CN105054819A - Self-control dry ice oil removing device - Google Patents
Self-control dry ice oil removing device Download PDFInfo
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- CN105054819A CN105054819A CN201510477560.0A CN201510477560A CN105054819A CN 105054819 A CN105054819 A CN 105054819A CN 201510477560 A CN201510477560 A CN 201510477560A CN 105054819 A CN105054819 A CN 105054819A
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- dry ice
- sensor
- elevating lever
- oil
- oil suction
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- CURLTUGMZLYLDI-UHFFFAOYSA-N Carbon dioxide Chemical compound O=C=O CURLTUGMZLYLDI-UHFFFAOYSA-N 0.000 title claims abstract description 155
- 235000011089 carbon dioxide Nutrition 0.000 title claims abstract description 138
- 230000006698 induction Effects 0.000 claims abstract description 60
- 235000014347 soups Nutrition 0.000 claims abstract description 52
- 238000007789 sealing Methods 0.000 claims abstract description 43
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 9
- 238000000034 method Methods 0.000 claims abstract description 5
- 230000003028 elevating effect Effects 0.000 claims description 90
- 238000005238 degreasing Methods 0.000 claims description 28
- 230000000630 rising effect Effects 0.000 claims description 13
- 230000008054 signal transmission Effects 0.000 claims description 12
- 230000007423 decrease Effects 0.000 claims description 11
- 238000009833 condensation Methods 0.000 claims description 7
- 230000005494 condensation Effects 0.000 claims description 7
- 238000001179 sorption measurement Methods 0.000 claims description 7
- 229910002092 carbon dioxide Inorganic materials 0.000 claims description 6
- 239000001569 carbon dioxide Substances 0.000 claims description 6
- 238000004821 distillation Methods 0.000 claims description 2
- 230000000694 effects Effects 0.000 claims description 2
- 238000010521 absorption reaction Methods 0.000 abstract 5
- 239000000463 material Substances 0.000 description 3
- 238000001816 cooling Methods 0.000 description 2
- 230000037213 diet Effects 0.000 description 2
- 235000005911 diet Nutrition 0.000 description 2
- 235000012149 noodles Nutrition 0.000 description 2
- 239000000523 sample Substances 0.000 description 2
- 229910000838 Al alloy Inorganic materials 0.000 description 1
- VYPSYNLAJGMNEJ-UHFFFAOYSA-N Silicium dioxide Chemical compound O=[Si]=O VYPSYNLAJGMNEJ-UHFFFAOYSA-N 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000009413 insulation Methods 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 229920003023 plastic Polymers 0.000 description 1
- 239000005060 rubber Substances 0.000 description 1
- 239000000741 silica gel Substances 0.000 description 1
- 229910002027 silica gel Inorganic materials 0.000 description 1
- 239000007779 soft material Substances 0.000 description 1
- 239000010935 stainless steel Substances 0.000 description 1
- 229910001256 stainless steel alloy Inorganic materials 0.000 description 1
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- Apparatus For Disinfection Or Sterilisation (AREA)
- Vending Machines For Individual Products (AREA)
Abstract
Disclosed is a self-control dry ice oil removing device. The self-control dry ice oil removing device comprises a dry ice device, a lifting rotation device, an oil removing cover and a controller. The dry ice device comprises a dry ice box, a box cover, an electric push rod, a spring, a door rod and a sealing door plate. The dry ice box is provided with a guide rod hole, a dry ice charging opening and a dry ice outlet. The lifting rotation device comprises a lifting rod, an oil absorption net, a lifting motor, a lifting wheel, a rotating motor and a rotating wheel. The controller is provided with a first sensor, a second sensor, a first induction piece, a third sensor, a fourth sensor and a second induction piece. In the using process, the controller controls the lifting motor, the rotating motor and the electric push rod to work; the lifting motor drives the oil absorption net to descend to the position of soup oil of a soup pot, the rotating motor drives the oil absorption net to rotate, the electric push rod drives the sealing door plate to open a dry ice door, dry ice can fall off onto the oil absorption net in the position of the soup oil, the oil removing cover is moved away into a hot water basin to dissolve the soup oil after the soup oil is solidified onto the oil absorption net through the dry ice, and therefore the purpose of removing the soup oil is achieved.
Description
Technical field
The present invention relates to a kind of using method of degreasing unit, particularly a kind of automatic control dry ice degreasing unit.
