Get rid of device of donkey-hide gelatin impurity
Technical Field
The utility model relates to the technical field of donkey-hide gelatin impurity removal, in particular to a device for removing donkey-hide gelatin impurities.
Background
Donkey-hide gelatin, name of traditional Chinese medicine. Is prepared from skin of donkey of Equidae, by rinsing, removing hair, and decocting to obtain gelatin block. Has effects in replenishing blood, nourishing yin, moistening lung, and stopping bleeding. Mainly treats blood deficiency syndromes, bleeding syndromes, lung yin deficiency and dry cough, fever and yin impairment, vexation and insomnia, yin deficiency and wind-movement, and limb convulsion. The donkey-hide gelatin is produced through soaking donkey hide in water to soften, eliminating donkey hair, chopping into small pieces, soaking in boiling water to whiten, taking out the donkey hide, and decocting in gelatin-decocting pot. Decocting, pouring into a container, taking out after the gelatin is solidified, cutting into small pieces, and air drying. In the in-process of decocting the gum to the donkey hide, because the miscellaneous hair on donkey hide surface still does not get rid of totally, can appear in the donkey hide of decocting out, consequently need carry out preliminary filtration to the donkey hide and get rid of miscellaneous hair and massive impurity in the donkey hide, at this filtration step, traditional producer filters it through the screen cloth, but traditional artifical screen cloth filterable efficiency is lower, can't satisfy the efficiency of batch production.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a device for removing impurities in donkey-hide gelatin, which achieves the purposes of filtering the impurities in the donkey-hide gelatin and removing the impurities to prolong the service time of a screen.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a get rid of device of donkey-hide gelatin impurity, includes intermediate layer case, the bottom fixed mounting of intermediate layer case has the supporting leg, the top fixed mounting of intermediate layer case has the motor, one side intercommunication of intermediate layer case is provided with the inlet pipe, one side intercommunication of intermediate layer case is provided with the steam pipe, the intermediate layer of steam pipe intercommunication intermediate layer case, the bottom of intermediate layer case is provided with the discharging pipe, the fixed surface of discharging pipe installs the valve, the inside of intermediate layer case is provided with the mechanism that sieves, the output shaft of motor passes through shaft coupling fixedly connected with (mixing) shaft, the fixed surface of (mixing) shaft is connected with the stirring piece.
Preferably, the sieving mechanism comprises a sleeve, a connecting rod, a blocking plate, a pressing block, an annular supporting block, a spring, an annular wave block, a screen, a rubber pipe, a through hole, cotton cloth and an impurity discharge pipe, the sleeve is fixedly arranged on the surface of the stirring shaft, the surface of the sleeve is fixedly connected with the connecting rod, one end of the connecting rod is fixedly connected with the blocking plate, the bottom of the blocking plate is fixedly connected with the pressing block, the surface of the blocking plate is slidably connected with the inner wall of the sandwich box, the annular supporting block is fixedly arranged on the surface of the inner wall of the sandwich box, the spring is fixedly arranged at the top of the annular supporting block, the top of the spring is fixedly connected with the bottom of the annular wave block, the top of the annular wave block is in wave shape, the pressing block can conveniently press the annular wave block to reciprocate up and down, the side surface of the annular wave block is fixedly connected with the screen, the rubber tube is communicated with the bottom of the screen, the through holes are formed in the surface of the rubber tube, the cotton cloth is sleeved on the surface of the rubber tube, one end of the rubber tube is fixedly connected with the impurity discharge tube, and the rubber tube cannot obstruct the up-and-down movement of the screen.
Preferably, the side area of closure plate is greater than the area of inlet pipe, and the quantity of closure plate is four, and four closure plates can guarantee that the donkey-hide gelatin through the discharging pipe maintains certain quantity, guarantees that the donkey-hide gelatin on screen surface in time is accomplished by filtering, can not appear that donkey-hide gelatin quantity is too much to lead to the jam.
Preferably, the bottom of briquetting and the top sliding connection of annular wave piece, the quantity of briquetting is four, and four briquetting can be so that the oppression to annular wave piece keeps steady, can not make annular wave piece appear squinting because of the atress.
