CN110975717A - Intermittent blanking formula weaving dyestuff preparation is with mixing mixer - Google Patents
Intermittent blanking formula weaving dyestuff preparation is with mixing mixer Download PDFInfo
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- CN110975717A CN110975717A CN201911264760.2A CN201911264760A CN110975717A CN 110975717 A CN110975717 A CN 110975717A CN 201911264760 A CN201911264760 A CN 201911264760A CN 110975717 A CN110975717 A CN 110975717A
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- 238000002156 mixing Methods 0.000 title claims abstract description 100
- 238000002360 preparation method Methods 0.000 title claims abstract description 11
- 239000000975 dye Substances 0.000 title claims description 33
- 238000009941 weaving Methods 0.000 title description 6
- 239000000463 material Substances 0.000 claims abstract description 63
- 238000003756 stirring Methods 0.000 claims abstract description 58
- 238000005192 partition Methods 0.000 claims abstract description 54
- 239000004753 textile Substances 0.000 claims abstract description 36
- 238000003825 pressing Methods 0.000 claims abstract description 27
- 238000007599 discharging Methods 0.000 claims abstract description 19
- 230000005540 biological transmission Effects 0.000 claims description 47
- 239000011148 porous material Substances 0.000 claims description 6
- 230000003014 reinforcing effect Effects 0.000 claims description 3
- 230000009471 action Effects 0.000 abstract description 5
- 238000005516 engineering process Methods 0.000 description 6
- 239000002994 raw material Substances 0.000 description 6
- 238000010586 diagram Methods 0.000 description 4
- 238000004043 dyeing Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 239000000049 pigment Substances 0.000 description 3
- 238000007639 printing Methods 0.000 description 3
- 238000009987 spinning Methods 0.000 description 3
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 3
- 150000001875 compounds Chemical class 0.000 description 2
- 239000004744 fabric Substances 0.000 description 2
- 239000000835 fiber Substances 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 239000000243 solution Substances 0.000 description 2
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000010790 dilution Methods 0.000 description 1
- 239000012895 dilution Substances 0.000 description 1
- 238000009826 distribution Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000004745 nonwoven fabric Substances 0.000 description 1
- 150000002894 organic compounds Chemical class 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 239000011343 solid material Substances 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
- 239000000979 synthetic dye Substances 0.000 description 1
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F31/00—Mixers with shaking, oscillating, or vibrating mechanisms
- B01F31/56—Mixers with shaking, oscillating, or vibrating mechanisms having a vibrating receptacle provided with stirring elements, e.g. independent stirring elements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F33/00—Other mixers; Mixing plants; Combinations of mixers
- B01F33/80—Mixing plants; Combinations of mixers
- B01F33/83—Mixing plants specially adapted for mixing in combination with disintegrating operations
- B01F33/831—Devices with consecutive working receptacles, e.g. with two intermeshing tools in one of the receptacles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F33/00—Other mixers; Mixing plants; Combinations of mixers
- B01F33/80—Mixing plants; Combinations of mixers
- B01F33/836—Mixing plants; Combinations of mixers combining mixing with other treatments
- B01F33/8361—Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating
- B01F33/83612—Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating by crushing or breaking
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/71—Feed mechanisms
- B01F35/717—Feed mechanisms characterised by the means for feeding the components to the mixer
- B01F35/71755—Feed mechanisms characterised by the means for feeding the components to the mixer using means for feeding components in a pulsating or intermittent manner
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F2101/00—Mixing characterised by the nature of the mixed materials or by the application field
- B01F2101/30—Mixing paints or paint ingredients, e.g. pigments, dyes, colours, lacquers or enamel
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- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Accessories For Mixers (AREA)
Abstract
The invention relates to the technical field of textile dye preparation, in particular to a mixing stirrer for preparing an intermittent blanking type textile dye; a servo motor is used as a power source to drive the first rotating shaft to rotate, on one hand, the second rotating shaft rotates around the axis of the first rotating shaft, and the effective working area of the stirring rod in the mixing basket is enlarged; on the other hand, the fourth rotating shaft is driven to rotate, so that the driven gear is driven to rotate through the driving gear, and the second rotating shaft is driven to rotate, so that the stirring rod plays a role in the mixing basket; on the other hand, the supporting bearing rotates along with the baffle plate, and when the supporting bearing rotates to the left side, the pressing plate is pressed to move left, so that the movable plate and the material through holes of the baffle plate are overlapped to realize blanking; when the supporting bearing is far away from the pressing plate, the pressing plate moves rightwards again under the action of a spring, so that the material passing holes of the movable plate and the partition plate are staggered to stop discharging, intermittent discharging is realized, and the real-time processing amount of dye is convenient to control.
Description
Technical Field
The invention relates to the technical field of textile dye preparation, in particular to an intermittent blanking type mixing stirrer for textile dye preparation.
Background
The original textile meaning is a general name taken from spinning and weaving, but with the continuous development and perfection of a textile knowledge system and a subject system, particularly after non-woven textile materials and three-dimensional compound weaving and other technologies are produced, the existing textile is not only the traditional hand-made spinning and weaving, but also clothing, industrial and decorative textiles produced by non-woven fabric technology, modern three-dimensional weaving technology, modern electrostatic nano-web technology and the like. Modern spinning therefore refers to a technique for the multi-scale structural processing of fibers or fiber assemblies. Ancient Chinese textile and printing and dyeing technology has a very long history, and ancient people have understood local materials in the early original society period in order to adapt to climate change, use natural resources as raw materials for textile and printing and dyeing and manufacture simple hand textile tools. Clothing, airbags and curtain carpets in daily life are products of textile and printing technologies.
The textile industry is an industry with high labor intensity and large external dependence in China, China is the biggest world textile garment production and export country, and the continuous and stable growth of the textile garment export is important for ensuring the foreign exchange storage, the international balance of collection and payment, the stable Renminbi exchange rate and solving the sustainable development of social employment and textile industry in China.
An important step in textile is dyeing of the fabric, which requires the use of dyes. Dyes are organic compounds that give other materials a vivid and strong hue, and are also called synthetic dyes because pigments used at present are artificially synthesized. Dyes and pigments are generally compounds which are inherently coloured and which are capable of giving other substances a vivid and strong shade in the molecular or dispersed state.
Color fastness refers to the ability of a dye or pigment to maintain its original color state under the influence of various external factors during use or subsequent processing of the dyed fabric. The color fastness is one of important quality indexes for measuring the finished dyed products, and the color fastness which is easy to fade is low, and the color fastness which is not easy to fade is high.
Most of common dye raw materials are in a solid state, and can be added into machine equipment for use only by adding water for dilution and uniformly stirring. At present, the dye mixing mode in the market is that the dye and water are put into a barrel and stirred by a manual tool, so that the stirring force is insufficient, the stirring is not uniform, and the time and the labor are wasted; or a common vertical stirrer is adopted, the corners of the mixing box cannot be stirred, the effective action area is small, and the dye is mixed unevenly; and most of raw materials are added into the raw materials during stirring, so that the real-time processing dosage of the dye is not easy to control.
Disclosure of Invention
Technical problem to be solved
The invention aims to overcome the defects in the prior art and provides a mixing stirrer for preparing an intermittent blanking type textile dye.