Background technology
At present, people attach great importance to daily health diet, particularly like eating soup the people of health, whenever health preserving soup is endured, noodle soup always float thick soup oil, common slaughterhouse, not deoiling function, a kind of automatic control dry ice degreasing unit with deoiling function has become the needs of people's routine health diet.
Summary of the invention
The object of this invention is to provide a kind of automatic control dry ice degreasing unit, for removing the soup oil of noodle soup, solving the problem of health of people drink soup.
The technical solution adopted in the present invention is: automatic control dry ice degreasing unit, include dry ice device, lift rotating device, except oil cap and controller; Dry ice device and lift rotating device are installed on oil removing and cover; Dry ice device includes dry ice box, lid, electric pushrod, spring, door bar and sealing door-plate, and dry ice box is provided with the outlet of guide rod hole, dry ice loading port and dry ice; Dry ice loading port is positioned on dry ice box, and lid is connected with dry ice entrance, and the shell of electric pushrod is connected with dry ice box, the push rod of electric pushrod is connected with door bar, door bar is positioned at guide rod hole, and spring is between the push rod and guide rod hole of electric pushrod, and sealing door-plate is connected with door bar; Lift rotating device includes elevating lever, oil suction net, lifting motor, lifting wheel, rotary electric machine and moving runner, and oil removing is covered with lift span and dry ice door; Elevating lever is positioned at lift span, and oil suction net is connected with elevating lever, dry ice door and dry ice outlet, and sealing door-plate is connected with dry ice door; The support of lifting motor is connected with except oil cap, and the rotating shaft of lifting motor is connected with lifting wheel, and lifting wheel contacts with elevating lever; The support of rotary electric machine is connected with except oil cap, and the rotating shaft of rotary electric machine is connected with moving runner, and moving runner contacts with elevating lever; Controller is provided with first sensor, the second sensor, the first induction pieces, the 3rd sensor, four-sensor and the second induction pieces; First sensor and two sensors are located at oil removing and are covered, and the first induction pieces is located on elevating lever; 3rd sensor and four-sensor are located on dry ice box, and the second induction pieces is located on the push rod of electric pushrod.Controller is provided with starting switch and shutdown switch; First sensor is positioned at the top of the second sensor, and the 3rd sensor is positioned at the top of four-sensor; Automatic control dry ice degreasing unit original state is: the first induction pieces is close to first sensor, and oil suction net is in the state that do not decline; Second induction pieces is close to the 3rd sensor, and sealing door-plate and dry ice door are in the state of being tightly connected.
The using method of automatic control dry ice degreasing unit is: during use, is loaded by dry ice in the dry ice box of automatic control dry ice degreasing unit, will cover on slaughterhouse except oil cap; The starting switch start-up connector of controller is utilized to enter automatic control state, controller controls lifting motor and drives lifting wheel to rotate, lifting wheel rotating drive elevating lever and oil suction is off the net falls, first induction pieces is followed elevating lever and is declined, when the soup oil level dropping to slaughterhouse when oil suction is off the net is put, the first induction pieces close to the second sensor, the second sensor by its Signal transmissions to controller, controller controls lifting motor to be stopped, and elevating lever and oil suction net stop declining; After lifting motor stops, controller controls rotary electric machine and drives moving runner to rotate, and moving runner drives elevating lever to drive oil suction net to rotate; After oil suction net rotates, controller controls electric pushrod and drives door bar and sealing door-plate to move down, and open dry ice door, the oil suction that dry ice drops to rotation by dry ice door is online; The push rod that second induction pieces follows electric pushrod declines, and when the second induction pieces is close to four-sensor, four-sensor is by its Signal transmissions to controller, and controller controls electric pushrod to be stopped decline and control rotary electric machine stopping operating; Dry ice drop to oil suction online after, the online dry ice of oil suction contacts with the soup oil of slaughterhouse, utilizes dry ice to be coagulated by soup oil cooling to be adsorbed in oil suction online; After soup oil cooling coagulates and is adsorbed in oil suction on the net by dry ice, controller controls lifting motor and drives lifting wheel to drive elevating lever and oil suction to rise on the net, first induction pieces is followed elevating lever and is risen, when the first induction pieces is close to first sensor, first sensor by its Signal transmissions to controller, controller controls lifting motor to be stopped, and elevating lever and oil suction net stop rising; Meanwhile, controller controls electric pushrod and drives door bar and the rising of sealing door-plate, when sealing door-plate and dry ice door termination, second induction pieces is close to the 3rd sensor, 3rd sensor is by its Signal transmissions to controller, and controller controls electric pushrod to be stopped, and door bar and sealing door-plate stop rising; After door bar and sealing door-plate stop rising, by condensation adsorption, hot water put into by the oil suction net of soup oil, utilizes hot water to be dissolved by soup oil, thus reach the object removing soup oil in slaughterhouse.
