Towel making mechanism for wet towel and wet towel machine
By designing independent material and water hoppers, combined with material pushing and towel dispensing components, the problems of towel expansion and jamming and inconsistent humidity in wet towel machines are solved, achieving uniform humidity control and convenient use of wet towels.
Patent Information
- Application Number
- CN202310445037.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-21
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2043-04-21
AI Technical Summary
The existing towel dispenser combines the towel compartment and water filling compartment into one unit, which leads to problems such as the compressed dry towels in the towel compartment absorbing water and expanding, causing them to get stuck, inconsistent humidity levels, and the baffle obstructing the view.
The design includes an independent material hopper, a towel pushing assembly, and a towel dispensing assembly. The pushing part transfers compressed dry towels to the water injection chamber for water injection. The baffle changes position through a mechanical structure to facilitate the use of wet towels. Sensors control the pushing plate's movement to prevent residual water from causing expansion and bacterial growth.
It achieves uniform humidity control of wet towels, avoids towel jamming, and the baffle is hidden when taking out the towel, ensuring a neat product appearance and making it convenient for consumers to use.
Smart Images

Figure CN116687249B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of wetting compressed dry towels, and particularly relates to a wet towel making mechanism and a wet towel machine for wetting compressed dry towels into wet towels for use. BACKGROUND
[0002] The existing wet towel machine has the following defects in the towel outlet mechanism, in which the towel bin and the water injection bin are combined together.
[0003] 1. The water injection is performed after the towel bin is discharged, and a large amount of residual water is caused when the towel is taken out during the water injection process, and the compressed dry towels in the whole bin are absorbed and expanded after the bin is returned, which causes the towel to be stuck and bacteria to breed.
[0004] 2. The consumers who first experience the product do not know when the water injection is completed, and the wet towel is often taken out in advance during the water injection process, which causes poor consistency of the wetness of the wet towel.
[0005] 3. The baffle of the towel bin blocks the view of the consumers and hinders the consumers from taking the towel while ensuring the appearance of the towel outlet mechanism, which is inconvenient for the consumers to take the wet towel. SUMMARY
[0006] The present application aims to overcome at least one of the defects caused by the combination of the towel bin and the water injection bin in the existing wet towel machine, and provides a wet towel making mechanism and a wet towel machine.
[0007] To achieve the above-mentioned purposes, the wet towel making mechanism of the present application comprises:
[0008] a bin barrel having an open end, the open end faces downward to allow the compressed dry towel stored in the bin barrel to fall from the open end;
[0009] a towel pushing assembly having a receiving port, a first pushing plate and a supporting plate arranged from top to bottom, the receiving port receives the open end, the first pushing plate is driven by a first motor to move horizontally, the first pushing plate has a pushing part, the pushing part moves between a first material receiving position and a material falling position when the first pushing plate moves, the first material receiving position is located directly below the receiving port, the material falling position deviates from the receiving port, the compressed dry towel is supported by the supporting plate when the pushing part is located at the first material receiving position, and the compressed dry towel falls from the pushing part when the pushing part is located at the material falling position;
[0010] a towel outlet assembly having a second pushing plate, the second pushing plate is located on the lower side of the supporting plate and is driven by a second motor to move horizontally, the second pushing plate has a water injection bin, the water injection bin moves between a second material receiving position and a towel taking position when the second pushing plate moves, the second material receiving position is located directly below the material falling position, and the towel taking position is located at the position where the water injection bin is exposed;
[0011] The water injection device comprises a water tank and a water pump, and the water pump is connected to the water tank and the water injection bin through a water pipe.
[0012] The wet towel manufacturing mechanism is provided separately from the pushing part, and the received compressed dry towel is transferred to the water injection bin by the pushing part, and the towel is injected with water in the water injection bin, so that the residual water in the water injection bin does not cause the compressed dry towel in the bin barrel to absorb water and expand and breed bacteria, and the compressed dry towel is also prevented from being stuck due to water absorption and expansion.
[0013] In order to facilitate assembly, especially the horizontal movement of the first and second push plates for transferring the conveyed towel, the towel pushing assembly comprises an upper cover and a lower cover, the receiving port is arranged on the upper cover, the supporting plate is fixed between the upper cover and the lower cover, the first accommodating cavity is formed between the supporting plate and the upper cover, the second accommodating cavity is formed between the supporting plate and the lower cover, the first push plate is slidingly assembled in the first accommodating cavity, and the second push plate is slidingly assembled in the second accommodating cavity.
