CN113413809A - Preparation method of portable powerful stain remover - Google Patents
Preparation method of portable powerful stain remover Download PDFInfo
- Publication number
- CN113413809A CN113413809A CN202110806243.4A CN202110806243A CN113413809A CN 113413809 A CN113413809 A CN 113413809A CN 202110806243 A CN202110806243 A CN 202110806243A CN 113413809 A CN113413809 A CN 113413809A
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- stirring motor
- stirring
- control unit
- central control
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- 238000002360 preparation method Methods 0.000 title claims abstract description 27
- 238000003756 stirring Methods 0.000 claims abstract description 457
- 239000000203 mixture Substances 0.000 claims abstract description 142
- 239000007788 liquid Substances 0.000 claims abstract description 122
- 239000002994 raw material Substances 0.000 claims abstract description 106
- 238000001914 filtration Methods 0.000 claims abstract description 62
- 238000011084 recovery Methods 0.000 claims abstract description 55
- 239000011259 mixed solution Substances 0.000 claims abstract description 29
- 239000008367 deionised water Substances 0.000 claims abstract description 17
- 229910021641 deionized water Inorganic materials 0.000 claims abstract description 17
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Chemical compound O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 17
- 238000000034 method Methods 0.000 claims abstract description 14
- 238000007599 discharging Methods 0.000 claims description 27
- 238000007667 floating Methods 0.000 claims description 20
- 229920006395 saturated elastomer Polymers 0.000 claims description 19
- 239000003599 detergent Substances 0.000 claims description 14
- 238000009835 boiling Methods 0.000 claims description 13
- DNIAPMSPPWPWGF-UHFFFAOYSA-N Propylene glycol Chemical compound CC(O)CO DNIAPMSPPWPWGF-UHFFFAOYSA-N 0.000 claims description 12
- LFQSCWFLJHTTHZ-UHFFFAOYSA-N Ethanol Chemical compound CCO LFQSCWFLJHTTHZ-UHFFFAOYSA-N 0.000 claims description 8
- 230000008602 contraction Effects 0.000 claims description 7
- 102000004190 Enzymes Human genes 0.000 claims description 6
- 108090000790 Enzymes Proteins 0.000 claims description 6
- 229940088598 enzyme Drugs 0.000 claims description 6
- 239000003960 organic solvent Substances 0.000 claims description 6
- 229940051841 polyoxyethylene ether Drugs 0.000 claims description 6
- 229920000056 polyoxyethylene ether Polymers 0.000 claims description 6
- 239000004094 surface-active agent Substances 0.000 claims description 6
- 239000003945 anionic surfactant Substances 0.000 claims description 5
- 239000004382 Amylase Substances 0.000 claims description 4
- 102000013142 Amylases Human genes 0.000 claims description 4
- 108010065511 Amylases Proteins 0.000 claims description 4
- 102100032487 Beta-mannosidase Human genes 0.000 claims description 4
- 108010059892 Cellulase Proteins 0.000 claims description 4
- 239000004367 Lipase Substances 0.000 claims description 4
- 102000004882 Lipase Human genes 0.000 claims description 4
- 108090001060 Lipase Proteins 0.000 claims description 4
- 108091005804 Peptidases Proteins 0.000 claims description 4
- 239000002202 Polyethylene glycol Substances 0.000 claims description 4
- 239000004365 Protease Substances 0.000 claims description 4
- 102100037486 Reverse transcriptase/ribonuclease H Human genes 0.000 claims description 4
- -1 alkyl glycoside Chemical class 0.000 claims description 4
- 235000019418 amylase Nutrition 0.000 claims description 4
- 108010055059 beta-Mannosidase Proteins 0.000 claims description 4
- 229940106157 cellulase Drugs 0.000 claims description 4
- 239000003502 gasoline Substances 0.000 claims description 4
- 229930182470 glycoside Natural products 0.000 claims description 4
- 235000019421 lipase Nutrition 0.000 claims description 4
- 229920001223 polyethylene glycol Polymers 0.000 claims description 4
- 239000003795 chemical substances by application Substances 0.000 description 32
- 230000000694 effects Effects 0.000 description 10
- 239000012535 impurity Substances 0.000 description 6
- 238000004140 cleaning Methods 0.000 description 5
- 230000008569 process Effects 0.000 description 5
- 230000005484 gravity Effects 0.000 description 4
- 239000002245 particle Substances 0.000 description 4
- DGAQECJNVWCQMB-PUAWFVPOSA-M Ilexoside XXIX Chemical compound C[C@@H]1CC[C@@]2(CC[C@@]3(C(=CC[C@H]4[C@]3(CC[C@@H]5[C@@]4(CC[C@@H](C5(C)C)OS(=O)(=O)[O-])C)C)[C@@H]2[C@]1(C)O)C)C(=O)O[C@H]6[C@@H]([C@H]([C@@H]([C@H](O6)CO)O)O)O.[Na+] DGAQECJNVWCQMB-PUAWFVPOSA-M 0.000 description 2
- 238000005202 decontamination Methods 0.000 description 2
- 230000003588 decontaminative effect Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 238000004806 packaging method and process Methods 0.000 description 2
- 229910052708 sodium Inorganic materials 0.000 description 2
- 239000011734 sodium Substances 0.000 description 2
- 239000000243 solution Substances 0.000 description 2
- PMZURENOXWZQFD-UHFFFAOYSA-L Sodium Sulfate Chemical compound [Na+].[Na+].[O-]S([O-])(=O)=O PMZURENOXWZQFD-UHFFFAOYSA-L 0.000 description 1
- 230000009471 action Effects 0.000 description 1
- 238000013019 agitation Methods 0.000 description 1
- 230000004075 alteration Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 150000007942 carboxylates Chemical class 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 230000004927 fusion Effects 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000002156 mixing Methods 0.000 description 1
- 230000003389 potentiating effect Effects 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Images
Classifications
-
- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D1/00—Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
-
- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/38—Products with no well-defined composition, e.g. natural products
- C11D3/386—Preparations containing enzymes, e.g. protease or amylase
-
- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/43—Solvents
Landscapes
- Chemical & Material Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Wood Science & Technology (AREA)
- Organic Chemistry (AREA)
- Mixers Of The Rotary Stirring Type (AREA)
Abstract
The invention relates to a preparation method of a portable powerful stain remover, which comprises the steps of conveying a first mixture to a stirring box, and stirring to obtain a first mixed solution; adding the second mixture, and stirring to obtain a second mixed solution; adding the third mixture, and stirring to obtain a third mixed solution; adding deionized water, stirring to obtain a fourth mixed solution, controlling the starting of a liquid pump by a central control unit, transmitting the fourth mixed solution to a filtering unit through a pipeline for filtering, and filtering to obtain a powerful stain remover; the method comprises the steps of determining the volatility values of all raw materials in the mixed raw materials, taking the average value of the volatility values as the volatility values of the mixture, determining the rotating speed of a stirring motor by a central control unit according to the volatility values of the mixture, determining the stirring time and an oil cylinder according to the real-time liquid level height and adjusting the stirring motor, and adjusting the stirring motor and the oil cylinder according to the recovery amount, so that the stirring efficiency of a stirring unit is improved, and the strength of the stain remover is improved.
Description
Technical Field
The invention relates to the technical field of preparation of stain removers, in particular to a preparation method of a portable powerful stain remover.
Background
The portable stain remover is a convenient cleaning article which is used for cleaning stains on clothes and cloth and is matched with specific packages for use. When the device is used, the packaging head is pressed on the stain, the device is loosened after a proper amount of decontamination solution is extruded, the decontamination solution is attached to clothes, and the packaging head is used for rubbing the stain back and forth. It is popular because of its fast cleaning speed, convenient use and convenient carrying.
In the prior art, the stirring speed in the preparation process is difficult to adjust in real time according to the real-time liquid level height and the recovery flow value in the preparation process of the stain remover, so that the stirring effect is poor, and the prepared stain remover has low strength.
Disclosure of Invention
Therefore, the invention provides a preparation method of a portable powerful detergent, which is used for overcoming the problems that the stirring speed in the preparation process is difficult to adjust in real time according to the real-time liquid level height and the recovery flow value in the preparation process of the detergent in the prior art, so that the stirring effect is poor, and the strength of the prepared detergent is not high.
