Disclosure of Invention
The invention aims to provide a full-automatic capillary tube cleaning machine, which solves the problems in the prior art. In order to achieve the above purpose, the present invention provides the following technical solutions:
a full-automatic capillary tube cleaning machine comprises a capillary tube mounting plate provided with a plurality of capillary tubes;
The capillary tube mounting plate is arranged in a rectangular stainless steel barrel, the lower end of the barrel is conical and is used for discharging liquid, other solution liquid discharge pipes used for discharging liquid and sulfuric acid solution liquid discharge pipes used for discharging sulfuric acid solution are arranged at the bottom of the barrel, a spray head is additionally arranged at one side of the capillary tube mounting plate, mist cleaning capillary tube appearance is sprayed out by the spray head by utilizing tap water pressure, a plurality of groups of recovery pipes used for recovering cleaning liquid are additionally arranged at the other side of the capillary tube mounting plate, a liquid adding device is arranged above the capillary tube and is connected with a first solution liquid adding pipe and a sulfuric acid solution liquid adding pipe through a soft sleeve, a diaphragm pump assembly is independently arranged on the first solution liquid adding pipe and the sulfuric acid solution liquid adding pipe, a plurality of groups of connecting pipes are independently provided with electric valve assemblies, and are respectively connected with different cleaning liquids;
the cleaning machine also comprises a fan belt heater for drying the cleaned capillary tube.
The outer surface of the capillary tube is cleaned by tap water extracted by the spray header, and the soft sleeve is matched with the lifting device to drive the connecting pipe to be connected with the capillary tube, so that the cleaning liquid is additionally arranged to clean the interior of the capillary tube, after the cleaning is finished, the capillary tube mounting plate is rotated by the power rotating structure, the cleaning liquid is overturned and poured onto the capillary tube, the cleaned cleaning liquid enters the recovery pipe, and further, the cleaning agent can be automatically recovered, the cleaning agent can be recycled, the cleaning period is short, and the efficiency is high.
In the full-automatic capillary tube cleaning machine, the power rotating structure is a speed-reducing stepping motor, and the speed-reducing stepping motor is connected to the capillary tube mounting plate through the matching power transmission of a worm wheel and a worm, so that the capillary tube mounting plate is driven to rotate.
The invention can automatically fill the sulfuric acid solution, can keep the sulfuric acid solution in the capillary tube for a long time, achieves the purpose of soaking, and adds acid under the control of the diaphragm pump B1 and the electric valve F1.
In the full-automatic capillary tube cleaning machine, an electric valve F14 is additionally arranged on the spray header.
In the full-automatic capillary tube cleaning machine, the cleaning liquid comprises alcohol, solvent, tap water and distilled water.
The cleaning liquid may contain acetone, methyl acetate and ethyl acetate in addition to alcohol, solvent, tap water and distilled water.
In the full-automatic capillary tube cleaning machine, the soft sleeve is a soft fluorine rubber sleeve, and the soft fluorine rubber sleeve is connected to the lifting device, wherein the lifting device is an air cylinder.
Meanwhile, the lifting device can be an air cylinder, and can also be matched with threads and nuts in a transmission manner or matched with a gear rack in a lifting manner.
Further, a switch and a stepping motor are additionally arranged at the upper end of the air cylinder.
In the full-automatic capillary tube cleaning machine, seven connecting pipes are arranged, and a diaphragm pump assembly and an electric valve assembly are independently arranged on the seven connecting pipes;
The diaphragm pump assembly is provided with a diaphragm pump B1, a diaphragm pump B2, a diaphragm pump B3, a diaphragm pump B4, a diaphragm pump B5, a diaphragm pump B6 and a diaphragm pump B7, and the diaphragm pump B1, the diaphragm pump B2, the diaphragm pump B3, the diaphragm pump B4, the diaphragm pump B5, the diaphragm pump B6 and the diaphragm pump B7 are respectively arranged on seven connecting pipes;
The electric valve assembly is provided with an electric valve F1, an electric valve F2, an electric valve F3, an electric valve F4, an electric valve F5, an electric valve F6 and an electric valve F7 which are respectively arranged on the seven connecting pipes.
The number of the connection pipes is not limited to seven, but may be eight, nine, ten, etc., as long as the connection pipes can be used for transporting the cleaning liquid.
