An imaging film digitization self-service device
By designing digital self-service equipment for image films, the automatic bagging of films is achieved using guide components and bagging components, solving the problems of traditional manual bagging inefficiency and electrostatic adsorption, and improving the smoothness of workflow and the stability of film bagging.
Patent Information
- Application Number
- CN202510433618.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2045-04-08
AI Technical Summary
In traditional image film processing, after the image film is printed, the bagging process relies on manual manual operations, which is inefficient and prone to human errors, especially in places where the film is used in large quantities, which affects the smoothness of the workflow.
Design a digital self-service equipment for image film, including a self-service chip picking machine, which is equipped with printing modules, guidance components, bag entry components and discharge components in the machine. Through the coordination of the guide assembly and the bag-in assembly, the film is automatically bagged, and the electric sliding table and ion fan are used to ensure the regular opening of the film bag opening and the stable film into bag.
Automatic bagging of image film is realized, reducing manual operation, improving efficiency, avoiding human errors, improving the smoothness of work flow, and eliminating the electrostatic adsorption problem through ion fans, ensuring the stability of film in bagging.
Smart Images

Figure CN119946194B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of self-service film taking equipment, and in particular to a self-service device for digitizing image films. Background Art
[0002] In the traditional image film processing process, when the printing module completes the printing of the relevant image film, it faces a series of problems that need to be solved urgently. At present, after the image film is printed and exported from the film outlet, the bagging work mainly relies on manual operation. This process is not only labor-intensive and inefficient, but also prone to human errors, which brings many inconveniences to people. Especially in places such as hospitals where a large amount of film is used, the manual bagging method seriously affects the smoothness of the workflow. At the same time, there are many technical difficulties in the process of loading the image film into the film bag. On the one hand, the film bag mouth is difficult to open stably and regularly, which makes it difficult to put the image film into the bag. On the other hand, electrostatic adsorption is very likely to occur between the film and the film bag, which not only increases the difficulty of putting the film into the bag, but also may cause multiple films to stick together due to static electricity, and get stuck during subsequent import. Therefore, we propose a digital self-service device for image film to solve the above-mentioned problems. Summary of the invention
[0003] The purpose of the present invention is to solve the shortcomings of the background technology and to propose a self-service device for digitizing image films.
[0004] To achieve the above purpose, the technical solution adopted by the present invention is: a self-service device for digitizing image films, including a self-service film taking machine, the self-service film taking machine includes a machine body, a printing module is arranged in the middle of the machine body, a guide assembly is arranged on the lower side of the machine body, a bag-introducing assembly is arranged on the upper part of the guide assembly, and a material-discharging assembly is arranged on the rear side of the bag-introducing assembly;
[0005] The guide assembly is used to guide the film bag;
[0006] The bagging assembly is used to bag the film;
[0007] The discharging assembly is used to discharge the bagged films;
[0008] The bagging component includes a top plate and a wear-resistant sleeve. One side of the middle of the top plate is provided with an opening. A top frame is installed on the top of the top plate. A guide groove is provided at the bottom of the top frame. A reserved port is provided on one side of the top frame away from the printing module. Electric sliding tables are symmetrically installed on both sides inside the top frame. The sliding parts of the electric sliding tables are all installed with connecting pipes. The top ends of the connecting pipes are all connected to ion blowers. The ion blowers are all arranged inside the top frame. The lower parts of the connecting pipes are all arranged inside the guide groove. A plurality of fixed shafts are arranged on one side of each connecting pipe. The fixed shafts and the connecting pipes are connected by connecting rods. The connecting rods are rotatably connected to the fixed shafts and the connecting pipes respectively.
[0009] Preferably, the guiding component includes a mounting frame. A rolling roller is installed inside the upper part of the mounting frame. A guide rod is arranged behind the rolling roller. A plurality of first guiding rollers and a feeding table are arranged at the top of the guide rod. Fixed frames are arranged on both sides of the feeding table. Motors are arranged at the ends of the first guiding rollers. Limiting plates are fixedly connected to both ends of the feeding table. Limiting rods penetrate through the upper and lower sides of the middle of the limiting plates. The limiting rods are slidably connected to the limiting plates. Top springs are sleeved on both sides of the outer periphery of the limiting rods. The limiting rods are fixedly connected to the upper and lower parts inside the fixed frames respectively.