Preferably, the (mixing) shaft runs through the screen cloth, and rotates between (mixing) shaft and the screen cloth and be connected, the screen cloth is one hundred twenty meshes for the screen cloth can filter out impurity and permeable donkey-hide gelatin.
Preferably, the diameter of the section of the rubber tube is more than ten millimeters, so that impurities in the donkey-hide gelatin can be discharged through the rubber tube, and the blockage phenomenon cannot occur.
The utility model provides a device for removing impurities of donkey-hide gelatin. The method has the following beneficial effects:
(1) according to the donkey-hide gelatin filtering machine, the sieving mechanism is arranged, the feed pipe is intermittently plugged through the plugging plate, so that donkey-hide gelatin entering the surface of the screen mesh is always kept in a relatively proper amount, meanwhile, the stirring shaft drives the pressing block to rotate, and the pressing block presses the annular wave block, so that the annular wave block compresses the spring and then moves up and down in a reciprocating manner to increase the filtering rate of the donkey-hide gelatin.
(2) According to the donkey-hide gelatin impurity removing device, the rubber tube is arranged at the bottom of the screen, the through holes are formed in the surface of the rubber tube, the cotton cloth is wrapped on the surface of the rubber tube, donkey-hide gelatin impurities can be removed through the rubber tube at regular time, and donkey-hide gelatin contained in the rubber tube can be filtered out through the through holes and the cotton cloth, so that the donkey-hide gelatin is prevented from being wasted when the impurities are discharged.
Drawings
FIG. 1 is a front cross-sectional view of the present invention;
FIG. 2 is a schematic structural view of a sleeve, a connecting rod and a closure plate of the present invention;
FIG. 3 is a schematic structural view of a rubber tube according to the present invention;
FIG. 4 is a side view of a compact of the present invention.
In the figure: 1. an interlayer box; 2. supporting legs; 3. a motor; 4. a feed pipe; 5. a steam pipe; 6. a discharge pipe; 7. a valve; 8. a screening mechanism; 9. a stirring shaft; 10. a stirring sheet; 801. a sleeve; 802. a connecting rod; 803. a blocking plate; 804. briquetting; 805. an annular support block; 806. a spring; 807. an annular wave block; 808. screening a screen; 809. a rubber tube; 810. through holes; 811. cotton cloth; 812. and an impurity discharge pipe.
Detailed Description
As shown in fig. 1 to 4, the present invention provides a technical solution: a device for removing impurities of donkey-hide gelatin comprises an interlayer box 1, wherein supporting legs 2 are fixedly installed at the bottom of the interlayer box 1, a motor 3 is fixedly installed at the top of the interlayer box 1, a feeding pipe 4 is communicated with one side of the interlayer box 1, a steam pipe 5 is communicated with one side of the interlayer box 1, the steam pipe 5 is communicated with an interlayer of the interlayer box 1, a discharging pipe 6 is arranged at the bottom of the interlayer box 1, a valve 7 is fixedly installed on the surface of the discharging pipe 6, a sieving mechanism 8 is arranged inside the interlayer box 1, the sieving mechanism 8 comprises a sleeve 801, a connecting rod 802, a blocking plate 803, a pressing block 804, an annular supporting block 805, a spring 806, an annular wave block 807, a screen 808, a rubber pipe 809, a through hole 810, cotton cloth 811 and an impurity discharging pipe 812, the sleeve 801 is fixedly installed on the surface of a stirring shaft 9, the surface of the sleeve 801 is fixedly connected with the connecting rod 802, and one end of the connecting rod 802 is fixedly connected with the blocking plate 803, the bottom of the blocking plate 803 is fixedly connected with the pressing block 804, the bottom of the pressing block 804 is slidably connected with the top of the annular wave block 807, the number of the pressing blocks 804 is four, the four pressing blocks 804 can make the pressing on the annular wave block 807 stable, the annular wave block 807 cannot deviate due to stress, the surface of the blocking plate 803 is slidably connected with the inner wall of the sandwich box 1, the side area of the blocking plate 803 is larger than the area of the feeding pipe 4, the number of the blocking plates 803 is four, the four blocking plates 803 can ensure that the donkey-hide gelatin passing through the