CN214994370U - Kitchen waste disposer - Google Patents

Kitchen waste disposer Download PDF

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Publication number
CN214994370U
CN214994370U CN202120684833.XU CN202120684833U CN214994370U CN 214994370 U CN214994370 U CN 214994370U CN 202120684833 U CN202120684833 U CN 202120684833U CN 214994370 U CN214994370 U CN 214994370U
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China
Prior art keywords
dehydration
seat
block
crushing
kitchen waste
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Active
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CN202120684833.XU
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Chinese (zh)
Inventor
杨涛
徐泽山
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Ningbo New Guanlian Motor Electronic Co ltd
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Ningbo New Guanlian Motor Electronic Co ltd
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Abstract

The utility model provides a kitchen garbage disposer belongs to kitchen garbage crushing and dewatering equipment technical field, include: the crushing seat is provided with a crushing cavity, a first feeding hole and a first discharging hole; the crushing assembly comprises a first driving block and a serrated knife block, the serrated knife block is arranged in the crushing cavity, and the first driving block is in linkage connection with the serrated knife block; the dehydration seat is provided with a dehydration cavity, a second feed inlet and a dehydration hole, and the second feed inlet and the dehydration hole are both communicated with the dehydration cavity; the dehydration component comprises a second driving block and a sliding block, the sliding block is movably arranged in the dehydration cavity, and the second driving block is connected with the sliding block; the water receiving tray is arranged below the dewatering seat, and the dewatering holes face the water receiving tray; the collecting box is arranged below the dewatering seat. The utility model has the advantages that: overall structure is ingenious, can smash kitchen garbage and dewater, then discharges moisture and residue respectively to realize the purpose of rubbish innoxious and resource circulation.

Description

Kitchen waste disposer
Technical Field
The utility model belongs to the technical field of kitchen garbage crushing and dewatering equipment, a kitchen garbage disposer is related to.
Background
With the rapid development of domestic economy, the environmental protection raises new requirements, and each large city issues the classification requirements of residential waste, so that the domestic waste is advanced towards harmlessness and recycling.
However, in the actual operation process, the ingredients of the Chinese kitchen waste are complex, the classification is extremely difficult and inconvenient, the ratio of the ingredients is the largest, the land burying and the incineration are harmful treatment modes, a large amount of land is occupied, the humidity of the kitchen waste is high, a large amount of energy is consumed for the incineration, and the air quality is influenced by smoke.
Under the big background, in order to change the effective utilization of kitchen waste from the source, namely change the problem that the classification of resident kitchen waste is difficult, and recycle resources, some kitchen waste treatment devices exist at present, such as a Chinese patent with the application number of CN201120411919.1, and a kitchen waste crushing and squeezing processor is disclosed, wherein the kitchen waste crushing and squeezing processor comprises a crushing part and a squeezing and dehydrating part, the crushing part comprises a pair-roller type crushing mechanism, and the pair-roller type crushing mechanism comprises a driving shaft and a driven shaft; gears are mounted on the driving shaft and the driven shaft, each gear comprises a gear ring and a gasket, and gear teeth are arranged on the gear rings; the cutting clearance between the tooth flanks of the adjacent gears is 0.5mm, and the cutting clearance between the point-shaped tips of the teeth and the washers is 0.5 mm.
In addition, a chinese patent with application number CN201910736661.3 discloses a garrulous recycling equipment of rubbish from cooking, the power distribution box comprises a box body, rubbing crusher constructs, dewatering mechanism and residue forming mechanism, the box is inside to be separated for power cavity through riser and baffle, smash the room, dewatering chamber and residue treatment room, rubbing crusher constructs including two crushing tooth axles that set up side by side in crushing room, dewatering mechanism is including setting up the section of thick bamboo of straining in dewatering chamber, the pay-off auger, slag tap baffle and conveying pipeline, residue forming mechanism is including setting up the screw rod in the residue treatment room, be provided with the cutter on the screw rod, the motor drives crushing tooth axle through a plurality of engaged with gears, pay-off auger and screw rod rotary work, the box top surface is provided with the blanking mouth.
The kitchen waste treatment equipment has a complex structure, is not suitable for a household water tank, and cannot realize the purposes of harmlessness and recycling circulation.