[0010] Preferably, the discharging component includes an electric push plate. The electric push plate is installed on the upper side of the rear part of the printing module. A film outlet is provided at the top of the rear side of the printing module. A guiding plate is arranged at the position opposite to the film outlet. A guiding frame is arranged behind the guiding plate. The guiding plate and the guiding frame are both installed on the upper side of the rear part inside the machine body. A second guiding roller is installed at the bottom of the guiding frame. A discharging table is installed on the top of the printing module. A replenishing port is provided at the front part of the printing module. An adsorption roller is arranged at the lower part of the electric push plate.
[0011] Preferably, sliding sleeves are installed on the upper and lower parts of one side of the outermost fixed shaft. One ends of the sliding sleeves away from the fixed shaft are installed on one side of the outer periphery of the connecting pipe. Return springs are sleeved on the outer peripheries of the sliding sleeves. Connecting sleeves are sleeved on the outer peripheries of the lower parts of the fixed shaft and the connecting pipe. The connecting sleeves are all installed inside the wear-resistant sleeve.
[0012] Preferably, hoses are fixedly connected to the tops of the fixed shafts. One ends of the hoses away from the fixed shafts are fixedly connected to one side of the connecting pipe. The connecting pipes are all communicated with the inside of the fixed shaft through the hoses.
[0013] Preferably, protective sheets are arranged on one side of each connecting pipe. Uniformly distributed through holes are provided inside the protective sheets. Connecting pipes are fixedly connected to the upper and lower parts of the protective sheets.
[0014] Preferably, one ends of the connecting pipes away from the protective sheets are fixedly connected to the connecting pipe. The connecting pipes are all communicated with the inside of the protective sheet through the connecting pipes. The wear-resistant sleeves are all arranged inside the opening.
[0015] Preferably, the fixing frames are fixedly connected to both sides inside the machine body. The first guiding roller and the loading table are both arranged at the rear side of the printing module, and an electric cutter is installed at the lower side of the rear part of the printing module.
[0016] Preferably, motors are provided for the second guiding roller and the adsorption roller driving part. Air pumps are installed at the ends of the adsorption rollers, and uniformly distributed through holes are formed in the outer periphery of the adsorption rollers.
[0017] Preferably, a display screen is arranged on one side of the front part of the machine body. A plurality of card slots are arranged on one side of the display screen. A film taking port is arranged at the lower part of the display screen. The front end cover is connected to the lower side of the front part of the machine body through a hinge.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. After the printing module finishes printing the relevant image film, the image film is exported through the film outlet. The first guiding roller and the loading table can guide and output the film bag, so that the end of the film bag is guided between the adsorption rollers. At this time, the air pump at the end of the adsorption roller works to extract the gas inside the adsorption roller, so that the outside of the adsorption roller has adsorption force to adsorb both sides of the film bag. At the same time, the rotation of the adsorption roller can tear open the mouth of the film bag. At this time, the image film will encounter the guiding plate during the export process. Under the guidance of the guiding plate, the image film will pass through the reserved opening and enter the film bag, thus realizing the automatic bagging of the image film, reducing the situation that people need to manually bag the film after taking the film, providing convenience for people, and being beneficial to actual use.
[0020] 2. After the bagging is completed, the air pump at the end of the adsorption roller is closed, and the electric push plate and the guiding component start to work. The electric push plate extends, and the film and the film bag are pushed to one side of the second guiding roller by the electric push plate to contact the second guiding roller. The work of the second guiding roller and the guiding component can further export the film and the film bag upward. Under the guidance of the guiding frame, the film and the film bag are guided to the discharging table. Through the work of the discharging table, the film and the film bag are exported, so that the film and the film bag can be discharged from the machine body through the film taking port, which is convenient for people to take and is beneficial to actual use.