[0014] In order to facilitate the consumer to access the wet towel, the towel output assembly comprises a baffle, the baffle is vertically movably assembled at the outer end of the second push plate, the baffle is provided with a lifting structure, the baffle is lifted to a shielding position by the lifting structure when the water injection bin is located at the second receiving position, the baffle is lowered to an avoiding position when the water injection bin is located at the towel taking position, and the avoiding position is lower than the shielding position. Accordingly, the position of the baffle is changed to facilitate the consumer to access the wet towel when the wet towel is output, and the internal structure is shielded by the baffle when the wet towel is not output, so that the appearance of the product is neat.
[0015] Specifically, the lifting structure comprises a lifting part arranged on the towel pushing assembly and a receiving part arranged on the baffle, and the lifting part and the receiving part are matched through a slope. This structure does not need to be provided with power, and only relies on the mechanical structure to realize the lifting of the baffle.
[0016] In order to facilitate the baffle to be lowered, a resilient element is arranged on the baffle, and the resilient element applies a downward elastic force to the baffle.
[0017] In order to control the actions of the first and second push plates, a first sensing device is arranged at the first receiving position for detecting whether there is a compressed dry towel in the pushing part, and a second sensing device is arranged in the water injection bin for detecting whether there is a towel in the water injection bin. The actions of the first and second push plates are controlled by sensing whether there is a towel at the corresponding position through the first and second sensing devices.
[0018] In order to constrain the compressed dry towel, prevent the compressed dry towel from being separated from the pushing part when the first push plate moves horizontally with the compressed dry towel, the pushing part is a through hole, and the compressed dry towel will not be out of position when moving in the through hole with the first push plate, and can be accurately moved from the first receiving position to the dropping position by the pushing part.
[0019] In order to achieve the above-mentioned purpose, the wet towel manufacturing method of the present application is characterized by performing the following steps:
[0020] (1) The compressed dry towel in the bin barrel falls into the pushing part at the first receiving position;
[0021] (2) The pushing part pushes the compressed dry towel to the receiving position and resets, and the compressed dry towel pushed to the receiving position falls into the water injection bin at the second receiving position;
[0022] (3) The water injection bin is water injected when it is at the second receiving position, so that the compressed dry towel absorbs water to become an expanded wet towel;
[0023] (4) The water injection bin pushes the expanded wet towel to the towel taking position and resets.
[0024] The method first transfers the received compressed dry towel to the water injection bin by the pushing part, and then injects water into the compressed dry towel in the water injection bin, so as to avoid the residual water in the water injection bin from causing the compressed dry towel in the bin barrel to absorb water and expand, and also avoid the compressed dry towel from being stuck due to water absorption and expansion. Moreover, when the water injection bin is at the second receiving position, water is injected into the water injection bin, so that the compressed dry towel absorbs water to become an expanded wet towel, thereby avoiding the consumer from taking the wet towel in advance and ensuring that the wet towel maintains consistent humidity.
[0025] In order to facilitate the consumer to take the wet towel, when the water injection bin is at the second receiving position, the baffle is at the shielding position to shield the towel in the water injection bin, and when the water injection bin is at the towel taking position, the baffle is at the avoiding position to expose the towel in the water injection bin for taking, and the avoiding position is lower than the shielding position.
[0026] In order to achieve the above purpose, the wet towel machine of the application is characterized in that: it comprises the towel making mechanism of the application and performs the towel making method of the application, the towel making mechanism is assembled in the machine box, the second receiving position is located in the machine box, and the towel taking position is located outside the machine box.
[0027] The application configures a bin barrel, a towel pushing assembly, a towel taking assembly, and a water injection device, the first pushing plate of the towel pushing assembly transfers the received compressed dry towel to the water injection bin of the second pushing plate of the towel taking assembly, water is injected into the compressed dry towel in the water injection bin, and after the water injection is completed, the second pushing plate pushes the expanded wet towel to the towel taking position for the consumer to take.
