A smart cover opening device for a barrel water
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 邱译萱
- Filing Date
- 2025-10-10
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]为解决在无饮水机聪明座配合的情况下轻松打开桶装水聪明盖的实际问题,克服现有棍状物戳击打开方式存在的难以对准、需较大用力、多次戳击、进入凹槽的工具长度不可控、污染水体、水溅出桶外等缺点和不足,解决打开塑料封口膜和防伪膜步骤繁琐不便的问题,本实用新型公开了一种捶击式聪明盖打开装置及其多种衍生变体的技术思想和解决方案
[0015] (1) Compared with the existing piercing method, the smart cap opening device of this utility model can separate the alignment operation and the opening operation. After alignment, the cap is hammered. During the hammering action, it is not necessary to align with the smart cap groove again, resulting in a high success rate. It can be opened with one hammering. Due to the large hammering surface area, the recoil force of the hammering on the palm or fist is small, which will not cause pain to the hand. It is simple, labor-saving, and efficient to use, and there is no risk of injury when opening the smart cap, making it safer and more reliable. The hammering structure cannot enter the smart cap groove when it encounters an obstruction during the hammering process. Only the hammering structure can enter the smart cap groove, so the length of the device entering the smart cap groove is fixed and it does not come into contact with the water in the bucket. Compared with directly unscrewing or removing the entire smart cap, this utility model only opens the inner plug, and the opening is much smaller, which greatly reduces the possibility of bacteria, dust, mosquitoes and other substances entering the water.
Smart Images

Figure CN224604662U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of home and office supplies, and relates to an opening device for a smart cap on bottled water. Background Technology
[0002] The smart cap is a special cap for bottled water. Its main function is to work with the smart holder of a water dispenser. When the bottled water is inverted on the dispenser, the smart post of the smart holder pushes open the sealing block at the bottom of the inner plug groove of the smart cap, allowing the inner plug to fit onto the post, thus enabling normal drinking. It is often called a smart cap due to its ingenious design. While smart caps are primarily used with the smart holder of water dispensers, water dispensers have drawbacks such as large footprint, inconvenience in moving them, limited application space, and susceptibility to bacterial growth. With technological advancements and social development, especially with the widespread use of electric water pumps or water dispensers, there are many practical scenarios where bottled water needs to be used without a smart holder. These include situations like offices without a water dispenser, homes without a water dispenser, and when traveling, where people tend to use large-capacity bottled water. Therefore, how to open the smart cap when a smart holder is not available becomes a real problem. This article describes opening the smart cap by separating the sealing round block at the bottom of the inner groove of the smart cap (referred to as the groove bottom) from the groove wall, but leaving the connecting head between the groove bottom and the groove wall intact. Because the smart cap needs to withstand a significant load from the water, opening it requires considerable force; pressing with fingers is ineffective. Currently, a common method is to use a stick-like tool such as a spoon handle, chopstick tip, or pen to poke the groove of the smart cap. However, this simple method often requires aligning the tool precisely with the groove and considerable force to open it, frequently resulting in misalignment or failure to break through, necessitating multiple taps or forceful pokes, sometimes even causing injury. Furthermore, when the smart cap is opened, the insertion length of the tool is uncontrollable; the spoon handle or chopstick tip often penetrates the water in the container, contaminating it and causing water to splash out. Additionally, opening the smart cap often requires tearing off the sealing film and anti-counterfeiting film, making the process cumbersome and inconvenient. Of course, another method is to remove the smart cap and its surrounding parts from the bottled water. This is difficult for large, dedicated bottled water containers. For mineral water or purified water plastic bottles of about 5L or more, although they can be unscrewed directly, unscrewing also requires removing the plastic seal and requires considerable force. After unscrewing, the opening is larger, making it easier for bacteria, dust, insects, and other substances to enter the water. Therefore, many people prefer to open the groove of the smart cap, which causes the aforementioned difficulties. Utility Model Content