In order to achieve the above objects, the present invention provides a method for preparing a portable powerful stain remover, comprising,
step S1, conveying the raw materials in the first mixture to a stirring box through a blanking unit, stirring the first mixture through a stirring rod in the stirring box, and stirring for a preset time to obtain a first mixed solution;
step S2, adding the raw materials in the second mixture into the first mixture, and stirring for a preset time to obtain a second mixed solution;
step S3, adding the raw materials in the third mixture into the second mixed solution, and stirring for a preset time to obtain a third mixed solution;
step S4, adding deionized water into the third mixed solution, stirring for a preset time to obtain a fourth mixed solution, controlling the liquid pump to start by the central control unit, transmitting the fourth mixed solution to the filtering unit through a pipeline for filtering, and obtaining the powerful stain remover after filtering;
in step S1, the central control unit determines the volatility values of the raw materials according to the boiling points and the saturated vapor pressures of the raw materials in the mixture, calculates the volatility values of the raw materials in the first mixture, takes the average value of the volatility values as the volatility value of the first mixture, determines the rotation speed of the stirring motor during stirring the first mixture according to the volatility value of the first mixture, receives the liquid level height value transmitted by the liquid level meter in real time when the stirring motor stirs at the determined stirring speed, compares the real-time liquid level height with the preset liquid level height, adjusts the rotation speed of the stirring motor, determines the rotation time of the stirring motor and the stretching speed of the oil cylinder, and after the central control unit adjusts the rotation speed of the stirring motor and determines the stretching speed of the oil cylinder according to the liquid level height of the stirring tank, the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, secondarily adjusts the rotating speed of the stirring motor, adjusts the stretching speed of the oil cylinder, and controls the blanking valve to open to transmit each raw material in the second mixture to the stirring tank when the stirring motor moves to the rotating time at the secondarily adjusted rotating speed;
in step S2, the central control unit calculates the volatility values of the raw materials in the second mixture, taking the average value of the volatility values of all the raw materials in the second mixture as the volatility value of the second mixture, the central control unit determines the rotating speed of the stirring motor added with the second mixture according to the volatility of the second mixture, compares the real-time liquid level height with the preset liquid level height, the rotation speed of the stirring motor is adjusted, the rotation time of the stirring motor and the stretching speed of the oil cylinder are determined, the central control unit compares the real-time flow value with a preset flow value, the rotating speed of the stirring motor is adjusted for the second time, the stretching speed of the oil cylinder is adjusted, when the stirring motor moves to the rotating time at the rotating speed after the second adjustment, the central control unit controls the blanking valve to be opened to transmit each raw material in the third mixture to the stirring box;
in step S3, the central control unit calculates the volatility value of each raw material in the third mixture, and taking the average value as the volatility value of the third mixture, determining the rotating speed of the stirring motor added with the third mixture according to the volatility value of the third mixture by the central control unit, comparing the real-time liquid level height with the preset liquid level height by the central control unit, the rotating speed of the stirring motor is adjusted, the rotating time of the stirring motor and the stretching speed of the oil cylinder are determined, the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, the rotating speed of the stirring motor is adjusted for the second time, the stretching speed of the oil cylinder is adjusted, and when the stirring motor moves to the rotating time at the rotating speed after the second adjustment, the central control unit controls the opening of the blanking valve to transmit the deionized water to the stirring box;
in the step S4, when the rotation speed and the rotation time of the stirring motor after adding the deionized water are continuously stirred by the central control unit according to the rotation speed of the stirring motor and the stretching speed of the oil cylinder determined and adjusted in the step S3 until the rotation time, the central control unit controls the liquid pump to start, and transmits the fourth mixed solution to the filtering unit through the pipeline for filtering, so as to obtain the powerful stain remover after filtering.
Furthermore, the central control unit determines the volatility value of each raw material according to the boiling point and the saturated vapor pressure of each raw material in the mixture, the volatility value of each raw material is set as c, the saturated vapor pressure of each raw material is set as the saturated vapor pressure at the room temperature of 25 ℃,
c=B/B0+VP/VP0
wherein c represents the value of the degree of volatility of the raw material, B represents the boiling point of the raw material, B0 represents the preset boiling point, VP represents the saturated vapor pressure of the raw material at 25 ℃, and VP0 represents the preset saturated vapor pressure.
Further, the central control unit is internally preset with volatility values of C1, C2, C3, … and Cn, wherein C1 represents a first preset volatility value, C2 represents a second preset volatility value, C3 represents a third preset volatility value, and Cn represents an nth preset volatility value;
rotation speeds V1, V2, V3, … and Vn of the stirring motor are preset in the central control unit, wherein V1 represents a first preset rotation speed of the stirring motor, V2 represents a second preset rotation speed of the stirring motor, V3 represents a third preset rotation speed of the stirring motor, and Vn represents an nth preset rotation speed of the stirring motor;
the rotation time t1, t2, t3, … and tn of the stirring motor are preset in the central control unit, wherein t1 represents a first preset rotation time of the stirring motor, t2 represents a second preset rotation time of the stirring motor, t3 represents a third preset rotation time of the stirring motor, and tn represents an nth preset rotation time of the stirring motor.
Further, in step S1, the central control unit determines the average value of the volatility values of the raw materials in the first mixture as the volatility value of the first mixture, sets the volatility value of the first mixture as C1S, determines the rotation speed and the rotation time of the stirring motor according to the volatility value of the first mixture,
if the C1S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C1S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C1S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C1S and Cn are not less than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
Further, the central control unit calculates the volatility values of the raw materials in the second mixture, takes the average value of the volatility values of the raw materials in the second mixture as the volatility value of the second mixture, determines the rotating speed of the stirring motor in the step S2 according to the volatility value of the second mixture, sets the volatility value of the second mixture to be C2S,
if the C2S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C2S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C2S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
if C (n-1) < C2S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn;
in step S3, when the rotation speed of the stirring motor after the third mixture is added is determined, the central control unit determines the rotation speed and the rotation time of the stirring motor according to the volatility of the third mixture, sets the volatility of the third mixture to be C2S, controls the blanking unit to transport each raw material in the third mixture, and takes the average value of the volatility of each raw material in the third mixture as the volatility of the third mixture,
if the C3S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C3S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C3S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C3S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
Further, liquid level heights H1, H2, H3, … and Hn in the stirring tank are preset in the central control unit, wherein H1 represents a first preset liquid level height, H2 represents a second preset liquid level height, H3 represents a third preset liquid level height, and Hn represents an nth preset liquid level height;
rotation speeds Vy1, Vy2, Vy3, … and Vyn of the oil cylinder stretching speed are preset in the central control unit, wherein Vy1 represents a first preset rotation speed of the oil cylinder stretching speed, Vy2 represents a second preset rotation speed of the oil cylinder stretching speed, Vy3 represents a third preset rotation speed of the oil cylinder stretching speed, and Vyn represents an nth preset rotation speed of the oil cylinder stretching speed;
flow values Q1, Q2, Q3, … and Qn of the flowmeter are preset in the central control unit, wherein Q1 represents a first preset flow value of the flowmeter, Q2 represents a second preset flow value of the flowmeter, Q3 represents a third preset flow value of the flowmeter, and Qn represents an nth preset flow value of the flowmeter.
Furthermore, when the stirring motor stirs at a determined speed Vi, i is set to be 1, 2, 3, … and n, n is a positive number, the central control unit receives the liquid level height transmitted by a liquid level meter arranged on the stirring box in real time, the central control unit adjusts the speed of the stirring motor according to the liquid level height, determines the rotation time and the stretching speed of the oil cylinder, sets the real-time liquid level height in the stirring box to be Hs, s is set to be 1, 2, 3, … and n, n is a positive number,
if Hs is less than or equal to H1, the central control unit does not adjust the rotating speed of the stirring motor, and the rotating time of the stirring motor is determined to be t 1;
if Hs is more than H1 and is less than or equal to H2, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.05 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy1, and the rotation time of the stirring motor is determined to be t 2;
if Hs is more than H2 and is less than or equal to H3, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.1 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy2, and the rotation time of the stirring motor is determined to be t 3;
if H (n-1) < Hs is less than or equal to Hn, the central control unit adjusts the rotating speed of the stirring motor to be Vt1, Vt1 is Vn, the central control unit starts the oil cylinder, sets the stretching speed of the oil cylinder to be Vy (n-1), and determines the rotating time of the stirring motor to be tn;
and when the rotating speed Vt1 of the stirring motor after adjustment is greater than Vn, taking Vn as the rotating speed of the stirring motor after adjustment.
Further, the central control unit receives a flow value of a flow meter arranged on the recovery unit in real time, adjusts the rotating speed of the stirring motor and the stretching and retracting speed of the oil cylinder according to the real-time flow value, sets the real-time flow value to be Qs, sets s to be 1, 2, 3, … and n, sets n to be a positive number, sets the stretching and retracting speed of the oil cylinder to be Vyi, sets i to be 1, 2, 3, … and n, sets n to be a positive number,
if Qs is less than or equal to Q1, the central control unit does not adjust the rotating speed of the stirring motor and the stretching speed of the oil cylinder;
if Q1 is more than Qs and less than or equal to Q2, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.95 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.95 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q2 is more than Qs and less than or equal to Q3, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.9 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.9 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q (n-1) < Qs is not more than Qn, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is V1, the stretching speed of the oil cylinder is adjusted to be Vyt1, Vyt1 is Vy1, and if the oil cylinder is not started, the oil cylinder is not started;
when the rotation speed Vt2 of the stirring motor after adjustment is less than V1, the rotation speed of the stirring motor after adjustment is V1, and when the expansion speed Vyt1 of the oil cylinder after adjustment is less than Vy1, the expansion speed of the oil cylinder after adjustment is Vy 1.