(II) technical scheme
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket, a feed hopper, a stirring assembly and a mixing basket;
the support comprises a bottom plate and a vertical plate arranged at the rear end of the bottom plate, and the mixing basket is arranged on the bottom plate;
the stirring assembly is arranged above the mixing basket and comprises a servo motor, a first rotating shaft, a second rotating shaft, a driven gear, a stirring rod, a fourth rotating shaft and a driving gear; the servo motor is fixedly connected with the vertical plate through a rod piece, the output end of the servo motor is downwards connected with a first rotating shaft, and the bottom end of the first rotating shaft is bent and connected with a supporting shaft sleeve; the second rotating shaft is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve; a first spherical crown and a second spherical crown are symmetrically arranged on the second rotating shaft, the planes of the two spherical crowns are oppositely arranged, and a driven gear is arranged between the second rotating shaft and the two spherical crowns; the second rotating shaft extends into the mixing basket and is circumferentially provided with stirring rods; the fourth rotating shaft is arranged on the right side of the first rotating shaft, the first rotating shaft is in transmission connection with the fourth rotating shaft, and the fourth rotating shaft is provided with a driving gear corresponding to the driven gear;
an upper supporting piece is arranged above the first spherical crown and comprises an upper supporting table and an upper bearing seat which are connected through an upper connecting rod, the upper supporting table is provided with a pore channel corresponding to the first spherical crown, the spherical surface of the first spherical crown is matched with the pore channel, and a fourth rotating shaft is rotatably connected with the upper bearing seat; a lower support piece is arranged below the second spherical crown and comprises a lower support platform and a lower bearing seat which are connected through a lower connecting rod, the lower support platform is provided with a pore channel corresponding to the second spherical crown, the spherical surface of the second spherical crown is matched with the pore channel, and a fourth rotating shaft is rotatably connected with the lower bearing seat; the upper supporting piece and the lower supporting piece are fixedly connected with the vertical plate through a rod piece;
the feed hopper is arranged on the left side of the stirring assembly and is connected with the vertical plate through a rod piece; the feeding hopper comprises a hopper body, a top cover, a partition plate and a movable plate, wherein the top cover is hinged to the top of the hopper body, the partition plate is arranged in the hopper body, and a first-class material passing hole is formed in the partition plate; the movable plate is arranged below the partition plate and is tightly attached to the partition plate, and the movable plate is provided with a second type material through hole; the right end of the movable plate is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body and is connected with a pressure plate, and a spring is arranged between the pressure plate and the outer wall of the bucket body; the horizontal height of the pressure plate is equal to the height of the supporting shaft sleeve, and when no external force acts, the material through holes of the movable plate and the partition plate are staggered by the springs to avoid blanking; when the supporting shaft sleeve rotates to the left side, the pressing plate is pressed to move left, so that the movable plate and the material through hole of the partition plate are overlapped to realize blanking; the bottom of the hopper body is connected with a discharging pipe, and the discharging pipe is aligned to the mixing basket.
Preferably, the cross section of the bucket body is square, the front and rear edges of the movable plate are in lap joint with the inner wall of the bucket body, and the length of the movable plate in the left and right directions is smaller than the side length of the cross section of the bucket body.
Preferably, a first driving wheel is arranged on the first rotating shaft, a second driving wheel is arranged at the top end of the fourth rotating shaft, and the first driving wheel is connected with the second driving wheel through a driving belt.
Preferably, the device also comprises a push-pull assembly, wherein the push-pull assembly comprises a crank, a sleeve, a push-pull rod, a linkage rod and a guide cylinder, the crank is arranged on the fourth rotating shaft, the sleeve is sleeved on the crank, and the sleeve is connected with the push-pull rod rightwards; the linkage rod comprises a first rod and a third rod which are arranged in parallel up and down, the first rod and the third rod penetrate through a guide cylinder in the horizontal direction rightwards, and the guide cylinder is fixedly connected with the vertical plate through a rod piece; the right ends of the first rod and the third rod are connected through a second rod; the left end of the first rod is hinged with the push-pull rod, and the left end of the third rod is connected with the mixing basket.
Preferably, the bottom plate is provided with a slide rail in the left-right direction, the bottom surface of the mixing basket is correspondingly provided with a slide block, and the slide block is connected with the slide rail in a sliding manner.
Preferably, still including shaking the material subassembly, shake the material subassembly and include No. four poles, three types of springs and bobbles, No. four poles are connected in the mixing basket left side, and No. four pole left sides top-down evenly is connected with many three types of springs, and three types of spring right-hand members are connected with the bobble, and when the mixing basket moved about, it caused intermittent type striking to the unloading pipe to drive the bobble and realized shaking the material.
Preferably, the crushing device also comprises a crushing assembly, wherein the crushing assembly comprises a transmission case arranged on the left side of the feed hopper, a third rotating shaft, a driven shaft and a crushing cutter; the transmission case rigid coupling is at bucket body left side outer wall, be provided with the three drive wheel of smashing of triangular distribution in the transmission case, and connect through the drive belt transmission, wherein two are smashed the drive wheel and set up in the top and be connected with the driven shaft respectively, the driven shaft stretches into the feeder hopper and is provided with crushing sword, another smashes the drive wheel setting in the below and is connected with No. three pivots, No. three pivots stretch out the gear box right and are connected with driven bevel gear, correspond in the pivot No. one and be provided with drive bevel gear, drive bevel gear and driven bevel gear vertical toothing.
Preferably, the joint of the bottom plate and the vertical plate is also provided with a reinforcing rib.
Preferably, the left end of the movable plate is also connected with an expansion rod, the expansion rod at the end extends out of the bucket body and is connected with an end plate, and a second-class spring is arranged between the end plate and the outer wall of the bucket body.
Preferably, the inner bottom of the mixing basket is also provided with an inclined plane with a higher side and a lower side, the lower side of the mixing basket is also connected with a discharge pipe, and the discharge pipe is provided with a valve.