[0003] To address the practical problem of easily opening smart caps on bottled water without the assistance of a smart dispenser stand, and to overcome the shortcomings of existing stick-based opening methods such as difficulty in alignment, the need for considerable force, multiple strikes, uncontrollable tool length entering the groove, water contamination, and water splashing outside the bottle, this utility model discloses a hammer-type smart cap opening device and its various derivative variations, along with its technical concept and solutions. This utility model's solution allows for easy opening of the smart cap without the need for a smart dispenser stand. Simply align the smart cap opening device with the smart cap groove and then strike with your palm or fist. The integrated sealing film breaking component can also easily break through the plastic sealing film without causing water contamination or liquid splashing inside the bottle. This utility model's solution separates the alignment and opening operations, eliminating the need to align with the smart cap groove during the striking process, resulting in a high success rate; a single strike is sufficient to open the cap. Furthermore, the opening device derivative disclosed in this utility model, particularly the bottled water pull-tab handle with a snap-open structure, further enhances portability and convenience. The bottled water pull-tab handle can be installed on the support ring at the mouth of each bottle of water, achieving an on-demand opening effect. The solution of this utility model is as follows:
[0004] A hammer-type smart cap opening device for bottled water includes a hammering structure and a knocking-opening structure. The hammering surface area of the hammering structure is larger than the concave surface area of the smart cap. The diameter of the circumscribed circle of the knocking direction projection of the knocking-opening structure is smaller than the inner diameter of the smart cap's groove, and the thickness of the knocking-opening structure is greater than the depth of the smart cap's groove. The hammering structure and the knocking-opening structure are connected to form a force transmission mechanism that transmits the externally applied hammering force to the concave surface of the smart cap, making the force per unit area of the smart cap's concave surface greater than the force per unit area of the hammering surface. This allows the smart cap to be opened by striking with a palm or fist, and the length of the device entering the smart cap's groove after opening can be fixed. The hammering structure cannot enter the smart cap's groove if it encounters an obstacle during the hammering process. The knocking-opening structure refers to the structure that enters the smart cap's groove during the hammering process, and the thickness of the knocking-opening structure refers to the distance from the head to the base of the knocking-opening structure, which is approximately equal to the depth of the smart cap's groove during the hammering process. The "smart cover groove" refers to the groove formed by the inner plug of the smart cover, and the "smart cover concave surface" refers to the sealing circular block at the bottom of the groove of the inner plug of the smart cover, excluding the sidewalls of the groove. Correspondingly, the concave surface area refers to the area of the bottom surface of the groove of the smart cover. The "hammering" refers to striking the striking surface of the smart cover opening device quickly, forcefully, briefly, and once with the palm, fist, or a tool. In the context of this specification, it has the same connotation as "patting" and "slapping." Since different people have different strengths, people with greater strength can open the smart cover by patting or patting with their palm, while people with less strength need to use their fists to strike it. After comprehensive evaluation, the term "hammering" is more in line with the essence of the technical solution described in this utility model and the terminology habits of those skilled in the art.
[0005] Furthermore, the head of the breaking structure is thinner than its root to further reduce the hammering force required to break open the bottom of the smart cover groove. The head of the breaking structure refers to the front end portion of the breaking structure in the direction of contact with the smart cover groove. For example, the head of the breaking structure is spherical or cap-shaped, that is, the force-applying surface of the breaking structure in contact with the bottom of the smart cover groove is a spherical surface or a beveled spherical surface, which can further reduce the hammering force required to break open the bottom of the smart cover groove.
[0006] Further optionally, the thickness of the knock-open structure is less than a thickness threshold, which ensures that knocking open the smart cap will not cause water inside the container to splash out of the container.
[0007] Optionally, the hammer-type smart cap opening device for bottled water further includes a sealing film breaking component to reduce manual tearing of the sealing film. The sealing film breaking component includes sharp or pointed breaking units to break the plastic sealing film, thereby achieving the dual function of both opening the smart cap and breaking the plastic sealing film. A blade or knife tip can be used as the breaking unit. The plastic sealing film includes disposable anti-counterfeiting plastic film wrapping the smart cap and plastic sealing film sealing the smart cap.
[0008] Furthermore, the sealing film breaking component can also be used to cut open fruit peels or cut open everyday office items, thereby expanding its application in various life and office scenarios. For example, the breaking unit can be used to cut open orange peels to make them easier to peel; the breaking unit can be used to cut open the tape on a courier box to open the cardboard box.
