CN113142561A - A boil out glue son spare for donkey-hide gelatin system of decocting - Google Patents

A boil out glue son spare for donkey-hide gelatin system of decocting Download PDF

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Publication number
CN113142561A
CN113142561A CN202110369505.5A CN202110369505A CN113142561A CN 113142561 A CN113142561 A CN 113142561A CN 202110369505 A CN202110369505 A CN 202110369505A CN 113142561 A CN113142561 A CN 113142561A
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CN
China
Prior art keywords
stirring
donkey
liquid outlet
decocting
lifting
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Withdrawn
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CN202110369505.5A
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Chinese (zh)
Inventor
王淑晴
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Hefei Jiuming Information Technology Co ltd
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Hefei Jiuming Information Technology Co ltd
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Priority to CN202110369505.5A priority Critical patent/CN113142561A/en
Publication of CN113142561A publication Critical patent/CN113142561A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L33/00Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L5/00Preparation or treatment of foods or foodstuffs, in general; Food or foodstuffs obtained thereby; Materials therefor
    • A23L5/10General methods of cooking foods, e.g. by roasting or frying
    • A23L5/13General methods of cooking foods, e.g. by roasting or frying using water or steam
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P30/00Shaping or working of foodstuffs characterised by the process or apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/05Stirrers
    • B01F27/11Stirrers characterised by the configuration of the stirrers
    • B01F27/116Stirrers shaped as cylinders, balls or rollers
    • B01F27/1161Stirrers shaped as cylinders, balls or rollers having holes in the surface
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/80Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis
    • B01F27/94Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis with rotary cylinders or cones
    • B01F27/941Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis with rotary cylinders or cones being hollow, perforated or having special stirring elements thereon
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2101/00Mixing characterised by the nature of the mixed materials or by the application field
    • B01F2101/06Mixing of food ingredients

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Mycology (AREA)
  • Accessories For Mixers (AREA)

Abstract

The invention provides a gelatin decocting sub-piece for decocting donkey-hide gelatin, which comprises a mounting frame (100), wherein the mounting frame (100) is horizontally arranged on the ground, a decocting furnace (230) for heating and decocting donkey-hide gelatin is vertically arranged on the mounting frame (100), a stirring device (300) is also arranged on the mounting frame (100), and the stirring device (300) is used for stirring donkey-hide gelatin raw materials in the gelatin decocting process of the decocting furnace (230) and discharging the donkey-hide gelatin liquid in the decocting furnace (230) after the gelatin decocting process is finished; the automatic rotary shaft stirring type donkey-hide gelatin decocting device has the advantages that the automatic rotary shaft stirring type donkey-hide gelatin decocting device is adopted, manual participation can be reduced, the running efficiency of the device is improved, and the uniformity of the donkey-hide gelatin liquid is improved.