(III) advantageous effects
The invention provides an intermittent blanking type mixing stirrer for preparing textile dye, which has the following advantages:
the method comprises the following steps that 1, a servo motor is used as a power source to drive a first rotating shaft to rotate, on one hand, a second rotating shaft rotates around the axis of the first rotating shaft, and the effective working area of a stirring rod in a mixing basket is enlarged; on the other hand, the fourth rotating shaft is driven to rotate, so that the driven gear is driven to rotate through the driving gear, and the second rotating shaft is driven to rotate, so that the stirring rod plays a role in the mixing basket; on the other hand, the supporting shaft sleeve rotates along with the supporting shaft sleeve, and when the supporting shaft sleeve rotates to the left side, the pressing plate is pressed to move left, so that the movable plate and the material through holes of the partition plate are overlapped to realize blanking; when the supporting shaft sleeve is far away from the pressure plate, the pressure plate moves rightwards again under the action of a spring, so that the material passing holes of the movable plate and the partition plate are staggered to stop discharging, intermittent discharging is realized, and the real-time processing amount of dye is convenient to control;
2, a push-pull assembly is further arranged, the material mixing basket is pushed and pulled by utilizing the rotation of the fourth rotating shaft through the action of the sleeve, the pull rod and the linkage rod, the material mixing basket is driven to move left and right, and the effective working area of the stirring rod is further increased;
3, a material vibrating component is also arranged, and when the mixing basket moves left and right, the small balls are driven to intermittently impact the blanking pipe to realize material vibration and assist in blanking;
4, still set up crushing unit, utilized a pivot to rotate, through bevel gear transmission, drive wheel transmission, realized that the driven shaft rotates, and then drive crushing sword work, smash the raw materials of input.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only for the present invention and protect some embodiments, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a block diagram of the present invention;
FIG. 2 is a view showing the construction of the stand according to the present invention;
FIG. 3 is a block diagram of the feed hopper of the present invention;
FIG. 4 is a structural view of a movable plate according to the present invention;
FIG. 5 is a block diagram of the transmission of the present invention;
FIG. 6 is a structural view of a driven shaft in the present invention;
FIG. 7 is a structural view of a stirring assembly of the present invention;
FIG. 8 is a view showing the structure of a supporting member according to the present invention;
FIG. 9 is a block diagram of the push-pull assembly of the present invention;
FIG. 10 is a structural view of a guide cylinder in the present invention;
FIG. 11 is a structural view of a mixing basket according to the present invention;
in the drawings, the components represented by the respective reference numerals are listed below:
1-bracket, 101-vertical plate, 102-bottom plate, 103-reinforcing rib, 2-feed hopper, 201-bucket body, 202-top cover, 203-clapboard, 204-first type material through hole, 205-movable plate, 206-second type material through hole, 207-pressing plate, 208-first type spring, 209-end plate, 210-second type spring, 211-discharging pipe, 212-transmission box, 213-crushing transmission wheel, 215-third rotating shaft, 217-driven shaft, 218-crushing knife, 219-driven bevel gear, 3-stirring component, 301-servo motor, 302-first rotating shaft, 303-first transmission wheel, 304-driving bevel gear, 305-supporting shaft sleeve, 306-second rotating shaft, 307-first spherical crown, 308-second spherical crown, 309-driven gear, 310-stirring rod, 311-transmission belt, 312-second transmission wheel, 313-fourth rotating shaft, 314-driving gear, 401-crank, 402-sleeve, 403-push-pull rod, 404-first rod, 405-second rod, 406-third rod, 5-mixing basket, 502-inclined plane, 503-slide block, 504-discharge pipe, 505-slide rail, 6-vibration material component, 601-fourth rod, 602-third spring, 603-small ball, 7-upper supporting piece, 701-upper supporting table, 702-upper connecting rod, 703-upper bearing block, 8-lower supporting piece, 801-lower supporting table, 802-lower connecting rod, 803-lower bearing block and 9-guide cylinder.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket 1, a feed hopper 2, a stirring component 3 and a mixing basket 5;
the support 1 comprises a bottom plate 102 and a vertical plate 101 fixedly connected to the rear end of the bottom plate 102, and the mixing basket 5 is placed on the bottom plate 102;
the stirring component 3 is arranged above the mixing basket 5 and comprises a servo motor 301, a first rotating shaft 302, a second rotating shaft 306, a driven gear 209, a stirring rod 310, a fourth rotating shaft 313 and a driving gear 314; the servo motor 301 is fixedly connected with the vertical plate 101 through a rod piece, the output end of the servo motor 301 is downwards connected with a first rotating shaft 302, and the bottom end of the first rotating shaft 302 is bent and connected with a supporting shaft sleeve 305; the second rotating shaft 306 is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve 305; a first spherical crown 307 and a second spherical crown 308 are symmetrically processed on the second rotating shaft 306, the planes of the two spherical crowns are oppositely arranged, and a driven gear 309 is arranged between the two spherical crowns corresponding to the second rotating shaft 306; the second rotating shaft 306 extends into the mixing basket 5 and is circumferentially connected with stirring rods 310; the fourth rotating shaft 313 is arranged on the right side of the first rotating shaft 302, the first rotating shaft 302 is in transmission connection with the fourth rotating shaft 313, and the fourth rotating shaft 313 is provided with a driving gear 314 corresponding to the driven gear 309;
an upper supporting piece 7 is arranged above the first spherical crown 307, the upper supporting piece 7 comprises an upper supporting table 701 and an upper bearing seat 703 which are connected through an upper connecting rod 702, a duct corresponding to the first spherical crown 307 is processed on the upper supporting table 701, the spherical surface of the first spherical crown 307 is matched with the duct, and a fourth rotating shaft 313 is rotatably connected with the upper bearing seat 703; a lower support 8 is arranged below the second spherical crown 308, the lower support 8 comprises a lower support table 801 and a lower bearing seat 803 which are connected through a lower connecting rod 802, a channel corresponding to the second spherical crown 308 is machined on the lower support table 801, the spherical surface of the second spherical crown 308 is matched with the channel, and a fourth rotating shaft 303 is rotatably connected with the lower bearing seat 803; the upper supporting piece 7 and the lower supporting piece 8 are fixedly connected with the vertical plate 101 through a rod piece;
the feed hopper 2 is arranged on the left side of the stirring assembly 3 and is connected with the vertical plate 101 through a rod piece; the feed hopper 2 comprises a hopper body 201, a top cover 202, a partition plate 203 and a movable plate 205, wherein the top cover 202 is hinged to the top of the hopper body 201, the partition plate 203 is arranged in the hopper body 201, and a first-class material passing hole 204 is processed on the partition plate 203; the movable plate 205 is arranged below the partition plate 203 and is tightly attached to the partition plate 203, and a second-type material through hole 206 is processed on the movable plate 205; the right end of the movable plate 205 is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body 201 and is connected with a pressing plate 207, and a spring 208 is connected between the pressing plate 207 and the outer wall of the bucket body 201; the horizontal height of the pressure plate 207 is equal to the height of the supporting shaft sleeve 305, and when no external force acts, the first-class spring 208 enables the material through holes of the movable plate 205 and the partition plate 203 to be staggered to avoid blanking; when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the movable plate 205 and the material passing hole of the partition plate 203 are overlapped to realize blanking; a discharging pipe 211 is connected to the bottom of the body 201, and the discharging pipe 211 is aligned with the mixing basket 5.
The cross section of the bucket body 201 is square, the front and back sides of the movable plate 205 are overlapped with the inner wall of the bucket body 201, and the length of the movable plate 205 in the left-right direction is smaller than the side length of the cross section of the bucket body 201, so that the bucket body is suitable for left-right movement.
The working principle of the device is that the top cover 202 is manually opened, solid materials are put into the hopper body 201, and a proper amount of water is injected into the mixing basket 5; the servo motor 301 is started, the first rotating shaft 302 rotates, on one hand, the second rotating shaft 306 rotates around the axis of the first rotating shaft 302, and the effective working area of the stirring rod 310 in the mixing basket 5 is enlarged; on the other hand, the fourth rotating shaft 313 is driven to rotate, so that the driven gear 309 is driven to rotate through the driving gear 314, and the second rotating shaft 306 is driven to rotate, so that the stirring rod 310 plays a role in the mixing basket 310; on the other hand, the supporting shaft sleeve 305 rotates, when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the material passing holes of the movable plate 205 and the partition plate 203 are overlapped to realize blanking; when the supporting shaft sleeve 305 is far away from the pressing plate 207, the pressing plate 207 moves rightwards again under the action of the first-class spring 208, so that the material passing holes of the movable plate 205 and the partition plate 203 are staggered to stop the blanking, the intermittent blanking is realized, and the real-time processing dosage of the dye is convenient to control.