[0028] The application separately sets the water injection bin and the pushing part, transfers the received compressed dry towel to the water injection bin by the pushing part, injects water into the towel in the water injection bin, avoids the residual water in the water injection bin from causing the compressed dry towel in the bin barrel to absorb water and expand, and also avoids the compressed dry towel from being stuck due to water absorption and expansion.
[0029] The compressed dry towel received by the pushing part is transferred to the water injection bin, and then water is injected into the compressed dry towel in the water injection bin, so as to avoid that the residual water in the water injection bin causes the compressed dry towel in the bin barrel to absorb water and swell and breed bacteria, and also avoid that the compressed dry towel swells due to water absorption. Moreover, when the water injection bin is located at the second material receiving position, water is supplied to the water injection bin to make the compressed dry towel absorb water and become a swollen wet towel, so as to avoid that the consumer takes the wet towel in advance, and ensure that the wet towel maintains consistent humidity.
[0030] The present application changes the position of the baffle to facilitate the consumer to take the wet towel when the wet towel is output, and blocks the internal structure by the baffle when the wet towel is not output, so as to ensure that the product has a neat appearance. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a schematic diagram of a towel making mechanism of the wet towel of the present application;
[0032] Figure 2 It is Figure 1 a structure exploded schematic diagram of the towel making mechanism shown in FIG. 1;
[0033] Figure 3 It is Figure 2 a structure exploded schematic diagram of the towel pushing assembly shown in FIG. 2;
[0034] Figure 4 It is Figure 2 a structure exploded schematic diagram of the towel pushing assembly shown in FIG. 3;
[0035] Figure 5 It is Figure 1 a schematic diagram of the pushing part of the first pushing plate of the towel making mechanism shown in FIG. 4, which is located at the first material receiving position;
[0036] Figure 6 It is Figure 5 a schematic diagram of the pushing part shown in FIG. 5, which moves transversely to push the compressed dry towel to the dropping position (the second material receiving position) and drop into the water injection bin;
[0037] Figure 7 It is Figure 6 a schematic diagram of the pushing part shown in FIG. 6, which is reset to the first material receiving position;
[0038] Figure 8 It is a schematic diagram of the water injection device shown in FIG. 7, which injects water into the compressed dry towel located in the water injection bin in FIG. 8 to make it swell; Figure 7
[0039] Figure 9 It is a schematic diagram of the second pushing plate shown in FIG. 9, which pushes the swollen wet towel to the towel taking position;
[0040] Figure 10 It is a schematic diagram of the water injection device shown in FIG. 10;
[0041] Figure 11 The internal structure schematic diagram of the wet towel machine of the present application;
[0042] Figure 12 The external shape schematic diagram of the wet towel machine of the present application;
[0043] Figure 13 The circuit control schematic diagram of the wet towel machine of the present application;
[0044] The figure mark explanation:
[0045] 100 material bin barrel: 101 open, 102 clamping hook;
[0046] 200 towel pushing assembly: 201 upper cover, 202 lower cover, 203 supporting plate, 204 first accommodating cavity, 205 second accommodating cavity, 206 receiving port, 207 first pushing plate, 208 first motor, 209 first rack, 210 first gear, 211 pushing part, 212 lifting part, 213 first inclined surface, 214 first sensing device, 215 first transparent cover;
[0047] 300 towel discharging assembly: 301 second pushing plate, 302 baffle, 303 second motor, 304 second rack, 305 second gear, 306 water injection bin, 307 water uniformizing cover, 308 upper plate, 309 lower plate, 310 supporting part, 311 second inclined surface, 312 elastic element, 313 second sensing device, 314 second transparent cover;
[0048] 400 water injection device: 401 water tank, 402 water pump;
[0049] 500 machine case, 501 display screen, 502 control button, 503 top cover, 504 machine case boundary;
[0050] 601 compressed dry towel, 602 expanded wet towel. DETAILED DESCRIPTION
[0051] In order to make the purpose, technical scheme and advantages of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0052] The terms “include” and “have” and any variations thereof in the specification and claims of the present application are intended to cover the non-exclusive inclusion, for example, a method or product including a series of technical features is not necessarily limited to those clearly listed, but can also include other technical features not clearly listed that can be included in the method or product.