Description

A boil out glue son spare for donkey-hide gelatin system of decocting
Technical Field
The invention relates to the field of donkey-hide gelatin decoction, in particular to a gelatin decoction piece for donkey-hide gelatin decoction.
Background
Donkey-hide gelatin, starting from Qinhan, has been used for more than 2000 years, is a traditional superior tonic and blood-enriching product, and is prepared by taking donkey skin as a main raw material and adding water of donkey wells (the gelatin without decocting the donkey skin gelatin and the donkey gelatin). The original colla Corii Asini is produced in Shandong province, and good one is amber, transparent and odorless. Also known as donkey-hide gelatin. Soaking donkey skin in clear water for about 2-3 days to soften, taking out, scraping donkey hair, cutting into small pieces, cleaning with clear water, boiling in boiling water for about one quarter, taking out when the skin is rolled up, putting into another pot with cover, adding water until the donkey skin is immersed, decocting for about three days and three nights, taking out when the juice is thick, adding water, decocting again for 5-6 times until most of colloid is dissolved out. Filtering the obtained juice with a fine copper wire sieve, adding a small amount of Alumen powder into the filtrate, stirring, standing for several hours, collecting the upper layer solution, and heating for concentration after impurities are precipitated. Adding deodorant and correctant (1,000 jin donkey skin with 7.5 jin yellow wine and 15 jin granulated sugar) 2 hr before gelatin discharge, and adding soybean oil (1000 jin donkey skin with 15 jin) half an hour before gelatin discharge to reduce gelatin viscosity. And the glue can be discharged when the glue is picked up by a shovel and stuck into a mass and does not fall into a pot. Putting the lead block into a wood tray lined with a lead sheath, coating soybean oil on the lead sheath in advance to avoid adhesion, taking out after the lead sheath is solidified by gelation, cutting the lead block into small blocks, wherein the length of each block is 10 cm, the width of each block is 4-4.5 cm, and the thickness of each block is 1.6 cm or 0.8 cm. Drying on a net rack, turning once every 2-3 days to avoid unevenness of two surfaces, neatly arranging into a wooden box 7-8 days later, sealing and flattening the wooden box, taking out and spreading for drying after the outer skin is softened again, and then pressing again and drying again (or drying by a forced air drying method). Before packaging, the outer membrane is wiped off by a wet cloth, thus obtaining the finished product.
Donkey-hide gelatin is widely recognized as a traditional Chinese tonic, the health care effect of donkey-hide gelatin is more and more concerned, and the purchasing population of donkey-hide gelatin is continuously growing with the appearance of aging of the Chinese society. As a middle-high-end health-care product, donkey-hide gelatin which is commonly bought in block form cannot be directly taken, the most common method for eating the donkey-hide gelatin is to prepare the donkey-hide gelatin cake, which needs to be processed by consumers, but more consumers still select generation processing in the bought places because certain technical skills are needed for boiling the donkey-hide gelatin. Donkey-hide gelatin manufacturers of every brand basically can provide donkey-hide gelatin system service at the point of sale, traditional point of sale system is stewed the donkey-hide gelatin and is all artifical manual system of decocting use, not only slow speed for the quality of donkey-hide gelatin can not be guaranteed, donkey-hide gelatin system of decocting in-process need carry out abundant mixed stirring to the donkey-hide gelatin raw materials, donkey-hide gelatin system of decocting in-process simultaneously also can bring heavy burden for people, consuming time and wasting power, current system of decocting has consumed a large amount of energy in-process, can not realize the energy-concerving and environment-protective of system of decocting in-process, consequently need design out the system of decocting that is used for the donkey-hide gelatin system to boil out the son spare.
Disclosure of Invention
In order to solve the defects of the prior art, the invention aims to provide a boiled donkey-hide gelatin sub-piece for boiling donkey-hide gelatin, improve the boiling production efficiency of donkey-hide gelatin, ensure the uniformity of boiled donkey-hide gelatin liquid and improve the production quality of the donkey-hide gelatin liquid.
In order to achieve the technical purpose, the technical scheme adopted by the invention is as follows.
The gelatin decocting sub-piece for decocting the donkey-hide gelatin comprises a mounting frame (100), wherein the mounting frame (100) is horizontally mounted on the ground, and a decocting furnace (230) for heating and decocting the donkey-hide gelatin is vertically mounted on the mounting frame (100);
the mounting rack (100) is also provided with a stirring device (300), and the stirring device (300) is used for stirring the donkey-hide gelatin raw material in the gelatin decocting process of the decocting furnace (230) and discharging the donkey-hide gelatin liquid in the decocting furnace (230) after the gelatin decocting process is finished;
the stirring device (300) comprises a bracket component (310), a rotating shaft body (320), a stirring mechanism and a liquid outlet mechanism;
the stirring mechanism comprises a rotating member (330), a lifting member (340), a stirring member (350) and a stirring lifting member (360), the stirring member (350) and the stirring lifting member (360) are arranged in the rotating shaft body (320), the rotating member (330) is used for driving the rotating shaft body (320), the stirring member (350) and the stirring lifting member (360) to rotate, the lifting member (340) is used for driving the rotating shaft body (320) to axially displace along the self-body, the stirring lifting member (360) is used for driving the stirring member (350) to penetrate through the top end of the rotating shaft body (320), and the stirring member (350) is used for stirring donkey-hide gelatin raw materials and assisting the liquid outlet mechanism to suck decocted donkey-out donkey-gelatin liquid;
the liquid outlet mechanism comprises a liquid outlet control member (370), and the liquid outlet control member (370) is used for sucking and collecting the decocted donkey-hide gelatin liquid in the decocting furnace (230) through the stirring member (350).
The technical scheme is further improved and optimized.
The support component (310) comprises support rods (311), support plates (312) and support barrel shells (313), wherein the support rods (311) are arranged on the mounting frame (100) along the vertical direction, and the number of the support rods (311) is four;
the supporting plate (312) is of a rectangular plate-shaped structure, the supporting plate (312) is horizontally arranged at the top ends of the supporting rods (311), the four supporting rods (311) are respectively positioned at four corners of the supporting plate (312), and a telescopic hole is formed in the center of the supporting plate (312);
the supporting cylinder shell (313) is of a cylindrical shell structure, and the supporting cylinder shell (313) is coaxially and fixedly arranged at an upper orifice of the telescopic hole.
The technical scheme is further improved and optimized.
Rotatory axis body (320) be upper end and lower extreme confined cylindric shell structure, and the diameter of rotatory axis body (320) is the same with the leakage fluid dram diameter of system boiling furnace (230), rotatory axis body (320) cup joint inside support cartridge case (313), the stirring hole has been seted up to the upper end of rotatory axis body (320), the excircle face that rotatory axis body (320) are close to the bottom is provided with internal spline one.
The technical scheme is further improved and optimized.
The rotating member (330) comprises a rotating motor (331), a second transmission member (332), a rotating shaft (333), a driving gear (334), a sleeve ring (335) and a driven gear (336);
the rotating motor (331) is arranged on the mounting frame (100) along the vertical direction;
the rotating shaft (333) is arranged on the mounting rack (100) along the vertical direction, and the rotating shaft (333) is divided into three sections along the self axial direction and sequentially comprises a smooth section, a power output section and a power input section from top to bottom;
the second transmission component (332) is arranged between the output end of the rotating motor (331) and the power input section of the rotating shaft (333), and the second transmission component (332) is used for receiving the power of the rotating motor (321) and driving the rotating shaft (333) to rotate around the axial direction of the second transmission component; the second transmission component (332) is of a belt transmission structure;
a linkage piece is arranged between the power output section of the driving gear (334) and the rotating shaft (333), the driving gear (334) is coaxially arranged outside the rotating shaft (333) through the linkage piece, when the driving gear (334) displaces along the self axial direction, the rotating shaft (333) continuously outputs power to the driving gear (334), and the linkage piece comprises a second external spline arranged on the power output section of the rotating shaft (333) and a second internal spline arranged on the driving gear (334);