Example 2
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket 1, a feed hopper 2, a stirring component 3 and a mixing basket 5;
the support 1 comprises a bottom plate 102 and a vertical plate 101 fixedly connected to the rear end of the bottom plate 102, and the mixing basket 5 is placed on the bottom plate 102;
the stirring component 3 is arranged above the mixing basket 5 and comprises a servo motor 301, a first rotating shaft 302, a second rotating shaft 306, a driven gear 209, a stirring rod 310, a fourth rotating shaft 313 and a driving gear 314; the servo motor 301 is fixedly connected with the vertical plate 101 through a rod piece, the output end of the servo motor 301 is downwards connected with a first rotating shaft 302, and the bottom end of the first rotating shaft 302 is bent and connected with a supporting shaft sleeve 305; the second rotating shaft 306 is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve 305; a first spherical crown 307 and a second spherical crown 308 are symmetrically processed on the second rotating shaft 306, the planes of the two spherical crowns are oppositely arranged, and a driven gear 309 is arranged between the two spherical crowns corresponding to the second rotating shaft 306; the second rotating shaft 306 extends into the mixing basket 5 and is circumferentially connected with stirring rods 310; the fourth rotating shaft 313 is arranged on the right side of the first rotating shaft 302, the first rotating shaft 302 is in transmission connection with the fourth rotating shaft 313, and the fourth rotating shaft 313 is provided with a driving gear 314 corresponding to the driven gear 309;
an upper supporting piece 7 is arranged above the first spherical crown 307, the upper supporting piece 7 comprises an upper supporting table 701 and an upper bearing seat 703 which are connected through an upper connecting rod 702, a duct corresponding to the first spherical crown 307 is processed on the upper supporting table 701, the spherical surface of the first spherical crown 307 is matched with the duct, and a fourth rotating shaft 313 is rotatably connected with the upper bearing seat 703; a lower support 8 is arranged below the second spherical crown 308, the lower support 8 comprises a lower support table 801 and a lower bearing seat 803 which are connected through a lower connecting rod 802, a channel corresponding to the second spherical crown 308 is machined on the lower support table 801, the spherical surface of the second spherical crown 308 is matched with the channel, and a fourth rotating shaft 303 is rotatably connected with the lower bearing seat 803; the upper supporting piece 7 and the lower supporting piece 8 are fixedly connected with the vertical plate 101 through a rod piece;
the feed hopper 2 is arranged on the left side of the stirring assembly 3 and is connected with the vertical plate 101 through a rod piece; the feed hopper 2 comprises a hopper body 201, a top cover 202, a partition plate 203 and a movable plate 205, wherein the top cover 202 is hinged to the top of the hopper body 201, the partition plate 203 is arranged in the hopper body 201, and a first-class material passing hole 204 is processed on the partition plate 203; the movable plate 205 is arranged below the partition plate 203 and is tightly attached to the partition plate 203, and a second-type material through hole 206 is processed on the movable plate 205; the right end of the movable plate 205 is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body 201 and is connected with a pressing plate 207, and a spring 208 is connected between the pressing plate 207 and the outer wall of the bucket body 201; the horizontal height of the pressure plate 207 is equal to the height of the supporting shaft sleeve 305, and when no external force acts, the first-class spring 208 enables the material through holes of the movable plate 205 and the partition plate 203 to be staggered to avoid blanking; when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the movable plate 205 and the material passing hole of the partition plate 203 are overlapped to realize blanking; a discharging pipe 211 is connected to the bottom of the body 201, and the discharging pipe 211 is aligned with the mixing basket 5.
The cross section of the bucket body 201 is square, the front and back sides of the movable plate 205 are overlapped with the inner wall of the bucket body 201, and the length of the movable plate 205 in the left-right direction is smaller than the side length of the cross section of the bucket body 201, so that the bucket body is suitable for left-right movement.
A first driving wheel 303 is arranged on the first rotating shaft 302, a second driving wheel 312 is arranged at the top end of the fourth rotating shaft 313, and the first driving wheel 313 and the second driving wheel 312 are connected through a driving belt 311 to achieve power transmission.
The push-pull assembly 4 comprises a crank 401, a sleeve 402, a push-pull rod 403, a linkage rod and a guide cylinder 9, wherein the crank 401 is arranged on the fourth rotating shaft 313, the sleeve 402 is sleeved on the crank 401, and the sleeve 402 is connected with the push-pull rod 403 rightwards; the linkage rod comprises a first rod 404 and a third rod 406 which are arranged in parallel up and down, the first rod 404 and the third rod 406 penetrate through the guide cylinder 9 in the horizontal direction rightwards, and the guide cylinder 9 is fixedly connected with the vertical plate 101 through a rod piece; the right ends of the first rod 404 and the third rod 406 are connected through a second rod 405; the left end of the first rod 404 is hinged with the push-pull rod 403, and the left end of the third rod 406 is connected with the mixing basket 5;
wherein, the bottom plate 102 is provided with a slide rail 505 in the left-right direction, the bottom surface of the mixing basket 5 is correspondingly provided with a slide block 503, and the slide block 503 is connected with the slide rail 505 in a sliding way.
Therefore, the fourth rotating shaft 313 rotates, the mixing basket 5 is pushed and pulled through the sleeve 402, the pull rod 403 and the linkage rod, the mixing basket 5 is driven to move left and right, and the effective working area of the stirring rod 310 is further increased.
