A new type of wet hand device for accounting operations
Patent Information
- Application Number
- CN202522515065.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-27
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-11-27
AI Technical Summary
当前市场主流的湿手器产品主要分为海绵式与浮球滚珠式两类,其中浮球滚珠式湿手器最为常见,浮球滚珠式湿手器通过滚动浮球实现水分蘸取,其技术原理依赖于浮球与储水腔的机械接触控制出水量,虽在基础功能上满足湿润手指的需求,但在实际应用中依旧存有一定的小弊端,例如:在浮球滚动过程中,其与储水腔的接触面积会随着滚动角度呈非线性变化,这使得单次蘸取水量的波动范围达到±0.3mL,当蘸取的水分过多时,无法快速、适量地去除多余水分,此时作业时水分容易渗透至票据纤维层,进而引发纸张变形或字迹晕染, 此外,浮球与壳体顶端之间的摩擦阻力较大,在滚动浮球时,往往需要向下按压浮球才能滚动,操作较为麻烦,而且,在将净水注入湿手器内部使用的过程中,该湿手器无法为会计作业人员起到提神的功效,其实用性和功能性有待进一步提升
通过各部件之间的协同配合,首先,将适量清水注入壳体内部,并放入浮球,接着,把锥形筒与壳体的顶端进行螺纹连接,使用者可对浮球施力使其滚动,滚动过程中,浮球会蘸取部分清水,使清水与使用者手指接触,达到湿手的目的,从而辅助使用者完成点钞、票据整理及账目翻页等高频作业, 若手指蘸取的清水量较多,存在渗透至票据纤维层,进而引发纸张变形或字迹晕染的风险时,使用者可将蘸取后的手指与吸湿环贴合接触,此时,吸湿环会吸收使用者手指上较多的清水,后续作业时,就能有效防止纸张变形或字迹晕染,而且,当吸湿环内部吸入较多清水后,使用者可直接与吸湿环贴合进行湿手作业,此外,吸湿环使用一段时间后,可将其从环槽内部取出,进行清洗烘干,混纺在吸湿环内部的抑菌线还具备一定的抗菌抑味功效,便于长久使用;
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Figure CN224660378U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of accounting practice operation technology, specifically a new type of wet hand device for accounting operations. Background Technology
[0002] In the field of accounting practice, wet hand sanitizers are core tools that assist financial personnel in completing high-frequency tasks such as counting money, sorting invoices, and turning pages of accounts. Their design rationality directly affects work efficiency and document security. Currently, the mainstream hand wet wipers on the market are mainly divided into two categories: sponge type and float ball type. Among them, the float ball type hand wet wipers are the most common. The float ball type hand wet wipers achieve water dispensing by rolling a float. Its technical principle relies on the mechanical contact between the float and the water storage chamber to control the water output. Although it meets the basic function of wetting fingers, it still has some minor drawbacks in practical applications. For example, during the rolling process, the contact area between the float and the water storage chamber changes non-linearly with the rolling angle. This causes the water dispensing volume to fluctuate within ±0.3mL per time. When too much water is dispensed, it is not possible to remove the excess water quickly and appropriately. At this time, water can easily penetrate into the fiber layer of documents, causing paper deformation or ink smudging. In addition, the frictional resistance between the float and the top of the shell is relatively large. When rolling the float, it is often necessary to press down on the float to make it roll, which is relatively cumbersome. Moreover, when using the hand wet wiper with clean water, this hand wet wiper does not have the effect of refreshing the mind of accounting staff. Its practicality and functionality need to be further improved. Utility Model Content
[0003] The purpose of this utility model is to provide a new type of wet hand device for accounting operations to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a novel hand wetter for accounting operations, comprising: a shell, wherein an appropriate amount of clean water is injected into the interior of the shell, a float ball floats above the interior of the clean water, an annular groove is formed on the upper surface of the shell, an anti-slip pad is fixedly connected to the bottom end of the annular groove, a moisture-absorbing ring is laid on the upper surface of the anti-slip pad, and antibacterial threads are blended inside the moisture-absorbing ring.
[0005] Preferably, a conical cylinder is provided above the float, the conical cylinder is threadedly connected to the shell, and a plurality of balls are arranged in a ring on the end face of the conical cylinder facing the float, the balls being in contact with the float.
[0006] Preferably, the outer wall of the conical cylinder has multiple ventilation holes.
[0007] Preferably, the ball is composed of a groove and a steel ball, the groove is fixedly connected to the contact surface of the conical cylinder, the steel ball is in contact with the float, and the steel ball is slidably engaged inside the groove.
