Heated packet vapor generating device
By incorporating a movable heating pack delivery chamber and an automatic ejection structure into the heating pack-type steam generator, the problem of the heating pack being difficult to remove quickly is solved, enabling the rapid cessation of the exothermic reaction and improving the convenience and safety of the device.
Patent Information
- Application Number
- CN202111234383.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2021-07-08
- Filing Date
- 2021-10-22
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2041-10-22
AI Technical Summary
Existing heating pack-type steam generators are difficult to remove quickly and easily to stop the exothermic reaction, especially in emergency situations.
A heating pack type steam generating device was designed, which includes a self-heating container and a heating pack dispensing chamber. The dispensing chamber is movably connected to the dispensing port and is equipped with an automatic pop-out structure. The heating pack can be quickly removed or inserted by pressing the dispensing chamber to control the exothermic reaction.
It enables rapid and convenient removal and insertion of the heating pack, making operation simple and labor-saving, ensuring flexible control of the exothermic reaction, and improving the convenience and safety of the device.
Smart Images

Figure CN115590425B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of steam generating device, in particular to a heating bag type steam generating device. BACKGROUND
[0002] The cleaning fluid at room temperature cannot provide the best cleaning effect, so currently there are cleaning devices that use hot water and / or steam as cleaning fluid. The self-heating method of generating hot water and / or steam by chemical reaction does not require electricity, so it does not require an external power source, and is more convenient and flexible.
[0003] For example, the Chinese patent application with the application publication number CN110811413A discloses a steam mop dust collector, which includes a heating bag type steam generating device. The heating bag type steam generating device includes a water tank and a tank cover, and the water tank is used to place the heating bag and water. The heating bag is replaced by opening the tank cover. However, the existing heating bag type steam generating device is not convenient to remove the heating bag from the water tank after the heating bag is thrown into the water tank, because the position of each throw is uncertain and the heating bag is thrown at the bottom of the water tank. This is particularly prominent when the heating bag needs to be removed as soon as possible to stop the exothermic reaction in an emergency situation. SUMMARY
[0004] The technical problem to be solved by the present application is to provide a heating bag type steam generating device that can conveniently and quickly remove the heating bag to stop the exothermic reaction.
[0005] The technical solution of the present application is a heating bag type steam generating device, which includes a self-heating unit, and the self-heating unit includes a self-heating container. The top of the self-heating container is provided with a heating bag throwing opening for throwing the heating bag. The heating bag throwing opening is provided with a heating bag throwing bin for taking and placing the heating bag. The heating bag throwing bin is movably connected to the heating bag throwing opening. The heating bag throwing bin is provided with a first through hole that is in communication with the inner cavity of the self-heating container.
[0006] After adopting the above structure, the present application has the following advantages:
[0007] The heating bag type steam generating device of the present application is specially provided with a heating bag throwing bin for taking and placing the heating bag in the self-heating container, so that the heating bag will not be randomly dropped into the water, but will be stored within the range defined by the heating bag throwing bin. The heating bag throwing bin is movably connected to the heating bag throwing opening, so that when the exothermic reaction needs to be stopped, the heating bag can be moved away from the fluid liquid surface by moving the heating bag throwing bin upward. In this way, the heating bag will lack water and stop the exothermic reaction. The removal of the heating bag is very convenient and fast. When the heating bag throwing bin is moved downward, the heating bag will contact the fluid liquid surface and restart the exothermic reaction. The operation is very convenient.
[0008] As a preferred, the heating bag delivery opening and the heating bag delivery bin are provided with an automatic ejection structure, which is used to make the heating bag delivery bin automatically eject when pressed and automatically retract when pressed again. By setting the automatic ejection structure, the heating bag delivery bin can be moved up and down by pressing, which is more convenient and labor-saving.
[0009] As a preferred, the side of the heating bag delivery bin is provided with a second through hole for taking and placing the heating bag after moving up. By this setting, the heating bag can be taken and placed when the heating bag delivery bin is ejected, which is more convenient.
