High-melting-point butter fat and butter fractionation and separation equipment with self-cleaning function
By designing a high-melting and cream butter separation equipment with self-cleaning function, the water channel nozzle and conical filter structure are used to solve the problem of inconvenience in the equipment cleaning, and the automatic cleaning and solid grease are effectively separated, improving the cleaning efficiency and convenience of the equipment.
Patent Information
- Application Number
- CN202510854606.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2045-06-25
AI Technical Summary
Traditional high-melting point cream butter separation equipment is inconvenient during cleaning, resulting in cream butter materials sticking to the equipment, affecting subsequent use and prone to deterioration.
A high-melting point cream butter separation device with self-cleaning function is designed, including a cleaning mechanism and a filtering mechanism. The equipment is automatically cleaned by water channels, nozzles, water pumps and power sources, and the filtration and scraping of solid grease is achieved through a combined structure of a conical filter and a butterfly scraper.
It realizes the self-cleaning function of the equipment, reduces the adhesion of solid grease, promotes the filtration and separation of solid grease, avoids clogging, and improves the cleaning efficiency and convenience of use of the equipment.
Smart Images

Figure CN120361606A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of separation, and particularly to a high-melting-point milk fat butter fractionation separation device with a self-cleaning function. Background Art
[0002] Milk fat butter is a yellow fat substance extracted from milk and is widely used in cooking and baking. Milk fat butter can be divided into three categories: regular butter, unsalted butter, and salted butter. The fractionation separation of milk fat butter refers to using the difference in the composition of triglycerides with different melting points in its fat, and through physical methods such as cooling, crystallization, filtration, etc., to separate the liquid oil and solid fat in the butter, so as to obtain fat components with different melting points and functional characteristics. The fat of milk fat butter is composed of various triglycerides, and the melting points of different triglycerides are different. For example, the melting point of short-chain fatty acid glycerides is relatively low, and the melting point of long-chain saturated fatty acid glycerides is relatively high. By controlling the temperature, the high-melting-point fat is first crystallized and precipitated, and then separated from the low-melting-point liquid oil by means of filtration or centrifugation, etc., so as to achieve separation.
[0003] At present, after the traditional high-melting-point milk fat butter fractionation separation device fractionates and separates the milk fat butter, it is inconvenient to clean, resulting in the adhesion of the milk fat butter material inside the device, making the cleaning inconvenient, and the deterioration of the milk fat butter material adhering to the inside of the device over time will affect subsequent use. Summary of the Invention
[0004] To achieve the above objectives, the present invention is realized through the following technical solutions: A high-melting-point milk fat butter fractionation separation device with a self-cleaning function, comprising: A separation tank, and a feed pipe fixedly installed at the top side of the surface of the separation tank. An outlet pipe is installed at the bottom of the separation tank, and a cleaning mechanism is installed at the top of the inner cavity of the separation tank; The cleaning mechanism includes a bent tooth and a water tank. The bent tooth is rotatably installed at the conical surface at the top of the inner cavity of the separation tank. The water tank is installed at the side of the surface of the separation tank. A power source is installed at the side of the top of the separation tank. One end of the bent tooth away from the inner wall of the separation tank is rotatably installed with a water channel. Nozzles are communicated on both sides of the outer circular surface of the water channel. A swing assembly is installed at the middle of the top of the inner cavity of the separation tank. A water pump is installed at the top of the water tank. The water in the water tank is sucked out by the liquid inlet of the water pump, and through the connection of a hose, the water enters the inside of the water channel and sprays out from the nozzles, so as to flush the inside of the separation tank and wash away the milk fat butter material in time to achieve self-cleaning; A filtering mechanism, which is used for fractionating and separating high-melting-point milk fat butter, and the filtering mechanism is installed inside the separation tank; In which, the filtering mechanism includes an annular track and a slider, the annular track is fixedly installed on the top of the inner wall of the separation tank, the slider is slidably installed in the cavity at the bottom of the annular track, the bottom of the slider is fixedly installed with a conical frame, the inner side surface of the conical frame is fixedly connected with a conical filter screen, the middle of the bottom of the conical frame is fixedly connected with a snap-on cap, the inner side surface of the annular track is fixedly connected with a stopper, and a return spring is fixedly connected between the surface of the stopper and the surface of the slider. As the cream fat butter falls and is supported by the conical frame and combined, the cream fat butter will fall into the interior of the conical filter screen, and the high-melting-point cream fat butter can be filtered through the conical filter screen, thereby separating the liquid oil and the solid fat. By using the conical filter screen with a gradually increasing diameter from bottom to top, the solid fat can slide down along the inner wall of the conical filter screen and gather at the bottom of the conical filter screen, which is helpful for the subsequent centralized treatment of the solid fat.