[0009] Furthermore, the sealing film breaking assembly also includes a breaking action range control unit to control the action range of the breaking unit, so that the breaking unit can break the plastic sealing film but will not impact the bottom of the smart cover groove with full force, thereby avoiding the breaking unit breaking and falling off due to a full impact on the bottom of the smart cover groove and causing a water safety accident. Springs and rubber blocks, or other resilient parts, can be used as the breaking action range control unit.
[0010] Furthermore, the hammer-type smart cap opening device for bottled water also includes a safety protection component that can at least surround and isolate the opening unit of the sealing film breaking component to prevent personal injury during non-use; or, the sealing film breaking component has a safety protection mechanism to prevent the opening unit from being exposed to prevent personal injury during non-use. One embodiment uses a plastic cap as the safety protection component to cover the opening unit of the sealing film breaking component. The plastic cap is removed during use and replaced after use. One embodiment of the safety protection mechanism uses a spring to retract the opening unit of the sealing film breaking component into a cavity during non-use. During use, the opening unit is extended from the cavity by pressing, and automatically retracts into the cavity after the pressure is released.
[0011] Alternatively, one side of the bottled water pull tab handle can be used as the striking structure, and the other side of the bottled water pull tab handle can be provided with the opening structure; bending the pull tab can align the opening structure with the smart cap groove, and then the smart cap can be opened by striking the pull tab handle; this can achieve the dual function of carrying bottled water and opening the smart cap.
[0012] Alternatively, the hammer-type smart cap opening device for bottled water may further include a lanyard hole for connecting a hanging lanyard.
[0013] Optionally, the hammer-type smart cap opening device for bottled water further includes a hanging ring or magnetic component to enhance its easy storage performance; the hanging ring is connected to the hammering structure and is used to hang the hammer-type smart cap opening device on the bottle mouth or other hangable location; the magnetic component is used to attach the hammer-type smart cap opening device to a ferromagnetic metal surface.
[0014] Compared with existing solutions, the beneficial effects of this utility model are as follows:
[0015] (1) Compared with the existing piercing method, the smart cap opening device of this utility model can separate the alignment operation and the opening operation. After alignment, the cap is hammered. During the hammering action, it is not necessary to align with the smart cap groove again, resulting in a high success rate. It can be opened with one hammering. Due to the large hammering surface area, the recoil force of the hammering on the palm or fist is small, which will not cause pain to the hand. It is simple, labor-saving, and efficient to use, and there is no risk of injury when opening the smart cap, making it safer and more reliable. The hammering structure cannot enter the smart cap groove when it encounters an obstruction during the hammering process. Only the hammering structure can enter the smart cap groove, so the length of the device entering the smart cap groove is fixed and it does not come into contact with the water in the bucket. Compared with directly unscrewing or removing the entire smart cap, this utility model only opens the inner plug, and the opening is much smaller, which greatly reduces the possibility of bacteria, dust, mosquitoes and other substances entering the water.
[0016] (2) By controlling the insertion depth of the opening structure to be slightly greater than the depth of the smart cap and less than a thickness threshold, the opening structure of the opening device will not come into contact with the water inside the bottled water, and will basically not cause liquid to splash out of the bottle.
[0017] (3) By integrating the film-breaking component, it is easy to break open the plastic anti-counterfeiting film wrapped around the smart cover and the plastic sealing film sealing the smart cover, reducing the need to tear off the film by hand before opening the smart cover, saving time and effort, and further enhancing ease of use and convenience; moreover, the film-breaking component can also be used to cut fruit peels, open express packages, cut paper, mark dots and other office and life application scenarios, further increasing the application scope and value of this patent. Using the film-breaking component with the breaking range control unit, it is also possible to open the plastic seal and smart cover with a single tap.
[0018] (4) By integrating a knock-opening structure into the pull ring handle of bottled water, and using the pull ring handle itself as a knocking structure, the dual functions of lifting bottled water and opening the smart cap can be achieved in one bottled water accessory. Installing such an accessory on each bottled water will greatly improve the convenience of people using bottled water.