[0021] 3. When bagging the imaging film, the electric slide table inside the top frame will start working. Through the electric slide table, the connecting pipe can be driven to move to both sides, so as to be able to resist both sides inside the film bag, stretch open the film bag mouth, making the film bag mouth open more regularly and stably, which is beneficial to the work of putting the imaging film into the bag. At the same time, when it is necessary to export and load more imaging films at one time, the electric slide table will further start to move to both sides. At this time, the outermost connecting sleeve will be restricted by the film bag, so that the sliding sleeve and the return spring will be compressed, causing the connecting rod to deflect, resulting in the deformation of the wear-resistant sleeve, so as to be able to change the shape of the film bag mouth, making the gap where the film bag mouth can expand wider, facilitating the work of putting more imaging films into the bag, which is beneficial to actual use.
[0022] 4. During actual use, the ion blower inside the top frame will start synchronously, and the ion wind will be discharged through the connecting pipe. Under the guidance of the hose and the connecting pipe, part of the air flow will be discharged through the fixed shaft, so as to be able to blow open the inside of the film bag, which is beneficial to the stable work of putting the imaging film into the bag. At the same time, it can avoid the occurrence of electrostatic adsorption between the film and the film bag, resulting in difficult bagging. Part of the air flow will be discharged through the through hole. Through the through hole, the film can be guided and blown. When putting in multiple films, the static electricity of the film can be eliminated through the air flow, and at the same time, the film can be shaken to avoid the situation that the subsequent film is stuck by the remaining films inside during import, which is beneficial to actual use. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is the front three-dimensional structural schematic diagram of a digital self-service device for imaging films according to the present invention;
[0024] Figure 2 is the internal structural schematic diagram of a digital self-service device for imaging films according to the present invention;
[0025] Figure 3 is the partial structural schematic diagram of the guiding frame of a digital self-service device for imaging films according to the present invention;
[0026] Figure 4 is the partial structural schematic diagram of one guiding roller of a digital self-service device for imaging films according to the present invention;
[0027] Figure 5 is the partial structural schematic diagram of the adsorption roller of a digital self-service device for imaging films according to the present invention;
[0028] Figure 6 is the partial structural schematic diagram of the top frame of a digital self-service device for imaging films according to the present invention;
[0029] Figure 7 is the partial structural schematic diagram of the top plate of a digital self-service device for imaging films according to the present invention;
[0030] Figure 8 This is a schematic diagram of a partial structure at the wear-resistant sleeve and the film protector of a digital self-service device for imaging films according to the present invention;
[0031] Figure 9 This is a schematic diagram of a partial structure at the connecting rod of a digital self-service device for imaging films according to the present invention.
[0032] 1. Self-service film pick-up machine; 101. Machine body; 102. Display screen; 103. Card insertion slot; 104. Film pick-up port; 105. Front end cover; 106. Printing module; 107. Roll; 108. Mounting rack; 109. Guide rod; 110. First guiding roller; 111. Guiding frame; 112. Discharge table; 113. Film outlet; 114. Guide plate; 115. Second guiding roller; 116. Adsorption roller; 117. Loading table; 118. Fixed rack; 119. Limiting plate; 120. Through hole; 121. Top spring; 122. Limiting rod; 123. Top rack; 124. Electric push plate; 125. Wear-resistant sleeve; 126. Guide groove; 127. Reserved port; 128. Opening; 129. Top plate; 130. Connecting rod; 131. Fixed shaft; 132. Connecting sleeve; 133. Connecting pipe; 134. Film protector; 135. Through port; 136. Connecting pipe; 137. Hose; 138. Return spring; 139. Sliding sleeve; 140. Electric cutter; 141. Refill port. Detailed implementation manners
[0033] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are only examples, and those skilled in the art can think of other obvious variations.