Example 3
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket 1, a feed hopper 2, a stirring component 3 and a mixing basket 5;
the support 1 comprises a bottom plate 102 and a vertical plate 101 fixedly connected to the rear end of the bottom plate 102, and the mixing basket 5 is placed on the bottom plate 102;
the stirring component 3 is arranged above the mixing basket 5 and comprises a servo motor 301, a first rotating shaft 302, a second rotating shaft 306, a driven gear 209, a stirring rod 310, a fourth rotating shaft 313 and a driving gear 314; the servo motor 301 is fixedly connected with the vertical plate 101 through a rod piece, the output end of the servo motor 301 is downwards connected with a first rotating shaft 302, and the bottom end of the first rotating shaft 302 is bent and connected with a supporting shaft sleeve 305; the second rotating shaft 306 is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve 305; a first spherical crown 307 and a second spherical crown 308 are symmetrically processed on the second rotating shaft 306, the planes of the two spherical crowns are oppositely arranged, and a driven gear 309 is arranged between the two spherical crowns corresponding to the second rotating shaft 306; the second rotating shaft 306 extends into the mixing basket 5 and is circumferentially connected with stirring rods 310; the fourth rotating shaft 313 is arranged on the right side of the first rotating shaft 302, the first rotating shaft 302 is in transmission connection with the fourth rotating shaft 313, and the fourth rotating shaft 313 is provided with a driving gear 314 corresponding to the driven gear 309;
an upper supporting piece 7 is arranged above the first spherical crown 307, the upper supporting piece 7 comprises an upper supporting table 701 and an upper bearing seat 703 which are connected through an upper connecting rod 702, a duct corresponding to the first spherical crown 307 is processed on the upper supporting table 701, the spherical surface of the first spherical crown 307 is matched with the duct, and a fourth rotating shaft 313 is rotatably connected with the upper bearing seat 703; a lower support 8 is arranged below the second spherical crown 308, the lower support 8 comprises a lower support table 801 and a lower bearing seat 803 which are connected through a lower connecting rod 802, a channel corresponding to the second spherical crown 308 is machined on the lower support table 801, the spherical surface of the second spherical crown 308 is matched with the channel, and a fourth rotating shaft 303 is rotatably connected with the lower bearing seat 803; the upper supporting piece 7 and the lower supporting piece 8 are fixedly connected with the vertical plate 101 through a rod piece;
the feed hopper 2 is arranged on the left side of the stirring assembly 3 and is connected with the vertical plate 101 through a rod piece; the feed hopper 2 comprises a hopper body 201, a top cover 202, a partition plate 203 and a movable plate 205, wherein the top cover 202 is hinged to the top of the hopper body 201, the partition plate 203 is arranged in the hopper body 201, and a first-class material passing hole 204 is processed on the partition plate 203; the movable plate 205 is arranged below the partition plate 203 and is tightly attached to the partition plate 203, and a second-type material through hole 206 is processed on the movable plate 205; the right end of the movable plate 205 is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body 201 and is connected with a pressing plate 207, and a spring 208 is connected between the pressing plate 207 and the outer wall of the bucket body 201; the horizontal height of the pressure plate 207 is equal to the height of the supporting shaft sleeve 305, and when no external force acts, the first-class spring 208 enables the material through holes of the movable plate 205 and the partition plate 203 to be staggered to avoid blanking; when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the movable plate 205 and the material passing hole of the partition plate 203 are overlapped to realize blanking; a discharging pipe 211 is connected to the bottom of the body 201, and the discharging pipe 211 is aligned with the mixing basket 5.
The cross section of the bucket body 201 is square, the front and back sides of the movable plate 205 are overlapped with the inner wall of the bucket body 201, and the length of the movable plate 205 in the left-right direction is smaller than the side length of the cross section of the bucket body 201, so that the bucket body is suitable for left-right movement.
A first driving wheel 303 is arranged on the first rotating shaft 302, a second driving wheel 312 is arranged at the top end of the fourth rotating shaft 313, and the first driving wheel 313 and the second driving wheel 312 are connected through a driving belt 311 to achieve power transmission.
The push-pull assembly 4 comprises a crank 401, a sleeve 402, a push-pull rod 403, a linkage rod and a guide cylinder 9, wherein the crank 401 is arranged on the fourth rotating shaft 313, the sleeve 402 is sleeved on the crank 401, and the sleeve 402 is connected with the push-pull rod 403 rightwards; the linkage rod comprises a first rod 404 and a third rod 406 which are arranged in parallel up and down, the first rod 404 and the third rod 406 penetrate through the guide cylinder 9 in the horizontal direction rightwards, and the guide cylinder 9 is fixedly connected with the vertical plate 101 through a rod piece; the right ends of the first rod 404 and the third rod 406 are connected through a second rod 405; the left end of the first rod 404 is hinged with the push-pull rod 403, and the left end of the third rod 406 is connected with the mixing basket 5;
wherein, the bottom plate 102 is provided with a slide rail 505 in the left-right direction, the bottom surface of the mixing basket 5 is correspondingly provided with a slide block 503, and the slide block 503 is connected with the slide rail 505 in a sliding way.
Still including shaking material subassembly 6, shake material subassembly 6 and include No. four poles 601, three class springs 602 and bobble 603, No. four poles 601 are connected in the 5 left sides of mixing basket, and No. four poles 601 left sides top-down evenly is connected with many three class springs 602, and three class springs 602 right-hand members are connected with bobble 603, and when the mixing basket 5 removed from left to right, drive bobble 603 and cause intermittent type striking to realize shaking the material, supplementary unloading to unloading pipe 211.
Example 4
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket 1, a feed hopper 2, a stirring component 3 and a mixing basket 5;
the support 1 comprises a bottom plate 102 and a vertical plate 101 fixedly connected to the rear end of the bottom plate 102, and the mixing basket 5 is placed on the bottom plate 102;
the stirring component 3 is arranged above the mixing basket 5 and comprises a servo motor 301, a first rotating shaft 302, a second rotating shaft 306, a driven gear 209, a stirring rod 310, a fourth rotating shaft 313 and a driving gear 314; the servo motor 301 is fixedly connected with the vertical plate 101 through a rod piece, the output end of the servo motor 301 is downwards connected with a first rotating shaft 302, and the bottom end of the first rotating shaft 302 is bent and connected with a supporting shaft sleeve 305; the second rotating shaft 306 is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve 305; a first spherical crown 307 and a second spherical crown 308 are symmetrically processed on the second rotating shaft 306, the planes of the two spherical crowns are oppositely arranged, and a driven gear 309 is arranged between the two spherical crowns corresponding to the second rotating shaft 306; the second rotating shaft 306 extends into the mixing basket 5 and is circumferentially connected with stirring rods 310; the fourth rotating shaft 313 is arranged on the right side of the first rotating shaft 302, the first rotating shaft 302 is in transmission connection with the fourth rotating shaft 313, and the fourth rotating shaft 313 is provided with a driving gear 314 corresponding to the driven gear 309;
an upper supporting piece 7 is arranged above the first spherical crown 307, the upper supporting piece 7 comprises an upper supporting table 701 and an upper bearing seat 703 which are connected through an upper connecting rod 702, a duct corresponding to the first spherical crown 307 is processed on the upper supporting table 701, the spherical surface of the first spherical crown 307 is matched with the duct, and a fourth rotating shaft 313 is rotatably connected with the upper bearing seat 703; a lower support 8 is arranged below the second spherical crown 308, the lower support 8 comprises a lower support table 801 and a lower bearing seat 803 which are connected through a lower connecting rod 802, a channel corresponding to the second spherical crown 308 is machined on the lower support table 801, the spherical surface of the second spherical crown 308 is matched with the channel, and a fourth rotating shaft 303 is rotatably connected with the lower bearing seat 803; the upper supporting piece 7 and the lower supporting piece 8 are fixedly connected with the vertical plate 101 through a rod piece;
the feed hopper 2 is arranged on the left side of the stirring assembly 3 and is connected with the vertical plate 101 through a rod piece; the feed hopper 2 comprises a hopper body 201, a top cover 202, a partition plate 203 and a movable plate 205, wherein the top cover 202 is hinged to the top of the hopper body 201, the partition plate 203 is arranged in the hopper body 201, and a first-class material passing hole 204 is processed on the partition plate 203; the movable plate 205 is arranged below the partition plate 203 and is tightly attached to the partition plate 203, and a second-type material through hole 206 is processed on the movable plate 205; the right end of the movable plate 205 is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body 201 and is connected with a pressing plate 207, and a spring 208 is connected between the pressing plate 207 and the outer wall of the bucket body 201; the horizontal height of the pressure plate 207 is equal to the height of the supporting shaft sleeve 305, and when no external force acts, the first-class spring 208 enables the material through holes of the movable plate 205 and the partition plate 203 to be staggered to avoid blanking; when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the movable plate 205 and the material passing hole of the partition plate 203 are overlapped to realize blanking; a discharging pipe 211 is connected to the bottom of the body 201, and the discharging pipe 211 is aligned with the mixing basket 5.