Furthermore, the invention also provides a preparation device of the portable powerful stain remover, which comprises,
the discharging unit comprises a plurality of discharging pipes, discharging ports of the discharging pipes are connected with discharging pipelines, raw materials are transmitted to the stirring unit through the discharging pipelines, and discharging valves are arranged on the discharging pipes;
the stirring unit comprises a stirring box, a stirring rod is arranged on the stirring box, a feeding hole is formed above the stirring box, the blanking pipe is connected with the feeding hole and used for receiving the raw materials transmitted by the blanking unit, and a liquid level meter is arranged on the stirring box and used for detecting the liquid level height in the stirring box;
the power unit comprises a driving box, the driving box is fixedly connected to the top of the stirring box, an oil cylinder is fixedly mounted at the top of the driving box, an output shaft of the oil cylinder is connected to the inner wall of the driving box, a floating plate is connected to the output shaft of the oil cylinder in a threaded manner, a stirring motor is fixedly mounted on the floating plate, an output shaft of the stirring motor is fixedly connected with a stirring rod, the bottom end of the stirring rod penetrates through the driving box and extends into the stirring box, a through groove is formed in the top of the driving box, the through groove is located at the top of the stirring motor, a limiting rod is fixedly connected to the inner top wall of the driving box, and the bottom end of the limiting rod penetrates through the floating plate and is fixedly connected to the inner wall of the driving box;
the recovery unit comprises a recovery pipe arranged at the top of the stirring box, a flowmeter and a recovery valve are arranged on the recovery pipe, extending out of the stirring box, of the recovery pipe, the other end of the recovery pipe is connected with a feed inlet of the stirring box, and the recovery unit is used for recovering gas volatilized in the stirring box;
the filter unit comprises a filter box, the filter box is fixedly connected to the top of the bottom plate, the liquid pump is fixedly installed at the top of the filter box, and the right side of the filter box is fixedly connected with a discharge hopper communicated with the interior of the filter box;
and the central control unit is connected with the blanking valve, the liquid level meter, the oil cylinder, the stirring motor, the recovery valve, the flow meter and the liquid pump and is used for adjusting the working states of the blanking valve, the liquid level meter, the oil cylinder, the stirring motor, the recovery valve, the flow meter and the liquid pump.
Further, the invention also provides a portable powerful stain remover, which comprises,
the first mixture is an organic solvent, and the organic solvent is at least one of ethanol, polyethylene glycol, propylene glycol and gasoline;
the second mixture is a surfactant, and the surfactant is at least one of alkyl glycoside, fatty alcohol-polyoxyethylene ether and anionic surfactant;
the third mixture is an enzyme preparation, and the enzyme preparation is at least one of lipase, cellulase, mannanase, amylase and protease;
deionized water.
Compared with the prior art, the preparation method of the portable powerful stain remover has the beneficial effects that the volatile degree values of the raw materials in the mixed raw materials are determined, the average value of the volatile degree values is the volatile degree value of the mixture, the central control unit preliminarily determines the rotating speed of the stirring motor according to the volatile degree value of the mixture, determines the stirring time and the stretching speed of the oil cylinder according to the real-time liquid level height, adjusts the rotating speed of the stirring motor at the same time, and finally adjusts the rotating speed of the stirring motor and the stretching speed of the oil cylinder according to the real-time recovery amount of the recovery unit, so that the stirring efficiency of the stirring unit is improved, and the strength of the stain remover is improved.
Particularly, the locking universal wheel of the invention can be conveniently moved, when the device is needed to prepare the stain removing agent of the stain removing pen, the central control unit controls the blanking unit to transmit the required raw materials to the blanking pipe through the discharge holes of the blanking pipes and to the inside of the stirring box through the blanking pipes, when the stain removing agent raw materials in the stirring box are stirred and mixed, the central control unit controls the power unit to work, the power unit fully stirs the raw materials in the stirring box, the rotating speed of the stirring motor and the stretching speed of the oil cylinder are adjusted through the liquid level height and the recovery flow value of the recovery unit during the stirring process, so that the raw materials with different capacities and layers in the stirring box are mixed and stirred, the power unit can improve the stirring efficiency of the device, thereby improving the strength of the stain removing agent, after the stirring inside the stirring box is finished to form the stain removing agent, the central control unit controls the liquid pump to work, the liquid pump pumps the stain removing agent inside the stirring box into the filtering unit, the stain removing agent entering the filtering device starts to move downwards under the action of gravity, the stain removing agent is filtered by the filtering unit and then discharged, particle impurities generated inside the stain removing agent can be remained inside the filtering unit to be collected, the strength of the stain removing agent can be improved due to the arrangement of the filtering unit, meanwhile, the stain removing device is convenient to clean, and the problems that a preparation device of the stain removing pen in the prior art is poor in stirring effect and does not have a filtering function are solved.
Further, the stirring motor can drive the stirring rod fixedly connected with the stirring motor to synchronously rotate, the stirring rod can fully stir the raw materials in the stirring box, the oil cylinder can drive the floating plate in threaded connection with the oil cylinder to start floating up and down, so that the stirring motor can drive the stirring rod to synchronously move, the stirring rod continuously rotates in the moving process, the raw materials in different levels and different heights in the stirring box are mixed and stirred, and the stirring efficiency can be improved due to the arrangement of the stirring unit and the power unit, so that the strength of the stain remover is improved.
Further, when the material is conveyed to the stirring tank, the central control unit determines the rotating speed of the stirring motor according to the volatile degree value of the mixed raw material, simultaneously, the central control unit primarily adjusts the rotating speed of the stirring motor according to the comparison between the liquid level height of the stirring tank and the preset liquid level height value, determines the stretching speed and the rotating time of the oil cylinder, secondarily adjusts the rotating speed of the stirring motor according to the recovery flow value of the recovery unit after adjusting the stretching speed of the stirring motor and the oil cylinder according to the liquid level height, simultaneously adjusts the stretching speed of the oil cylinder, operates to the preset time according to the rotating speed of the stirring motor after secondary adjustment and the stretching speed of the oil cylinder after adjustment, does not start the oil cylinder and does not adjust the oil cylinder if the oil cylinder is not started when adjusting the oil cylinder, the stirring efficiency of the stirring unit is improved, thereby improving the strength of the detergent.
Drawings
FIG. 1 is a schematic structural diagram of a portable powerful detergent manufacturing device according to the present invention;
FIG. 2 is an enlarged schematic view of the structure at A in FIG. 1;
FIG. 3 is a schematic structural diagram of a filter cassette of the portable apparatus for preparing a potent stain remover according to the present invention.
Detailed Description
In order that the objects and advantages of the invention will be more clearly understood, the invention is further described below with reference to examples; it should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only for explaining the technical principle of the present invention, and do not limit the scope of the present invention.
It should be noted that in the description of the present invention, the terms of direction or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, which are only for convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
Furthermore, it should be noted that, in the description of the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
Referring to fig. 1-3, the present invention provides a portable apparatus for preparing a powerful stain remover, which comprises a base plate 1 and locking universal wheels 2 uniformly distributed, wherein the locking universal wheels 2 are fixedly mounted on the bottom of the base plate 1. The top fixedly connected with stirring unit 3 of bottom plate 1, 3 tops of stirring unit are provided with power pack 5, 3 left sides of stirring unit are provided with unloading unit 4, 3 right sides of stirring unit are provided with filter unit 6, be provided with recovery unit 7 on the stirring unit 3.