[0034] As Figures 1-9 shown, a digital self-service device for imaging films includes a self-service film pick-up machine 1. The self-service film pick-up machine 1 includes a machine body 101. A display screen 102 is provided on one side of the front part of the machine body 101. A plurality of card insertion slots 103 are provided on one side of the display screen 102. A film pick-up port 104 is provided below the display screen 102. The lower side of the front part of the machine body 101 is connected to a front end cover 105 through a hinge. A printing module 106 is provided in the middle of the machine body 101. The printing module 106 is prior art, so it will not be described in detail here. A guiding component is provided on the lower side inside the machine body 101. A bagging component is provided above the guiding component. A discharging component is provided behind the bagging component;
[0035] The guiding component is used to guide the film bag;
[0036] The bagging component is used to bag the film;
[0037] The discharging component is used to export the bagged film;
[0038] The bag-entering assembly includes a top plate 129 and a wear-resistant sleeve 125. An opening 128 is provided on one side of the middle of the top plate 129. A top frame 123 is installed on the top of the top plate 129. A guide groove 126 is provided on the bottom of the top frame 123. A reserved opening 127 is provided on the side of the top frame 123 away from the printing module 106. Both sides of the top frame 123 are installed with symmetrically distributed electric slides. The sliding parts of the electric slides are installed with connecting pipes 136. The top ends of the connecting pipes 136 are connected with ion blowers. The ion blowers are arranged inside the top frame 123. The lower parts of the connecting pipes 136 are arranged on the inner side of the guide groove 126. The connecting pipes A plurality of fixed shafts 131 are arranged on one side of 136, and the fixed shafts 131 and the connecting tubes 136 are connected by connecting rods 130, and the connecting rods 130 are rotatably connected to the fixed shafts 131 and the connecting tubes 136, and sliding sleeves 139 are installed on the upper and lower parts of one side of the outermost fixed shaft 131, and the ends of the sliding sleeves 139 away from the fixed shaft 131 are installed on the outer side of the connecting tube 136, and the outer peripheries of the sliding sleeves 139 are sleeved with return springs 138, and the lower parts of the outer peripheries of the fixed shafts 131 and the connecting tubes 136 are sleeved with connecting sleeves 132, and the connecting sleeves 132 are installed on the inner side of the wear-resistant sleeves 125;
[0039] Furthermore, in the specific implementation, people can realize the self-service film retrieval work for the image film through the self-service film retrieval machine 1. The card insertion port 103 on the self-service film retrieval machine 1 can facilitate people to insert the medical card to query data information. After that, people can perform touch operation through the display screen 102 and use the printing module 106 to print the image film to realize the self-service printing work. When the image film is bagged, the electric slide inside the top frame 123 will start to work, and the connecting pipe 136 can be driven to move to both sides by the electric slide, so that it can resist the two sides inside the film bag and stretch the film bag mouth. This allows the film bag opening to be opened more regularly and stably, which is beneficial for the entry of imaging films into the bag. At the same time, when more imaging films need to be loaded at one time, the electric slide will further start to move to both sides. At this time, the outermost connecting sleeve 132 will be restricted by the film bag, so that the sliding sleeve 139 and the return spring 138 will be compressed, causing the connecting rod 130 to deflect, resulting in the deformation of the wear-resistant sleeve 125, thereby changing the shape of the film bag opening, making the gap that can be expanded at the film bag opening wider, making it convenient for more imaging films to be entered into the bag, and facilitating actual use.
[0040] Among them, hoses 137 are fixedly connected to the tops of the fixed shafts 131. One ends of the hoses 137 far from the fixed shafts 131 are fixedly connected to one side of the communicating pipes 136. The communicating pipes 136 are all connected to the interiors of the fixed shafts 131 through the hoses 137. Protective sheets 134 are arranged on one sides of the communicating pipes 136. Uniformly distributed through openings 135 are formed inside the protective sheets 134. Connecting pipes 133 are fixedly connected to the upper and lower parts of the protective sheets 134. One ends of the connecting pipes 133 far from the protective sheets 134 are fixedly connected to the communicating pipes 136. The communicating pipes 136 are all connected to the interiors of the protective sheets 134 through the connecting pipes 133. The wear-resistant sleeves 125 are all arranged inside the openings 128;
[0041] Further, in specific implementation, the ion blowers inside the top frame 123 are started synchronously. The ion wind is discharged through the communicating pipes 136. Under the guidance of the hoses 137 and the connecting pipes 133, part of the air flow is discharged through the fixed shafts 131, so that the inside of the film bag can be blown open, which is beneficial to the stable bagging work of the imaging film. At the same time, it can avoid the static adsorption between the film and the film bag, resulting in difficult bagging. Part of the air flow is discharged through the through openings 135. The film can be guided and blown through the through openings 135. When multiple films are placed, the static electricity of the film can be eliminated through the air flow, and at the same time, the film can be shaken to avoid the situation that the subsequent film is stuck by the remaining films inside during import, which is beneficial to actual use.