the lantern ring (335) is of a vertically-arranged circular ring sleeve structure, connecting lug sleeves extend from the outer circular surface of the lantern ring (335), the connecting lug sleeves are movably connected with the rotating shaft (333) and form sliding guide fit in the vertical direction, two connecting lug sleeves are arranged and respectively form an upper connecting lug sleeve and a lower connecting lug sleeve, the upper end surface of the driving gear (334) is in contact with the upper connecting lug sleeve, and the lower end surface of the driving gear (334) is in contact with the lower connecting lug sleeve;
driven gear (336) cover locate the outside of lantern ring (335), driven gear (336) and driving gear (334) meshing connection, driven gear (336) inner annular surface be provided with external splines one, and driven gear (336) and rotatory axis body (320) pass through internal and external splines and be connected.
The technical scheme is further improved and optimized.
The lifting member (340) comprises a lifting motor (341), a lifting guide rod (343), a lifting screw rod (344) and a connecting bracket (345);
the lifting motor (341) is arranged on the mounting rack (100) along the vertical direction;
the lifting guide rods (343) are arranged on the mounting frame (100) along the vertical direction, and two lifting guide rods (343) are arranged;
the lifting screw rod (344) is arranged on the mounting frame (100) along the vertical direction, a third transmission component (342) for power transmission between the input end of the lifting screw rod (344) and the output end of the lifting motor (341) is arranged between the input end of the lifting screw rod and the output end of the lifting motor, and the third transmission component (342) is of a belt transmission structure;
the connecting support (345) is of a vertically arranged circular sleeve structure, a fixing protrusion is arranged on the outer circular surface of the connecting support (345), a third sliding hole and a third threaded hole are formed in the fixing protrusion, the connecting support (345) is movably sleeved outside the lifting guide rod (343) through the third sliding hole and forms sliding guide fit with the outer sliding hole, and the connecting support (345) is movably sleeved outside the lifting screw rod (344) through the third threaded hole and forms threaded fit with the lifting screw rod (344).
The technical scheme is further improved and optimized.
The stirring lifting member (360) comprises a fixed support (361), a sliding block (362), a stirring lifting motor (363), a first transmission member (364) and a stirring lifting screw rod (365);
the fixed support (361) is arranged at the bottom of the rotating shaft body (320) along the vertical direction, and the fixed support (361) is provided with a sliding groove along the length direction of the fixed support;
the stirring lifting screw rod (365) is arranged at the bottom of the rotating shaft body (320), and the axial direction of the stirring lifting screw rod (365) is parallel to the length direction of the fixed support (361);
slider (362) movable mounting on fixed bolster (361) and constitute the cooperation of sliding guide, slider (362) on be provided with the joint arch, the arch on be provided with screw hole four, mounting hole, fastening support, slider (362) through four activities of screw hole cup joint in stirring lift lead screw (365) outside and with stirring lift lead screw (365) constitute screw-thread fit.
The technical scheme is further improved and optimized.
The stirring lifting motor (363) is arranged at the bottom of the rotating shaft body (320) along the vertical direction;
the first transmission component (364) is arranged between an output shaft of the stirring lifting motor (363) and an input end of the stirring lifting screw rod (365) and used for realizing power transmission between the output shaft and the input end, and the first transmission component (364) is in belt transmission.
The technical scheme is further improved and optimized.
The stirring member (350) comprises a stirring component, a liquid outlet component and a power component;
the stirring assembly comprises a stirring rod (351), wherein the stirring rod (351) is divided into two parts along the vertical direction and sequentially comprises a stirring section and a fixing section from top to bottom;
the fixed section of the stirring rod (351) is of a cylindrical barrel structure with a closed upper end and an open lower end, the fixed section is vertically and fixedly installed in the installation hole of the sliding block (362), the upper closed end face of the fixed section is a first connecting face and the first connecting face is of an elliptic face structure which is obliquely arranged, and a rotary hole is vertically formed in the middle of the upper closed end of the fixed section;
the stirring section of the stirring rod (351) is of a cylindrical barrel structure with an opening at the upper end and a closed lower end, the closed lower end of the stirring section is of a second connecting surface which is of an elliptical surface structure obliquely arranged and matched with the first connecting surface, the open upper end of the stirring section is provided with an end cover in a matching manner, and the outer circular surface of the stirring section is provided with a plurality of liquid outlets in an array manner along the self axial direction;
a connecting hole is vertically formed in the middle of the lower closed end of the stirring section of the stirring rod (351), a first transmission shaft (355) is sleeved in the rotating hole, the first transmission shaft (355) and the first connecting surface are vertically arranged, the first transmission shaft (355) rotates around the axial direction of the first transmission shaft, the top end of the first transmission shaft (355) is fixedly sleeved in the connecting hole, and the bottom end of the first transmission shaft (355) is located in the inner cavity of the fixed section;
stirring subassembly divide into ready state and stirring state, when stirring subassembly is in ready state, be coaxial arrangement between the canned paragraph of stirring rod (351) and the stirring section and connect a face one and connect the coincidence of face two, when stirring subassembly is in stirring state, the stirring section of stirring rod (351) rotates one hundred eighty degrees and with be the contained angle between the canned paragraph and arrange and connect a face one and connect the coincidence of face two, stirring subassembly's initial state is ready state.
The technical scheme is further improved and optimized.
The power assembly comprises a second transmission shaft (358) and a driving motor (359);
a supporting bracket (356) is installed in the fixed section of the stirring rod (351), a fixed hole and a hose groove are formed in the supporting bracket (356), the fixed hole and the fixed section of the stirring rod (351) are coaxially arranged, a fixed block (357) is coaxially installed at the lower opening end of the fixed section of the stirring rod (351), a hose hole and a fastening hole are formed in the fixed block (357), and the fastening hole and the fixed section of the stirring rod (351) are coaxially arranged;
the second transmission shaft (358) is coaxially and movably arranged in the fixed hole and rotates around the axial direction of the second transmission shaft (358), a gear set for realizing power transmission between the top end of the second transmission shaft (358) and the bottom end of the first transmission shaft (355) is arranged between the top end of the second transmission shaft (358) and the bottom end of the first transmission shaft (355), and the bottom end of the second transmission shaft (358) penetrates through the fastening hole and is positioned below the stirring rod (351);
the driving motor (359) is vertically installed on the fastening support, and the output end of the driving motor (359) is coaxially connected with the bottom end of the second transmission shaft (358) through a coupler.
The technical scheme is further improved and optimized.
The liquid outlet assembly comprises a liquid outlet cylinder (352), a liquid outlet hose (353) and an output hose (354);
the liquid outlet cylinder (352) is of a semicircular shell structure with a closed upper end and a closed lower end, the liquid outlet cylinder (352) is coaxially and fixedly arranged in a stirring section of the stirring rod (351), a liquid suction port matched with the liquid outlet is formed in the outer circular surface of the liquid outlet cylinder (352), and two liquid outlet connection nozzles are formed in the lower end of the liquid outlet cylinder (352);
the liquid inlet end of the liquid outlet hose (353) is communicated with the liquid outlet nozzle of the liquid outlet barrel (352), and the number of the liquid outlet hose (353) is two; the liquid outlet ends of the two liquid outlet hoses (353) are connected and communicated;
one end of the output hose (354) is connected with the liquid outlet hose (353), and the other end of the output hose is connected with the liquid outlet control component (370);
the liquid outlet control component (370) comprises a liquid inlet pipeline (373), one end of the liquid inlet pipeline (373) is connected and communicated with the output hose (354), and the other end of the liquid inlet pipeline (373) is provided with a control valve (371) for opening or closing the liquid inlet pipeline (373);