Specifically, in the embodiment of the present invention, the discharging unit 4 includes a plurality of discharging pipes 401, discharging ports of the plurality of discharging pipes 401 are connected to a discharging pipe 402, the raw material is transmitted to the stirring unit 3 through the discharging pipe 402, and a discharging valve (not shown in the figure) is disposed on the discharging pipe 401. Stirring unit 3, it includes agitator tank 301, be provided with puddler 302 on the agitator tank 301, agitator tank 301 top is provided with feed inlet 303, unloading pipeline 402 is connected with feed inlet 303 for receive the raw materials of unloading unit 4 transmission, be provided with level gauge 304 on the agitator tank 301, it is right to be used for liquid level in the agitator tank 301 to detect. Power unit 5, it includes drive case 501, drive case 501 fixed connection is at the top of agitator tank 301, the top fixed mounting of drive case 501 has hydro-cylinder 502, the output shaft of hydro-cylinder 502 is on the inner wall of drive case 501, threaded connection has floating plate 503 on the output shaft of hydro-cylinder 502, last fixed mounting of floating plate 503 has agitator motor 504, agitator motor 504's output shaft and puddler 302 fixed connection, the inside of drive case 501 and extension to agitator tank 301 is run through to the bottom of puddler 302, logical groove 506 has been seted up at the top of drive case 501, logical groove 506 is located agitator motor 504's top, fixedly connected with gag lever post 505 on the interior roof of drive case 501, floating plate 503 and fixed connection are run through on the bottom of gag lever post 505 on the inner wall of drive case 501. The recovery unit 7 comprises a recovery pipe 701 arranged at the top of the stirring tank 301, a flow meter 702 and a recovery valve 703 are arranged on the recovery pipe 701, the recovery pipe 701 extends out of the stirring tank 301, the other end of the recovery pipe 701 is connected with the feed port 303 of the stirring tank 301, and the recovery unit 7 is used for recovering the gas volatilized in the stirring tank 301. The filtering unit 6 comprises a filtering tank 601, the filtering tank 601 is fixedly connected to the top of the bottom plate 1, the liquid pump 607 is fixedly installed at the top of the filtering tank 601, and the right side of the filtering tank 601 is fixedly connected with a discharging hopper 606 communicated with the inside of the filtering tank 601. And the central control unit 8 is connected with the blanking valve, the liquid level meter 304, the oil cylinder 502, the stirring motor 504, the recovery valve 703, the flow meter 702 and the liquid pump 607 and is used for adjusting the working states of the blanking valve, the liquid level meter 304, the oil cylinder 502, the stirring motor 504, the recovery valve 703, the flow meter 702 and the liquid pump 607.
Specifically, in the embodiment of the present invention, a filter box 602 is inserted into the right side of the filter box 601, a sliding groove 603 is formed in the inner wall of the filter box 601, a sliding strip 604 is slidably connected inside the sliding groove 603, the sliding strip 604 is fixedly connected to the filter box 602, two electromagnetic blocks 605 are fixedly installed on the right side of the filter box 602, both the two electromagnetic blocks 605 are electrically connected to the central control unit 8, and a discharge hopper 606 communicated with the inside of the filter box 601 is fixedly connected to the right side of the filter box 601.
Specifically, in the embodiment of the invention, the locking universal wheel 2 is arranged so that the device can be conveniently moved, when the device is required to be used for preparing a stain removing agent of a stain removing pen, the central control unit 8 controls the blanking unit 4 to transmit required raw materials to the blanking pipeline 402 through the discharge ports of the plurality of blanking pipes 401 and to the inside of the stirring tank 301 through the blanking pipeline 402, when the stain removing agent raw materials in the stirring tank 301 are required to be stirred and mixed, the central control unit 8 controls the power unit 5 to work, the power unit 5 fully stirs the raw materials in the stirring tank 301, the rotating speed of the stirring motor 504 and the stretching speed of the oil cylinder 502 are adjusted through the liquid level and the recovery flow value of the recovery unit 7 during stirring, so that the raw materials with different volumes and layers in the stirring tank 301 are mixed and stirred, and the stirring efficiency of the device can be improved due to the arrangement of the power unit 5, therefore, the intensity of the stain removing agent is improved, after the stirring inside the stirring tank 301 is completed to form the stain removing agent, the central control unit 8 controls the liquid pump 607 to work, the liquid pump 607 pumps the stain removing agent inside the stirring tank 301 into the inside of the filtering unit 6, the stain removing agent entering the inside of the filtering device starts to move downwards due to gravity, the stain removing agent is discharged after being filtered by the filtering unit 6, particle impurities generated inside the stain removing agent can be remained inside the filtering unit 6 to be collected, the intensity of the stain removing agent can be improved due to the arrangement of the filtering unit 6, meanwhile, the cleaning of the stain removing agent is facilitated, and the problems that the stirring effect of a device for preparing the stain removing agent of the prior stain removing pen is poor and the stain removing agent does not have the filtering function are solved.
Specifically, in the embodiment of the present invention, the power unit 5 includes a driving box 501, the driving box 501 is fixedly connected to the top of the stirring box 301, an oil cylinder 502 is fixedly installed on the top of the stirring box 301, an output shaft of the oil cylinder 502 is rotatably connected to an inner wall of the driving box 501, a floating plate 503 is connected to an output shaft of the oil cylinder 502 in a threaded manner, a stirring motor 504 is fixedly installed on the top of the floating plate 503, a stirring rod 302 is fixedly connected to the bottom end of the stirring motor 504, the bottom end of the stirring rod 302 penetrates through the driving box 501 and extends into the stirring box 301, a through groove 506 is formed in the top of the driving box 501, the through groove 506 is located on the top of the stirring motor 504, and the oil cylinder 502 and the stirring motor 504 are both electrically connected to the central control unit 8.
Specifically, in the embodiment of the present invention, after the first mixture is added into the stirring tank 301, the central control unit 8 determines the volatility value of the first mixture according to the volatility value of each raw material in the first mixture, and determines the rotation speed of the stirring motor 504 according to the volatility value of the first mixture, the stirring motor 504 rotates to drive the stirring rod 302 fixedly connected thereto to synchronously rotate, the stirring rod 302 fully stirs the raw material inside the stirring tank 301, during the stirring process, the central control unit 8 adjusts the rotation speed of the stirring motor 504 twice according to the liquid level height and the recovery amount of the recovery unit 7, adjusts the stretching speed of the oil cylinder 502, and simultaneously determines the stirring time according to the liquid level height, if the oil cylinder 502 is started, the oil cylinder 502 drives the floating plate 503 connected to the oil cylinder 502 to float up and down, so that the stirring motor 504 also drives the stirring rod 302 to synchronously move, during the moving process, the stirring rod 302 continuously rotates, so that raw materials at different levels in the stirring tank 301 are mixed and stirred until the stirring motor 504 and the oil cylinder 502 work for a preset time, the blanking unit 4 transmits a second mixture to the stirring tank 301, the central control unit 8 determines the rotating speed of the stirring motor 504 according to the volatility degree value of the second mixture, compares the real-time liquid level height after the second mixture is added with the preset height value, primarily adjusts the rotating speed of the stirring motor 504, determines the rotating time of the stirring motor 504 and the stretching speed of the oil cylinder 502, and simultaneously, the central control unit 8 secondarily adjusts the rotating speed of the stirring motor 504 according to the real-time recovery flow value of the recovery unit 7, adjusts the stretching speed of the oil cylinder 502 until the operation reaches the preset time, and transmits a third mixture to the stirring tank 301 through the blanking unit 4, the central control unit 8 determines the rotation speed of the stirring motor 504 according to the volatility of the third mixture, compares the real-time liquid level height after the third mixture is added with a preset height value, primarily adjusts the rotation speed of the stirring motor 504, determines the rotation time of the stirring motor 504 and the stretching speed of the oil cylinder 502, simultaneously, the central control unit 8 secondarily adjusts the rotation speed of the stirring motor 504 according to the real-time recovery flow value of the recovery unit 7, adjusts the stretching speed of the oil cylinder 502 until the operation time reaches the preset time, the blanking unit 4 adds deionized water into the stirring tank 301, the central control unit 8 controls the stirring motor 504 to operate at the stirring speed after the third mixture is added and the stretching speed of the oil cylinder 502 until the preset time reaches, the central control unit 8 controls the liquid pump 607 to operate, and transmits the liquid to the filtering unit 6 through a pipeline for filtering, filtering to obtain the powerful stain remover. The power unit 5 can improve the stirring efficiency, thereby improving the strength of the detergent.
Specifically, in the embodiment of the invention, the recovery valve can be closed when the recovered flow value is less than or equal to Q1, and the central control unit controls to open the recovery valve when the flow value is greater than Q1, so that the recovered liquid can return to the stirring tank. The recovery unit is arranged to recover volatile raw materials in the preparation process, so that on one hand, waste of the raw materials is reduced, energy conservation and environmental protection are realized, on the other hand, the rotating speed of the stirring motor and the stretching speed of the oil cylinder are adjusted according to the recovered flow value, the stirring efficiency is improved, and the strength of the prepared stain remover is improved.
Specifically, in the embodiment of the present invention, the stirring speed of the stirring motor 504 after adding the deionized water into the stirring tank 301 is based on the rotation speed of the stirring motor 504 and the movement time of the stirring motor 504 determined in the step S3 when the operation time of the stirring motor 504 is close to the operation time of the stirring motor 504 in the step S3. After the deionized water is added, the rotation speed of the agitator motor 504 and the extension and retraction speed of the cylinder 502 are not adjusted, but it may be understood that the rotation speed of the agitator motor 504 and the extension and retraction speed of the cylinder 502 determined and adjusted in step S3 are continuously operated for twice the determined rotation time, and the rotation speed of the agitator motor 504 and the extension and retraction speed of the cylinder 502 are not adjusted when the second rotation time is operated, the rotation speed of the agitator motor 504 determined and adjusted in real time in step S3 is set to Vx, the agitation time is ty, the extension and retraction speed of the cylinder 502 is Vyz, x, y, z are set to 1, 2, 3, …, n, and n is a positive number, and the rotation speed of the agitator motor 504 after the deionized water is added is Vx, the extension and retraction speed of the cylinder 502 is Vyz, and the rotation is stopped when the rotation is to ty.