[0019] (5) By adding a cord hole, hanging ring, suspension component, magnetic component, etc., its easy storage performance is further increased. Combined with safety protection components or safety protection mechanism, its safety during storage and non-use period can be enhanced. Attached Figure Description
[0020] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the following drawings are provided for illustration:
[0021] Figure 1 and Figure 2 These are, respectively, a three-dimensional structural diagram and a cross-sectional structural diagram of a cylindrical head hammer-type smart cap opening device for bottled water according to Embodiment 1 of this utility model; 110 is the hammering structure, 111 is the hammering surface of the hammering structure, and 112 is a rope hole provided on the side of the hammering structure; 120 is the opening structure, and 121 is the force-applying surface of the head of the opening structure; 200 is a simplified smart cap, 210 is the groove bottom of the smart cap, 211 is a small protrusion provided on the groove bottom of some smart caps, and 220 is the connector between the groove bottom and the side wall.
[0022] Figure 3 and Figure 4 These are, respectively, a three-dimensional structural diagram and a cross-sectional structural diagram of a ball-head hammer-type smart cap opening device for bottled water according to Embodiment 2 of this utility model; 110 is the hammering structure, 111 is the hammering surface of the hammering structure, and 112 is the rope hole provided on the side of the hammering structure; 120 is the opening structure, and 121 is the force-applying surface of the head of the opening structure; 200 is a simplified smart cap, 210 is the groove bottom of the smart cap, and 220 is the connector between the groove bottom and the side wall.
[0023] Figure 5 and Figure 6The figures shown are a three-dimensional structural diagram and a cross-sectional structural diagram of a smart cap opening device for bottled water with a hanging ring and a hammering mechanism, as described in Embodiment 3 of this utility model; 110 is the hammering structure; 120 is the knocking-opening structure; 130 is the hanging ring with elasticity; 150 is the connection structure between the hanging ring and the hammering structure; 200 is a simplified smart cap; 210 is the groove bottom of the smart cap; 220 is the connector between the groove bottom and the side wall; 300 is a simplified bottle mouth portion of the bottled water; and 301 is the bottle mouth support ring.
[0024] Figure 7 , Figure 8 and Figure 9 These are, respectively, a three-dimensional structural diagram of the unfolded state, a three-dimensional structural diagram of the bent state, and a cross-sectional structural diagram of the smart cap opening device using a bottled water pull ring as described in Embodiment 4 of this utility model; 110 is the handle as a hammering structure, 111 is the hammering surface of the hammering structure; 120 is the opening structure provided on the back of the hammering surface of the handle; 130 is the hanging ring, 131 is the upper toothed ring of the hanging ring; 150 is the connection structure between the hanging ring and the hammering structure; 200 is a simplified smart cap, 210 is the groove bottom of the smart cap, 220 is the connector between the groove bottom and the side wall; 300 is a simplified bottled water bottle, and 301 is the bottled water bottle mouth support ring.
[0025] Figure 10 and Figure 11 These are, respectively, a three-dimensional structural diagram and a cross-sectional structural diagram of a multi-functional hammer-type smart cap opener for bottled water with safety protection as described in Embodiment 5 of this utility model. 110 is the hammering structure, 111 is the hammering surface of the hammering structure, and 112 is a rope-threading hole provided on the side of the hammering structure; 120 is the opening structure, and 121 is the force-applying surface of the head of the opening structure; 160 is a spring-loaded sealing film breaking assembly, 161 is a steel blade as the breaking unit, 162 is the pressing surface of the safety protection mechanism, 163 is a spring, and 166 is a retaining ring; 200 is a simplified smart cap, 210 is the groove bottom of the smart cap, 220 is the connector between the groove bottom and the side wall, and 500 is the sealing film for sealing the smart cap.
[0026] Figure 12 and Figure 13These are, respectively, a three-dimensional structural diagram and a cross-sectional structural diagram of a hammer-type smart cap opener for bottled water with an automatic telescopic sealing film breaking function, as described in Embodiment 6 of this utility model. 110 is the hammering structure, 111 is the hammering surface of the hammering structure, 112 is a rope hole provided on the side of the hammering structure, and 133 is a connecting protrusion; 120 is the opening structure; 170 is the sealing film breaking assembly, 171 is a cross-blade assembly installed at the head position, and 172 is a resilient cylindrical colloid serving as a control unit for the breaking action range; 180 is the safety cap, and 181 is the connecting piece between the safety cap and the hammering structure; 200 is a simplified smart cap, 210 is the groove bottom of the smart cap, 220 is the connector between the groove bottom and the side wall, and 500 is the sealing film for sealing the smart cap. Detailed Implementation
[0027] The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0028] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this utility model. Therefore, the illustrations only show the components related to this utility model and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the shape, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex. The color, material and surface pattern of the device are not shown in the figure. In the actual implementation, different materials or combinations such as plastic, silicone, metal, and composite materials can be used. The surface pattern can adopt various different decorative effects, and the color can adopt various different colors and be combined with transparent, semi-transparent and opaque color effects. The various components or parts of the device can be integrally molded or processed into independent components and then connected and assembled by bolts, buckles, adhesives and other forms.