[0005] Preferably, the water channel is installed at an angle, the nozzles are evenly installed on both sides of the outer circumferential surface of the water channel, and the connecting shaft at the end of the bent tooth extends to the interior of the power source.
[0006] As the bending teeth are driven by the output end of the power source to rotate, the water channel is in a swinging state, which can drive the nozzle to swing, increase the water spraying range of the nozzle, and reduce the occurrence of dead corners, thereby helping to evenly clean the inner cavity of the separation tank.
[0007] Preferably, the liquid inlet end of the water pump extends to the interior of the water tank, and the liquid outlet of the water pump is connected to the liquid inlet at the middle of the waterway surface through a hose.
[0008] Preferably, the swing assembly includes a support frame, both ends of the support frame surface are fixedly connected to the conical surface at the top of the inner cavity of the separation tank, a torsion frame is rotatably installed at the center of the support frame, the water channel passes through the center of the torsion frame, and the middle of the water channel surface is hinged to the torsion frame, the bottom end of the torsion frame is fixedly connected to a bending rod, the bottom end of the bending rod is fixedly connected to a butterfly scraper, the top of the butterfly scraper is fixedly connected to a right-angle toggle rod, and the bending teeth can be driven to rotate by the rotation of the output end of the power source The water channel is movable, and combined with the rotating installation between the water channel and the bending teeth, the water channel swings. Through the swing of the water channel and the rotation support of the torsion frame by the support frame, the water channel applies a driving force to the torsion frame, which can cause the torsion frame to twist. With the continuous circular rotation of the bending teeth, the torsion frame twists back and forth, and the bending rod and the butterfly scraper are driven by the torsion frame to rotate back and forth. The rotation of the butterfly scraper can scrape off the solid grease attached to the inner wall of the conical filter, reduce the solid grease sticking to the inner wall of the conical filter, and realize self-cleaning.
[0009] Preferably, the butterfly scraper is installed at an angle, there are three butterfly scrapers, and the three butterfly scrapers are evenly installed inside the conical filter, and the right-angle toggle rod extends from one end of the butterfly scraper to between the bottom of the annular track and the top of the conical frame.
[0010] When the butterfly scraper is used to drive the right-angle toggle lever to rotate, the right-angle toggle lever applies a toggle force to the slider, and the conical filter screen rotates through the sliding of the slider, and the return spring is compressed; As the right-angle toggle lever is driven by the butterfly scraper to rotate in the opposite direction, the toggle force on the slider disappears, and under the elastic force of the reset spring, the slider drives the conical filter to rotate in the opposite direction, thereby utilizing the reciprocating rotation of the conical filter to keep the conical filter in a dynamic state at all times, thereby promoting the filtering and separation of solid fat and preventing clogging.
[0011] Preferably, the sliders are evenly distributed inside the annular track, the stoppers are evenly distributed inside the annular track, and the sliders and the stoppers are staggered.
[0012] Preferably, the return spring is arc-shaped, there are three return springs, and the three return springs are evenly distributed inside the annular track, and the diameter of the conical filter increases gradually from bottom to top.
[0013] Preferably, a heating mechanism is fixedly installed in the middle of the separation tank, and the heating mechanism includes a connecting frame, a square block on the surface of the connecting frame is fixedly connected to the inner wall of the separation tank, a heater is fixedly installed on the inner side surface of the connecting frame, and a curling elastic plate is fixedly connected to the surface of the heater, a three-claw connecting rod is fixedly connected to the middle of the bottom of the connecting frame, and a spherical support platform is fixedly connected to the center of the three-claw connecting rod, and a ball is rollingly installed on the surface of the spherical support platform. As the right-angle toggle rod is toggled, the conical frame rotates, and the spherical surface of the ball is fitted with the inner side surface of the snap-on cap, so that the ball can roll, and the frictional resistance is reduced through rolling friction, so that the conical frame drives the conical filter to rotate smoothly.