Specifically, in the embodiment of the present invention, when the stirring motor 504 rotates for the rotation time, the stirring motor 504 stops rotating, the oil cylinder 502 also stops continuing to extend and retract, and returns to the initial position, where the initial position of the oil cylinder 502 is set as the lowest position of the stirring rod 302 in the stirring tank 301.
Specifically, in the embodiment of the present invention, the inner top wall of the driving box 501 is fixedly connected to a limiting rod 505, and the bottom end of the limiting rod 505 penetrates through the floating plate 503 and is fixedly connected to the inner wall of the driving box 501. The limiting rod 505 can limit the floating plate 503 to prevent the floating plate 503 from rotating synchronously with the oil cylinder 502, so that the floating plate 503 can only move vertically.
Specifically, in the embodiment of the present invention, the filtering unit 6 includes a filtering tank 601, the filtering tank 601 is fixedly connected to the top of the bottom plate 1, the liquid pump 607 is fixedly installed at the top of the filtering tank 601, the filtering box 602 is inserted into the right side of the filtering tank 601, the inner wall of the filtering tank 601 is provided with a sliding groove 603, the inside of the sliding groove 603 is slidably connected with a sliding strip 604, the sliding strip 604 is fixedly connected to the filtering box 602, the right side of the filtering box 602 is fixedly installed with two electromagnetic blocks 605, both the two electromagnetic blocks 605 are electrically connected with the central control unit 8, and the right side of the filtering tank 601 is fixedly connected with a discharging hopper 606 communicated with the inside thereof. After the stirring inside the stirring box 301 is completed, the central control unit 8 controls the liquid pump 607 to work, the liquid pump 607 pumps the stain removing agent inside the stirring box 301 into the inside of the filtering box 601, the stain removing agent entering the inside of the filtering box 601 starts to move downwards due to gravity, the stain removing agent continues to move downwards through the through hole inside the filtering box 602, the particle impurities generated inside the stain removing agent are left inside the filtering box 602 to be collected, the stain removing agent which continuously falls is discharged through the discharging hopper 606, when the impurities inside the filtering box 602 are excessive, the central control unit 8 controls the electromagnetic block 605 to be powered off, the electromagnetic block 605 loses the magnetic force after being powered off and is separated from the filtering box 601, at the moment, the filtering box 602 can be drawn out to enable the slide bar 604 to move inside the sliding groove 603, the slide bar 604 can be processed after the filtering box 602 is completely drawn out, the slide bar 604 inside the sliding groove 603, the electromagnetic block 605 is controlled to be powered on after the filtering box 602 is reset, the electromagnetic block 605 is electrified to fix and limit the filter box 602, and the arrangement of the filter device can improve the strength of the detergent and is convenient for self cleaning. The right side of the filter cartridge 602 is fixedly connected with a handle 608, and the handle 608 is provided with anti-slip patterns which are uniformly distributed.
Specifically, in the embodiment of the invention, the locking universal wheel 2 is arranged to enable the device to be conveniently moved, when the device is required to be used for preparing the stain removing agent of the stain removing pen, the central control unit 8 controls the blanking unit 4 to transmit raw materials, when the materials are transmitted to the stirring tank 301, the central control unit 8 determines the rotating speed of the stirring motor 504 according to the volatile degree value of the mixed raw materials, meanwhile, the central control unit 8 primarily adjusts the rotating speed of the stirring motor 504 according to the comparison between the liquid level height of the stirring tank 301 and the preset liquid level height value, determines the stretching speed and rotating time of the oil cylinder 502, and after the stretching speed of the stirring motor 504 and the oil cylinder 502 is adjusted according to the liquid level height, the central control unit 8 secondarily adjusts the rotating speed of the stirring motor 504 according to the recovery amount of the recovery unit 7, meanwhile, the stretching speed of the oil cylinder 502 is adjusted, and after the rotation speed of the stirring motor 504 after the secondary adjustment and the stretching speed of the oil cylinder 502 after the adjustment are operated for the preset time, if the oil cylinder 502 is not started during the adjustment of the oil cylinder 502, the oil cylinder 502 is not started, and the oil cylinder 502 is not adjusted. If the cylinder 502 is not actuated, indicating that the fluid level is low, then the cylinder 502 need not be actuated.
Specifically, in the embodiment of the present invention, the stirring motor 504 drives the stirring rod 302 fixedly connected thereto to synchronously rotate, the stirring rod 302 fully stirs the raw material inside the stirring tank 301, the oil cylinder 502 drives the floating plate 503 in threaded connection therewith to start floating up and down, so that the stirring motor 504 also drives the stirring rod 302 to synchronously move, and the stirring rod 302 continuously rotates during the moving process, thereby mixing and stirring the raw material at different levels and different heights inside the stirring tank 301, and the arrangement of the stirring unit 3 and the power unit 5 can improve the stirring efficiency of the apparatus, thereby improving the strength of the detergent.
Specifically, in the embodiment of the present invention, after the stirring of the stirring tank 301 is completed, the central control unit 8 controls the liquid pump 607 to be powered on, the liquid pump 607 is powered on to draw the stain removing agent inside the stirring tank 301 into the filter tank 601, the stain removing agent entering the filter tank 601 starts to move downwards due to gravity, the stain removing agent continues to move downwards through the through hole inside the filter box 602, the particle impurities generated inside the stain removing agent are left inside the filter box 602 to be collected, the stain removing agent which continues to fall is discharged through the discharge hopper 606, when the impurities inside the filter box 602 are excessive, the central control unit 8 controls the electromagnetic block 605 to be powered off, the electromagnetic block 605 loses the magnetic force after being powered off and is separated from the filter tank 601, at this time, the filter box 602 can be drawn out to move inside the chute 603, the filter box 602 can be processed after being completely drawn out, and then the slide 604 can slide into the chute 603, the electromagnetic block 605 is controlled to be electrified after the filter box 602 is reset, the filter box 602 is fixed and limited after the electromagnetic block 605 is electrified, the strength of the stain remover can be improved by the arrangement of the filter unit 6, the stain remover is convenient to clean, and the problems that the conventional stain remover preparation device for the stain remover is poor in stirring effect and does not have a filtering function are solved.
Specifically, in the embodiment of the present invention, raw materials of the first mixture may be ethanol, polyethylene glycol, propylene glycol, and gasoline, raw materials of the second mixture may be alkyl glycoside, fatty alcohol-polyoxyethylene ether, and an anionic surfactant, raw materials of the third mixture may be lipase, cellulase, mannanase, amylase, and protease, and the anionic surfactant may be one or a mixture of several of sodium fatty alcohol-polyoxyethylene ether sulfate, sodium fatty alcohol-polyoxyethylene ether carboxylate, and sodium α -alkenyl sulfonate, and contents of each component may be in parts by weight in the embodiment, or may be experimentally adjusted according to a desired preparation effect.
In particular, the invention also provides a preparation method of the portable powerful stain remover, which comprises the following steps,
step S1, conveying the raw materials in the first mixture to a stirring box through a blanking unit, stirring the first mixture through a stirring rod in the stirring box, and stirring for a preset time to obtain a first mixed solution;
step S2, adding the raw materials in the second mixture into the first mixture, and stirring for a preset time to obtain a second mixed solution;
step S3, adding the raw materials in the third mixture into the second mixed solution, and stirring for a preset time to obtain a third mixed solution;
and step S4, adding deionized water into the third mixed solution, stirring for a preset time to obtain a fourth mixed solution, controlling the liquid pump to start by the central control unit, transmitting the fourth mixed solution to the filtering unit through a pipeline for filtering, and obtaining the powerful stain remover after filtering.
Specifically, in the embodiment of the present invention, in step S1, the central control unit determines the volatile degree values of the raw materials according to the boiling point and the saturated vapor pressure of each raw material of the mixture, calculates the volatile degree values of each raw material of the first mixture, and takes the average value as the volatile degree value of the first mixture, the central control unit determines the rotation speed of the stirring motor when the first mixture is stirred according to the volatile degree value of the first mixture, when the stirring motor is stirred according to the determined stirring speed, the central control unit receives the liquid level height value transmitted by the liquid level meter in real time, compares the real-time liquid level height with the preset liquid level height, adjusts the rotation speed of the stirring motor, determines the rotation time of the stirring motor and the stretching speed of the oil cylinder, after the central control unit determines the rotation speed of the stirring motor and the stretching speed of the oil cylinder according to the liquid level height of the stirring tank, and the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, secondarily adjusts the rotating speed of the stirring motor, adjusts the stretching speed of the oil cylinder, and controls the blanking valve to open to transmit each raw material in the second mixture to the stirring tank when the stirring motor moves to the rotating time at the secondarily adjusted rotating speed.