[0029] Example 1: A cylindrical head hammer-type smart cap opening device for bottled water. This smart cap opening device is a simplified embodiment of this utility model, such as... Figure 1 Three-dimensional structure and Figure 2The cross-sectional structural diagram shows a hammering structure 110 and a knock-opening structure 120. One side of the hammering structure 110 serves as the hammering surface 111 for the hammering action, and the other side is connected to the knock-opening structure. The knock-opening structure 120 is cylindrical with a cylindrical head, and the force-applying surface 121 of the cylindrical head is circular. The hammering structure 110 and the knock-opening structure 120 can be integrally molded from ABS material using 3D printing technology. For mass production, they can be integrally molded from plastic material using injection molding technology. During injection molding, a portion of the thicker central area can be removed to create a uniform wall thickness. The hammering structure also has a lanyard hole for easy hanging and storage of the opening device.
[0030] The steps for using the cylindrical head hammer-type smart cap opening device for bottled water described in this embodiment to open the smart cap of bottled water are as follows: First, tear off the outer protective film at the bottle cap to expose the smart cap 200; then prepare a cylindrical head hammer-type smart cap opening device; next, place the end 121 of the opening structure of the smart cap opening device into the groove of the smart cap; finally, use your palm or fist to hammer the hammering surface 111 of the smart cap opening device to open the bottom 210 of the groove of the smart cap 200 using the hammering force. After opening, the bottom surface of the groove is connected to the smart cap through the connector 220.
[0031] The smart cap opening device of this embodiment has a simple structure, is easy to manufacture, convenient to store, labor-saving and reliable. Actual testing has shown that it can easily open almost all smart caps of bottled water on the market. It is especially suitable for smart caps with small protrusions on the bottom of the groove. The cylindrical head can contact this small protrusion, so when it is struck, the force is transmitted to the small protrusion, making it very easy to open.
[0032] Example 2: A smart cap opening device for bottled water with a spherical crown and a hammer-type opening mechanism. This smart cap opening device is another simplified embodiment of this utility model, such as... Figure 3 3D structural diagram and Figure 4 The cross-sectional structural diagram shows a hammering structure 110 and a knock-opening structure 120. One side of the hammering structure 110 serves as the hammering surface 111 for the hammering action, while the other side is connected to the knock-opening structure. The knock-opening structure 120 is spherical, with a spherical head. The force-applying surface 121 of the spherical head is a circle much smaller than the bottom of the smart cap's groove. The hammering structure 110 and the knock-opening structure 120 can be manufactured in one piece using ABS filament through 3D printing. For mass production, they can be manufactured in one piece using PE material injection molding. During injection molding, a portion of the thicker central area can be removed to create a uniform wall thickness. A lanyard hole is also provided on the hammering structure for easy suspension of the opening device.
[0033] The steps for using the ball-head hammer-type smart cap opening device for bottled water described in this embodiment to open the smart cap of bottled water are as follows: First, tear off the outer protective film at the bottle cap to expose the smart cap 200; then prepare a ball-head hammer-type smart cap opening device; next, place the end of the opening structure 120 of the smart cap opening device into the groove of the smart cap; finally, use your palm or fist to strike the striking surface 111 of the smart cap opening device to open the bottom 210 of the groove of the smart cap 200 using the striking force. After opening, the bottom surface of the groove is connected to the smart cap through the connector 220.
[0034] The smart cap opening device of this embodiment has a simple structure, is easy to manufacture, convenient to store, labor-saving and reliable. Actual testing has shown that it can easily open all commercially available smart caps of bottled water that have been included in the test.