a liquid discharge pipeline is connected to the outside of the control valve (371), the other end of the liquid discharge pipeline is communicated with a liquid inlet end of the water pump, and a liquid outlet end of the water pump is connected with a storage container for storing the donkey-hide gelatin liquid;
two liquid discharge pipelines are arranged outside the control valve (371), the two liquid discharge pipelines are respectively a liquid discharge pipeline I (372) and a liquid discharge pipeline II (374), and the two water pumps are arranged corresponding to the storage containers.
Compared with the prior art, the invention has the beneficial effects that:
the automatic rotary shaft stirring type donkey-hide gelatin decocting equipment is adopted, so that the participation of manpower can be reduced, the running efficiency of the equipment is improved, and the uniformity of the donkey-hide gelatin liquid is improved;
the device is provided with the cover plate and the decocting cover, so that the heat generated during decocting the donkey-hide gelatin can be effectively utilized and stored, the heat loss is reduced, and the device is more energy-saving and environment-friendly;
the donkey-hide gelatin decocting device adopted by the device can effectively control the temperature in the donkey-hide gelatin decocting process, so that the donkey-hide gelatin is uniformly heated in the decocting process;
the liquid outlet component adopted by the equipment can improve the liquid outlet efficiency of the equipment and can effectively improve the production efficiency;
the discharging device adopted by the device can quickly discharge donkey-hide gelatin residues in the decocting furnace without manual direct contact, thereby avoiding danger and scalding caused by high temperature;
the device has the obvious characteristics of simple structure, high production efficiency, simple operation, safety, high efficiency and the like.
Drawings
The description includes the following figures, the contents shown are respectively:
fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of the overall structure of the present invention.
FIG. 3 is a schematic view of the stirring device of the present invention.
FIG. 4 is a schematic view of the stirring device of the present invention.
FIG. 5 is a schematic view of the discharge device of the present invention.
Fig. 6 is a schematic structural diagram of the mounting bracket of the present invention.
Fig. 7 is a schematic structural view of the decocting device of the present invention.
Fig. 8 is a schematic view of the cover plate structure of the present invention.
FIG. 9 is a schematic view of the combination of the decocting furnace and the heater of the present invention.
Fig. 10 is a schematic view of the decocting cover structure of the present invention.
FIG. 11 is a schematic structural view of a stirring device of the present invention.
Fig. 12 is a structural schematic view of a support member of the present invention.
Fig. 13 is a schematic structural view of a rotating shaft according to the present invention.
FIG. 14 is a schematic view of the stirring member of the present invention.
FIG. 15 is a schematic cross-sectional view of a stir bar according to the present invention.
FIG. 16 is a schematic view of the structure of the stirring rod of the present invention.
Fig. 17 is a schematic view of a liquid outlet barrel structure of the present invention.
Fig. 18 is a schematic structural view of a liquid outlet control member according to the present invention.
FIG. 19 is a schematic view of the structure of the stirring member of the present invention.
FIG. 20 is a schematic view of the stirring elevating member of the present invention.
Fig. 21 is a schematic structural view of a rotating member according to the present invention.
FIG. 22 is a schematic view of the driving gear and the driven gear of the present invention.
Fig. 23 is a schematic structural view of the lifting member of the present invention.
FIG. 24 is a schematic structural view of a discharging device of the present invention.
Fig. 25 is a schematic diagram of a push block structure according to the present invention.
Fig. 26 is a schematic diagram of a push block structure according to the present invention.
Fig. 27 is a schematic view of the guide construction of the present invention.
FIG. 28 is a schematic view of the power member of the present invention.
Labeled as:
100. a mounting frame;
200. a boiling device; 210. a cover plate; 220. a boiling cover; 230. a decocting furnace; 240. a heater;
300. a stirring device;
310. a bracket member; 311. a support bar; 312. a support plate; 313. a supporting cartridge housing;
320. a rotating shaft body;
330. a rotating member; 331. a rotating electric machine; 332. a second transmission component; 333. a rotating shaft; 334. a driving gear; 335. a collar; 336. a driven gear;
340. a lifting member; 341. a lifting motor; 342. a third transmission component; 343. a lifting guide rod; 344. a lifting screw rod; 345. connecting a bracket;
350. a stirring member; 351. a stirring rod; 352. a liquid outlet cylinder; 353. a liquid outlet hose; 354. an output hose; 355. a first transmission shaft; 356. a support bracket; 357. a fixed block; 358. a second transmission shaft; 359. a drive motor;
360. a stirring lifting member; 361. fixing a bracket; 362. a slider; 363. a stirring lifting motor; 364. a first transmission component; 365. stirring the lifting screw rod;
370. a liquid outlet control member; 371. a control valve; 373. a liquid inlet pipeline; 372. a liquid discharge pipeline I; 374. a second liquid discharge pipeline;
400. a discharging device;
410. a bearing housing;
420. a power member; 421. a discharging motor; 422. an output wheel; 423. a first pinch roller; 424. a first transmission belt wheel; 425. a second pinch roller; 426. a second transmission belt wheel; 427. pushing a first screw rod; 428. pushing a screw rod II; 430. a guide; 440. and pushing the block.
Detailed Description
The following detailed description of the embodiments of the present invention will be given with reference to the accompanying drawings for a purpose of helping those skilled in the art to more fully, accurately and deeply understand the concept and technical solution of the present invention and to facilitate its implementation.
The utility model provides a spiral shaft stirring formula donkey-hide gelatin is boiled and is glued equipment, includes mounting bracket 100, system device 200, agitating unit 300, discharging device 400, 100 horizontal installation of mounting bracket in ground, system device 200 be used for taking the donkey-hide gelatin greatly and heat the system of enduring to the donkey-hide gelatin, agitating unit 300 is used for stewing system device 200 and boils gluey in-process and stirs the donkey-hide gelatin raw materials and be used for boiling the donkey-hide gelatin liquid of discharging after gluing the end, discharging device 400 be arranged in collecting system 300 and boil the residual and discharge after accomplishing.
Dumping the donkey-hide gelatin raw materials to the system of stewing 200 in, system of stewing 200 operation begins to heat the donkey-hide gelatin raw materials and stews, agitating unit 300 begins to operate and stirs the donkey-hide gelatin raw materials in system of stewing 200, make its donkey-hide gelatin raw materials be heated evenly at the in-process of heating system of stewing, improve system of stewing 200's efficiency, when system of stewing 200 completion system of stewing to the donkey-hide gelatin raw materials after, agitating unit 300 operation begins to discharge the donkey-hide gelatin liquid in the system of stewing 200, when the donkey-hide gelatin liquid discharge back in the system of stewing 200, discharging device 400 begins to discharge the residue in the system of stewing 200.
The decocting device 200 comprises a cover plate 210, a decocting cover 220, a decocting furnace 230 and a heater 240.
The decocting furnace 230 is divided into two parts along the vertical direction and is respectively a cylindrical section and a table-shaped section, the cylindrical section is of a circular cylinder structure, the table-shaped section is of a circular table structure, the bottom end of the cylindrical section is connected with the large end of the table-shaped section, and the small end of the table-shaped section is a liquid discharge port.
The cover plate 210 is of a circular plate structure, the diameter of the cover plate 210 is matched with the top of the cylindrical section of the decocting furnace 230, the cover plate 210 is installed at the top of the cylindrical section of the decocting furnace 230, and the cover plate 210 is provided with an air release hole for pressure release.
The heater 240 is of a disc-shaped structure, the diameter of the heater 240 is matched with that of the cylindrical section of the decocting furnace 230, the heater 240 is installed at the bottom end of the table-shaped section of the decocting furnace 230, and specifically, the heater 240 is a natural gas heater.
The decocting cover 220 is a cylindrical shell structure with an open upper end and an open lower end, and a plurality of vent holes are arranged on the outer circular surface of the decocting cover 220 close to the bottom end along the circumferential direction. The decocting furnace 230 is coaxially arranged in the decocting cover 220.