In the full-automatic capillary tube cleaning machine, six recovery tubes are arranged, and an electric valve component is independently arranged on the six recovery tubes;
The electric valve component comprises an electric valve F8, an electric valve F9, an electric valve F10, an electric valve F11, an electric valve F12 and an electric valve F13. The number of the recovery pipes is not limited to six, and may be seven, eight, nine, or the like, as long as it can be used for recovering the cleaning liquid.
In the full-automatic capillary tube cleaning machine, the electric valve component, the diaphragm pump component, the power rotating structure, the lifting device and the fan belt heater are all connected to the controller for full-automatic control.
Compared with the prior art, the full-automatic capillary tube cleaning machine comprises a capillary tube mounting plate provided with a capillary tube; the capillary tube mounting plate is driven to rotate by a dynamic rotating structure and is used for overturning and pouring cleaning liquid to the capillary tube, the cleaning liquid comprises sulfuric acid solution, the capillary tube mounting plate is arranged in a rectangular stainless steel barrel, the lower end of the barrel is conical and is used for discharging liquid, other solution liquid discharge pipes used for discharging the sulfuric acid solution and sulfuric acid solution liquid discharge pipes used for discharging the sulfuric acid solution are arranged at the bottom of the barrel, a spray head is additionally arranged on one side of the capillary tube mounting plate and is used for spraying mist to clean the outer surface of the capillary tube by utilizing the pressure of tap water, a plurality of groups of recovery pipes used for recovering the cleaning liquid are additionally arranged on the other side of the capillary tube mounting plate, a liquid adding device is arranged above the capillary tube and is connected with a first solution liquid adding pipe and a sulfuric acid solution adding pipe through a soft sleeve, a plurality of groups of connecting pipes are independently arranged on the first solution liquid adding pipe and the sulfuric acid solution adding pipe, a plurality of groups of connecting pipes are independently provided with electric valve components, the plurality of groups of connecting pipes are respectively connected with different cleaning liquids, wherein the soft sleeve is additionally arranged on a lifting device in an inserting manner, the soft sleeve is additionally arranged on the lifting device, the rubber liquid adding device is arranged on the lifting device and is matched with the capillary tube, and the cleaning liquid is further arranged on the capillary tube and is matched with a capillary tube to be used for cleaning liquid after the cleaning liquid is completely filled in a cleaning machine, and the cleaning machine is further used for cleaning the cleaning liquid is arranged, and the cleaning machine is further used for cleaning the outer surface after the capillary tube is filled, and has a cleaning machine is filled, the soft sleeve is matched with the lifting device to drive the connecting pipe to be connected with the capillary tube so as to realize that the cleaning liquid is additionally arranged in the capillary tube to clean the capillary tube, after the cleaning, the capillary tube is rotated by the power rotating structure to overturn and pour the cleaning liquid, and the cleaned cleaning liquid enters the recovery pipe, so that the cleaning agent can be automatically recovered, the cleaning agent can be recycled, the cleaning period is short, and the efficiency is high.
Detailed Description
The technical scheme of the invention is further described in detail below with reference to the specific embodiments. In the description of the present invention, unless otherwise indicated, the meaning of "a plurality" is two or more.