[0010] As a preferred, the first through hole is provided with multiple and is uniformly arranged on the bottom and / or the side of the lower half of the heating bag delivery bin. By this setting, the fluid can be uniformly distributed in all directions, so that the reaction of the heating bag is more sufficient and the utilization rate of the fluid is higher.
[0011] As a preferred, the fluid container is further provided, the self-heating container or the heating bag delivery bin is provided with a fluid injection port, and the fluid output of the fluid container is communicated with the fluid injection port of the self-heating container or the heating bag delivery bin. By this setting, the fluid required for the reaction of the heating bag can be conveniently provided.
[0012] As a preferred, the fluid container is attached to the top of the self-heating container, the top of the fluid container is provided with a feeding pipeline extending vertically downward and communicated with the heating bag delivery opening of the top of the self-heating container, the feeding pipeline is isolated from the fluid container, and the heating bag delivery bin is arranged in the feeding pipeline. By attaching the fluid container to the top of the self-heating container, the heat generated by the self-heating container can be conducted upward to the fluid container to generate fluid for cleaning, and by setting the feeding pipeline communicated with the heating bag delivery opening, the heating bag delivery bin can be conveniently installed, and the overall structure is simple and compact.
[0013] As a preferred, the self-heating container and the fluid container are integrally formed by setting a partition plate in the middle of the same container. By this setting, the structure can be further simplified.
[0014] As a preferred, the partition plate is wave-shaped. By this setting, the fluid conduction area of the self-heating container and the fluid container can be increased, and the heat transfer effect is better. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 Structure schematic diagram of the heating bag type steam generating device installed on the mop in Example 1;
[0016] Figure 2 Explosion schematic diagram of the heating bag type steam generating device in Example 1;
[0017] Figure 3Fig. 1 is a schematic diagram of the internal structure of the steam generating device of the heating bag type in Example 1;
[0018] Figure 4 Fig. 2 is a schematic diagram of the structure of the heating bag feeding bin in Example 1;
[0019] Figure 5 Fig. 3 is a schematic diagram of the structure of the steam generating device of the heating bag type installed on the scrubber in Example 2;
[0020] Figure 6 Fig. 4 is a schematic diagram of the structure of the steam generating device of the heating bag type in Example 2;
[0021] Figure 7 Fig. 5 is a schematic diagram of the explosion of the steam generating device of the heating bag type in Example 2;
[0022] Figure 8 Fig. 6 is a schematic diagram of the explosion of the steam generating device of the heating bag type in Example 2;
[0023] Figure 9 Fig. 7 is a schematic diagram of the explosion of the steam generating device of the heating bag type in Example 2;
[0024] Figure 10 Fig. 8 is a schematic diagram of the structure of the heating bag feeding bin in Example 2;
[0025] Figure 11 Fig. 9 is another schematic diagram of the structure of the heating bag feeding bin in Example 2;
[0026] In the figure: 1-heating bag, 2-self-heating unit, 3-self-heating container, 4-fluid injection inlet, 5-heating bag feeding port, 6-fluid container, 7-fluid output, 8-fluid delivery nozzle, 9-hot water output of the fluid container, 10-liquid feeding port, 11-feeding pipeline, 12-heating bag feeding bin, 13- partition, 14-first through hole, 15-second through hole, 16-automatic ejection structure, 17-first pump, 18-second pump, 19-fluid injection switching channel, 20-air injection port, 21-water injection port. DETAILED DESCRIPTION
[0027] The present application will be further described below in conjunction with the accompanying drawings and examples.
[0028] Example 1:
[0029] The application discloses a heating bag type steam generating device, which is applied to a mop in the embodiment, and the heating bag type steam generating device comprises a self-heating unit 2, the self-heating unit 2 comprises a self-heating container 3, a fluid injection port 4 is arranged on the self-heating container 3, a heating bag feeding port 5 for feeding a heating bag 1 is arranged at the top of the self-heating container 3, a heating bag feeding bin 12 is arranged at the heating bag feeding port 5, the heating bag feeding bin 12 is provided with a first through hole 14 which is communicated with the inner cavity of the self-heating container 3, the heating bag feeding bin 12 is movably connected with the heating bag feeding port 5, an automatic ejection structure 16 is arranged between the heating bag feeding port 5 and the heating bag feeding bin 12, and the automatic ejection structure 16 is used for automatically ejecting the heating bag feeding bin 12 when the heating bag feeding bin 12 is pressed and automatically retracting when the heating bag feeding bin 12 is pressed again; the automatic ejection structure 16 can be obtained by using the prior art, and thus will not be repeatedly described here.