Disclosure of Invention
The utility model aims at solving the problems in the prior art and providing a kitchen garbage disposer.
The purpose of the utility model can be realized by the following technical proposal: a kitchen waste disposer, comprising:
the crushing seat is provided with a crushing cavity, a first feeding hole and a first discharging hole, and the first feeding hole and the first discharging hole are both communicated with the crushing cavity;
the crushing assembly comprises a first driving block and a toothed cutter block, the toothed cutter block is arranged in the crushing cavity, and the first driving block is in linkage connection with the toothed cutter block;
the dehydration seat is provided with a dehydration cavity, a second feed inlet and a dehydration hole, the second feed inlet and the dehydration hole are both communicated with the dehydration cavity, and the second feed inlet is connected with the first discharge outlet;
the dehydration assembly comprises a second driving block and a sliding block, the sliding block is movably arranged in the dehydration cavity, and the second driving block is connected with the sliding block;
the water receiving tray is arranged below the dewatering seat, and the dewatering holes face the water receiving tray;
and the collecting box is arranged below the dewatering seat.
Preferably, the serrated knife block comprises a driving gear, a driven gear and two rotating shafts, the two rotating shafts are rotatably arranged in the crushing cavity, the rotating shafts are provided with at least one serrated knife, the first driving block is connected with the driving gear and can drive the driving gear to rotate, the driving gear is meshed with the driven gear, and the driving gear and the driven gear are respectively connected with the two rotating shafts.
Preferably, the two rotating shafts are arranged in parallel, and the serrated knives on the two rotating shafts are arranged in a staggered manner.
Preferably, one end of the dehydration seat is provided with an opening communicated with the dehydration cavity, the slider penetrates through the opening to the dehydration cavity, the other end of the dehydration seat is provided with a discharge hole communicated with the dehydration cavity, and the discharge hole faces the collection box.
Preferably, the second driving block includes a dewatering motor, a nut seat and a screw rod, the nut seat is fixedly connected to the sliding block, the screw rod is connected to the nut seat, the dewatering motor is connected to the screw rod, and the dewatering motor can drive the screw rod to rotate so as to drive the sliding block to move through the nut seat.
Preferably, the outer wall of the sliding block is provided with a brush, the brush is in abutting connection with the dehydration seat, and when the sliding block moves, the brush is used for brushing the inner wall of the dehydration cavity and the dehydration hole.
Preferably, the material discharging device further comprises a material discharging motor and a movable plate, wherein the movable plate is sealed at the material discharging opening, and the material discharging motor is connected with the movable plate and can drive the movable plate to be separated from the material discharging opening.
Preferably, the device further comprises a controller and a control panel, the first driving block, the dehydration motor and the discharge motor are electrically connected with the controller, and the control panel controls the first driving block, the dehydration motor and the discharge motor to act through the controller.
Preferably, the water tank further comprises a collector which is used for being placed in the water tank, the collector is connected with the crushing seat, the collector is provided with a collecting opening and a plug, the collecting opening is communicated with the first feeding opening, and the plug can plug the collecting opening in a pluggable mode.
Preferably, the crushing seat is provided with a touch switch, the touch switch is electrically connected with the controller, and the collector triggers the touch switch when being connected with the crushing seat.
Compared with the prior art, the beneficial effects of the utility model are that:
1. overall structure is ingenious, can smash kitchen garbage and dewater, then discharges moisture and residue respectively to realize the purpose of rubbish innoxious and resource circulation.
2. In the course of the work, rubbish from cooking falls into between two sets of serrated knives of smashing the intracavity from first feed inlet, and two pivots drive two sets of serrated knives after that and rotate to smash rubbish from cooking through the serrated knife, then rubbish from cooking after smashing is discharged from first discharge gate, improvement crushing efficiency that like this can be very big.
3. Because the slider pushes kitchen garbage to the bin outlet direction, after extrusion dehydration finishes, kitchen garbage residue just in time is located the bin outlet, has so both realized extrusion dehydration's purpose through the slider, drives the residue to the exhaust position of being convenient for again in extrusion dehydration for kitchen garbage residue can drop automatically when the bin outlet is opened.