The invention has the beneficial effects as follows: when automatic control dry ice degreasing unit uses, controller is utilized to control lifting motor, rotary electric machine and electric pushrod automatic operation, lifting motor drives oil suction net to be reduced to the position of slaughterhouse soup oil, rotary electric machine drives oil suction net to rotate, electric pushrod drives sealing door-plate to open dry ice door, controlling dry ice, to become scattered about the oil suction that soup oil level puts online, and after utilizing dry ice to be solidified by the soup oil of contact to be adsorbed in oil suction online, lifting motor drives oil suction to lift away from out soup oil level on the net and puts; To remove in hot water basin except oil cap, and utilize hot water to be dissolved by the soup oil solidified, thus reach the object except soup oil, solve the problem of health of people drink soup.
Accompanying drawing explanation
Fig. 1 is automatic control dry ice degreasing unit structural representation.
Detailed description of the invention
Below in conjunction with accompanying drawing, the present invention is further detailed:
Automatic control dry ice degreasing unit structural representation shown in Fig. 1, automatic control dry ice degreasing unit, include dry ice device 1, lift rotating device 2, except oil cap 3 and controller 21; Dry ice device 1 and lift rotating device 2 are installed on except on oil cap 3; Dry ice device 1 includes dry ice box 4, lid 5, electric pushrod 6, spring 7, door bar 8 and sealing door-plate 9, and dry ice box 4 is provided with guide rod hole 10, dry ice loading port 11 and dry ice outlet 12; Dry ice loading port 11 is positioned on dry ice box 4, lid 5 is connected with dry ice entrance 11, the shell of electric pushrod 6 is connected with dry ice box 4, the push rod of electric pushrod 6 is connected with door bar 8, door bar 8 is positioned at guide rod hole 10, spring 7 is between the push rod and guide rod hole 10 of electric pushrod 6, and sealing door-plate 9 is connected with door bar 8, and sealing door-plate 9 and dry ice export 12 and closed to be connected; Lift rotating device 2 includes elevating lever 13, oil suction net 14, lifting motor 15, lifting wheel 16, rotary electric machine 17 and moving runner 18, except oil cap 3 is provided with lift span 19 and dry ice door 20; Elevating lever 13 is positioned at lift span 19, and oil suction net 14 is connected with elevating lever 13, and dry ice door 20 and dry ice export 12 and is communicated with, and sealing door-plate 9 is connected with dry ice door 20; The support of lifting motor 15 is connected with except oil cap 3, and the rotating shaft of lifting motor 15 is connected with lifting wheel 16, and lifting wheel 16 contacts with elevating lever 13; The support of rotary electric machine 17 is connected with except oil cap 3, and the rotating shaft of rotary electric machine 17 is connected with moving runner 18, and moving runner 18 contacts with elevating lever 13; Controller 21 is provided with first sensor 22, second sensor 23, first induction pieces 24, the 3rd sensor 25, four-sensor 26 and the second induction pieces 27; First sensor 22 and two sensors 23 are located at except on oil cap 3, and the first induction pieces 24 is located on elevating lever 13; 3rd sensor 25 and four-sensor 26 are located on dry ice box 4, and the second induction pieces 27 is located on the push rod of electric pushrod 6; Controller 21 is provided with starting switch 28 and shutdown switch 29; First sensor 22 is positioned at the top of the second sensor 23, and the 3rd sensor 25 is positioned at the top of four-sensor 26; Automatic control dry ice degreasing unit original state is: the first induction pieces 24 is close to first sensor 22, and oil suction net 14 is in the state that do not decline; Second induction pieces 27 is close to the 3rd sensor 25, and sealing door-plate 9 is in dry ice door 20 state of being tightly connected.