[0035] Example 3: A smart cap opening device for bottled water with a hanging ring and a hammer-type mechanism. (For example...) Figure 5 Three-dimensional structure and Figure 6 As shown in the cross-sectional structural diagram, the smart cap opening device includes a hammering structure 110, a knocking structure 120, a hanging ring 130, and a connecting structure 150. One side of the hammering structure 110 serves as the hammering surface for the hammering action, and the other side is connected to the knocking structure. A certain part of the side of the hammering structure 110 is connected to a certain part of the side of the hanging ring 130 via the connecting structure 150. The knocking structure 120 is spherical with a spherical head. The inner diameter of the hanging ring 130 can be slightly smaller than the support ring 301 of the bottle neck. The hanging ring 130 and the connecting structure 150 are integrally molded from elastic plastic or silicone, making them less likely to fall off after being fitted onto the support ring 301. The hammering structure 110 and the knocking structure 120 can be integrally molded using PET filament using 3D printing technology. For mass production, they can be integrally molded using plastic injection molding technology. During injection molding, a portion of the thicker central area can be removed to create a uniform wall thickness. The connecting structure 150 and the hammering structure 110 are connected by a snap-fit method.
[0036] The usage steps of this device are the same as in Example 2, and will not be repeated here. This smart cap opening device for bottled water with a hanging ring not only has the aforementioned functional benefits, but can also be directly inserted into the bottle neck, making it convenient to carry and requiring no additional storage. It can be repeatedly used by hanging it on different bottle necks.
[0037] Example 4: A smart cap opening device utilizing a bottled water pull tab. For example... Figure 7 3D structure diagram in unfolded state Figure 8 3D structural diagram of the bending state and Figure 9As shown in the cross-sectional view of the bent state, the smart cap opening device includes a hammering structure 110, a knock-opening structure 120, a hanging ring 130, and a connecting structure 150. The hammering structure 110 also serves as a handle, with one side acting as the hammering surface 111 for the hammering action, and the other side connected to the knock-opening structure 120. The hammering structure 110 and the hanging ring 130 are connected via the connecting structure 150. The knock-opening structure 120 is spherical, with a spherical head. The hanging ring 130 has a toothed ring 131 for easy installation below the bottle neck support ring 301 of the water bottle 300. The entire pull-ring opening device in its normally unfolded state is as follows... Figure 7 As shown, when it is necessary to open the smart cover, bend and flip the handle striking structure 100 so that the opening structure 120 is aligned with the groove of the smart cover 200. Then, use your palm or fist to strike the striking surface 111 of the handle striking structure 100 to easily open the smart cover.
[0038] In addition to the aforementioned functional benefits, the greatest advantage of this embodiment is that it can be integrated with the bottled water pull ring handle. This accessory can be configured on each bottled water container, achieving the dual functions of lifting the bottled water and opening the smart cap on a single bottled water accessory, which will greatly improve the convenience of using bottled water.
[0039] Example 5: A multi-functional hammer-type smart cap opener for bottled water with safety protection. This smart cap opener is an embodiment of this utility model, featuring functions such as opening the smart cap, breaking the sealing film, safety protection, and applicability in various scenarios, including daily life and work. Figure 10 3D structural diagram and Figure 11 The cross-sectional structural diagram shows a hammering structure 110, a breaking structure 120, and a sealing film breaking assembly 160. One side of the hammering structure 110 serves as the hammering surface 111 for the hammering action, and the other side is connected to the breaking structure 120. The hammering structure 110 and the breaking structure 120 are integrally molded, with a rope hole 112 on the side. A hollow cavity structure is formed in the middle of the assembly to house the sealing film breaking assembly 160. The slightly smaller opening at the bottom of the cavity structure forms a protrusion to support the spring 163 of the sealing film breaking assembly 160. The upper part of the cavity has a threaded wall for fixing the retaining ring 166 of the sealing film breaking assembly 160. The annular lower bottom surface of the assembly serves as the force-applying surface 121. The sealing film breaking assembly 160 includes a main body unit with a protruding ring in the center, a blade as a breaking unit 161, a pressing surface 162 for pressing and extending the blade during use, a spring 163 for automatically retracting the blade, and a retaining ring 166 for confining the main body unit within the cavity. The retaining ring is threadedly fixed to the cavity wall, and a certain gap is left between the retaining ring and the main body unit of the sealing film breaking assembly 160 for pressing and extending the blade. In addition to the above-described automatic retraction implementation method, a spring mechanism similar to that of a click-type ballpoint pen can also be used to achieve the "locked extension-retraction" effect, which will not be elaborated here.