4. The slider can produce very huge extrusion force, through the mode of extrusion dehydration, the moisture that the crowded dry rubbish that can be more thorough contains, and the mode of slider extrusion dehydration is very nimble moreover, can hammer the rubbish residue through removing repeatedly.
5. The residues on the serrated knife are cleaned through the positive and negative rotation of the rotating shaft, and the sliding block reciprocates in the dewatering cavity and is matched with the inner wall of the dewatering cavity and the dewatering holes of the tap water brush, so that the garbage residues accumulated in the dewatering seat are avoided.
6. The plug piece can be inserted into the collection port, so that the whole structure can be flexibly moved, the collector can be butted with the water falling port of the water tank when the garbage bin is used, and then the plug piece is pulled out, so that garbage can be automatically discharged, the problem that manual feeding is unsafe is avoided, and meanwhile, the problem that hands are directly contacted with garbage insanitarily is avoided.
Drawings
Fig. 1 is a schematic view of the internal structure of the kitchen waste disposer of the present invention.
Fig. 2 is a schematic structural view of the kitchen waste disposer of the present invention.
Fig. 3 is a schematic view of the position relationship between the kitchen garbage disposer and the mounting rack of the present invention.
Fig. 4 is a schematic view showing a state of the kitchen waste disposer installed in a sink.
Fig. 5 is a schematic structural view of the crushing seat and the crushing assembly of the present invention.
Fig. 6 is a schematic structural view of the dewatering seat and the dewatering component of the present invention.
Fig. 7 is a schematic view of the connection relationship between the dewatering component and the discharging motor and the dewatering seat of the present invention.
In the figure, 100, a crushing seat; 110. a grinding chamber; 120. a first feed port; 130. a first discharge port; 140. a touch switch; 200. a first driving block; 310. a driving gear; 320. a driven gear; 330. a rotating shaft; 340. a toothed cutter; 400. a dehydration seat; 410. a dehydration cavity; 420. a second feed port; 430. a dewatering hole; 440. an opening; 450. a discharge outlet; 510. a dewatering motor; 520. a nut seat; 530. a screw rod; 540. a slider; 550. a brush; 610. a discharge motor; 620. a movable plate; 710. a water pan; 720. a collection box; 800. a control panel; 900. a collector; 910. a collection port; 920. and (4) plugging pieces.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in fig. 1, 2, 3, 4, 5, 6 and 7, a kitchen waste disposer includes: crushing seat 100, crushing unit (not marked in the figure), dehydration seat 400, dehydration unit (not marked in the figure), water collector 710 and collecting box 720, can also include casing and mounting bracket, it can smash the kitchen rubbish (rubbish from cooking) that drops into, then dewater it, and its is smashed and the efficient of dehydration, the rubbish from cooking after the processing can directly get into family's compost case or the concentrated compost case of community, the fertilizer of final compost is used for planting, realize innoxious, the recycling circulation.
The crushing seat 100 is provided with a crushing cavity 110, a first feeding hole 120 and a first discharging hole 130, and the first feeding hole 120 and the first discharging hole 130 are both communicated with the crushing cavity 110; preferably, the first feeding hole 120 and the first discharging hole 130 are located at upper and lower ends of the pulverizing base 100, and the kitchen waste can be fed into the pulverizing cavity 110 through the first feeding hole 120, and discharged through the first discharging hole 130 after being pulverized.
A crushing assembly, which comprises a first driving block 200 and a serrated knife block (not shown in the figure), wherein the serrated knife block is arranged in the crushing cavity 110, and the first driving block 200 is connected with the serrated knife block in a linkage manner; preferably, the first driving block 200 may be a motor, and the first driving block 200 can drive the serrated knife block to rotate in the crushing cavity 110 so as to crush the kitchen waste.
The dehydration seat 400 is provided with a dehydration cavity 410, a second feed inlet 420 and a dehydration hole 430, the second feed inlet 420 and the dehydration hole 430 are both communicated with the dehydration cavity 410, and the second feed inlet 420 is connected with the first discharge hole 130.
Preferably, the second feed port 420 is formed at the upper end of the dehydration base 400, and the dehydration hole 430 is formed at the bottom of the dehydration base 400, and the upper end of the dehydration base 400 is fixedly connected with the lower end of the pulverization base 100, so that the first feed port 130 communicates with the second feed port 420.
