diagram of the specific components of the recognition mechanism and clamping mechanism of the present invention.
[0027] Description of reference numerals: 1 - ticket vending machine, 2 - mounting plate, 3 - universal wheel, 4 - banknote acceptor, 5 - banknote handling mechanism, 6 - transmission mechanism, 61 - transmission rack, 62 - first transmission roller, 63 - first transmission belt, 64 - first motor, 65 - receiving plate, 7 - pressing mechanism, 71 - first cylinder, 72 - mounting bracket, 73 - second transmission roller, 74 - second transmission belt, 75 - second motor, 8 - flattening mechanism, 81 - second cylinder, 82 - first electric slide rail, 83 - pressing roller, 831 - contact pad, 84 - slider, 85 - flattening roller, 851 - air delivery groove, 9 - air pump, 91 - air delivery pipe, 10 - heating wire, 11 - identification mechanism, 111 - fixing plate, 112 - first bracket, 113 - first scanning camera, 114 - second bracket, 115 - second scanning camera, 12 - clamping mechanism, 121 - second electric slide rail, 122 - support plate, 123 - third electric slide rail, 124 - mounting block, 125 - clamping plate. Detailed implementation manners
[0028] The above solution will be further described below in conjunction with specific embodiments. It should be understood that these embodiments are for illustrating the present application and not for limiting the scope of the present application. The implementation conditions adopted in the embodiments can be further adjusted according to the conditions of specific manufacturers, and the implementation conditions not specified are usually those in conventional experiments.
[0029] Embodiment 1: A ticket vending device for tourism, such as Figures 1 - 7As shown in the figure, it includes a ticket vending machine 1. The ticket vending machine 1 is the main body of this ticket vending device. At the bottom of the outer shell of the ticket vending machine 1, a mounting plate 2 is fixedly assembled. At the four corners of the bottom surface of the mounting plate 2, universal wheels 3 are rotatably installed, and brake parts are built in the universal wheels 3. It also includes a banknote processing mechanism 5 built inside the ticket vending machine 1. The banknote processing mechanism 5 is located inside the banknote acceptor 4 of the ticket vending machine 1. The banknote processing mechanism 5 is composed of a transmission mechanism 6, a pressing mechanism 7, and a flattening mechanism 8. The transmission mechanism 6 includes a transmission rack 61 fixedly connected to the inner side of the housing of the banknote acceptor 4 of the ticket vending machine 1. Two first transmission rollers 62 are rotatably installed on the transmission rack 61. A first transmission belt 63 is wound around the two first transmission rollers 62. The first transmission belt 63 is used to transmit the banknotes put into the ticket vending machine 1 by the banknote acceptor 4. A first motor 64 is fixedly installed on one side of the transmission rack 61. The output shaft of the first motor 64 is connected to one of the first transmission rollers 62. A receiving plate 65 is fixedly connected to the inner wall of the outer shell of the ticket vending machine 1 close to the banknote acceptor 4. The receiving plate 65 is flush with the first transmission belt 63. The flattening mechanism 8 includes two second cylinders 81 fixedly connected to the inner side of the housing of the banknote acceptor 4 of the ticket vending machine 1. The two second cylinders 81 are symmetrically arranged and are located above the transmission rack 61. The telescopic rods of the second cylinders 81 face downward and are fixedly connected to a first electric slide rail 82. At the bottom surface of the housing on the side of the two first electric slide rails 82 close to the banknote acceptor 4, a pressure roller 83 is fixedly arranged. The pressure roller 83 is used to limit one end of the banknote on the first transmission belt 63. A slider 84 is slidably installed at the bottom of the first electric slide rail 82. A flattening roller 85 is fixedly installed between the two sliders 84 on both sides. The flattening roller 85 is used to flatten the banknotes on the first transmission belt 63. An identification mechanism 11 for identifying banknote information is arranged near the banknote processing mechanism 5 in the ticket vending machine 1. The staff can flexibly move the ticket vending machine 1 to different locations for ticket vending through the universal wheels 3. When a tourist pushes the unfolded banknote into the ticket vending machine 1 from the banknote acceptor 4, when the banknote acceptor 4 senses the insertion of the banknote, it will control the pressing mechanism 7 to press down to the surface of the first transmission belt 63 through a preset program, so that the first transmission belt 63 can drive the unfolded banknote to be flattened and transmitted to the correct flattening position on the belt body. Then the pressing mechanism 7 resets, and at the same time, the second cylinder 81 drives the pressure roller 83 at the bottom of the first electric slide rail 82 to press tightly on one end of the banknote. Subsequently, the first electric slide rail 82 drives the flattening roller 85 to further smooth the flattened banknote, dealing with the problems of folding and corner folding on the banknote. After the banknote is flattened, the flattening mechanism 8 resets upward. The flattened banknote is transmitted into the identification mechanism 11 through the first transmission belt 63. After the authenticity is identified, the banknote transaction can be carried out and the ticket vending operation can be completed.