The cross section of the bucket body 201 is square, the front and back sides of the movable plate 205 are overlapped with the inner wall of the bucket body 201, and the length of the movable plate 205 in the left-right direction is smaller than the side length of the cross section of the bucket body 201, so that the bucket body is suitable for left-right movement.
A first driving wheel 303 is arranged on the first rotating shaft 302, a second driving wheel 312 is arranged at the top end of the fourth rotating shaft 313, and the first driving wheel 313 and the second driving wheel 312 are connected through a driving belt 311 to achieve power transmission.
The push-pull assembly 4 comprises a crank 401, a sleeve 402, a push-pull rod 403, a linkage rod and a guide cylinder 9, wherein the crank 401 is arranged on the fourth rotating shaft 313, the sleeve 402 is sleeved on the crank 401, and the sleeve 402 is connected with the push-pull rod 403 rightwards; the linkage rod comprises a first rod 404 and a third rod 406 which are arranged in parallel up and down, the first rod 404 and the third rod 406 penetrate through the guide cylinder 9 in the horizontal direction rightwards, and the guide cylinder 9 is fixedly connected with the vertical plate 101 through a rod piece; the right ends of the first rod 404 and the third rod 406 are connected through a second rod 405; the left end of the first rod 404 is hinged with the push-pull rod 403, and the left end of the third rod 406 is connected with the mixing basket 5;
wherein, the bottom plate 102 is provided with a slide rail 505 in the left-right direction, the bottom surface of the mixing basket 5 is correspondingly provided with a slide block 503, and the slide block 503 is connected with the slide rail 505 in a sliding way.
Still including shaking material subassembly 6, shake material subassembly 6 and include No. four poles 601, three class springs 602 and bobble 603, No. four poles 601 are connected in the 5 left sides of mixing basket, and No. four poles 601 left sides top-down evenly is connected with many three class springs 602, and three class springs 602 right-hand members are connected with bobble 603, and when the mixing basket 5 removed from left to right, drive bobble 603 and cause intermittent type striking to realize shaking the material, supplementary unloading to unloading pipe 211.
The crushing assembly comprises a transmission case 212 arranged on the left side of the feed hopper 2, a third rotating shaft 215, a driven shaft 217 and a crushing knife 218; the transmission case 212 is fixedly connected to the outer wall of the left side of the hopper body 201, three crushing transmission wheels 213 which are distributed in a triangular mode are arranged in the transmission case 212 and are in transmission connection through transmission belts, two of the crushing transmission wheels are arranged above and are respectively connected with a driven shaft 217, the driven shaft 217 extends into the feeding hopper 201 and is provided with a crushing cutter 218, the other crushing transmission wheel is arranged below and is connected with a third rotating shaft 219, the third rotating shaft 219 extends out of the gear case 212 rightwards and is connected with a driven bevel gear 219, a first rotating shaft 302 is correspondingly provided with a driving bevel gear 304, and the driving bevel gear 304 is vertically meshed with the driven.
Therefore, the first rotating shaft 302 is rotated, and the driven shaft 217 is rotated through bevel gear transmission and driving wheel transmission, so that the crushing cutter 218 is driven to work, and the thrown raw materials are crushed.
Example 5
An intermittent blanking type mixing stirrer for preparing textile dye comprises a bracket 1, a feed hopper 2, a stirring component 3 and a mixing basket 5;
the support 1 comprises a bottom plate 102 and a vertical plate 101 fixedly connected to the rear end of the bottom plate 102, and the mixing basket 5 is placed on the bottom plate 102;
the stirring component 3 is arranged above the mixing basket 5 and comprises a servo motor 301, a first rotating shaft 302, a second rotating shaft 306, a driven gear 209, a stirring rod 310, a fourth rotating shaft 313 and a driving gear 314; the servo motor 301 is fixedly connected with the vertical plate 101 through a rod piece, the output end of the servo motor 301 is downwards connected with a first rotating shaft 302, and the bottom end of the first rotating shaft 302 is bent and connected with a supporting shaft sleeve 305; the second rotating shaft 306 is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve 305; a first spherical crown 307 and a second spherical crown 308 are symmetrically processed on the second rotating shaft 306, the planes of the two spherical crowns are oppositely arranged, and a driven gear 309 is arranged between the two spherical crowns corresponding to the second rotating shaft 306; the second rotating shaft 306 extends into the mixing basket 5 and is circumferentially connected with stirring rods 310; the fourth rotating shaft 313 is arranged on the right side of the first rotating shaft 302, the first rotating shaft 302 is in transmission connection with the fourth rotating shaft 313, and the fourth rotating shaft 313 is provided with a driving gear 314 corresponding to the driven gear 309;
an upper supporting piece 7 is arranged above the first spherical crown 307, the upper supporting piece 7 comprises an upper supporting table 701 and an upper bearing seat 703 which are connected through an upper connecting rod 702, a duct corresponding to the first spherical crown 307 is processed on the upper supporting table 701, the spherical surface of the first spherical crown 307 is matched with the duct, and a fourth rotating shaft 313 is rotatably connected with the upper bearing seat 703; a lower support 8 is arranged below the second spherical crown 308, the lower support 8 comprises a lower support table 801 and a lower bearing seat 803 which are connected through a lower connecting rod 802, a channel corresponding to the second spherical crown 308 is machined on the lower support table 801, the spherical surface of the second spherical crown 308 is matched with the channel, and a fourth rotating shaft 303 is rotatably connected with the lower bearing seat 803; the upper supporting piece 7 and the lower supporting piece 8 are fixedly connected with the vertical plate 101 through a rod piece;
the feed hopper 2 is arranged on the left side of the stirring assembly 3 and is connected with the vertical plate 101 through a rod piece; the feed hopper 2 comprises a hopper body 201, a top cover 202, a partition plate 203 and a movable plate 205, wherein the top cover 202 is hinged to the top of the hopper body 201, the partition plate 203 is arranged in the hopper body 201, and a first-class material passing hole 204 is processed on the partition plate 203; the movable plate 205 is arranged below the partition plate 203 and is tightly attached to the partition plate 203, and a second-type material through hole 206 is processed on the movable plate 205; the right end of the movable plate 205 is connected with an expansion rod, the expansion rod at the right end extends out of the bucket body 201 and is connected with a pressing plate 207, and a spring 208 is connected between the pressing plate 207 and the outer wall of the bucket body 201; the horizontal height of the pressure plate 207 is equal to the height of the supporting shaft sleeve 305, and when no external force acts, the first-class spring 208 enables the material through holes of the movable plate 205 and the partition plate 203 to be staggered to avoid blanking; when the supporting shaft sleeve 305 rotates to the left, the pressing plate 207 is pressed to move left, so that the movable plate 205 and the material passing hole of the partition plate 203 are overlapped to realize blanking; a discharging pipe 211 is connected to the bottom of the body 201, and the discharging pipe 211 is aligned with the mixing basket 5.