The quantity of dehydration hole 430 is a plurality of, and dehydration hole 430 is located the bottom of dehydration chamber 410, and dehydration hole 430 can play the drainage effect, and the rubbish from cooking after smashing enters into dehydration chamber 410 along second feed inlet 420 from first discharge gate 130 in, can extrude water when the dehydration, and the water of extruding can be followed dehydration hole 430 discharge dehydration chamber 410 for residue and the separation of water after the dehydration.
A dehydration assembly including a second driving block and a slider 540, the slider 540 being movably disposed in the dehydration chamber 410, the second driving block being connected with the slider 540; preferably, the dehydration assembly dehydrates the smashed kitchen waste by using a squeezing dehydration principle, and specifically, the second driving block can drive the sliding block to move in the dehydration cavity 410, and the sliding block 540 can squeeze the kitchen waste, so as to squeeze water out of the kitchen waste, and then the water flows out of the dehydration hole 430.
A water receiving tray 710 disposed below the dehydration seat 400, and the dehydration hole 430 faces the water receiving tray 710; preferably, the water receiving tray 710 can receive water flowing out of the dehydration seat 400 and then guide the water out, and in an actual structure, the water receiving tray 710 is connected with a sewer pipe.
In addition, the auxiliary water pipe of the auxiliary water tank can be connected with the water receiving tray 710, so that water can be discharged into the sewer pipe through the water receiving tray 710 when the main water tank and the auxiliary water tank normally drain.
It should be noted here that the water receiving tray 710 may be connected to a multifunctional drainage system, and the water pipe (waterway) may be built-in or external.
The collecting box 720 is arranged below the dehydration seat 400, preferably, the collecting box 720 can collect the crushed and dehydrated garbage residues, then a user can open the shell, the collecting box 720 is drawn out to take out the garbage residues, the kitchen garbage is crushed and dehydrated and then directly enters the household compost bin or the community centralized compost bin, and finally composted fertilizer is used for planting, so that harmless and recycling circulation is realized.
As shown in fig. 1, 2 and 5, on the basis of the above embodiment, the toothed cutter block includes a driving gear 310, a driven gear 320 and two rotating shafts 330, both of the rotating shafts 330 are rotatably disposed in the crushing cavity 110, and the rotating shafts 330 are provided with at least one toothed cutter 340, preferably, the two rotating shafts 330 are linked with the driven gear 320 through the driving gear 310, and the two rotating shafts 330 can rotate in opposite directions, so that the two sets of toothed cutters 340 crush the kitchen waste in a meshing manner.
The first driving block 200 is connected to the driving gear 310 and can drive the driving gear 310 to rotate, the driving gear 310 is engaged with the driven gear 320, and the driving gear 310 and the driven gear 320 are respectively connected to the two rotating shafts 330.
Preferably, the first driving block 200 may be a motor, which can drive the driving gear 310 to rotate, and when the driving gear 310 rotates, the driven gear 320 can be driven to rotate, so that the two rotating shafts 330 rotate in opposite directions, and thus the two sets of serrated knives 340 can be driven to be engaged, during the working process, the kitchen waste falls between the two sets of serrated knives 340 in the crushing cavity 110 from the first feeding hole 120, and then the two rotating shafts 330 drive the two sets of serrated knives 340 to rotate, so that the kitchen waste is crushed through the serrated knives 340, and then the crushed kitchen waste is discharged from the first discharging hole 130, so that the crushing efficiency can be greatly improved.
As shown in fig. 1, 2 and 5, in the above embodiment, the two rotating shafts 330 are arranged in parallel, and the toothed cutters 340 on the two rotating shafts 330 are arranged in a staggered manner. Therefore, the crushing efficiency can be improved, and the two sets of toothed cutters 340 can be prevented from being damaged due to staggered arrangement.
As shown in fig. 1, 2, 3, 6 and 7, in addition to the above embodiment, an opening 440 communicating with the dewatering cavity 410 is provided at one end of the dewatering seat 400, the slider 540 is inserted into the dewatering cavity 410 from the opening 440, a discharge port 450 communicating with the dewatering cavity 410 is provided at the other end of the dewatering seat 400, and the discharge port 450 faces the collection tank 720.