[0030] As Figures 3 - 5As shown, the pressing mechanism 7 includes a first cylinder 71 fixedly mounted on the outer shell of the ticket machine 1 near the inner wall of the banknote acceptor 4, two first cylinders 71 are provided and are located directly above the transmission frame 61, the telescopic rods of the two first cylinders 71 face downward and are fixedly mounted with a mounting frame 72, two second transmission rollers 73 are rotatably mounted on the mounting frame 72, a second transmission belt 74 is arranged around the two second transmission rollers 73, the second transmission belt 74 is used to cooperate with the first transmission belt 63 to synchronously transmit the inserted banknotes, a second motor 75 is fixedly mounted on one side of the mounting frame 72, the output shaft of the second motor 75 is connected to one of the second transmission rollers 73, the two first cylinders 71 synchronously drive the second transmission belt 74 on the mounting frame 72 to press down the banknotes on the surface of the first transmission belt 63, and perform a preliminary flattening operation on the banknotes, and at the same time, the flattened banknotes are smoothly transmitted through the first transmission belt 63 and the second transmission belt 74, thereby improving the flattening operation of the subsequent flattening mechanism 8 on the flattened banknotes.
[0031] When using the present ticket vending device, the staff can conveniently push the ticket vending machine 1 through the universal wheel 3 at the bottom of the mounting plate 2, so that the ticket vending machine 1 can flexibly adjust the ticket vending location. When the visitor spreads out the banknote and inserts it into the entrance of the banknote acceptor 4 of the ticket vending machine 1, the sensor built into the banknote acceptor 4 will immediately detect the presence of the banknote and trigger the start-up procedure of the banknote processing mechanism 5. After the banknote enters the banknote acceptor 4, the front end of the banknote will contact the first conveyor belt 63 after being guided by the receiving plate 65. At this time, the pressing mechanism 7 starts to work, the first cylinder 71 starts synchronously, and the telescopic rod of the first cylinder 71 pushes the mounting frame 7 2 is pressed down vertically to reduce the gap between the second conveyor belt 74 and the first conveyor belt 63 to a thickness close to that of the banknote. Then, the first motor 64 and the second motor 75 are started synchronously and drive the first conveyor roller 62 and the second conveyor roller 73 to rotate respectively, so that the first conveyor belt 63 cooperates with the second conveyor belt 74 to synchronously clamp the banknote and smoothly convey the banknote to the inside of the ticket vending machine 1, so that the surface of the banknote is initially flattened and its tilt angle is corrected. In this process, the synchronous movement of the double conveyor belts can not only initially flatten the wrinkles on the banknote, but also prevent the banknote from deflecting due to unilateral force, laying a foundation for subsequent finishing and flattening.
[0032] like Figure 6 and Figure 7 As shown, the bottom surface of the roller body of the pressure roller 83 is a flat surface, and a contact pad 831 is fixedly installed on the bottom surface of the roller body of the pressure roller 83. The bottom contact surface of the contact pad 831 is provided with an undulating texture. The contact pad 831 is made of rubber material and is used to contact and press the banknotes on the first conveyor belt 63, thereby improving the stability of the flattening roller 85 when flattening the banknotes and avoiding the deviation and damage of the banknotes during the flattening operation.