Aiming at the problems that the capillary is used for measuring viscosity, and many impurities exist in the capillary after the capillary is used up and needs to be cleaned, but the capillary cannot be well soaked and cleaned by adding sulfuric acid solution automatically in the cleaning process, the cleaning agent is recycled, the cleaning time is long and the efficiency is low, the invention aims to provide a full-automatic capillary cleaning machine so as to solve the problems in the background technology. In order to achieve the above purpose, the present invention provides the following technical solutions:
in the embodiment of the invention, as shown in fig. 1 and 2, a full-automatic capillary cleaner comprises a capillary mounting plate 7 provided with a plurality of capillaries 10, wherein the capillary mounting plate 7 is driven to rotate by a dynamic rotating structure and is used for overturning and dumping cleaning liquid to the capillaries 10, the cleaning liquid comprises sulfuric acid solution, the capillary mounting plate 7 is arranged in a rectangular and stainless steel barrel 12, the lower end of the barrel 12 is conical and is used for discharging liquid, other solution liquid discharge pipes used for discharging liquid and sulfuric acid solution liquid discharge pipes used for discharging sulfuric acid solution are arranged at the bottom of the barrel 12, a spray head 8 is additionally arranged at one side of the capillary mounting plate 7 and is used for spraying out the surface of the capillaries 10 by utilizing tap water pressure, a plurality of groups of recovery pipes used for recovering the cleaning liquid are additionally arranged at the other side of the capillary mounting plate 7, a liquid adding device is arranged above the capillaries 10, a liquid adding device is arranged through a first solution pipe 13 and a sulfuric acid solution pipe 14 which are connected by a soft sleeve, a diaphragm pump component 1 is independently arranged on the first solution adding pipe 13, a plurality of groups of liquid adding pump components 1 are arranged at the bottom of the barrel 12, a plurality of the liquid adding device are respectively arranged on the soft sleeve, the liquid adding device is arranged in a plurality of groups of the soft sleeve connecting pipes, the liquid adding device are respectively matched with the liquid adding device, and the cleaning liquid is arranged in the soft sleeve, and the cleaning liquid is matched with the soft liquid lifting device is arranged in the lifting device, and is arranged on the soft liquid lifting device, and is matched with the cleaning liquid lifting device, and is arranged on the soft liquid lifting device, and is matched with the cleaning device, and is arranged on the cleaning pipe, and is in the cleaning device, and is connected with the cleaning device by a lifting device;
The washer also includes a fan belt heater 11 for drying the washed capillary tube 10.
In the embodiment of the invention, the outer surface of the capillary tube 10 is cleaned by tap water extracted by the spray header 8, and the soft sleeve is matched with the lifting device to drive the connecting tube to be connected with the capillary tube 10, so that the cleaning liquid is additionally arranged in the capillary tube 10, after the cleaning, the capillary tube 10 is rotated by the dynamic rotating structure and is overturned to pour the cleaning liquid, and the cleaned cleaning liquid enters the recovery tube, thereby automatically recovering the cleaning agent, recycling the cleaning agent, and having short cleaning period and high efficiency.
In the embodiment of the invention, as shown in fig. 1 and 2, the power rotating structure is a deceleration stepping motor 9, and the deceleration stepping motor 9 is connected to the capillary mounting plate 7 through the matching power transmission of a worm wheel and a worm, so as to drive the capillary mounting plate 7 to rotate. The electric valve F14 is additionally arranged on the spray header 8. The cleaning liquid comprises alcohol, solvent, tap water and distilled water. The cleaning liquid may contain acetone, methyl acetate and ethyl acetate in addition to alcohol, solvent, tap water and distilled water.
In the embodiment of the invention, as shown in fig. 1 and 2, the soft sleeve is a soft fluorine rubber sleeve 6, and the soft fluorine rubber sleeve 6 is connected to a lifting device, wherein the lifting device is a cylinder 5, and specifically, a switch 3 and a stepping motor 4 are additionally arranged at the upper end of the cylinder 5.
Meanwhile, the lifting device can be a cylinder 5, and can also be matched with threads and nuts in a transmission manner or matched with a gear rack in a lifting manner.
In the embodiment of the invention, as shown in fig. 1 and 2, seven connecting pipes are provided, a diaphragm pump assembly 1 is independently arranged on the seven connecting pipes, and an electric valve assembly 2 is independently arranged on the seven connecting pipes, wherein the diaphragm pump assembly 1 is provided with a diaphragm pump B1, a diaphragm pump B2, a diaphragm pump B3, a diaphragm pump B4, a diaphragm pump B5, a diaphragm pump B6 and a diaphragm pump B7, the diaphragm pump B1, the diaphragm pump B2, the diaphragm pump B3, the diaphragm pump B4, the diaphragm pump B5, the diaphragm pump B6 and the diaphragm pump B7 are respectively arranged on the seven connecting pipes, and an electric valve F1, an electric valve F2, an electric valve F3, an electric valve F4, an electric valve F5, an electric valve F6 and an electric valve F7 which are arranged on the electric valve assembly 2 are respectively arranged on the seven connecting pipes.
The number of the connection pipes is not limited to seven, but may be eight, nine, ten, etc., as long as the connection pipes can be used for transporting the cleaning liquid.
In the embodiment of the invention, as shown in fig. 1 and 2, six recovery pipes are provided, and the six recovery pipes are independently provided with an electric valve assembly 2, wherein the electric valve assembly 2 comprises an electric valve F8, an electric valve F9, an electric valve F10, an electric valve F11, an electric valve F12 and an electric valve F13.