[0042] Among them, the guiding assembly includes a mounting frame 108. A winding roller 107 is installed inside the upper part of the mounting frame 108. A guide rod 109 is arranged behind the winding roller 107. Multiple first guiding rollers 110 and a loading table 117 are arranged at the top of the guide rod 109. Fixed frames 118 are arranged on both sides of the loading table 117. Motors are arranged at the ends of the first guiding rollers 110. Limit plates 119 are fixedly connected to both ends of the loading table 117. Limit rods 122 penetrate through the upper and lower sides of the middle parts of the limit plates 119. The limit rods 122 are slidably connected to the limit plates 119. Top springs 121 are sleeved on both outer sides of the limit rods 122. The limit rods 122 are fixedly connected to the upper and lower parts inside the fixed frames 118. The fixed frames 118 are fixedly connected to both sides inside the machine body 101. The first guiding rollers 110 and the loading table 117 are both arranged behind the printing module 106. An electric cutting knife 140 is installed at the lower part behind the printing module 106;
[0043] Furthermore, during specific implementation, after the printing module 106 finishes printing the relevant image film, the image film is exported through the film outlet 113. At the same time, the guiding component starts to work, and the guiding and output of the film bag can be achieved through the first guiding roller 110 and the loading table 117, so that the end of the film bag is guided between the adsorption rollers 116. At this time, the air pump at the end of the adsorption roller 116 works to extract the gas inside the adsorption roller 116, so that the outside of the adsorption roller 116 has adsorption force to adsorb both sides of the film bag. At the same time, the rotation of the adsorption roller 116 can tear open the mouth of the film bag. At this time, the image film will encounter the guiding plate 114 during the export process. Under the guidance of the guiding plate 114, the image film will pass through the reserved opening 127 and enter the film bag, thus realizing the automatic bagging of the image film, reducing the situation that people need to manually bag the film after taking the film, providing convenience for people, and being beneficial to actual use.
[0044] Among them, the discharging component includes an electric push plate 124, which is installed on the upper side of the rear part of the printing module 106. There is a film outlet 113 at the top of the rear side of the printing module 106. A guiding plate 114 is arranged at the position directly opposite to the film outlet 113. A guiding frame 111 is arranged at the rear part of the guiding plate 114. Both the guiding plate 114 and the guiding frame 111 are installed on the upper side of the inner rear part of the machine body 101. A second guiding roller 115 is installed at the bottom of the guiding frame 111. A discharging table 112 is installed on the top of the printing module 106. There is a replenishing opening 141 at the front part of the printing module 106. An adsorption roller 116 is arranged at the lower part of the electric push plate 124. Motors are arranged in the driving parts of both the second guiding roller 115 and the adsorption roller 116. Air pumps are installed at the ends of the adsorption roller 116. Uniformly distributed through holes 120 are arranged on the outer circumference of the adsorption roller 116;
[0045] Furthermore, during specific implementation, after the bagging is completed, the air pump at the end of the adsorption roller 116 is closed, and the electric push plate 124 and the guiding component start to work, so that the electric push plate 124 extends. Through the electric push plate 124, the film and the film bag can be pushed to one side of the second guiding roller 115 to make them contact with the second guiding roller 115. Through the work of the second guiding roller 115 and the guiding component, the film and the film bag can be further exported upward. Through the guidance of the guiding frame 111, the film and the film bag can be guided to the discharging table 112. Through the work of the discharging table 112, the film and the film bag can be exported, so that the film and the film bag can be discharged from the machine body 101 through the film taking opening 104, thus facilitating people to take, and being beneficial to actual use.
