Disclosure of Invention
The invention aims to provide a bottle washing machine, which solves the problems that the existing bottle washing machine is expensive in price and complex in operation; but also has the technical problems of poor cleaning effect and long cleaning period.
In order to achieve the purpose, the invention adopts the following technical scheme:
the invention provides a bottle washing machine, comprising:
the cleaning component comprises a shell with a first cavity and a rotating piece, wherein the shell is provided with a water inlet hole and a water outlet hole which are communicated with the first cavity, the rotating piece is movably and rotatably arranged in the first cavity, and the rotating piece is provided with a spiral channel; and
the water path control assembly is arranged at the water inlet hole of the shell and communicated with the water inlet hole, the water path control assembly can be communicated with a water supply device, and the water path control assembly is configured to control the cleaning component and the water supply device to be switched on and off.
The cleaning component of the bottle washing machine comprises a shell and a rotating component, wherein the rotating component is arranged in the shell, a water path control component is arranged at a water inlet hole of the shell and is communicated with the water inlet hole, the water path control component can be communicated with a water supply device, the water path control component can control the on-off of the cleaning component and the water supply device, when the cleaning component is communicated with the water supply device, water enters the shell of the cleaning component and can push the rotating component to move upwards, due to the arrangement of a spiral channel on the rotating component, the water enters the spiral channel and is sprayed outwards along the spiral channel, the rotating component is driven to rotate in the shell due to the conservation of angular momentum, the water is sprayed out by the spiral channel in a rotating mode, the cleaning area is increased, and the overall cleaning effect on bottles is improved; and the bottle washing machine has simple structure and low cost.
As a preferable aspect of the above bottle washing machine, the waterway control assembly includes:
the water inlet component is internally provided with a second cavity, the water inlet component is provided with an inlet and a mounting hole which are communicated with the second cavity, and the inlet can be connected with the water supply device; and
the trigger assembly is movably arranged in the mounting hole, moves downwards and drives the trigger assembly to move downwards from an initial position, so that the cleaning component is communicated with the water inlet component.
The trigger assembly of the water path control assembly is connected with the cleaning component and communicated with the first cavity, the trigger assembly is movably arranged in the mounting hole, the cleaning component moves downwards and drives the trigger assembly to move downwards from an initial position, so that the cleaning component is communicated with the water inlet component, and the water path control assembly is convenient to control.
As a preferable mode of the bottle washing machine, one end of the trigger assembly is communicated with the cleaning component, the other end of the trigger assembly is provided with an abutting portion, a communication hole is formed in a side wall of the other end of the trigger assembly, and the trigger assembly moves relative to the mounting hole to abut against or separate the abutting portion from a bottom wall of the mounting hole so as to partition or communicate the communication hole with the water inlet component.
The arrangement can cut off the communication between the communication hole and the water inlet component when the abutting part abuts against the bottom wall of the mounting hole through the movement of the trigger component; when butt portion and the diapire phase separation of mounting hole, can communicate intercommunicating pore and the part of intaking, it is comparatively convenient to operate.
As a preferable solution of the above bottle washing machine, the waterway control assembly further includes:
an elastic reset member configured to drive the trigger assembly to reset to the initial position.
After the washing finishes, can drive the trigger subassembly through the elasticity piece that resets and reset to control water route control assembly and close.
As a preferable solution of the above bottle washing machine, the waterway control assembly further includes:
the pressing platform is sleeved on the outer side of the trigger assembly and connected with the trigger assembly and/or the cleaning component, and the elastic resetting piece is arranged between the pressing platform and the water inlet component.
The pressing platform can be arranged to facilitate pressing of the elastic reset piece, operation is facilitated, and meanwhile the effects of attractiveness and protection are achieved.
As a preferable scheme of the bottle washing machine, a sealing member is arranged between the trigger assembly and the mounting hole.
A sealing piece is arranged between the trigger assembly and the mounting hole, and water in the water inlet component is prevented from overflowing through a gap between the trigger assembly and the mounting hole by the arrangement of the sealing piece.