Preferably, the dehydration seat 400 is a horizontal barrel structure, so that an opening 440 is formed at one end, the kitchen waste falls into the dehydration cavity 410 from the second feeding hole 420, the sliding block 540 extends into the dehydration cavity 410 from the opening 440 and then moves toward the kitchen waste, when the sliding block 540 presses the kitchen waste, water in the kitchen waste can be squeezed out, and the water can flow into the water receiving tray 710 along the dehydration hole 430.
Preferably, the slider 540 may be provided in a barrel structure or a column structure, which can be inserted into the dehydration chamber 410, and the slider 540 may be clearance-fitted with the dehydration chamber 410.
Preferably, in the actual dehydration process, because slider 540 pushes kitchen garbage to bin outlet 450 direction, after extrusion dehydration finishes, kitchen garbage residue just lies in bin outlet 450 on, has so both realized extrusion dehydration's purpose through slider 540, drives the residue to the position of being convenient for to discharge again in extrusion dehydration for kitchen garbage residue can drop automatically when bin outlet 450 is opened.
As shown in fig. 1, 2, 3, 6 and 7, in addition to the above embodiment, the second driving block includes a dewatering motor 510, a nut seat 520 and a screw rod 530, the nut seat 520 is fixedly connected to the sliding block 540, the screw rod 530 is connected to the nut seat 520, the dewatering motor 510 is connected to the screw rod 530, and the dewatering motor 510 can drive the screw rod 530 to rotate so as to drive the sliding block 540 to move through the nut seat 520.
Preferably, the second driving block is actually a motor structure, the sliding block 540 is a hollow structure, the lead screw 530 is inserted into the sliding block 540, when the dehydration motor 510 rotates, the lead screw 530 can be driven to rotate, and the lead screw 530 can drive the nut seat 520 to move, so that the sliding block 540 can be driven to move in the dehydration cavity 410, and the dehydration motor 510 drives the sliding block 540 to extrude the kitchen waste.
This kind of structure can improve dehydration efficiency, and slider 540 can produce very huge extrusion force, and through the mode of extrusion dehydration, the moisture that the crowded rubbish that can be more thorough contains, and the mode of slider 540 extrusion dehydration is very nimble moreover, can hammer the rubbish residue through removing repeatedly.
In addition, the sliding block 540 can block the second feeding hole 420 during dehydration, and when the sliding block 540 is reset, the kitchen waste can fall into the dehydration chamber 410 from the second feeding hole 420.
As shown in fig. 1, 2, 3, 6 and 7, in addition to the above embodiment, the outer wall of the sliding block 540 is provided with a brush 550, the brush 550 is connected to the dehydration seat 400 in an interference manner, and the brush 550 brushes the inner wall of the dehydration cavity 410 and the dehydration hole 430 when the sliding block 540 moves.
Preferably, the brush 550 can be an annular structure or a semi-annular structure or a block structure, after the brush 550 is arranged, the kitchen waste disposer can have an automatic cleaning effect, in actual operation, residues on the serrated knife 340 are cleaned through forward and reverse rotation of the rotating shaft 330, the slider 540 reciprocates in the dehydration cavity 410 and is matched with the inner wall of the tap water brush elution cavity 410 and the dehydration hole 430, and the garbage residues are prevented from being accumulated in the dehydration seat 400.
As shown in fig. 1, fig. 2, fig. 3, fig. 6, and fig. 7, on the basis of the above embodiment, the present invention further includes a discharge motor 610 and a movable plate 620, the movable plate 620 is sealed at the discharge opening 450, and the discharge motor 610 is connected to the movable plate 620 and can drive the movable plate 620 to separate from the discharge opening 450.
Preferably, movable plate 620 is actually a gate of discharge opening 450, and discharge opening 450 is opened when discharge motor 610 pulls open movable plate 620, and it should be noted that discharge motor 610 may be configured as a linear motor or an electric cylinder structure, only that discharge motor 610 can pull or push movable plate 620.
It should be noted that the movable plate 620 is provided with a plurality of micropores, which have the same structure and function as the dewatering holes 430 and are used for draining water, so that the garbage residues on the movable plate 620 can be discharged through the micropores.