[0033] like Figure 7 and Figure 8As shown, the cross-section of the flattening roller 85 is overall streamlined. One end of the flattening roller 85 along the rolling direction is a tip. The bottom surface of the roller body of the flattening roller 85 is smooth and is in flat contact with the first conveyor belt 63. A gas delivery groove 851 is axially formed on the bottom surface of the roller body of the flattening roller 85. The flattening roller 85 driven by the first electric slide rail 82 can quickly flatten the banknotes on the first conveyor belt 63. The flattening roller 85 is made of a heat-conducting material, and a heating wire 10 is assembled on the top of the roller body of the flattening roller 85. The heating wire 10 is attached to the surface of the roller body of the flattening roller 85. The heating wire 10 is used to heat the flattening roller 85. The heated flattening roller 85 can soften the fibers in the banknotes, reduce the wrinkles and creases on the banknotes, and make the banknotes easier to be flattened.
[0034] As Figure 8 and Figure 9 As shown, air pumps 9 are fixedly installed on the inner sides of the casings of the two first electric slide rails 82. A cavity is formed inside the roller body of the flattening roller 85. The cavity inside the flattening roller 85 communicates with the gas delivery groove 851 at the bottom. The air outlets of the two air pumps 9 are connected to the cavity inside the flattening roller 85 through air pipes 91. The air pumps 9 are used to blow air into the flattening roller 85 and blow it out from the gas delivery groove 851. In cooperation with the heating wire 10 heating the flattening roller 85, the heat can be efficiently conducted to the flattened banknotes, reducing the brittleness of the banknotes and lowering the risk of tearing during the processing.
[0035] When the preliminarily flattened banknotes are transmitted to the preset flattening position on the first conveyor belt 63, the first motor 64 and the second motor 75 are synchronously turned off. At the same time, the first cylinder 71 reversely drives the second conveyor belt 74 on the mounting frame 72 to reset upward, so that the second conveyor belt 74 is separated from the banknotes on the first conveyor belt 63. Subsequently, the flattening mechanism 8 is enabled. The telescopic rods of the second cylinders 81 synchronously drive the first electric slide rails 82 to vertically press down, so that the rubber contact pads 831 at the bottom of the pressing rollers 83 closely adhere to one end of the banknotes with a preset pressure. The concave-convex texture on the surface of the contact pads 831 increases the friction force, ensuring that the banknotes do not displace during the flattening process. After the pressing rollers 83 fix one end of the banknotes, the sliders 84 in the first electric slide rails 82 drive the flattening roller 85 to horizontally slide along the surface of the banknotes. The streamlined tip design of the flattening roller 85 can gently insert into the folded corners at the edges of the banknotes. The smooth surface at the bottom of the roller body, in cooperation with the airflow ejected from the gas delivery groove 851, gradually unfolds the possible folded corners on the banknotes. At the same time, the heating wire 10 performs constant-temperature heating on the surface of the flattening roller 85, and the heat is evenly transferred to the banknotes through the flattening roller 85, softening the fiber structure of the banknotes and making the wrinkles on the banknotes easier to eliminate. The continuously output airflow from the air pump 9 on the one hand assists the banknotes to fit with the conveyor belt, preventing the banknotes from warping during the rolling process, so that the banknotes are flattened as much as possible before being identified, laying a good foundation for subsequent efficient identification of banknote information.
[0036] Embodiment 2: On the basis of Embodiment 1, as Figure 2 and Figure 10As shown in the figure, the recognition mechanism 11 includes a fixing plate 111, a first bracket 112, a first scanning camera 113, a second bracket 114, and a second scanning camera 115. A fixing plate 111 is horizontally fixedly connected to the inner wall of the housing of the ticket vending machine 1 away from the banknote acceptor 4. The top surface of the fixing plate 111 is fixedly connected to a first bracket 112. The end of the first bracket 112 is vertically downward and is equipped with a first scanning camera 113. The bottom surface is fixedly connected to a second bracket 114. The end of the second bracket 114 is vertically upward and is equipped with a second scanning camera 115. The second scanning camera 115 penetrates the fixing plate 111. The first scanning camera 113 cooperates with the second scanning camera 115 to photograph and scan the front and back sides of the flattened banknote, so as to better identify the information on the banknote and improve the accuracy of the banknote recognition and the ticket vending efficiency of the ticket vending equipment.