Pouring the donkey-hide gelatin raw material into the decocting furnace 230, covering the cover plate 210, and turning on the heater 240 to heat and decoct the donkey-hide gelatin raw material in the decocting furnace 230.
The stirring device 300 includes a support member 310, a rotating shaft 320, a stirring mechanism and a liquid outlet mechanism.
The stirring mechanism comprises a rotating member 330, a lifting member 340, a stirring member 350 and a stirring lifting member 360, wherein the stirring member 350 and the stirring lifting member 360 are both arranged in the rotating shaft body 320, the rotating member 330 is used for driving the rotating shaft body 320, the stirring member 350 and the stirring lifting member 360 to rotate, the lifting member 340 is used for driving the rotating shaft body 320 to axially displace along the rotating shaft body, the stirring lifting member 360 is used for driving the stirring member 350 to penetrate through the top end of the rotating shaft body 320 and extend into the decocting furnace 230, and the stirring member 350 is used for stirring donkey-hide gelatin raw materials in the decocting furnace 230 and assisting the liquid outlet mechanism to suck the decocted donkey-hide gelatin liquid in the decocting furnace 230.
The liquid outlet mechanism comprises a liquid outlet control member 370, and the liquid outlet control member 370 is used for sucking and collecting the decocted donkey-hide gelatin liquid in the decocting furnace 230 through the stirring member 350.
The support member 310 includes a support rod 311, a support plate 312, and a support cylindrical shell 313, wherein the support rod 311 is installed on the installation frame 100 along the vertical direction, and four support rods 311 are provided.
The supporting plate 312 is a rectangular plate-shaped structure, the supporting plate 312 is horizontally installed at the top end of the supporting rod 311, the four supporting rods 311 are respectively located at four corners of the supporting plate 312, and a telescopic hole is formed in the center of the supporting plate 312.
The supporting cylinder shell 313 is a cylindrical shell structure, and the supporting cylinder shell 313 is coaxially and fixedly arranged at an upper orifice of the telescopic hole.
Rotatory axis body 320 be upper end and lower extreme confined cylindric shell structure, and the diameter of rotatory axis body 320 is the same with the leakage fluid dram diameter of system boiling furnace 230, rotatory axis body 320 cup joint inside support cartridge shell 313, the stirring hole has been seted up to the upper end of rotatory axis body 320, the excircle face that rotatory axis body 320 is close to the bottom is provided with internal spline one.
The rotating member 330 includes a rotating motor 331, a second transmission member 332, a rotating shaft 333, a driving gear 334, a collar 335, and a driven gear 336.
The rotating motor 331 is vertically installed on the mounting frame 100.
The rotating shaft 333 is vertically installed on the installation frame 100, and the rotating shaft 333 is divided into three sections along the axial direction and sequentially comprises a smooth section, a power output section and a power input section from top to bottom.
The second transmission member 332 is disposed between the output end of the rotating motor 331 and the power input section of the rotating shaft 333, and the second transmission member 332 is configured to receive the power of the rotating motor 221 and drive the rotating shaft 333 to rotate axially around itself. Preferably, the second transmission member 332 is a belt transmission structure.
A linkage is arranged between the power output section of the driving gear 334 and the rotating shaft 333, the driving gear 334 is coaxially arranged outside the rotating shaft 333 through the linkage, and when the driving gear 334 axially displaces along the self-axial direction, the rotating shaft 333 continuously outputs power to the driving gear 334.
Lantern ring 335 be the ring cover structure of vertical arrangement, the outer disc of lantern ring 335 extends has the connection earmuff, connects earmuff and pivot 333 swing joint and constitutes the ascending sliding guide cooperation of vertical side, the connection earmuff be provided with two and be respectively for connecting earmuff and lower connection earmuff, the up end of driving gear 334 with connect the earmuff contact on, the lower terminal surface and the lower connection earmuff contact of driving gear 334.
The driven gear 336 is sleeved outside the lantern ring 335, the driven gear 336 is meshed with the driving gear 334, an external spline I is arranged on the inner annular surface of the driven gear 336, and the driven gear 336 is connected with the rotating shaft body 320 through the internal spline and the external spline.
When the rotating shaft body 320 rotates for one circle, the rotating motor 331 stops running and starts running in the reverse direction, the rotating shaft body 320 rotates in the reverse direction for one circle and returns to the initial position, and the rotating shaft body 320 rotates in the positive and negative directions for one circle, which is a period.
The lifting member 340 includes a lifting motor 341, a lifting guide 343, a lifting screw 344, and a connecting bracket 345.
The lifting motor 341 is installed on the installation frame 100 along the vertical direction.
The lifting guide rods 343 are mounted on the mounting frame 100 in the vertical direction, and two lifting guide rods 343 are provided.
The lifting screw 344 is installed on the installation frame 100 along a vertical direction, a third transmission member 342 for power transmission is arranged between the input end of the lifting screw 344 and the output end of the lifting motor 341, and specifically, the third transmission member 342 is of a belt transmission structure.
The connecting support 345 is a vertically arranged circular sleeve structure, a fixing protrusion is arranged on the outer circular surface of the connecting support 345, a third sliding hole and a third threaded hole are formed in the fixing protrusion, the connecting support 345 is movably sleeved outside the lifting guide rod 343 through the third sliding hole and forms sliding guide fit with the outer sliding hole, and the connecting support 345 is movably sleeved outside the lifting screw 344 through the third threaded hole and forms threaded fit with the lifting screw 344.
When the lifting motor 331 operates, the lifting motor 331 operates to output power and drives the lifting screw rod 344 to rotate around the self axial direction through the transmission of the transmission member 342, and the lifting screw rod 344 rotates to drive the connecting bracket 345 to do ascending or descending motion along the axial direction of the lifting screw rod 344.
The stirring lifting member 360 comprises a fixed bracket 361, a sliding block 362, a stirring lifting motor 363, a first transmission member 364 and a stirring lifting screw 365.
The fixed support 361 is installed at the bottom of the rotating shaft body 320 along the vertical direction, and the fixed support 361 is provided with a sliding groove along the length direction.
The stirring lifting screw 365 is installed at the bottom of the rotating shaft body 320, and the axial direction of the stirring lifting screw 365 is parallel to the length direction of the fixing bracket 361.
Slider 362 movable mounting constitute the sliding guide cooperation on fixed bolster 361, slider 362 on be provided with the joint arch, the arch on be provided with screw hole four, mounting hole, fastening support, slider 362 cup joints in stirring lift lead screw 365 outside and constitutes screw-thread fit with stirring lift lead screw 365 through four activities of screw hole.
The stirring elevator motor 363 is installed at the bottom of the rotating shaft body 320 along the vertical direction.
The first transmission member 364 is disposed between the output shaft of the stirring lifting motor 363 and the input end of the stirring lifting screw 365, and is used for realizing power transmission therebetween, and specifically, the first transmission member 364 is belt-driven.
When the stirring lifting motor 363 operates, the stirring lifting motor 363 operates to output power and transmit the power through the transmission member-364 to drive the stirring lifting screw 365 to rotate around the axis of the stirring lifting screw, and the stirring lifting screw 365 rotates to drive the sliding block 362 to move up or down along the sliding groove of the fixing support 361.
The stirring member 350 comprises a stirring component, a liquid outlet component and a power component, wherein the stirring component is used for stirring donkey-hide gelatin raw materials in the decocting device 200, the liquid outlet component is used for sucking and discharging donkey-hide gelatin liquid in the decocting device 200, and the power component is used for driving the stirring component to switch states.
The stirring assembly comprises a stirring rod 351, wherein the stirring rod 351 is divided into two parts along the vertical direction and is provided with a stirring section and a fixing section from top to bottom in sequence.