As a preferable scheme of the bottle washing machine, a gap is formed between the rotating member and the inner wall of the housing, and a water scraping groove is formed in the top edge of the rotating member and communicated with the gap.
The water flowing upwards from the gap between the rotating piece and the shell enters the water scraping groove, so that a water film is formed between the water scraping groove and the side wall of the shell, which is positioned at the water outlet, the function of a lubricant is achieved, and the friction force between the rotating piece and the side wall of the shell, which is positioned at the water outlet, is reduced.
As a preferable mode of the bottle washing machine, a plurality of the water scraping grooves are uniformly arranged in the circumferential direction of the rotating member.
The plurality of water scraping grooves are formed in the circumferential direction of the rotating piece, and friction between the rotating piece and the inner wall of the shell, which is located between the rotating piece and the inner wall of the shell, is further reduced.
As a preferable mode of the above bottle washing machine, the bottle washing machine further includes:
the water receiving tray is arranged on the cleaning component and provided with a water outlet, and the water outlet is communicated with the first cavity of the cleaning component.
The water that the washing bottle flows can be collected to the setting of water collector.
As a preferable scheme of the bottle washing machine, a groove which is recessed towards the inside of the water pan is formed in one side, facing the cleaning component, of the water pan, the water outlet is formed in the bottom of the groove, and the cleaning component is inserted into the groove.
The arrangement of the groove on the water receiving tray facilitates the insertion of the cleaning component and the installation and fixation of the water receiving tray and the cleaning component.
As a preferable scheme of the bottle washing machine, the rotating member is detachably connected with a cleaning brush.
The rotating piece is detachably connected with a cleaning brush, and the cleaning effect on the bottle is improved through the cleaning brush; and the cleaning brush can be dismantled the setting to select the cleaning brush of different grade type to clean the bottle according to the demand, it is convenient to change.
The invention has the beneficial effects that:
the invention provides a bottle washing machine, which comprises a shell and a rotating part, wherein the rotating part is arranged in the shell, a water path control assembly is arranged at a water inlet of the shell and is communicated with the water inlet, the water path control assembly can be communicated with a water supply device, the water path control assembly can control the on-off of a cleaning part and the water supply device, when the cleaning part is communicated with the water supply device, water enters the shell of the cleaning part and can push the rotating part to move upwards, and due to the arrangement of a spiral channel on the rotating part, the water enters the spiral channel and drives the rotating part to rotate in the shell, and the water is sprayed out by the spiral channel in a rotating way, so that the cleaning area is increased, and the integral cleaning effect on a bottle is improved; and the bottle washing machine has simple structure and low cost.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the invention and are not limiting of the invention. It should be further noted that, for the convenience of description, only some of the structures related to the present invention are shown in the drawings, not all of the structures.
In the description of the present invention, unless expressly stated or limited otherwise, the terms "connected," "connected," and "fixed" are to be construed broadly, e.g., as meaning permanently connected, removably connected, or integral to one another; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
In the present invention, unless otherwise expressly stated or limited, "above" or "below" a first feature means that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact with each other via another feature therebetween. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
In the description of the present embodiment, the terms "upper", "lower", "right", etc. are used in an orientation or positional relationship based on that shown in the drawings only for convenience of description and simplicity of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used only for descriptive purposes and are not intended to have a special meaning.
The invention provides a bottle washing machine which is used for washing the interior of a bottle. As shown in fig. 1 and 2, the bottle washing machine includes a cleaning component 1 and a water path control assembly 2, the cleaning component 1 includes a housing 11 having a first cavity 111 and a rotating member 12, the housing 11 is provided with a water inlet 112 and a water outlet 113 (see fig. 4) communicated with the first cavity 111, the rotating member 12 is movably and rotatably disposed in the first cavity 111, the rotating member 12 is provided with a spiral channel 121, the water path control assembly 2 is disposed at the water inlet 112 of the housing 11 and communicated with the water inlet 112, the water path control assembly 2 can be communicated with a water supply device, and the water path control assembly 2 can control on/off of the cleaning component 1 and the water supply device. In this embodiment, the cleansing member 1 is pressed downward to control the waterway control assembly 2 to be opened so that the cleansing member 1 communicates with the water supply device (see fig. 2).