[0008] Preferably, a threaded cylinder is threadedly connected to the center of the lower surface of the housing, a stop plate is fixedly connected to the bottom end of the threaded cylinder, a sealing ring is fixedly connected to the upper surface of the stop plate, the sealing ring abuts against the lower surface of the housing, dried mint is placed inside the threaded cylinder, a cover plate is attached to the top of the threaded cylinder, a plurality of vertical holes are opened on the upper surface of the cover plate, and a pair of insert rods are fixedly connected to the lower surface of the cover plate, the insert rods are inserted and connected to the threaded cylinder through the insertion holes.
[0009] Preferably, a plurality of anti-slip blocks are fixedly attached at equal intervals at the lower surface edge of the housing.
[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: This novel hand-wetting device for accounting operations has the following advantages over traditional technology: Through the coordinated operation of various components, firstly, an appropriate amount of water is injected into the shell, and a float is placed inside. Then, the conical cylinder is threadedly connected to the top of the shell. The user can apply force to the float to make it roll. During the rolling process, the float will absorb some water, allowing the water to come into contact with the user's fingers, thus achieving the purpose of wetting the hands. This helps the user complete high-frequency tasks such as counting money, sorting documents, and turning pages of accounts. If the amount of water absorbed by the fingers is too large, there is a risk that it will penetrate into the fiber layer of the documents, thereby causing paper deformation or ink smudging. In this case, the user can place the wetted fingers against the moisture-absorbing ring. At this time, the moisture-absorbing ring will absorb more water from the user's fingers, which can effectively prevent paper deformation or ink smudging during subsequent operations. Moreover, when the moisture-absorbing ring has absorbed a lot of water, the user can directly place the moisture-absorbing ring against the ring for wet hand operations. In addition, after the moisture-absorbing ring has been used for a period of time, it can be removed from the ring groove for cleaning and drying. The antibacterial thread blended inside the moisture-absorbing ring also has a certain antibacterial and deodorizing effect, making it easy to use for a long time. Through the coordinated operation of various components, the ball bearings at the bottom of the conical cylinder roll along with the float during its rolling process. This significantly reduces the frictional resistance of the float during rolling, allowing it to roll without pressing down on it, thus improving ease of use. It also prevents wear on the surface of the float, ensuring normal operation in the future. Through the coordinated operation of various components, before injecting water into the housing, the user can place an appropriate amount of dried mint into the threaded cylinder, fully insert the insert rod into the insertion hole, cover the top of the threaded cylinder with the cover plate, and then connect the threaded cylinder to the bottom of the housing with threads. The part of the threaded cylinder that penetrates the housing has its bottom end fixed to the back plate, and the sealing ring is fully pressed against the lower surface of the housing. During subsequent use, the water will come into contact with the dried mint inside the threaded cylinder through the vertical hole, leaving a certain amount of mint aroma in the water. When the user wets their hands with the water, they will inhale the mint aroma, which has a certain refreshing effect and facilitates efficient operation. Attached Figure Description
[0011] The above and other features, advantages, and aspects of the embodiments of this disclosure will become more apparent from the accompanying drawings and the following detailed description. Throughout the drawings, the same or similar reference numerals denote the same or similar elements. It should be understood that the drawings are schematic, and the originals and elements are not necessarily drawn to scale.
[0012] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 for Figure 1 Enlarged view of point A in the middle; Figure 3 for Figure 1 Enlarged view of point B in the middle.
[0013] In the diagram: 1. Shell, 2. Water, 3. Float, 4. Circular groove, 5. Anti-slip pad, 6. Moisture-absorbing ring, 7. Antibacterial line, 8. Conical cylinder, 9. Ball bearing, 10. Vent hole, 11. Threaded cylinder, 12. Support plate, 13. Sealing ring, 14. Dried mint, 15. Cover plate, 16. Vertical hole, 17. Insert rod, 18. Insertion hole, 19. Anti-slip block. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0015] Please see Figures 1-3 This utility model provides a technical solution: a novel hand wetter for accounting operations, comprising: a shell 1, an appropriate amount of clean water 2 injected into the interior of the shell 1, a float ball 3 floating above the interior of the clean water 2, an annular groove 4 formed on the upper surface of the shell 1, an anti-slip pad 5 fixedly connected to the bottom of the annular groove 4, a moisture-absorbing ring 6 laid on the upper surface of the anti-slip pad 5, and an antibacterial thread 7 mixed inside the moisture-absorbing ring 6.