discharging pipe 4 is maintained at a certain number, the donkey-hide gelatin on the surface of the screen 808 is timely filtered, the blockage caused by excessive donkey-hide gelatin cannot occur, the annular supporting block 805 is fixedly installed on the inner wall surface of the sandwich box 1, the spring 806 is fixedly installed on the top of the annular supporting block 805, and the top end of the spring 806 is fixedly connected with the bottom of the annular wave block 807, the top of the annular wave block 807 is arranged in a wave shape, so that the pressing block 804 can press the annular wave block 807 to enable the annular wave block 807 to reciprocate up and down, the side surface of the annular wave block 807 is fixedly connected with the screen 808, the stirring shaft 9 penetrates through the screen 808, the stirring shaft 9 is rotatably connected with the screen 808, the screen 808 is one hundred twenty meshes, so that the screen 808 can filter out impurities and can permeate donkey-hide gelatin, the rubber pipe 809 is communicated and arranged at the bottom of the screen 808, the section diameter of the rubber pipe 809 is more than ten millimeters, the impurities in the donkey-hide gelatin can be discharged through the rubber pipe 809 without blockage, the through hole 810 is arranged on the surface of the rubber pipe 809, the cotton cloth 811 is sleeved on the surface of the rubber pipe 809, the utility model arranges the rubber pipe 809 at the bottom of the screen 808, simultaneously arranges the through hole 810 on the surface of the rubber pipe 808 and wraps the 811 cotton cloth on the surface of the rubber pipe 809, so that the impurities in the donkey-hide gelatin can be regularly removed through the rubber pipe 809, meanwhile, donkey-hide gelatin contained in the rubber tube 809 can be filtered out through the through hole 810 and the cotton cloth 811, donkey-hide gelatin waste when impurities are discharged is prevented, one end of the rubber tube 809 is fixedly connected with the impurity discharge pipe 812, the rubber tube 809 does not obstruct the up-and-down movement of the screen 808, the feed pipe 4 is intermittently plugged through the plugging plate 803 by the arrangement of the sieving mechanism 8, so that the donkey-hide gelatin entering the surface of the screen 808 is always kept in a relatively proper amount, meanwhile, the stirring shaft 9 drives the pressing block 804 to rotate, the pressing block 804 presses the annular wave block 807, the annular wave block 807 compresses the spring 806, then the annular wave block 807 reciprocates up and down to increase the filtering rate of the donkey-hide gelatin, the output shaft of the motor 3 is fixedly connected with the stirring shaft 9 through the coupler, and the surface of the stirring shaft 9 is fixedly connected with the stirring piece 10.
When the donkey-hide gelatin drying device is used, the whole device is started, donkey-hide gelatin is discharged from a feed pipe 4, steam enters an interlayer of an interlayer box 1 through a steam pipe 5 to heat the donkey-hide gelatin, an output shaft of a motor 3 drives a blocking plate 803 to rotate through a sleeve 801 and a connecting rod 802, the rotating blocking plate 803 intermittently blocks the feed pipe 4, then the donkey-hide gelatin is guided into the top of a screen 808 through the feed pipe, the rotating blocking plate 803 drives a pressing block 804 to rotate, the pressing block 804 is matched with an annular wave block 807, the annular wave block 807 compresses a spring 806 to vibrate, the annular wave block 807 which vibrates up and down drives the screen 808 to vibrate, the donkey-hide gelatin on the upper surface of the screen 808 is accelerated to pass through the screen 808, impurities on the upper surface of the screen 808 are discharged into a rubber pipe 809, then the donkey-hide gelatin contained in the impurities is filtered by a through holes and cotton cloth, and only the impurities of the donkey-hide gelatin are left in the rubber pipe 809, then donkey-hide gelatin impurity is discharged by opening the impurity discharge pipe 812 at regular time, and then the filtered donkey-hide gelatin is discharged through the discharge pipe 6.
In conclusion, the donkey-hide gelatin filtering device can initially boil the donkey-hide gelatin, filter the donkey-hide gelatin to remove impurities in the donkey-hide gelatin, remove the impurities at regular time to prolong the service time of the screen, and is simple in structure and easy to manufacture.