[0014] Preferably, the connecting frame is installed directly below the conical frame, the heater is installed at an angle, the heater is evenly installed on the inner side of the connecting frame, and the curling elastic plate is evenly installed on the surface of the heater. The heat generated by the heater can heat the cream fat and butter material that falls into the conical filter, so that the temperature of the cream fat and butter material increases, and the low-melting point cream fat and butter becomes more sparse, which is convenient for passing through the conical filter and flowing downward, while the high-melting point solid fat will not melt and will be filtered out. In addition, there is a connecting frame between the heater and the conical filter, so that the heater can heat the cream fat and butter material inside the conical filter through air, which is not easy to cause burning.
[0015] Preferably, the spherical support platform is embedded inside the clamping cap. The ball bearings are evenly distributed on the surface of the spherical support platform. The spherical surface of the ball bearings is in contact with the inner side of the clamping cap. Through the support of the heater for the crimping elastic plate, and by using the rotation of the conical frame, the arc-shaped crimping part of the crimping elastic plate contacts the edge of the conical frame. And the arc-shaped crimping of the crimping elastic plate is elastically deformed under the top pressure of the conical frame. And by separating the conical frame from the arc-shaped crimping of the crimping elastic plate, through the elastic force of the crimping elastic plate itself, the crimping part of the crimping elastic plate is elastically reset, and then the conical filter screen can be knocked, causing the conical filter screen to vibrate, further prompting the solid fat filtered by the conical filter screen to roll downwards.
[0016] The present invention provides a high-melting-point milk fat butter fractionation separation device with a self-cleaning function, having the following beneficial effects: First, for the high-melting-point milk fat butter fractionation separation device with a self-cleaning function, as the milk fat butter falls and is supported by the conical frame, and combined with the fact that the milk fat butter will fall into the conical filter screen, the high-melting-point milk fat butter can be filtered through the conical filter screen, so that the liquid oil and solid fat are separated. And by using the fact that the diameter of the conical filter screen gradually increases from bottom to top, the solid fat will slide down along the inner wall of the conical filter screen and gather at the bottom of the conical filter screen, which helps to centrally process the solid fat subsequently.
[0017] Second, for the high-melting-point milk fat butter fractionation separation device with a self-cleaning function, by using the rotation of the output end of the power source, the bent teeth can be driven to rotate, causing the water channel to swing. Through the swing of the water channel, a driving force is exerted on the twisting frame, so that the twisting frame can twist. Along with the continuous circular rotation of the bent teeth, the twisting frame twists reciprocally, and the bending rod and the butterfly-shaped scraper are driven by the twisting frame to rotate reciprocally together. Thus, by the rotation of the butterfly-shaped scraper, the solid fat attached to the inner wall of the conical filter screen is scraped off, reducing the adhesion of the solid fat to the inner wall of the conical filter screen and realizing self-cleaning.
[0018] Third, for the high-melting-point milk fat butter fractionation separation device with a self-cleaning function, the water in the water tank is sucked out through the liquid inlet of the water pump, and under the connection of the hose, the water enters the inside of the water channel and sprays out from the nozzle, so that the inside of the separation tank can be rinsed, and the milk fat butter material can be washed away in time, realizing self-cleaning.
[0019] Fourth, for the high-melting-point milk fat butter fractionation separation device with a self-cleaning function, as the bent teeth are driven to rotate by the output end of the power source, the water channel is in a swinging state, which can drive the nozzle to swing, increasing the spraying range of the nozzle and making it not easy to have dead corners, thus helping to evenly clean the inner cavity of the separation tank.