[0030] A second through hole 15 for taking and placing the heating bag 1 is arranged on the side of the heating bag feeding bin 12.
[0031] The application further comprises a fluid container 6, a fluid output 7 of the fluid container 6 is communicated with the fluid injection port 4 on the self-heating container 3, the fluid container 6 is attached to the top of the self-heating container 3, a feeding pipe 11 vertically extending downwards and communicated with the heating bag feeding port 5 at the top of the self-heating container 3 is arranged at the top of the fluid container 6, the feeding pipe 11 is isolated from the fluid container 6, and the heating bag feeding bin 12 is arranged in the feeding pipe 11, a liquid feeding port 10 is arranged at the top of the fluid container 6, and a hot water output 9 of the fluid container 6 is communicated with a fluid delivery nozzle 8, so as to spray hot water to the cleaning part 1 and / or the cleaned surface.
[0032] The self-heating container 3 and the fluid container 6 are integrally formed, the self-heating container 3 and the fluid container 6 are formed by arranging a partition plate 13 in the middle of the same container in a transverse direction, and the partition plate 13 is in a wave shape.
[0033] A first pump 17 is arranged between the fluid output 7 of the fluid container 6 and the fluid injection port 4 on the self-heating container 3, a first one-way valve is arranged between the input end of the first pump 17 and the fluid output 7 of the fluid container 6 or between the output end of the first pump 17 and the fluid injection port 4 of the self-heating container 3, a second pump 18 is arranged between the hot water output 9 of the fluid container 6 and the fluid delivery nozzle 8, a second one-way valve is arranged between the input end of the second pump 18 and the hot water output 9 of the fluid container 6 or between the output end of the second pump 18 and the fluid delivery nozzle 8, and the first one-way valve and the second one-way valve can be obtained by using the prior art, and thus will not be shown in the figure.
[0034] The working process of the heating bag type steam generating device is as follows: a certain amount of fluid is extracted from the fluid container 6 into the self-heating container 3 by the first pump 17, the fluid covers the heating bag 1 through the first through hole 14; the heating bag 1 reacts with the fluid to generate heat; since the fluid container 6 is attached to the top of the self-heating container 3, the heat of the self-heating container 3 can be conducted to the fluid in the fluid container 6 to heat the fluid in the fluid container 6; when it is necessary to replace the heating bag 1 or to remove the heating bag 1 to stop the exothermic reaction, the heating bag 1 can be automatically ejected by pressing the top of the heating bag feeding bin 12, so that the heating bag 1 is ejected to be isolated from the fluid, thereby stopping the exothermic reaction, and after being ejected, the heating bag 1 can be replaced through the second through hole 15 on the side of the heating bag feeding bin 12, and the heating bag feeding bin 12 is retracted downward by pressing the top of the heating bag feeding bin 12 again.
[0035] Embodiment 2:
[0036] A heating bag type steam generating device is applied to a floor cleaning machine, which comprises a self-heating unit 2, the self-heating unit 2 comprises a self-heating container 3, the top of the self-heating container 3 is provided with a heating bag feeding port 5 for feeding a heating bag 1, the heating bag feeding port 5 is provided with a heating bag feeding bin 12, the heating bag feeding bin 12 is provided with a fluid injection port 4, the heating bag feeding bin 12 is provided with a first through hole 14 which is connected with the inner cavity of the self-heating container 3, the heating bag feeding bin 12 is movably connected with the heating bag feeding port 5, and an automatic ejection structure 16 is arranged between the heating bag feeding port 5 and the heating bag feeding bin 12, which is used for automatically ejecting the heating bag feeding bin 12 when the heating bag feeding bin 12 is pressed and automatically retracting the heating bag feeding bin 12 when it is pressed again.