When a bottle is cleaned, the bottle is buckled at the center of the water receiving tray 3, the bottle is pressed downwards, the bottle drives the water receiving tray 3 and the cleaning part 1 to move downwards, so that the cleaning part 1 is communicated with a water supply device (not shown in the figure), water enters the shell 11 of the cleaning part 1 through the water path control component 2 and can push the rotating part 12 to move upwards and move to the top position of the first cavity 111, the water enters the spiral channel 121 due to the arrangement of the spiral channel 121 on the rotating part 12 and can drive the rotating part 12 to rotate in the shell 11, the water is sprayed out from the spiral channel 121, the sprayed water has a spiral effect, the cleaning area is increased, and the overall cleaning effect on the bottle is improved; pressing down cleaning component 1 can control opening of water route control assembly 2, and the water route is closed promptly after the release pressure, and it is comparatively convenient to operate.
Optionally, the rotating member 12 is a cylinder structure, the volume of the first cavity 111 of the housing 11 is greater than the volume of the rotating member 12, that is, the height of the first cavity 111 is greater than the height of the rotating member 12, and the diameter of the first cavity 111 is greater than the diameter of the rotating member 12, so that after the rotating member 12 is placed in the first cavity 111, the rotating member 12 and the first cavity 111 have a larger gap, so as to facilitate the movement of the rotating member 12 along the height direction of the first cavity 111 and the rotation during the ascending process of the first cavity 111.
Alternatively, as shown in fig. 3 and 4, two spiral channels 121 are disposed on the rotating member 12, the two spiral channels 121 are disposed around the central axis of the rotating member 12, the bottom of the spiral channel 121 is an inlet, the top of the spiral channel 121 is an outlet, water entering the housing 11 from the waterway control assembly 2 enters the inlet of the spiral channel 121 and is sprayed from the outlet, and the sprayed water is sprayed from the water outlet 113 of the housing 11 to clean the bottle. It should be noted that: the number of the spiral channels 121 on the rotating member 12 is not limited to two, and may be one, three, four, etc., and may be set as required.
Preferably, the diameter of the outlet of the spiral channel 121 is smaller than the diameter of the inlet, so that the outlet can eject a more acute stream of water, facilitating the rotation of the rotating member 12, and improving the cleanliness of the washing.
In order to reduce the friction force, the inner wall of the spiral channel 121 is as smooth as possible, the spiral is not easy to be too much, and the spiral channel is half a turn in the embodiment.
Preferably, the spiral channel 121 is inclined along one side of the semi-cylindrical side of the rotating member 12 and the outlet is inclined toward the central axis so that the sprayed water is as much as possible to flush the bottom of the bottle. The spiral path 121 is also inclined to a side of the semi-cylinder through which the spiral path 121 does not pass, and the inclination is greater than that to the central axis, so as to provide the rotation power to the rotation member 12.
The water enters the housing 11 of the cleaning component 1, and pushes the rotating member 12 to move to the top position of the first cavity 111, in order to reduce the rotation resistance of the rotating member 12, as shown in fig. 4, the top edge of the rotating member 12 is provided with a water scraping groove 122, the water scraping groove 122 is communicated with the gap between the rotating member 12 and the housing 11, and the water flowing upwards from the gap between the rotating member 12 and the housing 11 enters the water scraping groove 122, so that a water film is formed between the water scraping groove 122 and the side wall of the housing 11 located at the water outlet hole 113, which plays a role of a lubricant, and reduces the rotation resistance of the rotating member 12.