[0053] In the description of this invention, it should be understood that the terms "upper," "lower," "left," and "right," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for 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. Therefore, they should not be construed as limitations on this invention. Among them, "upper" and "lower," and "left" and "right" are opposite directions.
[0054] In the description of this invention, it should be understood that the technical features defined by terms such as "first" and "second" which have a sequential concept are only used to clearly describe the defined technical features and to clearly distinguish the defined technical features from other technical features, and do not represent that they are named in this way in actual implementation. Therefore, they should not be construed as limitations on this invention.
[0055] The present invention will now be described in detail with reference to specific embodiments and accompanying drawings.
[0056] like Figures 1-2 As shown, the towel-making mechanism of the wet towel includes a material hopper 100, a towel-pushing assembly 200, a towel-dispensing assembly 300, and... Figure 10 The water injection device 400 shown.
[0057] The hopper cylinder 100 has an opening 101, which allows compressed dry towels 601 stored inside the hopper cylinder to fall through when the opening 101 faces downwards; hooks 102 are installed on the outer wall of the cylinder.
[0058] Towel pusher assembly 200 Figure 3As shown, it comprises an upper cover 201, a lower cover 202 and a supporting plate 203. The supporting plate 203 is fixed between the upper cover 201 and the lower cover 202, and a first accommodating cavity 204 is formed between the supporting plate 203 and the upper cover 201, and a second accommodating cavity 205 is formed between the supporting plate 203 and the lower cover 202. The upper cover 301 is provided with an upward receiving port 206, and the hopper barrel 100 can be clamped to the receiving port 206 by a hook, so that the receiving port is in butt joint with the open port. A first push plate 207 is slidingly assembled in the first accommodating cavity 204, and the receiving port 206, the first push plate 207 and the supporting plate 203 are arranged from top to bottom. The first push plate 207 is driven to move laterally by a first motor 208. Specifically, a first rack 209 is arranged on the first push plate 207, and a first gear 210 is arranged on the output shaft of the first motor. The first push plate is driven to move laterally by the first motor through the meshing of the first gear and the first rack. The first push plate 207 is provided with a pushing part 211, which is a through hole. The pushing part 211 moves between a first receiving position and a discharging position when the first push plate 207 moves. The first receiving position and the discharging position are two limit positions of the lateral movement of the first push plate, so that the pushing part cannot continue to move when it reaches the first receiving position or the discharging position, which will cause the load of the first motor to increase and the working current of the first motor to increase. Therefore, the first motor can be instructed to move reversely by detecting the instantaneous increase of the working current of the first motor. The first receiving position is located directly below the receiving port 206, and is used to receive the compressed dry towels 601 falling from the hopper barrel. The discharging position is offset from the receiving port 206. When the pushing part 211 is located at the first receiving position, the compressed dry towels are supported by the supporting plate 203, and when the pushing part 211 is located at the discharging position, the compressed dry towels fall from the pushing part 211 by offsetting from the supporting plate. Accordingly, the compressed dry towels are moved away from the first receiving position and transferred to the towel outlet assembly by the pushing part 211.
[0059] The towel outlet assembly 300 is as shown in the accompanying drawings. Figure 4As shown, it comprises a second push plate 301 and a baffle 302. The second push plate 301 is located at the lower side of the tray 203, and is slidingly fitted in the second accommodating cavity 205 and driven by the second motor 303 to move laterally. Specifically, a second rack 304 is arranged on the second push plate 301, and a second gear 305 is arranged on the output shaft of the second motor, and the second push plate is driven by the second motor to move laterally through the meshing of the second gear and the second rack. The second push plate 301 has a water injection chamber 306, which moves between a second material receiving position and a towel taking position when the second push plate moves. The second material receiving position and the towel taking position are two limit positions of the lateral movement of the second push plate, so that the water injection chamber cannot continue to move when it reaches the second material receiving position or the towel taking position, thereby causing the load of the second motor to increase, and the working current of the second motor to increase. Therefore, the working current of the second motor can be detected to instruct the second motor to stop working, and the second push plate can be stopped at the second material receiving position or the towel taking position. The second material receiving position is located directly below the material falling position, and is used for the water injection chamber 306 to receive the compressed dry towel falling from the material pushing part 211. The towel taking position is located at the position where the water injection chamber is exposed, and the like. Figure 9 As shown, the baffle 302 is located outside the cabinet boundary 504, and is used for a consumer to take the expanded wet towel 602. The water injection chamber 306 has a water uniformizing cover 307, which is used for uniformly wetting the towel in the water injection chamber with water in the water injection chamber.