[0046] Working principle:
[0047] In actual use, people can use the self-service film machine 1 to realize the self-service film retrieval work for the image film. The card insertion port 103 on the self-service film machine 1 can facilitate people to insert the medical card to query data information. After that, people can perform touch operations through the display screen 102 and use the printing module 106 to print the image film to realize the self-service printing work. When the printing module 106 has completed printing the relevant image film, the image film will be exported through the film outlet 113. At the same time, the guiding component starts to work, and the film bag can be guided and output through the guide roller 110 and the loading platform 117, so that the end of the film bag will be guided between the adsorption roller 116. At this time, the air pump at the end of the adsorption roller 116 can extract the air inside the adsorption roller 116. The suction roller 116 is provided with a suction force on the outside to realize suction on both sides of the film bag. At the same time, the rotation of the suction roller 116 can tear the mouth of the film bag open. At this time, the image film will encounter the guide plate 114 during the export process. Under the guidance of the guide plate 114, the image film will pass through the reserved opening 127 and enter the film bag. Therefore, the image film can be automatically bagged, which reduces the need for manual bagging after people take out the film, provides convenience for people, and is conducive to practical use. When the bagging is completed, the air pump at the end of the suction roller 116 will be closed, and the electric push plate 124 and the guide assembly will start working, so that the electric push plate 124 will extend, and the film and the film bag can be pushed to the guide rollers 115 and 116 by the electric push plate 124. The film and the film bag are guided to the discharge table 112 by the guide frame 111, and the film and the film bag are guided to the discharge table 112 by the discharge table 112, so that the film and the film bag can be discharged from the machine body 101 through the film taking port 104, which is convenient for people to take and is beneficial to practical use. When the imaging film is bagged, the electric slide inside the top frame 123 will start to work, and the connecting pipe 136 can be driven to move to both sides by the electric slide, so that it can resist the two sides inside the film bag and stretch the film bag opening, so that the film bag opening can be opened more regularly and stably, which is beneficial to the bagging of the imaging film. At the same time, when more image films need to be loaded at one time, the electric slide will start to move to both sides. At this time, the outermost connecting sleeve 132 will be restricted by the film bag, so that the sliding sleeve 139 and the return spring 138 will be compressed, and the connecting rod 130 will be deflected, causing the wear-resistant sleeve 125 to deform, thereby changing the shape of the film bag opening, making the gap that can be opened at the film bag opening wider, facilitating the bagging of more image films, and facilitating practical use. In actual use, the ion blower inside the top frame 123 will start synchronously, and the ion wind will be discharged through the connecting pipe 136. Under the guidance of the hose 137 and the connecting pipe 133, part of the airflow will be discharged through the fixed shaft 131, so that the inside of the film bag can be opened.Thus, it is beneficial to the stable bagging of the imaging film. At the same time, it can avoid the electrostatic adsorption between the film and the film bag, which may cause difficulties in bagging. Part of the air flow will be discharged through the through-port 135. The film can be guided and blown through the through-port 135. When multiple films are placed, the electrostatic charge on the film can be eliminated through the air flow, and at the same time, the film can be shaken to avoid the situation that the subsequent film is stuck by the other films inside during import, which is beneficial to practical use.
[0048] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A self-service device for digitizing image films, comprising a self-service film dispenser (1), characterized in that: The self-service film dispensing machine (1) comprises a machine body (101), a printing module (106) is arranged in the middle of the machine body (101), a guide assembly is arranged at the lower side of the machine body (101), a bag-feeding assembly is arranged at the upper part of the guide assembly, and a material-discharging assembly is arranged at the rear side of the bag-feeding assembly; The guide assembly is used to guide the film bag; The bagging assembly is used to bag the film; The discharging assembly is used to discharge the bagged films; The bag-entering assembly comprises a top plate (129) and a wear-resistant sleeve (125); an opening (128) is provided on one side of the middle of the top plate (129); a top frame (123) is installed on the top of the top plate (129); a guide groove (126) is provided on the bottom of the top frame (123); a reserved opening (127) is provided on the side of the top frame (123) away from the printing module (106); symmetrically distributed electric slides are installed on both sides of the top frame (123); the sliding parts of the electric slides are installed with connecting pipes (136); the top ends of the