[0016] In the specific implementation process, it is worth noting that the shell 1 is made of transparent plastic material. This material is not only lightweight and durable, but also makes it easy for users to observe the remaining amount of clean water inside and replenish it in time. The float 3 is made of a material with a density less than that of clean water and a smooth surface, such as a hollow plastic ball. This design allows the float 3 to float easily on the surface of clean water, and the friction is small during rolling, which can more smoothly absorb clean water. The anti-slip pad 5 is made of rubber material, which can improve the stability of the moisture-absorbing ring 6 after it is placed inside the ring groove 4. The moisture-absorbing ring 6 is made of polyester-cotton fiber, which has good moisture absorption performance and is not easily deformed. The antibacterial thread 7 is made of ramie fiber thread. The ramie fiber inside is rich in a variety of natural antibacterial trace elements, which can effectively inhibit the growth of bacteria and mites and play an antibacterial and deodorizing role.
[0017] Furthermore, a conical cylinder 8 is provided above the float 3. The conical cylinder 8 is threadedly connected to the shell 1. Multiple balls 9 are arranged in a ring shape on the end face of the conical cylinder 8 facing the float 3. The balls 9 are in contact with the float 3.
[0018] In the specific implementation process, it is worth noting that the thread design of the conical cylinder 8 is tight and reasonable, and it is stable and reliable after being connected to the housing 1. It will not loosen or fall off during use. During the rolling of the float 3, the ball bearing 9 set at the bottom of the conical cylinder 8 will roll along with it. The rolling of the ball bearing 9 transforms the sliding friction between the float 3 and the bottom of the conical cylinder 8 into rolling friction, which greatly reduces the frictional resistance when the float 3 rolls. This allows the user to easily make the float 3 roll without pressing it down.
[0019] Furthermore, the outer wall of the conical cylinder 8 is provided with multiple ventilation holes 10.
[0020] In the specific implementation process, it is worth noting that the vent 10 allows fresh air to circulate inside the shell 1, maintaining the quality of the clean water 2.
[0021] Furthermore, the ball bearing 9 is composed of a groove and a steel ball. The groove is fixedly connected to the contact surface of the conical cylinder 8, and the steel ball is in contact with the float 3. The steel ball is slidably engaged inside the groove.
[0022] In the specific implementation process, it is worth noting that the slot is made of high-strength plastic material, which has a certain degree of elasticity and toughness, and can fix the steel ball well without generating too much resistance to the rolling of the steel ball. The steel ball is precision machined and has an extremely smooth surface, which can reduce friction when it comes into contact with the float 3, making the float 3 roll more easily.
[0023] Furthermore, a threaded cylinder 11 is threadedly connected to the center of the lower surface of the housing 1. A stop plate 12 is fixedly connected to the bottom end of the threaded cylinder 11. A sealing ring 13 is fixedly connected to the upper surface of the stop plate 12. The sealing ring 13 abuts against the lower surface of the housing 1. Dried mint grass 14 is placed inside the threaded cylinder 11. A cover plate 15 is attached to the top of the threaded cylinder 11. Multiple vertical holes 16 are opened on the upper surface of the cover plate 15. A pair of insert rods 17 are fixedly connected to the lower surface of the cover plate 15. The insert rods 17 are connected to the threaded cylinder 11 through the insertion hole 18.
[0024] In the specific implementation process, it is worth noting that the threaded cylinder 11 is made of stainless steel, which has the characteristics of corrosion resistance and high strength, and can ensure that it will not deform after long-term use. The abutment plate 12 is made of the same material as the threaded cylinder 11, and its size is adapted to the bottom end of the threaded cylinder 11, which can provide stable support for the sealing ring 13. The sealing ring 13 is made of high-quality rubber, which has good elasticity and sealing performance, and can tightly abut against the lower surface of the housing 1 to prevent water from leaking from the connection between the threaded cylinder 11 and the housing 1. The cover plate 15 is made of plastic, which is lightweight and easy to operate. The vertical hole 16 is of moderate size, which can ensure that the water and the dried mint grass 14 are in full contact, and prevent the dried mint grass 14 from leaking out of the vertical hole 16. The fit between the insertion rod 17 and the insertion hole 18 is tight, which can ensure that the cover plate 15 and the threaded cylinder 11 are firmly connected and will not loosen during use.
[0025] Furthermore, multiple anti-slip blocks 19 are equidistantly fixed at the lower surface edge of the housing 1.
[0026] In the specific implementation process, it is worth noting that the anti-slip block 19 is made of rubber with anti-slip texture on the surface, which can increase the friction between the housing 1 and the placement surface and prevent the device from sliding or tipping over during use.
[0027] Working principle: How the wet hand function works: First, inject an appropriate amount of clean water into the housing 1, then place the float 3 inside. The float 3 can roll freely on the surface of the clean water, preparing for subsequent dipping of clean water to wet the hands. Connect the conical cylinder 8 to the top of the housing 1 with threads to complete the assembly of the device. The user applies force to the float 3 to make it roll. During the rolling process, the surface of the float 3 will be dipped in some clean water. When the float 3 rolls to contact the user's fingers, the clean water will be transferred to the fingers to achieve the purpose of wetting the hands, thereby assisting the user to smoothly complete high-frequency operations such as counting money, sorting receipts, and turning pages of accounts.