[0037] As Figure 2 and Figure 10 shown in the figure, a clamping mechanism 12 for moving banknotes from the banknote processing mechanism 5 is provided on the fixing plate 111. The clamping mechanism 12 includes second electric slide rails 121 symmetrically arranged on both side walls of the fixing plate 111. A support plate 122 is slidably installed between the second electric slide rails 121 on both sides. A group of upper and lower symmetric third electric slide rails 123 are opened on the upper part of the plate body of the support plate 122. A clamping plate 125 is assembled between a group of third electric slide rails 123 on the support plate 122 through a mounting block 124. The clamping plate 125 is located between the first scanning camera 113 and the second scanning camera 115. The clamping plate 125 is used to clamp the flattened banknote on the banknote processing mechanism 5, so that the flattened banknote can completely pass through the first scanning camera 113 and the second scanning camera 115, further improving the speed of the ticket vending equipment to identify banknotes and complete the ticket vending transaction.
[0038] The banknote flattened on the first conveyor belt 63 is finally accurately transferred by the clamping mechanism 12 to the recognition area of the recognition mechanism 11. First, the second electric slide rails 121 on both sides are activated to drive the support plate 122 to move horizontally towards the first conveyor belt 63. When the clamping plate 125 approaches one end of the banknote, the third electric slide rails 123 on the support plate 122 accurately control the clamping plate 125 to stably clamp the edge of the banknote from the upper and lower sides. After the clamping plate 125 clamps the banknote, the second electric slide rails 121 drive the support plate 122 to reset in the reverse direction, so that the center of the banknote clamped by the clamping plate 125 is aligned with and passes through the detection channel between the first scanning camera 113 and the second scanning camera 115. At this time, the first scanning camera 113 above and the second scanning camera 115 below perform multi-spectral scanning and ultraviolet fluorescence detection on the front and back sides of the banknote, capture features such as watermarks, security threads, and inks on the banknote, so as to complete the recognition of the banknote information. The data scanned by the first scanning camera 113 and the second scanning camera 115 is transmitted to the built-in processor in real time. After passing the verification by comparing the feature templates in the central bank database, the ticket vending machine 1 triggers the ticket printing module to print tickets, significantly improving the cash ticket vending efficiency.
[0039] It should be understood that this embodiment is only used to illustrate the present invention and not to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims of this application.
Claims
1. A ticket-selling device for tourism, comprising a ticket vending machine (1). An installation plate (2) is fixedly provided at the bottom of the outer shell of the ticket vending machine (1), and universal wheels (3) are provided at the bottom of the installation plate (2). It is characterized in that It further includes a banknote processing mechanism (5) disposed inside the ticket vending machine (1), and the banknote processing mechanism (5) is composed of a transmission mechanism (6), a pressing mechanism (7) and a flattening mechanism (8). The transmission mechanism (6) includes a transmission frame (61) fixedly connected inside the housing of the banknote acceptor (4) of the ticket vending machine (1). Two first transmission rollers (62) are rotatably installed on the transmission frame (61). A first transmission belt (63) is wound around the first transmission rollers (62). A first motor (64) is fixedly installed on one side of the transmission frame (61). The output shaft of the first motor (64) is connected to one of the first transmission rollers (62). A receiving plate (65) is fixedly connected to the inner wall of the outer shell of the ticket vending machine (1) near the banknote acceptor (4), and the receiving plate (65) is flush with the first transmission belt (63). The pressing mechanism (7) includes a first cylinder (71) fixedly installed on the inner wall of the outer shell of the ticket vending machine (1) near the banknote acceptor (4). There are two first cylinders (71) and they are located directly above the transmission frame (61). The telescopic rods of the two first cylinders (71) face downward and are fixedly installed with an installation frame (72). Two second transmission rollers (73) are rotatably installed on the installation frame (72). A second transmission belt (74) is wound around the two second transmission rollers (73). A second motor (75) is fixedly installed on one side of the