[0060] The baffle 302 is vertically movably fitted at the outer end of the second push plate 301. The vertical movement can be realized by fitting the baffle on a vertical slide rod or a vertical rail. With respect to the wet towel machine, the outer end is the end of the second push plate 301 that faces the outside of the wet towel machine. The baffle 302 is used for shielding the towel taking assembly when the towel taking assembly is accommodated in the wet towel machine, so as to make the appearance of the wet towel machine regular. In order to facilitate taking the expanded wet towel, the baffle is provided with a lifting structure. When the water injection chamber is located at the second material receiving position, the baffle is lifted by the lifting structure to a shielding position. When the water injection chamber is located at the towel taking position, the baffle is lowered to an avoiding position, which is lower than the shielding position. In the figure, the second push plate 301 comprises an upper plate 308 and a lower plate 309 that are fitted together, and the baffle 302 is fitted on the upper plate and the lower plate through a guiding structure. Specifically, the lifting structure comprises a lifting part 212 arranged on the lower cover 202 and a receiving part 310 arranged on the baffle 302, and the lifting part and the receiving part are matched through a first inclined surface 213 arranged on the lifting part and facing upward and a second inclined surface 311 arranged on the receiving part and facing downward. The baffle 302 is acted on by an elastic element 312, which exerts a downward elastic force on the baffle 302. The elastic element is hidden between the upper plate and the lower plate. The towel taking assembly with such a structure is like a drawer, which moves out of or into the wet towel machine when the water injection chamber moves between the second material receiving position and the towel taking position. When the water injection chamber moves out of the wet towel machine, the baffle is lowered. When the water injection chamber moves into the wet towel machine, the baffle is lifted.
[0061] The water injection device 400 is as shown in the figure. Figure 10As shown, it comprises a water tank 401 and a water pump 402, the water pump 402 is connected to the water tank 401 and the water filling bin 306 through a water pipe, for supplying water to the water filling bin to wet the compressed dry towel.
[0062] In order to detect the towel, a first sensing device 214 is arranged at the first receiving position for detecting whether there is compressed dry towel in the pushing part, the first sensing device is preferably an infrared detector, which is fixedly arranged at the lower side of the supporting plate 203 and detects whether there is compressed dry towel falling on the supporting plate through the through hole of the supporting plate. In order to keep the sensitivity of the infrared detector, the infrared detector is covered with a first transparent cover 215. When there is compressed dry towel falling on the supporting plate or there is no compressed dry towel falling on the supporting plate, the infrared detector generates different signals, so that whether there is compressed dry towel in the bin barrel can be judged according to the different signals generated by the infrared detector. When there is no compressed dry towel in the bin barrel 100, a towel shortage prompt can be given. A second sensing device 313 is arranged in the water filling bin for detecting whether there is towel in the water filling bin, which has the same structure and working principle as the first sensing device, and a second transparent cover 314 is arranged for the second sensing device 313.
[0063] Based on the same inventive concept of the above-mentioned wet towel making mechanism, the following steps are adopted to make wet towel:
[0064] (1) The compressed dry towel 601 in the bin barrel 100 falls into the pushing part 211 at the first receiving position;
[0065] (2) The pushing part 211 pushes the compressed dry towel 601 to the receiving position and resets, and the compressed dry towel pushed to the receiving position falls into the water filling bin 306 at the second receiving position;
[0066] (3) When the water filling bin 306 is at the second receiving position, the water filling device 400 supplies water to the water filling bin, so that the compressed dry towel 601 absorbs water to become an expanded wet towel 602;
[0067] (4) The water filling bin 306 pushes the expanded wet towel 602 to the towel taking position and resets.
[0068] Moreover, when the water filling bin 306 is at the second receiving position, the baffle 302 is at the shielding position to shield the towel in the water filling bin, and when the water filling bin is at the towel taking position, the baffle is at the avoiding position to expose the towel in the water filling bin for taking, and the avoiding position is lower than the shielding position.