connecting pipes (136) are connected to the printing module (106); An ion blower is provided, wherein the ion blower is arranged inside the top frame (123), the lower part of the connecting pipe (136) is arranged inside the guide groove (126), a plurality of fixed shafts (131) are arranged on one side of the connecting pipe (136), the fixed shafts (131) and the connecting pipe (136) are connected via connecting rods (130), the connecting rods (130) are rotatably connected to the fixed shafts (131) and the connecting pipe (136), and a sliding sleeve (139) is installed on the upper and lower parts of one side of the outermost fixed shaft (131), and the sliding sleeve (139) is away from the fixed shaft One end of the shaft (131) is mounted on one side of the outer periphery of the connecting tube (136); a return spring (138) is sleeved on the outer periphery of the sliding sleeve (139); a connecting sleeve (132) is sleeved on the lower part of the outer periphery of the fixed shaft (131) and the connecting tube (136); the connecting sleeve (132) is mounted on the inner side of the wear-resistant sleeve (125); a hose (137) is fixedly connected to the top of the fixed shaft (131); one end of the hose (137) away from the fixed shaft (131) is fixedly connected to one side of the connecting tube (136); and the connecting tube (136) is connected through the hose ( 137) is connected to the interior of the fixed shaft (131), a guard sheet (134) is provided on one side of the connecting pipe (136), the inner side of the guard sheet (134) is provided with evenly distributed through openings (135), the upper and lower parts of the guard sheet (134) are fixedly connected to the connecting pipe (133), one end of the connecting pipe (133) away from the guard sheet (134) is fixedly connected to the connecting pipe (136), the connecting pipe (136) is connected to the interior of the guard sheet (134) through the connecting pipe (133), and the wear-resistant sleeve (125) is arranged on the inner side of the opening (128).
2. The self-service device for digitizing image films according to claim 1, characterized in that: The guide assembly comprises a mounting frame (108), a winding roller (107) is mounted on the inner side of the upper portion of the mounting frame (108), a guide rod (109) is arranged on the rear side of the winding roller (107), a plurality of guide rollers (110) and a loading platform (117) are arranged on the top of the guide rod (109), a fixed frame (118) is arranged on both sides of the loading platform (117), a motor is arranged at the end of each guide roller (110), both ends of the loading platform (117) are fixedly connected to a limit plate (119), the upper and lower sides of the middle of the limit plate (119) are penetrated by a limit rod (122), the limit rod (122) is slidably connected to the limit plate (119), top springs (121) are sleeved on both sides of the outer circumference of the limit rod (122), and the limit rod (122) is fixedly connected to the upper and lower inner sides of the fixed frame (118).
3. The self-service device for digitizing image films according to claim 1, characterized in that: The material discharging assembly comprises an electric push plate (124), the electric push plate (124) being mounted on the upper rear side of the printing module (106), a film discharging port (113) being provided at the top rear side of the printing module (106), a guide plate (114) being provided opposite the film discharging port (113), a guide frame (111) being provided at the rear of the guide plate (114), the guide plate (114) and the guide frame (111) being both mounted on the upper rear side of the machine body (101), a guide roller 2 (115) being installed at the bottom of the guide frame (111), a material discharging table (112) being installed at the top of the printing module (106), a material replenishing port (141) being provided at the front of the printing module (106), and an adsorption roller (116) being provided at the bottom of the electric push plate (124).
4. The self-service device for digitizing image films according to claim 2, characterized in that: The fixing frames (118) are fixedly connected to both sides of the machine body (101); the guide roller 1 (110) and the loading platform (117) are arranged at the rear side of the printing module (106); and an electric cutter (140) is installed at the lower rear side of the printing module (106).
5. The self-service device for digitizing image films according to claim 3, characterized in that: The driving parts of the second guide roller (115) and the adsorption roller (116) are both provided with motors, the ends of the adsorption rollers (116) are both provided with air pumps, and the outer circumferences of the adsorption rollers (116) are both provided with evenly distributed through holes (120).
6. The self-service device for digitizing image films according to claim 1, characterized in that: A display screen (102) is provided on one side of the front of the machine body (101), a plurality of card insertion ports (103) are provided on one side of the display screen (102), a film removal port (104) is provided at the bottom of the display screen (102), and a front end cover (105) is connected to the bottom side of the front of the machine body (101) via a hinge.
Citation Information
Patent Citations
Automatic bagging device and control method thereof
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Computer-aided medical image printing device
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