The cross section of the bucket body 201 is square, the front and back sides of the movable plate 205 are overlapped with the inner wall of the bucket body 201, and the length of the movable plate 205 in the left-right direction is smaller than the side length of the cross section of the bucket body 201, so that the bucket body is suitable for left-right movement.
A first driving wheel 303 is arranged on the first rotating shaft 302, a second driving wheel 312 is arranged at the top end of the fourth rotating shaft 313, and the first driving wheel 313 and the second driving wheel 312 are connected through a driving belt 311 to achieve power transmission.
The push-pull assembly 4 comprises a crank 401, a sleeve 402, a push-pull rod 403, a linkage rod and a guide cylinder 9, wherein the crank 401 is arranged on the fourth rotating shaft 313, the sleeve 402 is sleeved on the crank 401, and the sleeve 402 is connected with the push-pull rod 403 rightwards; the linkage rod comprises a first rod 404 and a third rod 406 which are arranged in parallel up and down, the first rod 404 and the third rod 406 penetrate through the guide cylinder 9 in the horizontal direction rightwards, and the guide cylinder 9 is fixedly connected with the vertical plate 101 through a rod piece; the right ends of the first rod 404 and the third rod 406 are connected through a second rod 405; the left end of the first rod 404 is hinged with the push-pull rod 403, and the left end of the third rod 406 is connected with the mixing basket 5;
wherein, the bottom plate 102 is provided with a slide rail 505 in the left-right direction, the bottom surface of the mixing basket 5 is correspondingly provided with a slide block 503, and the slide block 503 is connected with the slide rail 505 in a sliding way.
Still including shaking material subassembly 6, shake material subassembly 6 and include No. four poles 601, three class springs 602 and bobble 603, No. four poles 601 are connected in the 5 left sides of mixing basket, and No. four poles 601 left sides top-down evenly is connected with many three class springs 602, and three class springs 602 right-hand members are connected with bobble 603, and when the mixing basket 5 removed from left to right, drive bobble 603 and cause intermittent type striking to realize shaking the material, supplementary unloading to unloading pipe 211.
The crushing assembly comprises a transmission case 212 arranged on the left side of the feed hopper 2, a third rotating shaft 215, a driven shaft 217 and a crushing knife 218; the transmission case 212 is fixedly connected to the outer wall of the left side of the hopper body 201, three crushing transmission wheels 213 which are distributed in a triangular mode are arranged in the transmission case 212 and are in transmission connection through transmission belts, two of the crushing transmission wheels are arranged above and are respectively connected with a driven shaft 217, the driven shaft 217 extends into the feeding hopper 201 and is provided with a crushing cutter 218, the other crushing transmission wheel is arranged below and is connected with a third rotating shaft 219, the third rotating shaft 219 extends out of the gear case 212 rightwards and is connected with a driven bevel gear 219, a first rotating shaft 302 is correspondingly provided with a driving bevel gear 304, and the driving bevel gear 304 is vertically meshed with the driven.
Wherein, the joint of the bottom plate 102 and the vertical plate 101 is also provided with a reinforcing rib 103 for providing stability;
wherein, the left end of the movable plate 205 is also connected with an expanding rod, the expanding rod at the end extends out of the bucket body 201 and is connected with an end plate 209, and a second-class spring 210 is connected between the end plate 209 and the outer wall of the bucket body 201 to ensure a sufficient restoring force.
Wherein, the inner bottom of the mixing basket 5 is also provided with an inclined plane 502 with a higher side and a lower side, the lower side of the mixing basket is also connected with a discharge pipe 503, and a valve is arranged on the discharge pipe 503.
It should be noted that the control method of the above-mentioned electric control element is the prior art, and is generally described herein for avoiding the redundancy of description.
In the description herein, references to the description of "one embodiment," "an example," "a specific example," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The preferred embodiments of the invention disclosed above are intended to be illustrative only. The preferred embodiments are not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and the practical application, to thereby enable others skilled in the art to best utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims (10)
1. An intermittent blanking type mixing stirrer for preparing textile dye is characterized by comprising a bracket (1), a feed hopper (2), a stirring component (3) and a mixing basket (5);
the support (1) comprises a bottom plate (102) and a vertical plate (101) arranged at the rear end of the bottom plate (102), and the mixing basket (5) is arranged on the bottom plate (102);
the stirring assembly (3) is arranged above the mixing basket (5) and comprises a servo motor (301), a first rotating shaft (302), a second rotating shaft (306), a driven gear (309), a stirring rod (310), a fourth rotating shaft (313) and a driving gear (314); the servo motor (301) is fixedly connected with the vertical plate (101) through a rod piece, the output end of the servo motor (301) is downwards connected with a first rotating shaft (302), and the bottom end of the first rotating shaft (302) is bent and connected with a supporting shaft sleeve (305); the second rotating shaft (306) is obliquely arranged, and the top end of the second rotating shaft is arranged in the supporting shaft sleeve (305); a first spherical crown (307) and a second spherical crown (308) are symmetrically arranged on the second rotating shaft (306), the planes of the two spherical crowns are oppositely arranged, and a driven gear (309) is arranged between the second rotating shaft (306) and the two spherical crowns; the second rotating shaft (306) extends into the mixing basket (5) and is circumferentially provided with stirring rods (310); the fourth rotating shaft (313) is arranged on the right side of the first rotating shaft (302), the first rotating shaft (302) is in transmission connection with the fourth rotating shaft (313), and the fourth rotating shaft (313) is provided with a driving gear (314) corresponding to the driven gear (309);
an upper supporting piece (7) is arranged above the first spherical crown (307), the upper supporting piece (7) comprises an upper supporting table (701) and an upper bearing seat (703) which are connected through an upper connecting rod (702), the upper supporting table (701) is provided with a pore channel corresponding to the first spherical crown (307), the spherical surface of the first spherical crown (307) is matched with the pore channel, and a fourth rotating shaft (313) is rotatably connected with the upper bearing seat (703); a lower supporting piece (8) is arranged below the second spherical crown (308), the lower supporting piece (8) comprises a lower supporting platform (801) and a lower bearing seat (803) which are connected through a lower connecting rod (802), the lower supporting platform (801) is provided with a hole channel corresponding to the second spherical crown (308), the spherical surface of the second spherical crown (308) is matched with the hole channel, and a fourth rotating shaft (313) is rotatably connected with the lower bearing seat (803); the upper supporting piece (7) and the lower supporting piece (8) are fixedly connected with the vertical plate (101) through a rod piece;
the feed hopper (2) is arranged on the left side of the stirring assembly (3) and is connected with the vertical plate (101) through a rod piece; the feeding hopper (2) comprises a hopper body (201), a top cover (202), a partition plate (203) and a movable plate (205), the top cover (202) is hinged to the top of the hopper body (201), the partition plate (203) is arranged in the hopper body (201), and a first-class material passing hole (204) is formed in the partition plate (203); the movable plate (205) is arranged below the partition plate (203) and is tightly attached to the partition plate (203), and the movable plate (205) is provided with a second type of material through holes (206); the right end of the movable plate (205) is connected with an expanding rod, the expanding rod at the right end extends out of the bucket body (201) and is connected with a pressing plate (207), and a first-class spring (208) is arranged between the pressing plate (207) and the outer wall of the bucket body (201); the horizontal height of the pressure plate (207) is equal to the height of the supporting shaft sleeve (305), and when no external force acts, the first class spring (208) enables the material through holes of the movable plate (205) and the partition plate (203) to be staggered to avoid blanking; when the supporting shaft sleeve (305) rotates to the left side, the pressing plate (207) is pressed to move left, so that the movable plate (205) and the material passing holes of the partition plate (203) are overlapped to realize blanking; the bottom of the hopper body (201) is connected with a discharging pipe (211), and the discharging pipe (211) is aligned to the mixing basket (5).