The using method of automatic control dry ice degreasing unit is: during use, is loaded by dry ice 30 in the dry ice box 4 of automatic control dry ice degreasing unit, will cover on slaughterhouse 31 except oil cap 3; Starting switch 28 start-up connector 21 of controller 21 is utilized to enter automatic control state, controller 21 controls lifting motor 15 and drives lifting wheel 16 to rotate, lifting wheel 16 rotating drive elevating lever 13 and oil suction net 14 decline, first induction pieces 24 is followed elevating lever 13 and is declined, when oil suction net 14 drops to soup oil 32 position of slaughterhouse 31, first induction pieces 24 is close to the second sensor 23, second sensor 23 by its Signal transmissions to controller 21, controller 21 controls lifting motor 15 to be stopped, and elevating lever 13 and oil suction net 14 stop declining; After lifting motor 15 stops, controller 21 controls rotary electric machine 17 and drives moving runner 18 to rotate, and moving runner 18 drives elevating lever 13 to drive oil suction net 14 to rotate; After oil suction net 14 rotates, controller 21 controls electric pushrod 6 and drives door bar 8 and sealing door-plate 9 to move down, and open dry ice door 20, dry ice 30 drops on the oil suction net 14 of rotation by dry ice door 20; The push rod that second induction pieces 27 follows electric pushrod 6 declines, and when the second induction pieces 27 is close to four-sensor 26, four-sensor 26 is by its Signal transmissions to controller 21, and controller 21 controls electric pushrod 6 to be stopped decline and control rotary electric machine 17 stopping operating; Dry ice 30 drops to after on oil suction net 14, and the soup oil 32 of the dry ice 30 on oil suction net 14 and slaughterhouse 31 contact, utilizes dry ice 30 by oily for soup 32 condensation adsorptions on oil suction net 14; Dry ice 30 by soup oil 32 condensation adsorptions on oil suction net 14 after, controller 21 controls lifting motor 15 and drives lifting wheel 16 to drive elevating lever 13 and oil suction net 14 to rise, first induction pieces 24 is followed elevating lever 13 and is risen, when the first induction pieces 24 is close to first sensor 22, first sensor 22 by its Signal transmissions to controller 21, controller 21 controls lifting motor 15 to be stopped, and elevating lever 13 and oil suction net 14 stop rising; Simultaneously, controller 21 controls electric pushrod 6 and drives door bar 8 and sealing door-plate 9 to rise, when sealing door-plate 9 and closing with dry ice door 20, second induction pieces 27 is close to the 3rd sensor 25,3rd sensor 25 by its Signal transmissions to controller 21, controller 21 controls electric pushrod 6 to be stopped, and door bar 8 and sealing door-plate 9 stop rising; After door bar 8 and sealing door-plate 9 stop rising, by condensation adsorption, hot water put into by the oil suction net 14 of soup oil 32, utilizes hot water to be dissolved by soup oil 32, thus reach the object removing soup oil 32 in slaughterhouse 31.
Drive elevating lever 13 to drive oil suction net 14 to be elevated to implement lifting motor 15, the axis of the rotating shaft of lifting motor 15 and the axes normal of elevating lever 13, the axis of lifting wheel 16 and the axes normal of elevating lever 13, lifting wheel 16 compresses with elevating lever 13 and contacts; Lifting wheel 16 and elevating lever 13 are cylindrical; Lifting wheel 16 is positioned at the left side of elevating lever 13, and when lifting motor 15 drives lifting wheel 16 to move in the direction of the clock, lifting wheel 16 presses elevating lever 13 and moves in the direction of the clock, and utilizes lifting wheel 16 to decline with the frictional force drives elevating lever 13 of elevating lever 13; Lifting motor 15 drives lifting wheel 16 by when counterclockwise rotating, and lifting wheel 16 presses elevating lever 13 by counterclockwise rotating, and utilize lifting wheel 16 to rise with the frictional force drives elevating lever 13 of elevating lever 13, elevating lever 13 drives oil suction net 14 to rise; Or lifting wheel 16 is positioned at the right of elevating lever 13, lifting motor 15 drives lifting wheel 16 by when counterclockwise rotating, and lifting wheel 16 presses elevating lever 13 by counterclockwise rotating, and utilizes lifting wheel 16 to decline with the frictional force drives elevating lever 13 of elevating lever 13; When lifting motor 15 drives lifting wheel 16 to move in the direction of the clock, lifting wheel 16 presses elevating lever 13 and moves in the direction of the clock, and utilize lifting wheel 16 to rise with the frictional force drives elevating lever 13 of elevating lever 13, elevating lever 13 drives oil suction net 14 to rise.