[0028] The principle behind preventing paper deformation and ink smudging: The device incorporates a moisture-absorbing ring 6. When a user's fingers have absorbed a large amount of water, posing a risk of seeping into the paper's fiber layer and causing paper deformation or ink smudging, the user can place their wet fingers against the moisture-absorbing ring 6. The ring 6 will quickly absorb the excess water from the user's fingers, effectively reducing the amount of water remaining on the fingers. During subsequent operations, because the amount of water on the fingers is controlled, it effectively prevents paper deformation or ink smudging caused by water seepage. Furthermore, when the moisture-absorbing ring 6 has absorbed a large amount of water, the user can directly place their hands against the ring 6 for wet-handed work without needing to dip their fingers in water again from the float 3, thus improving work efficiency.
[0029] The principle of reducing the rolling resistance of the float and preventing wear: During the rolling of the float 3, the ball bearing 9 at the bottom of the conical cylinder 8 will also roll. The rolling of the ball bearing 9 transforms the sliding friction between the float 3 and the bottom of the conical cylinder 8 into rolling friction, which greatly reduces the frictional resistance when the float 3 rolls. This allows the user to easily roll the float 3 without pressing it down, improving the convenience during use. At the same time, it reduces the direct friction between the float 3 and the contact surface, effectively preventing wear on the surface of the float 3, ensuring that the float 3 can be used normally for a long time, and extending the service life of the device.
[0030] How the energizing function works: Before injecting water 2 into the housing 1, the user first places an appropriate amount of dried mint 14 into the threaded cylinder 11, then fully inserts the insert rod 17 into the insertion hole 18, covers the top of the threaded cylinder 11 with the cover plate 15, and then threads the threaded cylinder 11 to the bottom end of the housing 1. The threaded cylinder 11 penetrates the housing 1, and its bottom end is fixed to the abutment plate 12. The sealing ring 13 is fully pressed against the lower surface of the housing 1 to ensure the sealing of the device. During subsequent use, the water 2 will come into contact with the dried mint 14 inside the threaded cylinder 11 through the vertical hole 16. The aroma components in the dried mint 14 will dissolve in the water, leaving a certain amount of mint aroma in the water 2. When the user wets their hands with the water 2, they will inhale the mint aroma. The mint aroma has a refreshing effect, which can help the user stay awake during long-term work and improve work efficiency.
[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A novel hand-wetting device for accounting operations, comprising: The shell (1) is characterized in that: an appropriate amount of clean water (2) is injected into the interior of the shell (1), a float (3) floats above the interior of the clean water (2), an annular groove (4) is provided on the upper surface of the shell (1), an anti-slip pad (5) is fixed to the bottom of the annular groove (4), a moisture-absorbing ring (6) is laid on the upper surface of the anti-slip pad (5), and antibacterial threads (7) are mixed inside the moisture-absorbing ring (6).
2. The novel hand-wetting device for accounting operations according to claim 1, characterized in that: A conical cylinder (8) is provided above the float (3). The conical cylinder (8) is threadedly connected to the shell (1). Multiple balls (9) are arranged in a ring on the end face of the conical cylinder (8) facing the float (3). The balls (9) are in contact with the float (3).
3. A novel hand-wetting device for accounting operations according to claim 2, characterized in that: The outer wall of the conical cylinder (8) is provided with multiple ventilation holes (10).
4. A novel hand-wetting device for accounting operations according to claim 2, characterized in that: The ball (9) is composed of a groove and a steel ball. The groove is fixedly connected to the contact surface of the conical cylinder (8). The steel ball is in contact with the float (3) and the steel ball is slidably engaged inside the groove.
5. A novel hand-wetting device for accounting operations according to claim 1, characterized in that: A threaded cylinder (11) is threadedly connected to the center of the lower surface of the housing (1). A stop plate (12) is fixedly connected to the bottom end of the threaded cylinder (11). A sealing ring (13) is fixedly connected to the upper surface of the stop plate (12). The sealing ring (13) abuts against the lower surface of the housing (1). Dried mint grass (14) is placed inside the threaded cylinder (11). A cover plate (15) is attached to the top of the threaded cylinder (11). A plurality of vertical holes (16) are opened on the upper surface of the cover plate (15). A pair of insert rods (17) are fixedly connected to the lower surface of the cover plate (15). The insert rods (17) are connected to the threaded cylinder (11) through the insertion hole (18).
6. A novel hand-wetting device for accounting operations according to claim 1, characterized in that: Multiple anti-slip blocks (19) are fixed at equal intervals at the lower surface edge of the housing (1).