[0069] The above-mentioned wet towel making mechanism is applied to Figures 11-12The wet towel machine is shown. The wet towel machine has a machine box 500, a paper towel mechanism in the machine box, a display screen 501 and a control button 502 on the surface of the machine box. When the water injection bin 306 is in the second receiving position in the machine box 500, the baffle 302 is lifted by the lifting structure to the shielding position and is flush with the machine box 500; when the water injection bin 306 is in the towel taking position outside the machine box 500, the baffle 302 is lowered to the avoiding position and moves out of the machine box. Figures 5-9 Different positions of the baffle are shown in the description. Figures 11-12 The wet towel machine is shown. The wet towel machine executes the paper towel making method of the application and can make compressed dry paper towels into expanded wet paper towels for output and use. The top cover 503 on the top of the machine box can be opened to load or unload the bin barrel.
[0070] Figures 11-12 The wet towel machine is shown. The wet towel machine executes the paper towel making method of the application and can make compressed dry paper towels into expanded wet paper towels for output and use. The top cover 503 on the top of the machine box can be opened to load or unload the bin barrel.
[0071] The loading process is shown in the description. Figure 5 The loading process is shown in the description.
[0072] The loading process is shown in the description. Figure 5 The loading process is shown in the description. Figure 6 The loading process is shown in the description. Figure 7 The loading process is shown in the description.
[0073] The loading process is shown in the description. Figure 8 The loading process is shown in the description.
[0074] The loading process is shown in the description. Figure 9The shown state and stop, baffle 302 and water tank 306 are removed from the cabinet boundary 504, the baffle 302 is lowered, the upper edge of the baffle 302 is lower than the upper end of the expanded wet towel 602, which facilitates the visual and access to the expanded wet towel. If continuous towel is made, the first push plate can be transversely moved from the first receiving position to the dropping position at the same time of the towel dropping action, and a new piece of compressed dry towel is pushed to the second receiving position. Once the second push plate with the water tank is reset to the second receiving position, the compressed dry towel dropped from the pushing part can be received, and there is no need to wait, which can shorten the towel making time.
[0075] The return action of the warehouse is as follows: Figure 9 After the expanded wet towel 602 is taken away, the second sensing device 313 detects that the water tank 306 has no towel, and the second motor 303 drives the second push plate 301 to return to the cabinet. During the process of the second push plate 301 returning to the cabinet, the baffle 302 is lifted, and after the second push plate returns to the cabinet, the baffle 302 completely blocks the second push plate and the water tank, so that the cabinet appearance is complete.
[0076] If the subsequent wet towel is not continuously made, the first push plate 207 and the second push plate 301 are reset to the Figure 5 state shown in the figure. If the subsequent wet towel needs to be continuously made, the first push plate 207 and the second push plate 301 are reset to the Figure 6 state shown in the figure.
[0077] In order to ensure that the first wet towel made by the wet towel machine has the highest effect, the pushing action can be automatically operated: when the second sensing device 313 detects that there is no towel and the first sensing device 214 detects that there is a towel, the pushing action can be started Figures 5-7 without manual operation, and this process is completed inside the cabinet. During the towel making process, the consumer can only feel the process from Figures 8 to 9 , and the towel dropping time is very short. When the first sensing device 214 detects that there is no towel and the second sensing device 313 detects that there is a towel, a towel shortage prompt can be given. When the first sensing device 214 and the second sensing device 313 both detect that there is no towel, a towel shortage alarm can be given. The towel shortage and abnormal operation of the motor can be directly displayed on the display screen.
[0078] The towel making process of the wet towel machine is controlled by Figure 13 the computer system mainboard shown in the figure, and the display screen, the first sensing device, the first motor, the second sensing device, the second motor and the water pump work.
[0079] The water injection action is completed in the cabinet, which avoids the phenomenon that the towel is taken away during the water injection process, and the consistency of the towel making experience is high. The space of the second containing cavity and the opening thereof are larger than the expanded wet towel, so that the compressed dry towel has sufficient expansion space, and the expanded wet towel is prevented from being stuck in the second containing cavity. The material warehouse barrel and the water tank are separated in space, which avoids the phenomenon that the compressed dry towel in the material warehouse barrel is wet, and keeps the material warehouse barrel dry and sanitary.