Preferably, the water scraping groove 122 extends along the circumferential direction of the rotor 12, and the depth of the water scraping groove 122 gradually decreases along the reverse direction of the rotation direction of the rotor 12, and the rotor 12 forms a lubricating water film between the edge of the rotor 12 and the edge of the inner wall of the housing 11 during the rotation, so as to reduce the resistance of the rotor 12. The arcuate configuration of the wiping channel 122 can be seen in fig. 3 in order to direct the flow of water entering the wiping channel 122 in a direction opposite to the direction of movement of the rotor 12 along the arcuate configuration, thereby reducing the drag on the rotor 12.
Preferably, a plurality of water scraping grooves 122 are uniformly distributed in the circumferential direction of the rotating member 12, so that the rotational resistance of the rotating member 12 is further reduced. In this embodiment, two water scraping grooves 122 are symmetrically arranged on the top of the rotating member 12 along the radial direction of the rotating member 12, after the water path control assembly 2 communicates the cleaning component 1 with the water supply device, the rotating member 12 is impacted by water pressure to push against the top of the first cavity 111, at this time, water flows upwards gush out from the gap between the rotating member 12 and the first cavity 111 and the spiral channel 121 respectively, water gushing out from the gap upwards only overflows from the water scraping grooves 122 when reaching the top of the rotating member 12 and the first cavity 111, the water gushing out from the spiral channel 121 drives the rotating member 12 to rotate in the counterclockwise direction under the action of momentum conservation, at this time, a small amount of water overflowing from the water scraping grooves 122 is used as a lubricant for rotation. Through the design of helical channel 121 spiral direction, let rotate the purpose of piece 12 with the anticlockwise rotation, be unanimous with northern hemisphere swirl direction, can slightly borrow power earth rotation partial force, let the rotation more smooth and easy.
In order to improve the cleaning effect on the bottle, a cleaning brush (not shown in the figure) is detachably connected to the rotating part 12, and the rotating part 12 rotates to drive the cleaning brush to rotate so as to clean the inner wall of the bottle, so that the cleaning effect on the bottle is improved; and the cleaning brush can be dismantled the setting to select the cleaning brush of different grade type to clean the bottle according to the demand, it is convenient to change.
As shown in fig. 3-5, the axis of the rotating member 12 is provided with a first insertion hole 123, and the cleaning brush is inserted into the first insertion hole 123, in this embodiment, a sponge brush is inserted into the first insertion hole 123.
Optionally, the first insertion hole 123 is a blind hole, which may be a square blind hole, a rectangular blind hole, or a blind hole with another shape, and the blind hole is opened from top to bottom and is just sandwiched between the two spiral channels 121. Preferably, a small-size through hole structure can be formed below the blind hole, accumulated water and large water flow are prevented from passing through the structure, water spray pressure is reduced, and the sponge brush is prevented from being inserted too deeply.
Optimized, the movable valve plate with an acute included angle with the lower opening is additionally arranged at the lower opening of the arranged through hole, so that the valve plate closes a channel when water is sprayed, and the valve plate naturally droops after water is cut off, thereby avoiding water accumulation.
As shown in fig. 5, the rotating member 12 is further provided with two second insertion holes 124, the second insertion holes 124 are used for inserting the brushes 5 (see fig. 6), the two second insertion holes 124 are respectively arranged at two sides of the first insertion hole 123, the second insertion holes 124 and the first insertion hole 123 form an included angle, and the two second insertion holes 124 are not coplanar, so that after the brushes 5 are inserted into the second insertion holes 124, the two brushes 5 do not intersect in the air, so that the contact area with the bottom of the bottle is large when the bottom of the bottle is brushed, the bottom of the bottle and the side wall of the bottle can be brushed, and the brushes 5 do not interfere with each other (see fig. 7).
Optionally, the second insertion hole 124 may also be a blind hole, and preferably, a small-sized through hole structure may also be formed at the bottom of the second insertion hole 124, so as to prevent water accumulation and large water flow from reducing the water spraying pressure after passing through the through hole structure, and to provide the insertion limiting function of the brush 6.