Specifically, in step S2, in the embodiment of the present invention, the central control unit calculates the volatility values of the raw materials in the second mixture, and takes the average value of the volatility values of the raw materials in the second mixture as the volatility value of the second mixture, the central control unit determines the rotation speed of the stirring motor after adding the second mixture according to the volatility value of the second mixture, the central control unit compares the real-time liquid level height with the preset liquid level height to adjust the rotation speed of the stirring motor, determines the rotation time of the stirring motor and the stretching speed of the oil cylinder, compares the real-time flow value with the preset flow value to adjust the rotation speed of the stirring motor for a second time, adjusts the stretching speed of the oil cylinder, and when the stirring motor moves to the rotation time at the rotation speed after the second adjustment, the central control unit controls the blanking valve to be opened to transmit each raw material in the third mixture to the stirring box.
Specifically, in the embodiment of the present invention, in the step S3, the central control unit calculates the volatility value of each raw material in the third mixture, and taking the average value as the volatility value of the third mixture, determining the rotating speed of the stirring motor added with the third mixture according to the volatility value of the third mixture by the central control unit, comparing the real-time liquid level height with the preset liquid level height by the central control unit, the rotating speed of the stirring motor is adjusted, the rotating time of the stirring motor and the stretching speed of the oil cylinder are determined, the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, and (3) carrying out secondary adjustment on the rotating speed of the stirring motor, adjusting the telescopic speed of the oil cylinder, and controlling the blanking valve to be opened by the central control unit to transmit the deionized water to the stirring box when the stirring motor moves to the rotating time at the rotating speed after the secondary adjustment.
Specifically, in the embodiment of the present invention, in the step S4, when the central control unit continues to stir the rotation speed and the rotation time of the stirring motor after adding the deionized water to the rotation time at the rotation speed of the stirring motor and the telescopic speed of the oil cylinder determined and adjusted in the step S3, the central control unit controls the liquid pump to start, and transmits the fourth mixed solution to the filtering unit through the pipeline for filtering, so as to obtain the powerful stain remover after filtering.
Specifically, in the embodiment of the present invention, the central control unit determines the volatility value of each raw material according to the boiling point and the saturated vapor pressure of each raw material in the mixture, and sets the volatility value of each raw material as c, the saturated vapor pressure of each raw material as the saturated vapor pressure at room temperature of 25 ℃,
c=B/B0+VP/VP0
wherein c represents the value of the degree of volatility of the raw material, B represents the boiling point of the raw material, B0 represents the preset boiling point, VP represents the saturated vapor pressure of the raw material at 25 ℃, and VP0 represents the preset saturated vapor pressure.
Specifically, in the embodiment of the present invention, B0 is a preset boiling point, which is set to 80 ℃ in the embodiment, VP0 represents a preset saturated vapor pressure, VP0 in the embodiment is 3200 pa, the preset value can be adjusted according to the actual implementation, and the present invention does not limit the specific values and the value requirements, which is subject to the specific implementation.
Specifically, in the embodiment of the present invention, the central control unit is preset with volatility values C1, C2, C3, …, and Cn, where C1 represents a first preset volatility value, C2 represents a second preset volatility value, C3 represents a third preset volatility value, and Cn represents an nth preset volatility value. The rotation speeds of the stirring motors V1, V2, V3, … and Vn are preset in the central control unit, wherein V1 represents a first preset rotation speed of the stirring motor, V2 represents a second preset rotation speed of the stirring motor, V3 represents a third preset rotation speed of the stirring motor, and Vn represents an nth preset rotation speed of the stirring motor. The rotation time t1, t2, t3, … and tn of the stirring motor are preset in the central control unit, wherein t1 represents a first preset rotation time of the stirring motor, t2 represents a second preset rotation time of the stirring motor, t3 represents a third preset rotation time of the stirring motor, and tn represents an nth preset rotation time of the stirring motor.
Specifically, in the embodiment of the present invention, V1 < V2 < V3 < Vn is set, V1 is set as the minimum rotation speed of the agitator motor, Vn is set as the maximum rotation speed of the agitator motor, V1 is set as the rotation speed of the agitator motor after adjustment when the rotation speed of the agitator motor is adjusted to be less than V1, and Vn is set as the rotation speed of the agitator motor after adjustment when the rotation speed of the agitator motor is adjusted to be greater than Vn. The setting of C1 > C2 > C3 > Cn indicates that the liquid is easy to volatilize when the volatility value is larger, and the stirring speed is smaller to reduce the volatilization degree so that the volatile raw materials can be fully fused with other raw materials. The stirring time is determined by setting t1 < t2 < t3 < tn so that the higher the real-time liquid level in the stirring tank, the longer the stirring time is required.
Specifically, in step S1, in the embodiment of the present invention, the central control unit sets the average value of the volatility values of the raw materials in the first mixture as the volatility value of the first mixture, sets the volatility value of the first mixture as C1S, determines the rotation speed and the rotation time of the stirring motor according to the volatility value of the first mixture,
if the C1S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C1S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C1S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C1S and Cn are not less than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
Specifically, in the embodiment of the present invention, the central control unit calculates the volatility values of the raw materials in the second mixture, and takes the average value of the volatility values of the raw materials in the second mixture as the volatility value of the second mixture, the central control unit determines the rotation speed of the stirring motor in step S2 according to the volatility value of the second mixture, sets the volatility value of the second mixture to be C2S,
if the C2S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C2S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C2S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
if C (n-1) < C2S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
Specifically, in the embodiment of the present invention, in step S3, when the rotation speed of the stirring motor to which the third mixture is added is determined, the central control unit determines the rotation speed and the rotation time of the stirring motor according to the volatility level of the third mixture, sets the volatility level value of the third mixture to be C2S, controls the blanking unit to transport each raw material in the third mixture, and takes the average value of the volatility level values of each raw material in the third mixture as the volatility level value of the third mixture,
if the C3S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C3S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C3S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C3S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
Specifically, in the embodiment of the present invention, liquid levels H1, H2, H3, …, and Hn in the stirring tank are preset in the central control unit, where H1 represents a first preset liquid level height, H2 represents a second preset liquid level height, H3 represents a third preset liquid level height, and Hn represents an nth preset liquid level height. Rotation speeds Vy1, Vy2, Vy3, … and Vyn of the oil cylinder stretching speed are preset in the central control unit, wherein Vy1 represents a first preset rotation speed of the oil cylinder stretching speed, Vy2 represents a second preset rotation speed of the oil cylinder stretching speed, Vy3 represents a third preset rotation speed of the oil cylinder stretching speed, and Vyn represents an nth preset rotation speed of the oil cylinder stretching speed. Flow values Q1, Q2, Q3, … and Qn of the flowmeter are preset in the central control unit, wherein Q1 represents a first preset flow value of the flowmeter, Q2 represents a second preset flow value of the flowmeter, Q3 represents a third preset flow value of the flowmeter, and Qn represents an nth preset flow value of the flowmeter.
Specifically, in the embodiment of the invention, H1 < H2 < H3 < Hn is set, and the higher the liquid level is, the longer the stirring time is, the higher the liquid level is, the rotation speed of the stirring motor is increased for better stirring effect, and the higher the liquid level is, the stirring rod is difficult to play a good stirring effect on the liquid above, so the oil cylinder is started, the expansion and contraction speed of the oil cylinder is determined according to the liquid level, and the higher the liquid level is, the higher the expansion and contraction speed of the oil cylinder is, so that better fusion is promoted, and the stirring effect of the stirring rod is improved.
Specifically, in the embodiment of the invention, Vy1 < Vy2 < Vy3 < Vyn is set, the higher the liquid level is, the faster the corresponding oil cylinder is, the higher the liquid level is, the stirring is performed on the liquid, the minimum value of the stretching speed of the oil cylinder is set to Vy1, the maximum value of the stretching speed of the oil cylinder is set to Vyn, when the stretching speed of the oil cylinder is adjusted, if the adjusted stretching speed of the oil cylinder is less than Vy1, Vy1 is used as the adjusted stretching speed of the oil cylinder, and if the adjusted stretching speed of the oil cylinder is greater than Vyn, Vyn is used as the adjusted stretching speed of the oil cylinder. Setting Q1 < Q2 < Q3 < Qn, when the real-time flow value of the recovery unit is more, the large volatilization amount is shown, the recovery speed is high, the rotation speed of the stirring motor is reduced, if the oil cylinder is started, the stretching speed of the oil cylinder is reduced, if the oil cylinder is not started, the stirring speed is reduced, the volatile raw materials can be more fully fused with other raw materials, and the stirring effect is improved. If the oil cylinder is not started, the liquid level is low, the oil cylinder does not need to be started, and if the recovered real-time flow value is large, the stirring speed needs to be reduced, so that if the oil cylinder is not started, and if the oil cylinder is started at the liquid level, the liquid level is high, the stretching speed of the oil cylinder is reduced, so that the stirring speed is reduced.