The fixed section of stirring rod 351 be upper end closed, lower extreme open-ended cylindrical barrel structure, the vertical fixed mounting of fixed section is in the mounting hole of slider 362, the last closed end of fixed section is for connecting a face one and connect the elliptical surface structure that a face one was arranged for the slope, the last blind end intermediate position department of fixed section has seted up perpendicularly and has changeed the hole.
Stirring rod 351's stirring section be upper end opening, lower extreme confined cylindrical barrel structure, the lower blind end of stirring section is for connecting face two and connect face two to arrange for the slope and with connect a face a assorted elliptical surface structure, the upper end matching of stirring section installs the end cover, the outer disc of stirring section along self axial array seted up a plurality of liquid outlets.
The middle position of the lower closed end of the stirring section of the stirring rod 351 is vertically provided with a connecting hole, a first transmission shaft 355 is sleeved in the rotating hole, the first transmission shaft 355 and the first connecting surface are vertically arranged, the first transmission shaft 355 rotates around the axial direction of the first transmission shaft, the top end of the first transmission shaft 355 is fixedly sleeved in the connecting hole, and the bottom end of the first transmission shaft 355 is located in the inner cavity of the fixing section.
Stirring subassembly divide into ready state and stirring state, when stirring subassembly is in ready state, be coaxial arrangement and connect the coincidence of face one and connection face two between stirring rod 351's canned paragraph and the stirring section, when stirring subassembly is in stirring state, stirring rod 351's stirring section rotates one hundred eighty degrees and with be the contained angle between the canned paragraph and arrange and connect the coincidence of face one and connection face two, stirring subassembly's initial state is ready state.
The power assembly comprises a second transmission shaft 358 and a driving motor 359.
The fixed section of stirring rod 351 in install support bracket 356, be provided with the fixed orifices on support bracket 356 and hose groove and fixed orifices and the fixed section coaxial arrangement of stirring rod 351, the fixed section under the canned paragraph of stirring rod 351 open end coaxial arrangement have fixed block 357, seted up on the fixed block 357 hose hole and fastening hole and the fixed section coaxial arrangement of stirring rod 351.
The second transmission shaft 358 is coaxially and movably arranged in the fixing hole and rotates around the axial direction of the second transmission shaft 358, a gear set used for realizing power transmission between the top end of the second transmission shaft 358 and the bottom end of the first transmission shaft 355 is arranged between the top end of the second transmission shaft 358 and the bottom end of the first transmission shaft 355, and the bottom end of the second transmission shaft 358 penetrates through the fastening hole and is located below the stirring rod 351.
The driving motor 359 is vertically installed on the fastening bracket, and the output end of the driving motor 359 is coaxially connected with the bottom end of the second transmission shaft 358 through a coupler.
The liquid outlet assembly comprises a liquid outlet cylinder 352, a liquid outlet hose 353 and an output hose 354.
The liquid outlet cylinder 352 is of a semicircular shell structure with a closed upper end and a closed lower end, the liquid outlet cylinder 352 is coaxially and fixedly arranged in the stirring section of the stirring rod 351, a liquid suction port matched with the liquid outlet is formed in the outer circular surface of the liquid outlet cylinder 352, and two liquid outlet connection nozzles are formed in the lower end of the liquid outlet cylinder 352.
The liquid inlet end of the liquid outlet hose 353 is communicated with the liquid outlet nozzle of the liquid outlet barrel 352, and the number of the liquid outlet hoses 353 is two. The liquid outlet ends of the two liquid outlet hoses 353 are connected and communicated.
One end of the output hose 354 is connected to the liquid outlet hose 353, and the other end is connected to the liquid outlet control member 370.
When the stirring lifting member 360 operates, and the stirring assembly is in a ready state, the fixed section and the stirring section of the stirring rod 351 are coaxially arranged, the first connecting surface and the second connecting surface coincide, the slider 362 moves upwards along the vertical direction, the slider 362 drives the stirring member 350 to move upwards along the vertical direction, when the stirring section of the stirring rod 351 enters the decocting furnace 230, the driving motor 359 operates to output power and drive the second transmission shaft 358 to rotate around the axis of the driving motor 359, the second transmission shaft 358 rotates through the gear set and drives the first transmission shaft 355 to rotate around the first transmission shaft 355 axially, the first transmission shaft 355 rotates to drive the stirring section of the stirring rod to rotate around the first transmission shaft 355 axially, when the stirring assembly is in a stirring state, the stirring section of the stirring rod 351 rotates by one hundred eighty degrees and is arranged at an included angle with the fixed section, the first connecting surface and the second connecting surface coincide, and the rotating member 330 rotates to drive the rotating shaft body 320 to rotate periodically, the rotating shaft body 320 rotates to drive the stirring rod 351 to rotate, so that donkey-hide gelatin raw materials in the decocting furnace 230 can be stirred, the liquid outlet assembly can be opened in the stirring process, donkey-hide gelatin liquid enters the liquid suction port in the liquid outlet cylinder 352 through the liquid outlet in the stirring rod 351 and then enters the liquid outlet cylinder 352 through the liquid suction port, donkey-hide gelatin liquid in the liquid outlet cylinder 352 enters the liquid outlet hose 353 under the action of gravity, and donkey-hide gelatin liquid in the liquid outlet hose 353 enters the output hose 354.
The liquid outlet control member 370 includes a liquid inlet pipe 373, one end of the liquid inlet pipe 373 is connected to the output hose 354, and the other end is provided with a control valve 371 for opening or closing the liquid inlet pipe 373.
The outside of the control valve 371 is connected with a liquid discharge pipeline, the other end of the liquid discharge pipeline is communicated with the liquid inlet end of the water pump, and the liquid outlet end of the water pump is connected with a storage container for storing the donkey-hide gelatin liquid.
After the donkey-hide gelatin in the decocting furnace 230 is decocted, the water pump starts to operate, and the donkey-hide gelatin liquid in the decocting furnace 230 is conveyed to the storage container through the liquid outlet arranged on the stirring rod 351, the liquid suction port arranged on the liquid outlet cylinder 352, the liquid outlet hose 353, the output hose 354, the control valve 371, the liquid discharge pipeline and the water pump in sequence.
More specifically, when the storage container is fully loaded with the donkey-hide gelatin liquid, the storage container needs to be detached and transferred, during this period, the donkey-hide gelatin liquid decocted in the decocting furnace 230 cannot be output and collected, and the donkey-hide gelatin liquid can be collected after the storage container needs to be installed again, so that the whole decocting process of donkey-hide gelatin is delayed, two liquid drainage pipelines are arranged outside the control valve 371, the two liquid drainage pipelines are respectively a liquid drainage pipeline I372 and a liquid drainage pipeline II 374, and the water pump and the storage container are correspondingly provided with two liquid drainage pipelines.
In the process that one storage container is fully loaded and the donkey-hide gelatin liquid needs to be transferred, the donkey-hide gelatin liquid in the decocting furnace 230 can be conveyed into the other storage container, and the decocting process of the donkey-hide gelatin is not delayed.
The discharging device 400 comprises a holding shell 410, a power member 420, a guide part 430 and a pushing block 440.
The bearing shell 410 is of a rectangular shell structure which is horizontally arranged, one end of the bearing shell is open, and the other end of the bearing shell is closed, the upper end face and the lower end face of the bearing shell 410, which are close to the open end, are provided with feeding holes with the same diameter as that of the supporting cylinder shell 313, the feeding holes in the upper end face of the bearing shell 410 are coaxially arranged at a liquid outlet of the decocting furnace 230, and the feeding holes in the lower end face of the bearing shell 410 are coaxially arranged at the top end of the supporting cylinder shell 313.
The guide member 430 is disposed in an inclined manner, the top end of the guide member 430 is fixedly mounted on the lower end surface of the holder housing 410, and the bottom end of the guide member 430 is located on the side of the open end of the holder housing 410 away from the closed end.
The pushing block 440 is a rectangular shell structure with two open ends, the pushing block 440 is movably mounted inside the bearing shell 410, and a first threaded hole and a second threaded hole are formed in the side surface, close to the closed end of the bearing shell 410, of the pushing block 440.