Optimized, the movable valve plate with an acute included angle with the lower opening is additionally arranged at the lower opening of the arranged through hole, so that the valve plate seals a channel when water is sprayed, and the valve plate naturally droops after water is cut off, thereby avoiding water accumulation.
Alternatively, the rotating member 12 is integrally formed, so that the number of parts is reduced, and the rotating member 12 can be made of a plastic material, so that the manufacturing is convenient and the cost is low. Of course, the rotating member 12 is not limited to be made of plastic material, and may be made of other materials, and is not limited in particular.
As shown in fig. 1, 2, 8 and 9, the bottle washing machine further includes a water pan 3, the water pan 3 is disposed on the cleaning component 1, a water outlet 31 is disposed on the water pan 3, the water outlet 31 is located at the center of the water pan 3, the water outlet 31 is communicated with the first cavity 111 of the cleaning component 1, and water sprayed from the spiral channel 121 is sprayed from the water outlet 31. The setting of water collector 3 can support the bottle, can collect the water that washs the bottle moreover.
Optionally, a groove 32 recessed toward the inside of the water pan 3 is provided on one side of the water pan 3 facing the cleaning component 1, that is, a protruding structure is formed inside the water pan 3, the water outlet 31 is provided at the bottom of the groove 32, and the cleaning component 1 is inserted into the groove 32. The arrangement of the groove 32 on the water pan 3 is convenient for the insertion of the cleaning component 1, plays a role in wrapping and fixing the cleaning component 1, and is convenient for the installation of the water pan 3 and the cleaning component 1. Moreover, the protruding structure extends into the bottle, and can play a certain limiting role on the bottle body.
Further, an elastic washer is disposed between the groove 32 and the contact surface of the cleaning member 1 for preventing water from leaking during operation.
With continued reference to fig. 8 and 9, a support boss assembly is disposed inside the water pan 3, the support boss assembly includes a plurality of support bosses 33 spaced around the water outlet 31, and the support bosses 33 are used for supporting the bottle so as to facilitate the outflow of water for cleaning the bottle.
Preferably, the support boss assemblies may be provided in multiple sets to support bottles of different calibers. In the embodiment, the two groups of the supporting boss assemblies are arranged and are evenly distributed in a staggered mode, so that water for cleaning the bottles can flow and can be collected as soon as possible. Each group of supporting boss components comprises three supporting bosses 33, the three supporting bosses 33 of each group are positioned on the same circumference and are arranged at 120-degree equal intervals, and one group of supporting bosses 33 is arranged on the outer side of the other group of supporting bosses 33 so as to support bottles with different calibers. The two sets of bosses 33 have an overlap in radial length dimension so as not to allow a bottle of a particular caliber size to correspond to a non-depressed position.
Alternatively, in order to discharge the water in the water receiving tray 3, a water outlet 34 is provided on the water receiving tray 3, the water in the water receiving tray 3 is guided out through the water outlet 34, the water outlet 34 may be connected with a water discharge pipeline, or the bottle washing machine is installed near a water tank, and the water discharged from the water outlet 34 may directly flow into the water tank without installing a water discharge pipeline.
Alternatively, the drip tray 3 may be integrally injection moulded, saving assembly costs, and is typically made of a plastics material. It should be noted that the preparation method and the preparation material of the water pan 3 are not limited to the above-mentioned method, and other preparation methods and other materials may be used.
As shown in fig. 1 and 2, the waterway control assembly 2 includes a water inlet component 21, a trigger assembly 22 and an elastic reset component 23, a second cavity is disposed inside the water inlet component 21, an inlet and a mounting hole 2112 communicated with the second cavity are disposed on the water inlet component 21, and the inlet can be connected with a water supply device. The trigger component 22 is connected with the cleaning component 1 and communicated with the first cavity 111, the trigger component 22 is movably arranged in the mounting hole 2112, the cleaning component 1 moves downwards to drive the trigger component 22 to move downwards from an initial position, so that the cleaning component 1 is communicated with the water inlet component 21, and the water path control component 2 is convenient to control. The elastic reset piece 23 can drive the trigger component 22 to reset to the initial position so that the cleaning component 1 is separated from the water inlet component 21, and after the cleaning is finished, the elastic reset piece 23 can drive the trigger component 22 to move so that the cleaning component 1 is separated from the water inlet component 21.