In the working process, the sliding block 540 presses the kitchen waste on the end surface of the dehydration cavity 410, the kitchen waste is located on the discharge port 450, the sliding block 540 is reset after the dehydration is completed, then the discharge motor 610 pulls the movable plate 620 open to expose the discharge port 450, and the kitchen waste falls into the collection box 720 from the discharge port 450.
As shown in fig. 1, 2, 3 and 4, in addition to the above embodiments, the present invention further includes a controller (not shown) and a control panel 800, wherein the control panel 800, the first driving block 200, the dewatering motor 510 and the discharging motor 610 are all electrically connected to the controller, and the control panel 800 controls the first driving block 200, the dewatering motor 510 and the discharging motor 610 to operate through the controller.
Preferably, a control panel 800 is provided on the housing and has buttons, and a user can operate the control panel 800 or send instructions to the controller through a remote controller.
When the kitchen garbage disposer is in operation, a remote controller or a control panel 800 sends an instruction to a controller, the controller enables a first driving block 200 to drive a toothed cutter block to crush kitchen garbage, meanwhile, a dehydration motor 510 is enabled to act, the dehydration motor 510 drives a sliding block 540 to move and extrude the kitchen garbage, when the pressure of the sliding block 540 reaches a certain value, the dehydration motor 510 stops working and keeps a certain time, extruded water is discharged from a dehydration hole 430, then the dehydration motor 510 rotates reversely and drives the sliding block 540 to move to the middle of a dehydration cavity 410, then a discharging motor 610 acts and opens a movable plate 620 to discharge garbage residues, and after the garbage residues are discharged, the dehydration motor 510 finally drives the sliding block 540 to reset, so that a working cycle is completed.
As shown in fig. 1, 2, 3 and 4, in addition to the above embodiments, the present invention further includes a collector 900 to be placed in the water tank, the collector 900 is connected to the pulverization base 100, the collector 900 is provided with a collection port 910 and a plug 920, the collection port 910 is communicated with the first feed port 120, and the plug 920 is capable of plugging the collection port 910.
Preferably, the collector 900 is similar to a funnel structure, which can be inserted into the water falling port of the sink and connected to the pulverizing base 100, and the kitchen waste can be poured into the collector 900 and then enter the pulverizing chamber 110 through the collecting port 910 along the first feeding port 120.
Preferably, the blocking piece 920 can be inserted into the collecting port 910, so that the whole structure can be flexibly moved, the collector 900 can be butted with a water falling port of a water tank when in use, and then the blocking piece 920 is pulled out, so that garbage can be automatically discharged, the problem that manual feeding is unsafe is solved, and the problem that hands are directly contacted with garbage to be unsanitary is also solved.
As shown in fig. 1, 2, 3 and 4, in addition to the above embodiments, the crushing base 100 is provided with a touch switch 140, the touch switch 140 is electrically connected to the controller, and the collector 900 is triggered when connected to the crushing base 100.
Preferably, the touch switch 140 can be used as a safety device, when the touch switch 140 is not triggered, the garbage disposer does not work, that is, the first driving block 200, the dewatering motor 510 and the discharging motor 610 do not work, even if a button of the control panel 800 is pressed, the motors cannot work, only when the collector 900 is in butt joint with the crushing base 100, the touch switch 140 can be triggered, at this time, the garbage disposer can work, and when the collector 900 is pulled out, the garbage disposer stops working, thereby achieving the purpose of double protection.
Preferably, the touch switch 140 may be a magnetic-sensing switch, or may be another switch, and only needs to be triggered after the collector 900 is docked with the pulverizing seat 100.
It should be noted that all the directional indicators (such as upper, lower, left, right, front and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
Furthermore, the descriptions in the present application as to "first," "second," "a," etc. are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit ly indicating a number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise.
In the present application, unless expressly stated or limited otherwise, the terms "connected" and "fixed" are to be construed broadly, e.g., "fixed" may be fixedly connected or detachably connected, or integrally formed; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In addition, the technical solutions between the embodiments of the present invention can be combined with each other, but it is necessary to be able to be realized by a person having ordinary skill in the art as a basis, and when the technical solutions are contradictory or cannot be realized, the combination of such technical solutions should be considered to be absent, and is not within the protection scope of the present invention.