[0040] The steps for using the multi-functional hammer-type smart bottled water cap opener with safety protection described in this embodiment to open the smart bottled water cap are as follows: First, press down on the pressing surface 162 of the sealing film breaking component 160 with your finger. The blade 161 extends out of the cavity and cuts a cross on the sealing film above the smart cap groove. Gently press down to break the sealing film 500 of the smart cap. Then, lift your finger to release the pressing surface 162. The blade automatically retracts into the cavity under the action of the spring. Then, place the opening structure into the groove of the smart cap 200. Finally, use your palm or fist to hammer the hammering surface 111. The force-applying surface 121 applies the hammering force to the bottom 210 of the groove of the smart cap. The bottom 210 of the groove is opened. After the bottom 210 of the groove is opened, it is still connected to the smart cap body through the connector 220.
[0041] Besides opening smart caps, this embodiment can also be used to cut fruit peels or everyday items, greatly expanding its application scenarios. For example, the blade 161 can be used to cut open orange peels for easier removal; it can also be used to cut through tape on cardboard boxes to open them; and it can be applied to paper cutting, etc. The method of use is also very simple: press the pressing surface 162 of the sealing film breaking component 160 with one finger, the blade 161 extends out of the cavity, use the blade 161 to cut the object, then release the pressure, and the blade 161 automatically springs back, completing one use—safe and convenient.
[0042] This embodiment of the multi-functional hammer-type smart bottled water cap opener with safety protection features a robust structure, diverse functions, safety and reliability, ease of use, and wide applicability. It not only opens smart caps with great ease and convenience, but also eliminates the need to tear off anti-counterfeiting and sealing films by hand, making it more convenient, time-saving, and efficient. It also includes a lanyard hole for easy hanging and storage. The automatic spring-loaded design allows the opening unit to retract into the cavity when not in use, and extends with a gentle press when needed, ensuring convenient use and safe storage. Beyond opening smart caps, its applications extend to everyday and office scenarios such as peeling fruit, opening packages, and cutting paper, demonstrating significant practical value.
[0043] Example 6: A hammer-type smart cap opener for bottled water with an automatic telescopic sealing film breaking function and a safety cap. This smart cap opener is an embodiment of this utility model that can break the sealing film and open the smart cap with a single hammer strike, and also has safety protection. Figure 12 and Figure 13The figures shown are a three-dimensional structural diagram and a cross-sectional structural diagram of the embodiment in use, including a hammering structure 110, a breaking structure 120, a sealing film breaking component 170 with automatic telescopic function, and a safety helmet 180 as a safety protection component. One side of the hammering structure 110 serves as the hammering surface 111 for the hammering action, and the other side is provided with a connecting protrusion 133 for detachable connection with the breaking structure 120. A rope hole 112 is provided on the side. The breaking structure 120 has a cavity, and the sealing film breaking component 170 is disposed in the cavity of the breaking structure 120. The head of the sealing film breaking component 170 is provided with a cross blade assembly 171 for cutting the plastic sealing film 500 into a cross shape for further breaking. The upper part of the sealing film breaking component 170 is provided with a resilient cylindrical colloid 172 as a control unit for the breaking action range. A safety helmet 180 is used to wear on the breaking structure 120 to cover the cross blade assembly 171 to enhance safety. The safety helmet 180 is connected to the side wall of the hammering structure 110 using a connector 181.
[0044] The steps and procedures for using this embodiment are as follows: First, remove the safety helmet 180 to expose the blade assembly 171 of the sealing film breaking component 170, and roughly align it with the center of the smart cover, as shown in the schematic diagram. Figure 13 As shown; the second step is to use the palm or fist to strike the striking surface 111. The striking force will first be transmitted to the blade assembly 171 of the sealing film breaking component 170. The blade assembly 171 will cut a cross-shaped opening in the sealing film 500 and further break it open. After breaking it open, it will continue to impact downwards. Then, the blade assembly 171 will contact the bottom of the groove 210 of the smart cover 200 and begin to press upwards against the breaking action range control unit 172. Under the increasing force, the breaking action range control unit 172 will gradually deform. The blade assembly 171 will gradually move upwards until it is completely retracted into the cavity of the breaking structure 120. Then, the head of the breaking structure 120 will contact the bottom of the groove 210 and apply all the remaining striking force to the bottom of the groove 210, and the bottom of the groove 210 will be opened. The third step is to release the opener. The colloid will rebound and the blade assembly will return to its exposed position, completing one use. After use, the protective cover 180 should be closed for storage.