Optionally, the waterway control assembly 2 further includes a pressing platform 24, the pressing platform 24 is sleeved outside the triggering assembly 22 and is connected to the triggering assembly 22 or the cleaning component 1, or the pressing platforms 24 are connected to the triggering assembly 22 and the cleaning component 1, and the elastic restoring member 23 is disposed between the pressing platform 24 and the water inlet component 21. The pressing table 24 is arranged to facilitate pressing of the elastic reset piece 23, facilitate operation, and have the functions of beauty and safety protection.
Further, one end of the trigger assembly 22 is communicated with the cleaning component 1, the other end of the trigger assembly 22 is provided with an abutting portion 221, and the side wall of the other end of the trigger assembly 22 is provided with a communication hole 222, and the trigger assembly 22 moves relative to the mounting hole 2112 so that the abutting portion 221 abuts against or separates from the bottom wall of the mounting hole 2112 to block or communicate the communication hole 222 with the inlet. In the above arrangement, when the contact portion 221 contacts the bottom wall of the mounting hole 2112 by the movement of the trigger assembly 22, the communication between the communication hole 222 and the water inlet member 21 can be blocked; when the abutting portion 221 is separated from the bottom wall of the mounting hole 2112, the communication hole 222 and the water inlet member 21 can be communicated, and the operation is convenient.
Further, as shown in fig. 10, the trigger assembly 22 includes a trigger main body 220, the abutting portion 221 is disposed at the bottom of the trigger main body 220, the abutting portion 221 extends into the water inlet component 21, the trigger main body 220 is a through cylindrical structure, and the inner diameter of the trigger main body 220 is smaller than the diameter of the rotating assembly, so as to prevent the rotating assembly from falling into the trigger assembly 22.
With continued reference to fig. 10, the trigger body 220 includes a threaded section 2201 and an optical tube section 2202 connected, the threaded section 2201 and the abutting part 221 are respectively disposed at two ends of the optical tube section 2202, the threaded section 2201 is in threaded connection with the housing 11 of the cleaning component 1, and the outer wall of the optical tube section 2202 has a high degree of finish, so as to better move up and down and assist in sealing. The connection manner of the trigger body 220 and the cleaning member 1 is not limited to the above-mentioned screw connection, and may be connected by other manners, and is not particularly limited herein.
Optionally, a plurality of communication holes 222 are circumferentially formed at one end of the cylindrical section 2202 close to the abutting portion 221, when the trigger assembly 22 moves downward, the communication holes 222 are exposed to tap water with certain water pressure, the water can rapidly burst out from the communication holes 222, and at this time, the water pressure acting between the cylindrical section 2202 and the sealing member 25 rapidly drops, and the water cannot overflow from a gap between the two.
After the bottle washing is finished, the pressure disappears, the trigger assembly 22 rapidly resets under the double action of the water pressure and the elastic resetting piece 23, the pressure is not loaded before the water pressure of the gap between the light cylinder section 2202 and the sealing piece 25 does not reach the tap water pressure, and the pressure is transferred to the bottom of the pressing part and the sealing piece 25.
As shown in fig. 1 and 2, and fig. 11 and 12, the water inlet component 21 includes an upper component 211 and a lower component 212, the upper component 211 has a first receiving cavity 2111 therein, a first hole communicated with the first receiving cavity 2111 is formed at the top of the upper component 211, and a threaded port 2113 is formed at the bottom of the upper component 211.
The lower member 212 is fixed to a mounting table or the like. The lower member 212 has a second receiving chamber 2121, a connecting port 2122 is provided at the top of the lower member 212, a second hole 2123 communicating with the second receiving chamber 2121 is provided at the bottom of the lower member 212, and the connecting port 2122 is threadedly coupled to the threaded port 2113 to allow the first receiving chamber 2111 and the second receiving chamber 2121 to communicate with each other. The second hole 2123 is a water inlet and can be connected to a water supply device, and the first hole is the mounting hole 2112.