Claims (10)

1. A kitchen waste disposer, comprising:
the crushing seat is provided with a crushing cavity, a first feeding hole and a first discharging hole, and the first feeding hole and the first discharging hole are both communicated with the crushing cavity;
the crushing assembly comprises a first driving block and a toothed cutter block, the toothed cutter block is arranged in the crushing cavity, and the first driving block is in linkage connection with the toothed cutter block;
the dehydration seat is provided with a dehydration cavity, a second feed inlet and a dehydration hole, the second feed inlet and the dehydration hole are both communicated with the dehydration cavity, and the second feed inlet is connected with the first discharge outlet;
the dehydration assembly comprises a second driving block and a sliding block, the sliding block is movably arranged in the dehydration cavity, and the second driving block is connected with the sliding block;
the water receiving tray is arranged below the dewatering seat, and the dewatering holes face the water receiving tray;
and the collecting box is arranged below the dewatering seat.
2. The kitchen waste disposer of claim 1, wherein: the serrated knife block comprises a driving gear, a driven gear and two rotating shafts, the rotating shafts are rotatably arranged in the crushing cavity, at least one serrated knife is arranged in each rotating shaft, the first driving block is connected with the driving gear and can drive the driving gear to rotate, the driving gear is meshed with the driven gear, and the driving gear and the driven gear are respectively connected with the rotating shafts.
3. The kitchen waste disposer of claim 2, wherein: two the pivot is parallel arrangement, and two epaxial serrated knife is crisscross the setting.
4. The kitchen waste disposer of claim 2, wherein: the one end of dehydration seat be provided with the opening of dehydration chamber intercommunication, the slider is followed the opening is worn to establish extremely the dehydration intracavity, the other end of dehydration seat be provided with the bin outlet of dehydration chamber intercommunication, the bin outlet orientation the collecting box.
5. The kitchen waste disposer of claim 4, wherein: the second driving block comprises a dehydration motor, a nut seat and a screw rod, the nut seat is fixedly connected with the sliding block, the screw rod is connected with the nut seat, the dehydration motor is connected with the screw rod, and the dehydration motor can drive the screw rod to rotate so as to drive the sliding block to move through the nut seat.
6. The kitchen waste disposer of claim 1, wherein: the outer wall of slider is provided with the brush, the brush with the dehydration seat is contradicted and is connected, works as when the slider removes the brush is used for scrubbing the inner wall in dehydration chamber and the dehydration hole.
7. The kitchen waste disposer of claim 5, wherein: still including arranging material motor and fly leaf, the fly leaf seal in the bin outlet, arrange the material motor with the fly leaf is connected and can drive the fly leaf with the bin outlet separation.
8. The kitchen waste disposer of claim 7, wherein: still include controller and control panel, control panel first drive block dehydration motor and arrange the material motor all with the controller electricity is connected, control panel passes through controller control first drive block dehydration motor and arrange the material motor action.
9. The kitchen waste disposer of claim 8, wherein: still including being used for placing the collector in the basin, the collector with smash the seat and connect, the collector is provided with collects mouthful and stopper piece, collect mouthful with first feed inlet intercommunication, the plug piece pluggable stops up collect mouthful.
10. The kitchen waste disposer of claim 9, wherein: the crushing seat is provided with a touch switch, the touch switch is electrically connected with the controller, and the collector triggers the touch switch when being connected with the crushing seat.
CN202120684833.XU 2021-04-02 2021-04-02 Kitchen waste disposer Active CN214994370U (en)

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CN202120684833.XU CN214994370U (en) 2021-04-02 2021-04-02 Kitchen waste disposer

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Application Number Priority Date Filing Date Title
CN202120684833.XU CN214994370U (en) 2021-04-02 2021-04-02 Kitchen waste disposer

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114432762A (en) * 2022-01-06 2022-05-06 浙江机电职业技术学院 Hidden automatic kitchen garbage shunting device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114432762A (en) * 2022-01-06 2022-05-06 浙江机电职业技术学院 Hidden automatic kitchen garbage shunting device

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