[0045] This embodiment uses a film-breaking component 170 that automatically retracts the blade assembly into the cavity, enabling the plastic film to be broken and the smart cover opened with a single hammering action. This eliminates the need to tear the film by hand or cut it with a blade, making it extremely convenient, time-saving, and labor-saving. Within a certain range of force, the blade can automatically extend and retract, ensuring that the breaking unit can break the plastic film without impacting the bottom of the smart cover's recess with full force. This prevents the breaking unit from breaking and falling off, thus avoiding water safety accidents. Furthermore, a lanyard hole is provided for easy hanging and storage, and a protective cover is included to prevent personal injury when not in use.
Claims
1. A hammer-type smart cap opening device for bottled water, characterized in that: It includes a hammering structure and a knock-opening structure; the hammering surface area of the hammering structure is larger than the concave surface area of the smart cap of the bottled water; the diameter of the circumscribed circle of the knock-opening direction projection of the knock-opening structure is smaller than the inner diameter of the groove of the smart cap of the bottled water, and the thickness of the knock-opening structure is greater than the depth of the groove of the smart cap; the hammering structure and the knock-opening structure are connected to form a force transmission mechanism to transmit the externally applied hammering force to the concave surface of the smart cap of the bottled water, so that the force per unit area of the concave surface of the smart cap is greater than the force per unit area of the hammering surface, thereby achieving the effect that the smart cap can be opened by hammering with the palm or fist, and the length of the device entering the groove of the smart cap after opening can be fixed.
2. The hammer-type smart cap opening device for bottled water according to claim 1, characterized in that: The head of the breaking structure is thinner than the root to further reduce the hammering force required to break open the bottom of the smart cover groove.
3. A hammer-type smart cap opening device for bottled water according to claim 1 or 2, characterized in that: The thickness of the opening structure is less than a thickness threshold, which ensures that striking the smart cap will not cause water inside the container to splash out of the container.
4. A hammer-type smart cap opening device for bottled water according to claim 1 or 2, characterized in that: It also includes a film-breaking component to reduce manual tearing of the film. The film-breaking component includes sharp or pointed breaking units to break the plastic film, thereby achieving the dual function of the hammer-type smart cap opening device for bottled water, which can both open the smart cap and break the plastic film.
5. The hammer-type smart cap opening device for bottled water according to claim 4, characterized in that: The film-breaking component also includes a breaking range control unit to control the range of action of the breaking unit, so that the breaking unit can break the plastic film but will not hit the bottom of the smart cover groove with full force, so as to avoid the breaking unit breaking and falling off due to the full impact of the breaking unit on the bottom of the smart cover groove and causing water safety accidents.
6. The hammer-type smart cap opening device for bottled water according to claim 4, characterized in that: It also includes a safety protection component that can at least surround and isolate the breaking unit of the sealing film breaking component to prevent personal injury during non-use; or, the sealing film breaking component has a safety protection mechanism to prevent the breaking unit from being exposed to prevent personal injury during non-use.
7. A hammer-type smart cap opening device for bottled water according to claim 1 or 2, characterized in that: One side of the bottled water pull tab handle is used as the hammering structure, and the other side of the bottled water pull tab handle is provided with the knocking-open structure; The pull ring can be bent to align the opening structure with the smart cover groove, and then the smart cover can be opened by striking the striking surface of the pull ring handle; It can achieve the dual function of lifting bottled water and opening the smart lid.
8. A hammer-type smart cap opening device for bottled water according to claim 1 or 2, characterized in that: It also includes a lanyard hole for attaching a lanyard.
9. A hammer-type smart cap opening device for bottled water according to claim 1 or 2, characterized in that: It also includes a hanging ring or magnetic component to enhance its easy storage performance; the hanging ring is connected to the hammering structure and is used to hang the hammering smart cap opening device for bottled water at the bottle mouth or other hanging places; the magnetic component is used to attach the hammering smart cap opening device for bottled water to a ferromagnetic metal surface.