[0037] The side of the heating bag feeding bin 12 is provided with a second through hole 15 which is used for taking and placing the heating bag 1 after being moved upward; the first through hole 14 is provided with a plurality of first through holes which are uniformly arranged at the bottom of the heating bag feeding bin 12.
[0038] The fluid container 6 is further provided, the fluid output 7 of the fluid container 6 is connected with the fluid injection port 4 of the heating bag feeding bin 12, and the first pump 17 is further arranged between the fluid output 7 of the fluid container 6 and the fluid injection port 4 of the heating bag feeding bin 12, in the embodiment, the fluid output 7 of the fluid container 6 is connected with the input end of the first pump 17, and the output end of the first pump 17 is connected with the fluid injection port 4 of the heating bag feeding bin 12 through the fluid injection switching channel 19.
[0039] The working principle of the steam generating device of the present embodiment is as follows: start the first pump 17 to draw a certain amount of fluid from the fluid container 6 into the self-heating container 3 through the heating bag delivery bin 12, and the fluid covers the heating bag 1, then the first pump 17 stops working; the heating bag 1 generates heat when encountering the fluid, the fluid in the self-heating container 3 boils to generate hot water and steam, the generated steam can be used as the cleaning medium of the sweeper and is sprayed from the air outlet 20, in addition, the heat generated by the self-heating container 3 can also heat the fluid to generate hot water, which is sprayed from the water outlet 21; when the heating bag 1 needs to be replaced or removed, just press the top of the heating bag delivery bin 12, and the heating bag delivery bin 12 will automatically pop up, so that the heating bag 1 will pop up and be isolated from the fluid, so that the heat release reaction stops, and after being popped out, the heating bag 1 can be replaced through the second through hole 15 on the side of the heating bag delivery bin 12, and the top of the heating bag delivery bin 12 is pressed again, and the heating bag delivery bin 12 will be retracted downward.
Claims
1. A heating bag type steam generating device, comprising a self-heating unit (2), wherein the self-heating unit (2) comprises a self-heating container (3), characterized in that: The top of the self-heating container (3) is provided with a heating pack inlet (5) for placing a heating pack (1). The heating pack inlet (5) is provided with a heating pack storage compartment (12) for placing and removing the heating pack (1). The heating pack storage compartment (12) is vertically connected to the heating pack inlet (5). The heating pack storage compartment (12) is provided with a first through hole (14) communicating with the inner cavity of the self-heating container (3). It also includes a fluid container (6), on which the self-heating container (3) or the heating pack storage compartment (12) is provided with a fluid injection port. 4) The fluid output (7) of the fluid container (6) is connected to the fluid inlet (4) on the self-heating container (3) or the heating pack delivery chamber (12); the fluid container (6) is attached to the top of the self-heating container (3), and the top of the fluid container (6) is provided with a feeding pipe (11) that extends vertically downward and is connected to the heating pack delivery port (5) on the top of the self-heating container (3). The feeding pipe (11) is isolated from the fluid container (6), and the heating pack delivery chamber (12) is located inside the feeding pipe (11).
2. The heating bag type steam generator according to claim 1, characterized in that: An automatic pop-up structure (16) is provided between the heating pack dispensing port (5) and the heating pack dispensing compartment (12), which is used to make the heating pack dispensing compartment (12) pop out automatically when pressed and retract automatically when pressed again.
3. The heating bag type steam generator according to claim 1, characterized in that: The heating pack delivery compartment (12) has a second through hole (15) on its side for taking out and putting in the heating pack (1) after it moves upward.
4. The heating bag type steam generating device according to claim 1, characterized in that: Multiple first through holes (14) are provided and are evenly distributed on the bottom and / or the side of the lower half of the heating pack delivery chamber (12).
5. A heating bag-type steam generator according to claim 1, characterized in that: The self-heating container (3) and the fluid container (6) are integrally formed by setting a partition (13) in the middle of the same container to form the self-heating container (3) and the fluid container (6).
6. A heating bag-type steam generator according to claim 5, characterized in that: The partition (13) is wavy.
Citation Information
Patent Citations
Steam mop dust collector
CN110811413A
Heating bag type steam generating device
CN216724435U