Specifically, in the embodiment of the present invention, when the stirring motor stirs at the determined speed Vi, i is set to 1, 2, 3, …, n is set to be a positive number, the central control unit receives the liquid level height transmitted by the liquid level gauge arranged on the stirring tank in real time, the central control unit adjusts the speed of the stirring motor according to the liquid level height, determines the rotation time and the stretching speed of the oil cylinder, sets the real-time liquid level height in the stirring tank to be Hs, sets s to 1, 2, 3, …, n is set to be a positive number,
if Hs is less than or equal to H1, the central control unit does not adjust the rotating speed of the stirring motor, and the rotating time of the stirring motor is determined to be t 1;
if Hs is more than H1 and is less than or equal to H2, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.05 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy1, and the rotation time of the stirring motor is determined to be t 2;
if Hs is more than H2 and is less than or equal to H3, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.1 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy2, and the rotation time of the stirring motor is determined to be t 3;
and if H (n-1) < Hs is less than or equal to Hn, the central control unit adjusts the rotating speed of the stirring motor to be Vt1, Vt1 is Vn, the central control unit starts the oil cylinder, sets the expansion speed of the oil cylinder to be Vy (n-1), and determines the rotating time of the stirring motor to be tn.
Specifically, in the embodiment of the present invention, when the rotation speed Vt1 of the adjusted stirring motor is greater than Vn, Vn is taken as the rotation speed of the adjusted stirring motor.
Specifically, in the embodiment of the present invention, the central control unit receives the flow rate value of the flow meter provided in the recovery unit in real time, adjusts the rotation speed of the agitator motor and the expansion and contraction speed of the cylinder according to the real-time flow rate value, sets the real-time flow rate value to be Qs, sets s to be 1, 2, 3, …, n, and n to be a positive number, sets the expansion and contraction speed of the cylinder to be Vyi, sets i to be 1, 2, 3, …, n, and n to be a positive number,
if Qs is less than or equal to Q1, the central control unit does not adjust the rotating speed of the stirring motor and the stretching speed of the oil cylinder;
if Q1 is more than Qs and less than or equal to Q2, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.95 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.95 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q2 is more than Qs and less than or equal to Q3, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.9 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.9 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q (n-1) < Qs is not more than Qn, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is V1, the stretching speed of the oil cylinder is adjusted to be Vyt1, Vyt1 is Vy1, and if the oil cylinder is not started, the oil cylinder is not started;
when the rotation speed Vt2 of the stirring motor after adjustment is less than V1, the rotation speed of the stirring motor after adjustment is V1, and when the expansion speed Vyt1 of the oil cylinder after adjustment is less than Vy1, the expansion speed of the oil cylinder after adjustment is Vy 1.
The invention also provides a portable powerful stain remover, comprising: the first mixture is an organic solvent, and the organic solvent is at least one of ethanol, polyethylene glycol, propylene glycol and gasoline; the second mixture is a surfactant, and the surfactant is at least one of alkyl glycoside, fatty alcohol-polyoxyethylene ether and anionic surfactant; the third mixture is an enzyme preparation, and the enzyme preparation is at least one of lipase, cellulase, mannanase, amylase and protease; deionized water.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention; various modifications and alterations to this invention will become apparent to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (10)
1. A preparation method of a portable powerful stain remover is characterized by comprising the following steps,
step S1, conveying the raw materials in the first mixture to a stirring box through a blanking unit, stirring the first mixture through a stirring rod in the stirring box, and stirring for a preset time to obtain a first mixed solution;
step S2, adding the raw materials in the second mixture into the first mixture, and stirring for a preset time to obtain a second mixed solution;
step S3, adding the raw materials in the third mixture into the second mixed solution, and stirring for a preset time to obtain a third mixed solution;
step S4, adding deionized water into the third mixed solution, stirring for a preset time to obtain a fourth mixed solution, controlling the liquid pump to start by the central control unit, transmitting the fourth mixed solution to the filtering unit through a pipeline for filtering, and obtaining the powerful stain remover after filtering;
in step S1, the central control unit determines the volatility values of the raw materials according to the boiling points and the saturated vapor pressures of the raw materials in the mixture, calculates the volatility values of the raw materials in the first mixture, takes the average value of the volatility values as the volatility value of the first mixture, determines the rotation speed of the stirring motor during stirring the first mixture according to the volatility value of the first mixture, receives the liquid level height value transmitted by the liquid level meter in real time when the stirring motor stirs at the determined stirring speed, compares the real-time liquid level height with the preset liquid level height, adjusts the rotation speed of the stirring motor, determines the rotation time of the stirring motor and the stretching speed of the oil cylinder, and after the central control unit adjusts the rotation speed of the stirring motor and determines the stretching speed of the oil cylinder according to the liquid level height of the stirring tank, the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, secondarily adjusts the rotating speed of the stirring motor, adjusts the stretching speed of the oil cylinder, and controls the blanking valve to open to transmit each raw material in the second mixture to the stirring tank when the stirring motor moves to the rotating time at the secondarily adjusted rotating speed;
in step S2, the central control unit calculates the volatility values of the raw materials in the second mixture, taking the average value of the volatility values of all the raw materials in the second mixture as the volatility value of the second mixture, the central control unit determines the rotating speed of the stirring motor added with the second mixture according to the volatility of the second mixture, compares the real-time liquid level height with the preset liquid level height, the rotation speed of the stirring motor is adjusted, the rotation time of the stirring motor and the stretching speed of the oil cylinder are determined, the central control unit compares the real-time flow value with a preset flow value, the rotating speed of the stirring motor is adjusted for the second time, the stretching speed of the oil cylinder is adjusted, when the stirring motor moves to the rotating time at the rotating speed after the second adjustment, the central control unit controls the blanking valve to be opened to transmit each raw material in the third mixture to the stirring box;
in step S3, the central control unit calculates the volatility value of each raw material in the third mixture, and taking the average value as the volatility value of the third mixture, determining the rotating speed of the stirring motor added with the third mixture according to the volatility value of the third mixture by the central control unit, comparing the real-time liquid level height with the preset liquid level height by the central control unit, the rotating speed of the stirring motor is adjusted, the rotating time of the stirring motor and the stretching speed of the oil cylinder are determined, the central control unit compares the flow value of the flowmeter received in real time with a preset flow value, the rotating speed of the stirring motor is adjusted for the second time, the stretching speed of the oil cylinder is adjusted, and when the stirring motor moves to the rotating time at the rotating speed after the second adjustment, the central control unit controls the opening of the blanking valve to transmit the deionized water to the stirring box;
in the step S4, when the rotation speed and the rotation time of the stirring motor after adding the deionized water are continuously stirred by the central control unit according to the rotation speed of the stirring motor and the stretching speed of the oil cylinder determined and adjusted in the step S3 until the rotation time, the central control unit controls the liquid pump to start, and transmits the fourth mixed solution to the filtering unit through the pipeline for filtering, so as to obtain the powerful stain remover after filtering.
2. The method for preparing a portable powerful detergent as claimed in claim 1, wherein the central control unit determines the value of the degree of volatility of each raw material according to the boiling point and the saturated vapor pressure of each raw material in the mixture, and sets the value of the degree of volatility of the raw material as c, the value of the saturated vapor pressure of the raw material as the saturated vapor pressure at room temperature of 25 ℃,
c=B/B0+VP/VP0
wherein c represents the value of the degree of volatility of the raw material, B represents the boiling point of the raw material, B0 represents the preset boiling point, VP represents the saturated vapor pressure of the raw material at 25 ℃, and VP0 represents the preset saturated vapor pressure.
3. The method for preparing the portable powerful stain remover as claimed in claim 2, wherein the central control unit is preset with volatility values of C1, C2, C3, … and Cn, wherein C1 represents a first preset volatility value, C2 represents a second preset volatility value, C3 represents a third preset volatility value, and Cn represents an nth preset volatility value;
rotation speeds V1, V2, V3, … and Vn of the stirring motor are preset in the central control unit, wherein V1 represents a first preset rotation speed of the stirring motor, V2 represents a second preset rotation speed of the stirring motor, V3 represents a third preset rotation speed of the stirring motor, and Vn represents an nth preset rotation speed of the stirring motor;
the rotation time t1, t2, t3, … and tn of the stirring motor are preset in the central control unit, wherein t1 represents a first preset rotation time of the stirring motor, t2 represents a second preset rotation time of the stirring motor, t3 represents a third preset rotation time of the stirring motor, and tn represents an nth preset rotation time of the stirring motor.