2. The intermittent blanking type textile dye preparation mixing and stirring machine as claimed in claim 1, wherein the cross section of the bucket body (201) is square, the front and back edges of the movable plate (205) are overlapped with the inner wall of the bucket body (201), and the length of the movable plate (205) in the left-right direction is smaller than the side length of the cross section of the bucket body (201).
3. The intermittent blanking type textile dye preparation mixing and stirring machine as claimed in claim 2, wherein a first driving wheel (303) is arranged on the first rotating shaft (302), a second driving wheel (312) is arranged at the top end of the fourth rotating shaft, and the first driving wheel (303) and the second driving wheel (312) are connected through a driving belt (311).
4. The intermittent blanking type textile dye preparation mixing and stirring machine is characterized by further comprising a push-pull assembly, wherein the push-pull assembly comprises a crank (401), a sleeve (402), a push-pull rod (403), a linkage rod and a guide cylinder (9), the crank (401) is arranged on a fourth rotating shaft (313), the sleeve (402) is sleeved on the crank (401), and the sleeve (402) is connected with the push-pull rod (403) to the right; the linkage rod comprises a first rod (404) and a third rod (406) which are arranged in parallel up and down, the first rod (404) and the third rod (406) penetrate through the guide cylinder (9) in the horizontal direction rightwards, and the guide cylinder (9) is fixedly connected with the vertical plate (101) through the rod; the right ends of the first rod (404) and the third rod (406) are connected through a second rod (405); the left end of the first rod (404) is hinged with the push-pull rod (403), and the left end of the third rod (406) is connected with the mixing basket (5).
5. The intermittent blanking type textile dye preparation mixing and stirring machine as claimed in claim 4, characterized in that the bottom plate (102) is provided with left and right slide rails (505), the bottom surface of the mixing basket (5) is correspondingly provided with slide blocks (503), and the slide blocks (503) are connected with the slide rails (505) in a sliding manner.
6. The mixing and stirring machine for preparing the intermittent blanking type textile dye is characterized by further comprising a material vibrating component (6), wherein the material vibrating component (6) comprises a four-rod (601), three-type springs (602) and small balls (603), the four-rod (601) is connected to the left side of the material mixing basket (5), the left side of the four-rod (601) is uniformly connected with a plurality of three-type springs (602) from top to bottom, the right end of each three-type spring (602) is connected with the small ball (603), and when the material mixing basket (5) moves left and right, the small balls (603) are driven to cause intermittent impact on the blanking pipe (211) to realize material vibration.
7. A mixer-blender for preparing textile dyes with intermittent blanking according to claim 6, characterized by also comprising a crushing assembly, said crushing assembly comprises a transmission case (212) arranged at the left side of the feed hopper (2), a third rotating shaft (215), a driven shaft (217) and a crushing knife (218); the transmission case (212) is fixedly connected to the outer wall of the left side of the hopper body (201), three crushing transmission wheels (213) which are distributed in a triangular mode are arranged in the transmission case (212) and are in transmission connection through a transmission belt (311), wherein the two crushing transmission wheels (213) are arranged above and are respectively connected with a driven shaft (217), the driven shaft (217) extends into the feeding hopper (2) and is provided with a crushing cutter (218), the other crushing transmission wheel (213) is arranged below and is connected with a third rotating shaft (215), the third rotating shaft (215) extends out of the gear case rightwards and is connected with a driven bevel gear (219), a driving bevel gear (304) is correspondingly arranged on the first rotating shaft (302), and the driving bevel gear (304) is vertically meshed with the driven bevel gear.
8. A mixing and stirring machine for preparing intermittent blanking type textile dye, according to claim 7, characterized in that a reinforcing rib (103) is further arranged at the joint of the bottom plate (102) and the vertical plate (101).
9. The intermittent blanking type textile dye preparation mixing and stirring machine as claimed in claim 8, characterized in that the left end of the movable plate (205) is also connected with a widening rod, the widening rod at the end extends out of the bucket body (201) and is connected with an end plate (209), and a second type spring (210) is arranged between the end plate (209) and the outer wall of the bucket body (201).
10. An intermittent blanking type textile dye preparation mixing and stirring machine as claimed in claim 9, characterized in that the inner bottom of the mixing basket (5) is further provided with a slope (502) with a high side and a low side, the mixing basket (5) is further connected with a discharge pipe (504) with a corresponding low side, and a valve is arranged on the discharge pipe (504).
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| CN201911264760.2A CN110975717A (en) | 2019-12-11 | 2019-12-11 | Intermittent blanking formula weaving dyestuff preparation is with mixing mixer |
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| CN201911264760.2A CN110975717A (en) | 2019-12-11 | 2019-12-11 | Intermittent blanking formula weaving dyestuff preparation is with mixing mixer |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112808063A (en) * | 2021-01-04 | 2021-05-18 | 长沙理工大学 | A mix husky box automatically for basin experiment |
| CN117144533A (en) * | 2023-10-24 | 2023-12-01 | 山东恒利纺织科技有限公司 | Breathable sun-proof fabric and preparation process thereof |
| CN119075838A (en) * | 2024-11-04 | 2024-12-06 | 洛阳恒玖生物能源有限公司 | A stirring device for preparing bio-light oil |
-
2019
- 2019-12-11 CN CN201911264760.2A patent/CN110975717A/en not_active Withdrawn
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112808063A (en) * | 2021-01-04 | 2021-05-18 | 长沙理工大学 | A mix husky box automatically for basin experiment |
| CN117144533A (en) * | 2023-10-24 | 2023-12-01 | 山东恒利纺织科技有限公司 | Breathable sun-proof fabric and preparation process thereof |
| CN117144533B (en) * | 2023-10-24 | 2024-01-02 | 山东恒利纺织科技有限公司 | Breathable sun-proof fabric and preparation process thereof |
| CN119075838A (en) * | 2024-11-04 | 2024-12-06 | 洛阳恒玖生物能源有限公司 | A stirring device for preparing bio-light oil |
| CN119075838B (en) * | 2024-11-04 | 2025-04-01 | 洛阳恒玖生物能源有限公司 | A stirring device for preparing bio-light oil |
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Application publication date: 20200410 |