The number of the recovery pipes is not limited to six, and may be seven, eight, nine, or the like, as long as it can be used for recovering the cleaning liquid.
In the embodiment of the present invention, as shown in fig. 1 and 2, the electric valve assembly 2, the diaphragm pump assembly 1, the power rotating structure, the lifting device and the fan belt heater 11 are all connected to a controller for full-automatic control.
The working principle of the invention is as follows:
firstly, sulfuric acid solution enters a capillary tube 10 through a diaphragm pump B1 and is soaked for 2 hours, then, a deceleration stepping motor 9 rotates to pour out the sulfuric acid solution in the capillary tube 10, and the sulfuric acid solution flows into waste sulfuric acid solution through an electric valve F8;
Secondly, alcohol enters a capillary tube 10 through a diaphragm pump B2 to be soaked, then a deceleration stepping motor 9 rotates to pour out the alcohol in the capillary tube 10, and the alcohol is recovered through an electric valve F9;
Thirdly, the secondary cleaning liquid-alcohol enters the capillary tube 10 through the diaphragm pump B3 to be soaked, then the deceleration stepping motor 9 rotates to pour out the alcohol in the capillary tube 10, and the alcohol is recovered through the electric valve F10;
fourthly, the solvent enters a capillary tube 10 through a diaphragm pump B4 to be soaked, then a deceleration stepping motor 9 rotates to pour out the solvent in the capillary tube 10, and the solvent is recovered through an electric valve F11;
Fifthly, the secondary cleaning liquid-solvent enters a capillary tube 10 through a diaphragm pump B5 to be soaked, then a deceleration stepping motor 9 rotates to pour out the solvent in the capillary tube 10, and the solvent is recovered through an electric valve F13;
Fifthly, tap water enters the capillary 10 through the diaphragm pump B6 to flush the inside, and after flushing is finished, the deceleration stepping motor 9 rotates to pour out the tap water in the capillary 10, and the tap water is recovered through the electric valve F13;
And step six, flushing the capillary 10 by distilled water through the diaphragm pump B7, pouring out the distilled water after flushing, and flowing the distilled water into the electric valve F13, wherein the capillary 10 stops in a poured state, flushing the external capillary 10 by tap water led out by the electric valve F14, and finally drying the water quality on the capillary 10 by the fan belt heater 11.
The invention relates to a full-automatic capillary tube cleaning machine which comprises a capillary tube mounting plate 7 provided with a capillary tube 10, wherein the capillary tube mounting plate 7 is driven to rotate by a dynamic rotating structure and is used for overturning and dumping cleaning liquid on the capillary tube 10, the cleaning liquid comprises sulfuric acid solution, a spray header 8 is additionally arranged on one side of the capillary tube mounting plate 7 and is used for cleaning by tap water extracted by the spray header 8, a plurality of groups of recovery pipes used for recovering the cleaning liquid are additionally arranged on the other side of the capillary tube mounting plate 7, a plurality of groups of connecting pipes which are independently arranged and are connected through soft sleeves are arranged above the capillary tube 10, a diaphragm pump assembly 1 is independently arranged on the plurality of groups of connecting pipes, an electric valve assembly 2 is independently arranged on the plurality of groups of connecting pipes, different cleaning liquids are respectively connected to the plurality of groups of connecting pipes, the soft sleeves are additionally arranged on a lifting device and are matched with the lifting device to drive the connecting pipes to be connected with the capillary tube 10 to be additionally arranged, the cleaning machine further comprises a fan belt heater 11 used for drying the cleaned capillary tube 10, the tap water extracted by the spray header 8 is matched with the outer surface of the capillary tube 10, the soft sleeve is matched with the lifting device to drive the connecting pipe 10 to be additionally arranged inside the capillary tube 10, after the capillary tube 10 is completely cleaned, the capillary tube is rotatably and the capillary tube is completely rotated by the dynamic rotating structure is arranged, the capillary tube 7 is arranged, the capillary tube is repeatedly arranged, the cleaning liquid can be automatically washed by the cycle after the capillary tube is automatically is arranged, and the capillary tube can be repeatedly washed, and the cleaning efficiency can be washed by the cleaning cycle can be recycled.
In the description of the present invention, unless explicitly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art in a specific case.
While the preferred embodiments of the present invention have been described in detail, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.