[0020] 5. The high-melting-point cream and butter separation equipment with self-cleaning function uses a right-angle toggle lever to apply a toggle force to the slider, so that the conical filter can be rotated through the sliding of the slider, and the reset spring is compressed. As the right-angle toggle lever is driven by the butterfly scraper to rotate in the opposite direction, the toggle force on the slider disappears, and under the elastic force of the reset spring, the slider drives the conical filter to rotate in the opposite direction, so that the conical filter is always in a dynamic state by the reciprocating rotation of the conical filter, which promotes the filtering and separation of solid fat and is not prone to clogging.
[0021] 6. The high-melting-point butter fat separation and extraction equipment with self-cleaning function, as the right-angle toggle lever is turned, the conical frame rotates, and the spherical surface of the ball surface fits with the inner side of the snap-on cap, so that the ball can roll, and the friction resistance is reduced through rolling friction, so that the conical frame drives the conical filter to rotate smoothly.
[0022] 7. The high melting point butter separation equipment with self-cleaning function can heat the butter material falling into the conical filter by using the heat of the heater, so that the temperature of the butter material increases, and the low melting point butter becomes more sparse, which is convenient for passing through the conical filter and flowing downward, while the high melting point solid fat will not melt and will be filtered down, and there is a connecting frame between the heater and the conical filter, so that the heater can heat the butter material inside the conical filter through air, which is not easy to be burnt 8. The high-melting-point cream and butter separation equipment with self-cleaning function utilizes the curved edge of the curled elastic plate to be elastically deformed by the top pressure of the conical frame, and utilizes the conical frame and the curved edge of the curled elastic plate to separate. The curled edge of the curled elastic plate is elastically reset by the elastic force of the curled elastic plate itself, so that the conical filter can be knocked to vibrate the conical filter, further prompting the solid fat filtered by the conical filter to roll down. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the high melting point butter fat separation equipment with self-cleaning function of the present invention; Figure 2 It is a schematic diagram of the internal structure of the cross section of the high melting point butter fat separation device with self-cleaning function of the present invention; Figure 3 It is a schematic diagram of the connection structure between the cleaning mechanism and the separation tank of the present invention; Figure 4 It is a schematic diagram of the overall structure of the cleaning mechanism of the present invention; Figure 5 It is a schematic diagram of the connection structure between the filtering mechanism and the separation tank of the present invention; Figure 6Schematic diagram of the overall structure of the filtering mechanism of the present invention; Figure 7 Schematic sectional view of the filtering mechanism of the present invention; Figure 8 Schematic diagram of the connection structure between the heating mechanism and the separation tank of the present invention; Figure 9 Schematic diagram of the split structure between the heating mechanism and the filtering mechanism of the present invention.
[0024] In the figure: 1, separation tank; 2, feed pipe; 3, discharge pipe; 4, cleaning mechanism; 5, filtering mechanism; 6, heating mechanism; 41, bending teeth; 42, water tank; 43, power source; 44, water channel; 45, nozzle; 46, swinging assembly; 47, water pump; 461, support frame; 462, twisting frame; 463, bending rod; 464, butterfly scraper; 465, right-angle toggle rod; 51, annular track; 52, slider; 53, conical frame; 54, conical filter screen; 55, clamping cap; 56, stop block; 57, return spring; 61, connection frame; 62, heater; 63, curled elastic plate; 64, three-claw connecting rod; 65, spherical support platform; 66, ball. Detailed implementation manners
[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0026] The first embodiment is as Figures 1 to 4 shown. The present invention provides a technical solution: A high-melting-point milk fat butter fractionation separation device with a self-cleaning function, comprising: A separation tank 1, and a feed pipe 2 fixedly installed on the top side of the surface of the separation tank 1. A discharge pipe 3 is installed at the bottom of the separation tank 1, and a cleaning mechanism 4 is installed at the top of the inner cavity of the separation tank 1; The cleaning mechanism 4 includes a bent tooth 41 and a water tank 42. The bent tooth 41 is rotatably mounted on the conical surface at the top of the inner cavity of the separation tank 1. The water tank 42 is mounted on the side of the surface of the separation tank 1. A power source 43 is mounted on the side of the top of the separation tank 1. A water channel 44 is rotatably mounted on one end of the bent tooth 41 away from the inner wall of the separation tank 1. Both sides of the outer cylindrical surface of the water channel 44 are connected with nozzles 45. A swing assembly 46 is mounted in the middle of the top of the inner cavity of the separation tank 1. A water pump 47 is mounted on the top of the water tank 42. When the separation of high-melting-point butter and fat is completed, the staff starts the water pump 47 to work, and uses the liquid inlet of the water pump 47 to suck out the water in the water tank 42. Under the connection of the hose, the water enters the inside of the water channel 44 and is sprayed out from the nozzle 45, so that the inside of the separation tank 1 can be cleaned. The water channel 44 is installed at an angle, and the nozzles 45 are evenly installed on both sides of the outer circumferential surface of the water channel 44. As the bending teeth 41 are driven by the output end of the power source 43 to rotate, the water channel 44 is in a swinging state, which can drive the nozzles 45 to swing, thereby increasing the water spraying range of the nozzles 45 and evenly cleaning the inner cavity of the separation tank 1.