Vertical fixed mounting has row material pipe in the propelling movement piece 440, the bin outlet of putting the material pipe switch-on is all seted up to the upper and lower terminal surface of propelling movement piece 440.
The power component comprises a discharging motor 421, an output wheel 422, a first pinch roller 423, a first driving belt wheel 424, a second pinch roller 425, a second driving belt wheel 426, a first pushing screw rod 427 and a second pushing screw rod 428.
The first pushing screw rod 427 is installed in the first threaded hole of the pushing block 440, and the first pushing screw rod 427 and the first threaded hole form threaded fit.
The second pushing screw rod 428 is mounted in the second threaded hole of the pushing block 440, and the two are in threaded fit.
The first transmission belt wheel 424 is installed at one end of the second pushing screw rod 428, and the second transmission belt wheel 426 is installed at one end of the first pushing screw rod 427.
The discharging motor 421 is installed at the closed end of the bearing housing 410, and the output shaft of the discharging motor 421 is axially parallel to the length direction of the bearing housing 410.
The output wheel 422 is installed at the output end of the discharging motor 421.
The first pinch roller 423 is arranged between the output wheel 422 and the first transmission belt wheel 424, and the second pinch roller 425 is arranged between the output wheel 422 and the second transmission belt wheel 426.
The head end of the transmission belt 429 sequentially bypasses the output wheel 422, the first pinch roller 423, the first transmission belt wheel 424, the second transmission belt wheel 426 and the second pinch roller 425 and then is connected with the tail end of the transmission belt 226 to form a closed annular loop.
After the donkey-hide gelatin raw material in the decocting furnace 230 is decocted, after donkey-hide gelatin liquid in the decocting furnace 230 is discharged, the stirring lifting motor 363 operates, the stirring lifting motor 363 drives the rotary shaft body 320 to move downwards along the axial direction of the rotary shaft body 320, when the bottom of the rotary shaft body 320 moves to the mounting rack 100, the stirring lifting motor 363 stops operating, the top of the rotary shaft body 320 is positioned at the bottom of the bearing shell 410, donkey-hide gelatin residues in the decocting furnace 230 drop into the discharge pipe of the pushing block 440, the discharge motor 421 starts operating, the discharge motor 421 rotates to drive the output wheel 422, the output wheel 422 drives the first pressing wheel 423, the first transmission belt wheel 424, the second transmission belt wheel 426 and the second pressing wheel 425 to synchronously rotate through the transmission belt 429, wherein the rotating directions of the first pressing wheel 423, the first transmission belt wheel 424, the second transmission belt wheel 426 and the second pressing wheel 425 are opposite to the rotating directions of the first transmission belt wheel 424 and the second transmission belt wheel 426, the first transmission belt wheel 426 synchronously rotates to drive the first pushing screw rod 427, the first pressing wheel 427, the second pressing wheel 427, The second pushing screw rod 428 rotates around the self axial direction synchronously, the first pushing screw rod 427 and the second pushing screw rod 428 rotate to drive the pushing block 440 to move close to the guide piece 430, when the discharging pipe moves to the upper portion of the guide piece, donkey-hide gelatin residues in the discharging pipe drop onto the guide piece 430 and drop to an appointed position along the inclined surface of the guide piece 430, the discharging motor 421 runs reversely, the discharging motor 421 drives the pushing block 440 to move away from the guide piece 430, and when the pushing block 440 moves to an initial position, the discharging motor stops running.
When the donkey-hide gelatin raw material is actually operated, the donkey-hide gelatin raw material is poured into the decocting furnace 230 and is covered with the cover plate 210, when the stirring lifting motor 363 operates, the stirring lifting motor 363 operates to output power and transmit power through the transmission component I364 to drive the stirring lifting screw 365 to rotate around the axis of the stirring lifting screw, the stirring lifting screw 365 rotates to drive the slide block 362 to do ascending motion along the chute of the fixed support 361, the slide block 362 drives the stirring component 350 to move upwards along the vertical direction, when the stirring component is in a preparation state, the fixed section and the stirring section of the stirring rod 351 are coaxially arranged, the connection surface I coincides with the connection surface II, the driving motor 359 operates to output power and drive the transmission shaft II to rotate around the axis of the stirring lifting screw 358, the transmission shaft II 358 rotates through the gear set and drives the transmission shaft I355 to axially rotate, the transmission shaft I355 rotates to drive the stirring section of the stirring rod 351 to axially rotate around the transmission shaft I355, when the stirring assembly is in a stirring state, the stirring section of the stirring rod 351 rotates by one hundred eighty degrees and is arranged at an included angle with the fixed section, the first connecting surface and the second connecting surface coincide, the heater 240 is turned on to start heating and decocting the donkey-hide gelatin raw material in the decocting furnace 230, the rotating motor 331 operates, the rotating motor 331 outputs power and transmits the power through the second transmission member 332 to drive the rotating shaft 333 to rotate around the self axial direction, the rotating shaft 333 rotates to drive the driving gear 334 to rotate around the self axial direction, the driving gear 334 rotates to drive the driven gear 336 to rotate around the self axial direction, the driven gear 336 rotates to drive the rotating shaft 320 to rotate around the self axial direction, the rotating member 330 rotates to drive the rotating shaft 320 to rotate, the rotating shaft 320 rotates to drive the stirring rod 351 to rotate, stirring of the donkey-hide gelatin raw material in the decocting furnace 230 is realized, when the decocting time of the donkey-hide gelatin in the decocting furnace 230 reaches a preset value, the rotating motor 331 continues to operate and drives the stirring rod 351 to stir the donkey-hide gelatin medicine in the decocting furnace 230, meanwhile, the control valve 371 is opened and the water pump starts to operate, donkey-hide gelatin liquid in the decocting furnace 230 sequentially passes through the liquid outlet arranged on the stirring rod 351, the liquid suction port arranged on the liquid outlet cylinder 352, the liquid outlet hose 353, the output hose 354, the control valve 371, the liquid discharge pipeline and the water pump and is conveyed into a storage container, when the donkey-hide gelatin liquid in the decocting furnace 230 is discharged, the stirring lifting motor 363 operates, the stirring lifting motor 363 drives the rotating shaft 320 to move downwards along the axial direction of the rotating shaft 320, when the bottom of the rotating shaft 320 moves to the mounting frame 100, the stirring lifting motor 363 stops operating, at the moment, the top of the rotating shaft 320 is positioned at the bottom of the bearing shell 410, at the moment, donkey-hide gelatin residues in the decocting furnace 230 fall into the discharge pipe of the pushing block 440, and the discharge motor 421 starts to operate, the discharging motor 421 rotates to drive the output wheel 422, the output wheel 422 drives the first pinch roller 423, the first drive pulley 424, the second drive pulley 426 and the second pinch roller 425 to synchronously rotate through the drive belt 429, wherein the rotation directions of the first pinch roller 423, the first drive pulley 424, the second drive pulley 426 and the second pinch roller 425 are opposite to the rotation direction of the output wheel 422, the first drive pulley 424 and the second drive pulley 426 synchronously rotate to drive the first push screw rod 427 and the second push screw rod 428 to synchronously rotate around the axial direction of the push screw rod, the first push screw rod 427 and the second push screw rod 428 rotate to drive the pushing block 440 to move close to the guide piece 430, when the discharging hole moves to the upper part of the guide piece, donkey-hide gelatin residues in the discharging hole fall onto the guide piece 430 and fall to a designated position along the inclined plane of the guide piece 430, at the time, the discharging motor 421 reversely runs, the discharging motor 421 drives the pushing block 440 to move away from the guide piece 430, when the pushing block 440 moves to the initial position, the discharging motor 421 stops operating.
The invention is described above with reference to the accompanying drawings. It is to be understood that the specific implementations of the invention are not limited in this respect. Various insubstantial improvements are made by adopting the method conception and the technical scheme of the invention; the present invention is not limited to the above embodiments, and can be modified in various ways.