4. The method for preparing a portable powerful detergent as claimed in claim 3, characterized in that in the step S1, the central control unit averages the volatility values of the respective raw materials in the first mixture to the volatility value of the first mixture, sets the volatility value of the first mixture to C1S, determines the rotation speed and rotation time of the stirring motor based on the volatility value of the first mixture,
if the C1S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C1S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C1S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C1S and Cn are not less than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
5. The method for preparing a portable powerful detergent as claimed in claim 4, wherein the central control unit calculates the volatility values of the respective raw materials in the second mixture, and takes the average value of the volatility values of the respective raw materials in the second mixture as the volatility value of the second mixture, the central control unit determines the rotation speed of the stirring motor in the step S2 based on the volatility value of the second mixture, sets the volatility value of the second mixture to C2S,
if the C2S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C2S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C2S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
if C (n-1) < C2S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn;
in step S3, when the rotation speed of the stirring motor after the third mixture is added is determined, the central control unit determines the rotation speed and the rotation time of the stirring motor according to the volatility of the third mixture, sets the volatility of the third mixture to be C2S, controls the blanking unit to transport each raw material in the third mixture, and takes the average value of the volatility of each raw material in the third mixture as the volatility of the third mixture,
if the C3S is not more than C1, the central control unit determines that the rotating speed of the stirring motor is V1;
if the C1 is more than or equal to C3S and less than or equal to C2, the central control unit determines that the rotating speed of the stirring motor is V2;
if the C2 is more than or equal to C3S and less than or equal to C3, the central control unit determines that the rotating speed of the stirring motor is V3;
and if C (n-1) < C3S and Cn are not more than Cn, the central control unit determines that the rotating speed of the stirring motor is Vn.
6. The method for preparing a portable powerful detergent as claimed in claim 5, wherein liquid level heights H1, H2, H3, …, Hn inside the agitating tank are preset in the central control unit, wherein H1 represents a first preset liquid level height, H2 represents a second preset liquid level height, H3 represents a third preset liquid level height, Hn represents an nth preset liquid level height;
rotation speeds Vy1, Vy2, Vy3, … and Vyn of the oil cylinder stretching speed are preset in the central control unit, wherein Vy1 represents a first preset rotation speed of the oil cylinder stretching speed, Vy2 represents a second preset rotation speed of the oil cylinder stretching speed, Vy3 represents a third preset rotation speed of the oil cylinder stretching speed, and Vyn represents an nth preset rotation speed of the oil cylinder stretching speed;
flow values Q1, Q2, Q3, … and Qn of the flowmeter are preset in the central control unit, wherein Q1 represents a first preset flow value of the flowmeter, Q2 represents a second preset flow value of the flowmeter, Q3 represents a third preset flow value of the flowmeter, and Qn represents an nth preset flow value of the flowmeter.
7. The method for preparing a portable powerful detergent as claimed in claim 6, wherein when the agitator motor is operated at a certain speed Vi, i is set to 1, 2, 3, …, n is a positive number, the central control unit receives in real time the liquid level transmitted from the level gauge installed on the agitator tank, the central control unit adjusts the speed of the agitator motor according to the liquid level, determines the rotation time and the extension and contraction speed of the cylinder, sets the real-time liquid level in the agitator tank to Hs, s is set to 1, 2, 3, …, n is a positive number,
if Hs is less than or equal to H1, the central control unit does not adjust the rotating speed of the stirring motor, and the rotating time of the stirring motor is determined to be t 1;
if Hs is more than H1 and is less than or equal to H2, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.05 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy1, and the rotation time of the stirring motor is determined to be t 2;
if Hs is more than H2 and is less than or equal to H3, the rotation speed of the stirring motor is adjusted to be Vt1 by the central control unit, Vt1 is 1.1 multiplied by Vi, the central control unit starts the oil cylinder, the stretching speed of the oil cylinder is set to be Vy2, and the rotation time of the stirring motor is determined to be t 3;
if H (n-1) < Hs is less than or equal to Hn, the central control unit adjusts the rotating speed of the stirring motor to be Vt1, Vt1 is Vn, the central control unit starts the oil cylinder, sets the stretching speed of the oil cylinder to be Vy (n-1), and determines the rotating time of the stirring motor to be tn;
and when the rotating speed Vt1 of the stirring motor after adjustment is greater than Vn, taking Vn as the rotating speed of the stirring motor after adjustment.
8. The method for preparing a portable powerful detergent as claimed in claim 7, wherein the central control unit receives a flow value of a flow meter provided on the recovery unit in real time, the central control unit adjusts the rotation speed of the stirring motor and the expansion and contraction speed of the cylinder according to the real-time flow value, sets the real-time flow value to be Qs, sets s to be 1, 2, 3, …, n to be a positive number, sets the expansion and contraction speed of the cylinder to be Vyi, sets i to be 1, 2, 3, …, n to be a positive number,
if Qs is less than or equal to Q1, the central control unit does not adjust the rotating speed of the stirring motor and the stretching speed of the oil cylinder;
if Q1 is more than Qs and less than or equal to Q2, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.95 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.95 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q2 is more than Qs and less than or equal to Q3, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is 0.9 multiplied by Vt1, the expansion speed of the oil cylinder is Vyt1, Vyt1 is 0.9 multiplied by Vyi, and if the oil cylinder is not started, the oil cylinder is not started;
if Q (n-1) < Qs is not more than Qn, the central control unit adjusts the rotating speed of the stirring motor to be Vt2, Vt2 is V1, the stretching speed of the oil cylinder is adjusted to be Vyt1, Vyt1 is Vy1, and if the oil cylinder is not started, the oil cylinder is not started;
when the rotation speed Vt2 of the stirring motor after adjustment is less than V1, the rotation speed of the stirring motor after adjustment is V1, and when the expansion speed Vyt1 of the oil cylinder after adjustment is less than Vy1, the expansion speed of the oil cylinder after adjustment is Vy 1.
9. A portable powerful stain remover preparation apparatus as claimed in claims 1-8, comprising,
the discharging unit comprises a plurality of discharging pipes, discharging ports of the discharging pipes are connected with discharging pipelines, raw materials are transmitted to the stirring unit through the discharging pipelines, and discharging valves are arranged on the discharging pipes;
the stirring unit comprises a stirring box, a stirring rod is arranged on the stirring box, a feeding hole is formed above the stirring box, the blanking pipe is connected with the feeding hole and used for receiving the raw materials transmitted by the blanking unit, and a liquid level meter is arranged on the stirring box and used for detecting the liquid level height in the stirring box;
the power unit comprises a driving box, the driving box is fixedly connected to the top of the stirring box, an oil cylinder is fixedly mounted at the top of the driving box, an output shaft of the oil cylinder is connected to the inner wall of the driving box, a floating plate is connected to the output shaft of the oil cylinder in a threaded manner, a stirring motor is fixedly mounted on the floating plate, an output shaft of the stirring motor is fixedly connected with a stirring rod, the bottom end of the stirring rod penetrates through the driving box and extends into the stirring box, a through groove is formed in the top of the driving box, the through groove is located at the top of the stirring motor, a limiting rod is fixedly connected to the inner top wall of the driving box, and the bottom end of the limiting rod penetrates through the floating plate and is fixedly connected to the inner wall of the driving box;
the recovery unit comprises a recovery pipe arranged at the top of the stirring box, a flowmeter and a recovery valve are arranged on the recovery pipe, extending out of the stirring box, of the recovery pipe, the other end of the recovery pipe is connected with a feed inlet of the stirring box, and the recovery unit is used for recovering gas volatilized in the stirring box;
the filter unit comprises a filter box, the filter box is fixedly connected to the top of the bottom plate, the liquid pump is fixedly installed at the top of the filter box, and the right side of the filter box is fixedly connected with a discharge hopper communicated with the interior of the filter box;
and the central control unit is connected with the blanking valve, the liquid level meter, the oil cylinder, the stirring motor, the recovery valve, the flow meter and the liquid pump and is used for adjusting the working states of the blanking valve, the liquid level meter, the oil cylinder, the stirring motor, the recovery valve, the flow meter and the liquid pump.
10. A portable powerful stain remover, the preparation method of which is based on the preparation method of the portable powerful stain remover as described in claims 1-8, characterized by comprising,
the first mixture is an organic solvent, and the organic solvent is at least one of ethanol, polyethylene glycol, propylene glycol and gasoline;
the second mixture is a surfactant, and the surfactant is at least one of alkyl glycoside, fatty alcohol-polyoxyethylene ether and anionic surfactant;
the third mixture is an enzyme preparation, and the enzyme preparation is at least one of lipase, cellulase, mannanase, amylase and protease;
deionized water.
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