It should be noted that: the water inlet member 21 is not limited to the separate structure described above, and may be an integral structure, and the connection between the upper member 211 and the lower member 212 is not limited to the threaded connection described above, and may be another connection method as long as the sealing connection between the two is achieved. The purpose here of disassembly is to secure it to the sink deck without the use of additional nuts.
As shown in fig. 13, the pressing platform 24 is a cap-shaped structure, a through hole 241 is provided at the top of the pressing platform 24, the through hole 241 may be a threaded hole, the trigger component 22 is screwed into the threaded hole, the pressing platform 24 of the structure can play a role of protection and beauty, and the elastic reset piece 23 can be accommodated in the pressing platform 24. Alternatively, the through hole 241 may be a light hole through which the trigger assembly 22 passes.
As shown in fig. 1, 2 and 14, a sealing member 25 is disposed between the trigger assembly 22 and the mounting hole 2112, and the water in the water inlet member 21 is prevented from overflowing through a gap between the trigger assembly 22 and the mounting hole 2112 by the disposition of the sealing member 25. The sealing member 25 is made of rubber, the sealing member 25 includes a sealing body 251, an upper pressure pad 252 disposed on the top of the sealing body 251, and a lower pressure pad 253 disposed on the bottom of the sealing body 251, the sealing member 25 is provided with a through hole penetrating through the sealing body 251, the upper pressure pad 252, and the lower pressure pad 253, and the upper pressure pad 252 is disposed to contact the pressing table 24 with the sealing member 25 when the pressing table 24 is pressed down, thereby achieving a sealing effect. The upper pressure pad 252 has a relatively thick thickness, so that the upper pressure pad 252 can be tightly pressed by the pressing platform 24 during operation, and the pressing action is more reliable because the pressing action is to overcome the spring pressure and the water pressure. The lower pressure pad 253 is thin in thickness, so that the sealing effect on the mounting hole 2112 is better, and after cleaning is finished, the spring and the water pressure assist sealing at the same time.
The installation method of the bottle washing machine comprises the following steps:
firstly, a hole is punched on a mounting table surface for mounting the bottle washing machine in advance, and the lower part 212 is inserted into the hole;
then, the upper part 211 is first provided with a sealing ring, and then the trigger assembly 22 is inserted into the sealing ring;
the assembled upper part 211 is then screwed to the lower part 212, the mechanism being fixed to the mounting table;
then, the elastic reset piece 23 is sleeved on the trigger component 22, and the pressing platform 24 is screwed into the top of the trigger component 22 and is fixedly connected together through threads;
then, the cleaning component 1 and the trigger assembly 22 are fixedly connected together through threads, and the water pan 3 is installed on the top of the cleaning component 1.
Finally, the water supply device is connected to the second hole 2123 of the lower member 212, i.e., the entire installation work is completed.
Use of the cleaning bottle:
when the water-saving washing machine is used, the bottle mouth is buckled downwards on the water outlet 31 of the water collecting tray 3, the bottom of the bottle is pressed downwards, the water path control component 2 can be opened after the trigger component 22 overcomes the elastic reset component 23 and the tap water pressure successively, the rotating component 12 sprays two inclined water flows and rotates ceaselessly, and a brush arranged on the rotating component 12 can wash the interior of the bottle.
If the aim is to be cleaner, a cleaning agent can be added into water stored at the top of the cleaning head, foam is generated when the cleaning head starts to wash, and the cleaning effect is better.
After the bottle is cleaned, the elastic reset piece 23 and the water pressure drive the abutting platform 24 to reset the trigger assembly 22, so that the tap water is closed.
It should be understood that the above-described embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention. Numerous obvious variations, adaptations and substitutions will occur to those skilled in the art without departing from the scope of the invention. And are neither required nor exhaustive of all embodiments. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.