Claims (10)

1. The donkey-hide gelatin decocting sub-piece for decocting donkey-hide gelatin is characterized by comprising a mounting frame (100), wherein the mounting frame (100) is horizontally arranged on the ground, and a decocting furnace (230) for heating and decocting donkey-hide gelatin is vertically arranged on the mounting frame (100);
the mounting rack (100) is also provided with a stirring device (300), and the stirring device (300) is used for stirring the donkey-hide gelatin raw material in the gelatin decocting process of the decocting furnace (230) and discharging the donkey-hide gelatin liquid in the decocting furnace (230) after the gelatin decocting process is finished;
the stirring device (300) comprises a bracket component (310), a rotating shaft body (320), a stirring mechanism and a liquid outlet mechanism;
the stirring mechanism comprises a rotating member (330), a lifting member (340), a stirring member (350) and a stirring lifting member (360), the stirring member (350) and the stirring lifting member (360) are arranged in the rotating shaft body (320), the rotating member (330) is used for driving the rotating shaft body (320), the stirring member (350) and the stirring lifting member (360) to rotate, the lifting member (340) is used for driving the rotating shaft body (320) to axially displace along the self-body, the stirring lifting member (360) is used for driving the stirring member (350) to penetrate through the top end of the rotating shaft body (320), and the stirring member (350) is used for stirring donkey-hide gelatin raw materials and assisting the liquid outlet mechanism to suck decocted donkey-out donkey-gelatin liquid;
the liquid outlet mechanism comprises a liquid outlet control member (370), and the liquid outlet control member (370) is used for sucking and collecting the decocted donkey-hide gelatin liquid in the decocting furnace (230) through the stirring member (350).
2. The boiled gelatin sub-piece for donkey-hide gelatin boiling according to claim 1, wherein the bracket member (310) comprises a support rod (311), a support plate (312) and a support cylindrical shell (313), the support rod (311) is vertically installed on the installation frame (100), and four support rods (311) are provided;
the supporting plate (312) is of a rectangular plate-shaped structure, the supporting plate (312) is horizontally arranged at the top ends of the supporting rods (311), the four supporting rods (311) are respectively positioned at four corners of the supporting plate (312), and a telescopic hole is formed in the center of the supporting plate (312);
the supporting cylinder shell (313) is of a cylindrical shell structure, and the supporting cylinder shell (313) is coaxially and fixedly arranged at an upper orifice of the telescopic hole.
3. The sub-element of donkey-hide gelatin decoction according to claim 2, wherein the rotating shaft (320) is a cylindrical shell structure with a closed upper end and a closed lower end, the diameter of the rotating shaft (320) is the same as the diameter of a liquid outlet of the decocting furnace (230), the rotating shaft (320) is sleeved inside the supporting cylindrical shell (313), the upper end of the rotating shaft (320) is provided with a stirring hole, and the outer circumferential surface of the rotating shaft (320) near the bottom end is provided with a first internal spline.
4. The sub-element for decocting colla Corii Asini according to claim 3, wherein the rotary member (330) comprises a rotary motor (331), a second transmission member (332), a rotary shaft (333), a driving gear (334), a ring (335), and a driven gear (336);
the rotating motor (331) is arranged on the mounting frame (100) along the vertical direction;
the rotating shaft (333) is arranged on the mounting rack (100) along the vertical direction, and the rotating shaft (333) is divided into three sections along the self axial direction and sequentially comprises a smooth section, a power output section and a power input section from top to bottom;
the second transmission component (332) is arranged between the output end of the rotating motor (331) and the power input section of the rotating shaft (333), and the second transmission component (332) is used for receiving the power of the rotating motor (321) and driving the rotating shaft (333) to rotate around the axial direction of the second transmission component; the second transmission component (332) is of a belt transmission structure;
a linkage piece is arranged between the power output section of the driving gear (334) and the rotating shaft (333), the driving gear (334) is coaxially arranged outside the rotating shaft (333) through the linkage piece, when the driving gear (334) displaces along the self axial direction, the rotating shaft (333) continuously outputs power to the driving gear (334), and the linkage piece comprises a second external spline arranged on the power output section of the rotating shaft (333) and a second internal spline arranged on the driving gear (334);
the lantern ring (335) is of a vertically-arranged circular ring sleeve structure, connecting lug sleeves extend from the outer circular surface of the lantern ring (335), the connecting lug sleeves are movably connected with the rotating shaft (333) and form sliding guide fit in the vertical direction, two connecting lug sleeves are arranged and respectively form an upper connecting lug sleeve and a lower connecting lug sleeve, the upper end surface of the driving gear (334) is in contact with the upper connecting lug sleeve, and the lower end surface of the driving gear (334) is in contact with the lower connecting lug sleeve;
driven gear (336) cover locate the outside of lantern ring (335), driven gear (336) and driving gear (334) meshing connection, driven gear (336) inner annular surface be provided with external splines one, and driven gear (336) and rotatory axis body (320) pass through internal and external splines and be connected.
5. The sub-element for decocting colla Corii Asini according to claim 4, wherein the lifting member (340) comprises a lifting motor (341), a lifting guide rod (343), a lifting lead screw (344), a connecting bracket (345);
the lifting motor (341) is arranged on the mounting rack (100) along the vertical direction;
the lifting guide rods (343) are arranged on the mounting frame (100) along the vertical direction, and two lifting guide rods (343) are arranged;
the lifting screw rod (344) is arranged on the mounting frame (100) along the vertical direction, a third transmission component (342) for power transmission between the input end of the lifting screw rod (344) and the output end of the lifting motor (341) is arranged between the input end of the lifting screw rod and the output end of the lifting motor, and the third transmission component (342) is of a belt transmission structure;
the connecting support (345) is of a vertically arranged circular sleeve structure, a fixing protrusion is arranged on the outer circular surface of the connecting support (345), a third sliding hole and a third threaded hole are formed in the fixing protrusion, the connecting support (345) is movably sleeved outside the lifting guide rod (343) through the third sliding hole and forms sliding guide fit with the outer sliding hole, and the connecting support (345) is movably sleeved outside the lifting screw rod (344) through the third threaded hole and forms threaded fit with the lifting screw rod (344).
6. The sub-element for decocting donkey-hide gelatin according to claim 5, wherein the stirring and lifting means (360) comprises a fixed support (361), a slide block (362), a stirring and lifting motor (363), a first transmission means (364) and a stirring and lifting screw rod (365);
the fixed support (361) is arranged at the bottom of the rotating shaft body (320) along the vertical direction, and the fixed support (361) is provided with a sliding groove along the length direction of the fixed support;
the stirring lifting screw rod (365) is arranged at the bottom of the rotating shaft body (320), and the axial direction of the stirring lifting screw rod (365) is parallel to the length direction of the fixed support (361);
slider (362) movable mounting on fixed bolster (361) and constitute the cooperation of sliding guide, slider (362) on be provided with the joint arch, the arch on be provided with screw hole four, mounting hole, fastening support, slider (362) through four activities of screw hole cup joint in stirring lift lead screw (365) outside and with stirring lift lead screw (365) constitute screw-thread fit.
7. The sub-element for decocting colla Corii Asini according to claim 6, wherein the stirring elevator motor (363) is vertically installed at the bottom of the rotating shaft (320);
the first transmission component (364) is arranged between an output shaft of the stirring lifting motor (363) and an input end of the stirring lifting screw rod (365) and used for realizing power transmission between the output shaft and the input end, and the first transmission component (364) is in belt transmission.
8. The boiled gelatin sub-piece for donkey-hide gelatin boiling according to claim 7, wherein the stirring member (350) comprises a stirring component, a liquid outlet component and a power component;
the stirring assembly comprises a stirring rod (351), wherein the stirring rod (351) is divided into two parts along the vertical direction and sequentially comprises a stirring section and a fixing section from top to bottom;
the fixed section of the stirring rod (351) is of a cylindrical barrel structure with a closed upper end and an open lower end, the fixed section is vertically and fixedly installed in the installation hole of the sliding block (362), the upper closed end face of the fixed section is a first connecting face and the first connecting face is of an elliptic face structure which is obliquely arranged, and a rotary hole is vertically formed in the middle of the upper closed end of the fixed section;
the stirring section of the stirring rod (351) is of a cylindrical barrel structure with an opening at the upper end and a closed lower end, the closed lower end of the stirring section is of a second connecting surface which is of an elliptical surface structure obliquely arranged and matched with the first connecting surface, the open upper end of the stirring section is provided with an end cover in a matching manner, and the outer circular surface of the stirring section is provided with a plurality of liquid outlets in an array manner along the self axial direction;
a connecting hole is vertically formed in the middle of the lower closed end of the stirring section of the stirring rod (351), a first transmission shaft (355) is sleeved in the rotating hole, the first transmission shaft (355) and the first connecting surface are vertically arranged, the first transmission shaft (355) rotates around the axial direction of the first transmission shaft, the top end of the first transmission shaft (355) is fixedly sleeved in the connecting hole, and the bottom end of the first transmission shaft (355) is located in the inner cavity of the fixed section;
stirring subassembly divide into ready state and stirring state, when stirring subassembly is in ready state, be coaxial arrangement between the canned paragraph of stirring rod (351) and the stirring section and connect a face one and connect the coincidence of face two, when stirring subassembly is in stirring state, the stirring section of stirring rod (351) rotates one hundred eighty degrees and with be the contained angle between the canned paragraph and arrange and connect a face one and connect the coincidence of face two, stirring subassembly's initial state is ready state.
9. The boiled gelatin sub-piece for donkey-hide gelatin boiling of claim 8, wherein the power assembly comprises a second transmission shaft (358) and a driving motor (359);
a supporting bracket (356) is installed in the fixed section of the stirring rod (351), a fixed hole and a hose groove are formed in the supporting bracket (356), the fixed hole and the fixed section of the stirring rod (351) are coaxially arranged, a fixed block (357) is coaxially installed at the lower opening end of the fixed section of the stirring rod (351), a hose hole and a fastening hole are formed in the fixed block (357), and the fastening hole and the fixed section of the stirring rod (351) are coaxially arranged;
the second transmission shaft (358) is coaxially and movably arranged in the fixed hole and rotates around the axial direction of the second transmission shaft (358), a gear set for realizing power transmission between the top end of the second transmission shaft (358) and the bottom end of the first transmission shaft (355) is arranged between the top end of the second transmission shaft (358) and the bottom end of the first transmission shaft (355), and the bottom end of the second transmission shaft (358) penetrates through the fastening hole and is positioned below the stirring rod (351);
the driving motor (359) is vertically installed on the fastening support, and the output end of the driving motor (359) is coaxially connected with the bottom end of the second transmission shaft (358) through a coupler.
10. The sub-element for decocting colla Corii Asini according to claim 9, wherein the liquid outlet assembly comprises a liquid outlet cylinder (352), a liquid outlet hose (353) and an output hose (354);
the liquid outlet cylinder (352) is of a semicircular shell structure with a closed upper end and a closed lower end, the liquid outlet cylinder (352) is coaxially and fixedly arranged in a stirring section of the stirring rod (351), a liquid suction port matched with the liquid outlet is formed in the outer circular surface of the liquid outlet cylinder (352), and two liquid outlet connection nozzles are formed in the lower end of the liquid outlet cylinder (352);
the liquid inlet end of the liquid outlet hose (353) is communicated with the liquid outlet nozzle of the liquid outlet barrel (352), and the number of the liquid outlet hose (353) is two; the liquid outlet ends of the two liquid outlet hoses (353) are connected and communicated;
one end of the output hose (354) is connected with the liquid outlet hose (353), and the other end of the output hose is connected with the liquid outlet control component (370);
the liquid outlet control component (370) comprises a liquid inlet pipeline (373), one end of the liquid inlet pipeline (373) is connected and communicated with the output hose (354), and the other end of the liquid inlet pipeline (373) is provided with a control valve (371) for opening or closing the liquid inlet pipeline (373);
the outside of the control valve (371) is connected with a liquid discharge pipeline, the other end of the liquid discharge pipeline is communicated with the liquid inlet end of the water pump, and the liquid outlet end of the water pump is connected with a storage container for storing the donkey-hide gelatin liquid.
CN202110369505.5A 2021-04-06 2021-04-06 A boil out glue son spare for donkey-hide gelatin system of decocting Withdrawn CN113142561A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110369505.5A CN113142561A (en) 2021-04-06 2021-04-06 A boil out glue son spare for donkey-hide gelatin system of decocting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110369505.5A CN113142561A (en) 2021-04-06 2021-04-06 A boil out glue son spare for donkey-hide gelatin system of decocting

Publications (1)

Publication Number Publication Date
CN113142561A true CN113142561A (en) 2021-07-23

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110369505.5A Withdrawn CN113142561A (en) 2021-04-06 2021-04-06 A boil out glue son spare for donkey-hide gelatin system of decocting

Country Status (1)

Country Link
CN (1) CN113142561A (en)

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Application publication date: 20210723