Drive elevating lever 13 to drive oil suction net 14 to rotate to implement rotary electric machine 17, the axis of the rotating shaft of rotary electric machine 17 and the axis being parallel of elevating lever 13, the axis of moving runner 18 and the axis being parallel of elevating lever 13, moving runner 18 compresses with elevating lever 13 and contacts; Moving runner 18 is cylindrical; When rotary electric machine 17 drives moving runner 18 to rotate, moving runner 18 presses elevating lever 13 and rotates, and utilize moving runner 18 to rotate with the frictional force drives elevating lever 13 of elevating lever 13, elevating lever 13 drives oil suction net 14 to rotate.
In order to regulate the position of first sensor 22 and the second sensor 23, except oil cap 3 is provided with the first support 33, first sensor 22 and the second sensor 23 are installed on the first support 33, and the first support 33 is fixedly connected with except oil cap 3; First induction pieces 24 is positioned at the opposite of first sensor 22 and the second sensor 23 probe.
When being positioned at soup oil 32 position to make oil suction net 14, the first induction pieces 24 is just in time positioned at the position close to the second sensor 23; During the second sensor 23 position adjustment, the position according to slaughterhouse 31 soup oil 32 adjusts, and utilizes the first support 33 to adjust the position of the second sensor 23, and when oil suction net 14 is contacted with soup oil 32, the first induction pieces 24 is just in time close to the second sensor 23.
In order to regulate the position of the 3rd sensor 25 and four-sensor 26, dry ice box 4 is provided with the second support the 34, three sensor 25 and four-sensor 26 is installed on the second support 34, and the second support 34 is fixedly connected with dry ice box 4; The push rod of electric pushrod 6 is fixedly connected with the second induction pieces 27, and the second induction pieces 27 is fixedly connected with door bar 8; Second induction pieces 27 is positioned at the opposite of the 3rd sensor 25 and four-sensor 26 probe.
In order to control the position that sealing door-plate 9 opens and cuts out, when the 3rd sensor 25 and the adjustment of four-sensor 26 position, according to the position adjustment that sealing door-plate 9 opens and cuts out, the second support 34 is utilized to adjust the 3rd sensor 25 and four-sensor 26 position, when sealing door-plate 9 and dry ice door 20 are closed, the second induction pieces 27 is close to the 3rd sensor 25; When making sealing door-plate 9 leave dry ice door 20, the second induction pieces 27 declines close to four-sensor 26.
Be connected with the closed of dry ice door 20 to implement sealing door-plate 9, improve the heat-proof quality of dry ice box 4, dry ice box 4 is provided with heat-insulation layer 35, lid 5 and dry ice loading port 11 are tightly connected, the lower end of door bar 8 is fixedly connected with sealing door-plate 9, sealing door-plate 9 is tightly connected with dry ice door 16, door bar 8 upper end is fixedly connected with the second induction pieces 27, the external diameter of sealing door-plate 9 is greater than the aperture of dry ice door 20, spring 7 is enclosed within the outside of a bar 8, the upper end of spring 7 contacts with the second induction pieces 27, and the lower end of spring 7 contacts with dry ice box 4; Spring 7 is Compress Spring, and spring 7 applies an elastic force upwards to the second induction pieces 27, and make a bar 8 and sealing door-plate 9 be subject to an elastic force upwards, sealing door-plate 9 is tightly connected with dry ice door 20 under the effect of spring 7 elastic force.
In order to avoid the carbon dioxide gas volume expansion blast that dry ice 30 distils, except oil cap 3 is provided with steam vent 36, discharge for the carbon dioxide that dry ice 30 is distilled; Dry ice 30 in dry ice box 4 falls down the moment that oil suction net 14 contacts with soup oil 32, and the heat distillation that dry ice 30 absorbs soup oil 32 is carbon dioxide, and carbon dioxide has the steam vent 36 of oil cap 3 to discharge; Meanwhile, soup oil 32 is condensed and is adsorbed on oil suction net 14.