installation frame (72). The output shaft of the second motor (75) is connected to one of the second transmission rollers (73). The flattening mechanism (8) includes a second cylinder (81) fixedly connected inside the housing of the ticket vending machine (1). There are two second cylinders (81). The telescopic rods of the second cylinders (81) face downward and are fixedly connected to a first electric slide rail (82). A pressing roller (83) is fixedly provided at the bottom of the housing on the side of the two first electric slide rails (82) close to the banknote acceptor (4). A slider (84) is slidably installed at the bottom of the first electric slide rail (82). A flattening roller (85) is fixedly provided between the two sliders (84). The cross-section of the flattening roller (85) is generally streamlined. One end of the flattening roller (85) along the rolling direction is a tip. The flattening roller (85) is in flat contact with the first transmission belt (63). An air delivery groove (851) is axially formed on the bottom surface of the roller body of the flattening roller (85). An identification mechanism (11) for identifying banknote information is provided inside the ticket vending machine (1). The second transmission belt (74) presses down to the surface of the first transmission belt (63) to perform a pre-flattening operation on the banknote. Subsequently, the pressing mechanism (7) resets. At the same time, the second cylinder (81) drives the pressing roller (83) at the bottom of the first electric slide rail (82) to press tightly on one end of the banknote. Subsequently, the first electric slide rail (82) drives the flattening roller (85) to further flatten the pressed banknote.
2. The ticket selling device for tourism according to claim 1, characterized in that, The bottom surface of the roller body of the pressure roller (83) is a flat surface, and a contact pad (831) is fixedly assembled on the bottom surface of the roller body of the pressure roller (83). The bottom contact surface of the contact pad (831) is provided with uneven textures.
3. The ticket-selling device for tourism according to claim 2, characterized in that, The flattening roller (85) is made of a heat-conducting material. A section of heating wire (10) is assembled on the top of the roller body of the flattening roller (85). The heating wire (10) is attached to the surface of the roller body of the flattening roller (85), and the heating wire (10) is used to heat the flattening roller (85).
4. The ticket selling device for tourism according to claim 3, characterized in that, Air pumps (9) are fixedly installed on the inner sides of the casings of the two first electric sliding rails (82). A cavity is formed inside the roller body of the flattening roller (85). The cavity inside the flattening roller (85) communicates with the air delivery groove (851) at the bottom. The air outlets of the two air pumps (9) on both sides are connected to the cavity inside the flattening roller (85) through air delivery pipes (91). The air pumps (9) are used to blow air into the flattening roller (85) and blow it out from the air delivery groove (851).
5. The ticket selling device for tourism according to claim 4, characterized in that, The identification mechanism (11) includes a fixing plate (111), a first bracket (112), a first scanning camera (113), a second bracket (114), and a second scanning camera (115). A fixing plate (111) is horizontally and fixedly connected to the inner wall of the ticket vending machine (1) housing away from the banknote acceptor (4). The top surface of the fixing plate (111) is fixedly connected to a first bracket (112). The end of the first bracket (112) faces vertically downward and is equipped with a first scanning camera (113). A second bracket (114) is fixedly connected to the bottom surface. The end of the second bracket (114) faces vertically upward and is equipped with a second scanning camera (115).
6. The ticket-selling device for tourism according to claim 5, characterized in that, A clamping mechanism (12) for moving banknotes from the banknote processing mechanism (5) is arranged on the fixing plate (111). The clamping mechanism (12) includes second electric sliding rails (121) symmetrically arranged on both side walls of the fixing plate (111). A support plate (122) is slidably installed between the two second electric sliding rails (121) on both sides. A group of third electric sliding rails (123) symmetrically arranged up and down are formed on the upper part of the plate body of the support plate (122). A clamping plate (125) is assembled between a group of third electric sliding rails (123) on the support plate (122) through a mounting block (124). The clamping plate (125) is located between the first scanning camera (113) and the second scanning camera (115).
Citation Information
Patent Citations
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