[0080] The present application separates the material bin barrel and the water injection bin in space, realizes dry and wet separation, prevents the compressed dry towel in the material bin barrel from being soaked, and enables the material bin barrel and the compressed dry towel in the material bin barrel to always keep dry and sanitary.
[0081] The water injection process of the present application is completed in the product, and can fully ensure the consistency of the humidity of the towel.
[0082] The baffle of the present application moves up and down with the towel output action, ensures the beautiful appearance of the whole machine, and facilitates the visual and access of the towel.
Claims
1. A towel making mechanism for making a wet towel, characterized by include: The hopper (100) has an opening (101) that, when facing downwards, allows compressed dry towels (601) stored inside the hopper (100) to fall through the opening (101); The towel pusher assembly (200) has a receiving interface (206), a first pusher plate (207), and a support plate (203) arranged from top to bottom. The receiving interface (206) receives the opening (101). The first pusher plate (207) is driven to move laterally by a first motor (208). The first pusher plate (207) has a pushing part (211). When the pushing part (211) moves with the first pusher plate (207), it moves between a first receiving position and a dropping position. The first receiving position is located directly below the receiving interface (206), and the dropping position is offset from the receiving interface (206). When the pushing part (211) is located at the first receiving position, the support plate (203) supports the compressed dry towel (601). When the pushing part (211) is located at the dropping position, it is offset from the support plate (203) so that the compressed dry towel (601) can fall from the pushing part (211). The towel dispensing assembly (300) has a second push plate (301) located below the support plate (203) and driven laterally by a second motor (303). The second push plate (301) has a water injection chamber (306). The water injection chamber (306) moves between a second receiving position and a towel taking position as the second push plate (301) moves. The second receiving position is located directly below the dropping position, and the towel taking position is located in the position of the exposed water injection chamber (306). Water injection device (400) includes a water tank (401) and a water pump (402), the water pump (402) being connected to the water tank (401) and the water injection chamber (306) via a water pipe.
2. The wet towel manufacturing apparatus according to claim 1, characterized by: The towel pusher assembly (200) includes an upper cover (201) and a lower cover (202). A receiving interface (206) is provided on the upper cover (201). A support plate (203) is fixed between the upper cover (201) and the lower cover (202). A first receiving cavity (204) is formed between the support plate (203) and the upper cover (201). A second receiving cavity (205) is formed between the support plate (203) and the lower cover (202). A first push plate (207) is slidably assembled in the first receiving cavity (204). A second push plate (301) is slidably assembled in the second receiving cavity (205).
3. The towelette making mechanism of claim 1 or 2, wherein: The towel dispensing assembly (300) includes a baffle (302), which is vertically and movably mounted on the outer end of the second push plate (301). A lifting structure is configured for the baffle (302). When the water injection tank (306) is in the second receiving position, the baffle (302) is raised to the blocking position by the lifting structure. When the water injection tank (306) is in the towel taking position, the baffle (302) is lowered to the clearance position, which is lower than the blocking position.
4. The wet towel manufacturing apparatus according to claim 3, wherein: The lifting structure includes a lifting part (212) provided on the push towel assembly (200) and a supporting part (310) provided on the baffle (302), with the lifting part (212) and the supporting part (310) cooperating by inclined surfaces.
5. The wet towel manufacturing apparatus according to claim 3, wherein: An elastic element (312) acts on the baffle (302), and the elastic element (312) applies a downward elastic force to the baffle (302).
6. The wet towel manufacturing apparatus according to claim 1, wherein the wet towel manufacturing apparatus further comprises a cutting device for cutting the wet towel into a predetermined size. The first receiving position is provided with a first sensing device (214) for detecting whether there is compressed dry towel in the pushing part (211), and the water injection bin (306) is provided with a second sensing device (313) for detecting whether there is towel in the water injection bin.
7. The wet towel making mechanism according to claim 1, characterized by: The pushing part (211) is a through hole.
8. A wet mop machine characterized by: The towel making mechanism comprises the towel making mechanism according to any one of claims 1-7, and the towel making mechanism is assembled in a machine box (500), the second receiving position is located in the machine box (500), and the towel taking position is located outside the machine box (500).
Citation Information
Patent Citations
Multifunctional wet tissue supply device
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