In order to increase the contact surface of lifting wheel 16 and moving runner 18 and elevating lever 13, lifting wheel 16 and moving runner 18 are made up of resilient soft material, and the material that lifting wheel 16 and moving runner 18 are formed includes rubber or plastics or silica gel; Elevating lever 13 hard material is formed, and the material that elevating lever 13 is formed includes stainless steel or aluminium alloy.
During in order to avoid oil suction net 14 rising reset, the second sensor 23 encountered by oil suction net 14, and the distance of first sensor 22 to the second sensor 23 is less than the distance of the first induction pieces 24 to oil suction net 14; Oil suction net 14 follows elevating lever 13 when rising, first induction pieces 24 and oil suction net 14 are followed elevating lever 13 and are risen, when first induction pieces 24 is close to first sensor 22, the stroke of oil suction net 14 is less than the distance of the first induction pieces 24 to oil suction net 14, and oil suction net 14 is positioned at the below of first sensor 22.
Claims (10)
1. automatic control dry ice degreasing unit, include dry ice device (1), lift rotating device (2), except oil cap (3) and controller (21); Dry ice device (1) and lift rotating device (2) are installed on except on oil cap (3); Dry ice device (1) includes dry ice box (4), lid (5), electric pushrod (6), spring (7), door bar (8) and sealing door-plate (9), and dry ice box (4) is provided with guide rod hole (10), dry ice loading port (11) and dry ice outlet (12); Lift rotating device (2) includes elevating lever (13), oil suction net (14), lifting motor (15), lifting wheel (16), rotary electric machine (17) and moving runner (18), except oil cap (3) is provided with lift span (19) and dry ice door (20), except oil cap (3) is provided with steam vent (36); Controller (21) is provided with first sensor (22), the second sensor (23), the first induction pieces (24), the 3rd sensor (25), four-sensor (26) and the second induction pieces (27);
It is characterized in that: the using method of described automatic control dry ice degreasing unit is: during use, dry ice (30) is loaded in the dry ice box (4) of automatic control dry ice degreasing unit, will cover on slaughterhouse (31) except oil cap (3), the starting switch of controller (21) (28) start-up connector (21) is utilized to enter automatic control state, controller (21) controls lifting motor (15) and drives lifting wheel (16) to rotate, lifting wheel (16) rotating drive elevating lever (13) and oil suction net (14) decline, first induction pieces (24) is followed elevating lever (13) and is declined, when oil suction net (14) drops to soup oil (32) position of slaughterhouse (31), first induction pieces (24) is close to the second sensor (23), second sensor (23) by its Signal transmissions to controller (21), controller (21) controls lifting motor (15) to be stopped, elevating lever (13) and oil suction net (14) stop declining, after lifting motor (15) stops, controller (21) controls rotary electric machine (17) and drives moving runner (18) to rotate, and moving runner (18) drives elevating lever (13) to drive oil suction net (14) to rotate, after oil suction net (14) rotates, controller (21) controls electric pushrod (6) and drives door bar (8) and sealing door-plate (9) to move down, and open dry ice door (20), dry ice (30) drops on the oil suction net (14) of rotation by dry ice door (20), the push rod that second induction pieces (27) follows electric pushrod (6) declines, when second induction pieces (27) is close to four-sensor (26), four-sensor (26) is by its Signal transmissions to controller (21), and controller (21) controls electric pushrod (6) to be stopped decline and control rotary electric machine (17) stopping operating, dry ice (30) drop to oil suction net (14) upper after, the dry ice (30) on oil suction net (14) contacts with the soup oil (32) of slaughterhouse (31), utilizes dry ice (30) by soup oil (32) condensation adsorption on oil suction net (14), dry ice (30) by soup oil (32) condensation adsorption after oil suction net (14) is upper, controller (21) controls lifting motor (15) and drives lifting wheel (16) to drive elevating lever (13) and oil suction net (14) to rise, first induction pieces (24) is followed elevating lever (13) and is risen, when the first induction pieces (24) is close to first sensor (22), first sensor (22) by its Signal transmissions to controller (21), controller (21) controls lifting motor (15) to be stopped, and elevating lever (13) and oil suction net (14) stop rising, simultaneously, controller (21) controls electric pushrod (6) and drives door bar (8) and sealing door-plate (9) to rise, when sealing door-plate (9) and closing with dry ice door (20), second induction pieces (27) is close to the 3rd sensor (25), 3rd sensor (25) by its Signal transmissions to controller (21), controller (21) controls electric pushrod (6) to be stopped, and door bar (8) and sealing door-plate (9) stop rising, after door bar (8) and sealing door-plate (9) stop rising, by condensation adsorption, hot water put into by the oil suction net (14) of soup oil (32), utilizes hot water to be dissolved by soup oil (32), thus reach the object removing slaughterhouse (31) interior soup oil (32).
2. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: described lifting wheel (16) is positioned at the left side of elevating lever (13), when lifting motor (15) drives lifting wheel (16) to move in the direction of the clock, lifting wheel (16) presses elevating lever (13) and moves in the direction of the clock, and utilizes lifting wheel (16) to decline with the frictional force drives elevating lever (13) of elevating lever (13); Lifting motor (15) drives lifting wheel (16) by when counterclockwise rotating, lifting wheel (16) presses elevating lever (13) by counterclockwise rotating, utilize lifting wheel (16) to rise with the frictional force drives elevating lever (13) of elevating lever (13), elevating lever (13) drives oil suction net (14) to rise.
3. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: described or, lifting wheel (16) is positioned at the right of elevating lever (13), lifting motor (15) drives lifting wheel (16) by when counterclockwise rotating, lifting wheel (16) presses elevating lever (13) by counterclockwise rotating, and utilizes lifting wheel (16) to decline with the frictional force drives elevating lever (13) of elevating lever (13); When lifting motor (15) drives lifting wheel (16) to move in the direction of the clock, lifting wheel (16) presses elevating lever (13) and moves in the direction of the clock, utilize lifting wheel (16) to rise with the frictional force drives elevating lever (13) of elevating lever (13), elevating lever (13) drives oil suction net (14) to rise.
4. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: when described rotary electric machine (17) drives moving runner (18) to rotate, moving runner (18) presses elevating lever (13) and rotates, utilize moving runner (18) to rotate with the frictional force drives elevating lever (13) of elevating lever (13), elevating lever (13) drives oil suction net (14) to rotate.
5. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: when described the second sensor (23) position adjusts, position according to slaughterhouse (31) soup oil (32) adjusts, the first support (33) is utilized to adjust the position of the second sensor (23), when oil suction net (14) is contacted with soup oil (32), the first induction pieces (24) is just in time close to the second sensor (23).
6. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: when the 3rd described sensor (25) and the adjustment of four-sensor (26) position, according to the position adjustment that sealing door-plate (9) is opened and closed, the second support (34) is utilized to adjust the 3rd sensor (25) and four-sensor (26) position, when sealing door-plate (9) is closed with dry ice door (20), the second induction pieces (27) is close to the 3rd sensor (25); When making sealing door-plate (9) leave dry ice door (20), the second induction pieces (27) declines close to four-sensor (26).
7. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: described spring (7) is Compress Spring, spring (7) applies an elastic force upwards to the second induction pieces (27), make a bar (8) and sealing door-plate (9) be subject to an elastic force upwards, sealing door-plate (9) is tightly connected with dry ice door (20) under the effect of spring (7) elastic force.
8. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: the dry ice (30) in described dry ice box (4) falls down the moment that oil suction net (14) contacts with soup oil (32), the heat distillation that dry ice (30) absorbs soup oil (32) is carbon dioxide, and carbon dioxide has the steam vent (36) of oil cap (3) to discharge; Meanwhile, soup oil (32) is condensed and is adsorbed on oil suction net (14).
9. automatic control dry ice degreasing unit according to claim 1, is characterized in that: described first sensor (22) is less than the distance of the first induction pieces (24) to oil suction net (14) to the distance of the second sensor (23).
10. automatic control dry ice degreasing unit according to claim 1, it is characterized in that: when elevating lever (13) rising followed by described oil suction net (14), first induction pieces (24) and oil suction net (14) are followed elevating lever (13) and are risen, when first induction pieces (24) is close to first sensor (22), the stroke of oil suction net (14) is less than the distance of the first induction pieces (24) to oil suction net (14), and oil suction net (14) is positioned at the below of first sensor (22).
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CN109793427A (en) * | 2017-11-16 | 2019-05-24 | 福州品行科技发展有限公司 | One kind can be with self-cleaning oil suction pot cover |
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CN109793427B (en) * | 2017-11-16 | 2023-12-19 | 福州品行科技发展有限公司 | Self-cleaning oil absorption pot cover |
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