[0027] The liquid inlet end of the water pump 47 extends to the interior of the water tank 42 , and the liquid outlet of the water pump 47 is connected to the liquid inlet at the middle of the surface of the water channel 44 through a hose.
[0028] The swing assembly 46 includes a support frame 461, both ends of the support frame 461 surface are fixedly connected to the conical surface at the top of the inner cavity of the separation tank 1, a torsion frame 462 is rotatably installed at the center of the support frame 461, the water channel 44 passes through the center of the torsion frame 462, and the middle of the surface of the water channel 44 is hinged to the torsion frame 462, the bottom end of the torsion frame 462 is fixedly connected to a bending rod 463, the bottom end of the bending rod 463 is fixedly connected to a butterfly scraper 464, and the top of the butterfly scraper 464 is fixedly connected to a right-angle toggle rod 465. The staff turns on the power source 43 to work, and utilizes the rotation of the output end of the power source 43. The bending teeth 41 can be driven to rotate, and the water channel 44 and the bending teeth 41 are rotatably installed to make the water channel 44 swing. Through the swing of the water channel 44 and the rotational support of the twisting frame 462 by the support frame 461, the water channel 44 applies a driving force to the twisting frame 462, so that the twisting frame 462 can be twisted. With the continuous circular rotation of the bending teeth 41, the twisting frame 462 twists back and forth, and the bending rod 463 and the butterfly scraper 464 are driven by the twisting frame 462 to rotate back and forth, so that the solid grease attached to the inner wall of the conical filter 54 is scraped off by the rotation of the butterfly scraper 464.
[0029] The butterfly-shaped scraping plate 464 is inclinedly installed. There are three butterfly-shaped scraping plates 464, and the three butterfly-shaped scraping plates 464 are evenly installed inside the conical filter screen 54. One end of the right-angled toggle rod 465 away from the butterfly-shaped scraping plate 464 extends between the bottom of the annular track 51 and the top of the conical frame 53.
[0030] Second embodiment. On the basis of the first embodiment, please refer to Figures 1 to 7 as shown in The filtering mechanism 5 is used for fractionation separation of high-melting-point milk fat butter. The filtering mechanism 5 is installed inside the separation tank 1. Among them, the filtering mechanism 5 includes an annular track 51 and a slider 52. The annular track 51 is fixedly installed at the top of the inner wall of the separation tank 1. The slider 52 is slidably installed in the cavity at the bottom of the annular track 51. A conical frame 53 is fixedly installed at the bottom of the slider 52. A conical filter screen 54 is fixedly connected to the inner side surface of the conical frame 53. A clamping cap 55 is fixedly connected to the middle of the bottom of the conical frame 53. A stop block 56 is fixedly connected to the inner side surface of the annular track 51. A return spring 57 is fixedly connected between the surface of the stop block 56 and the surface of the slider 52. Inject the milk fat butter to be separated and processed into the separation tank 1 from the feed pipe 2. As the milk fat butter falls and is supported by the conical frame 53, and combined with the fact that the milk fat butter will fall into the conical filter screen 54, the high-melting-point milk fat butter can be filtered through the conical filter screen 54, so as to separate the liquid oil and the solid fat. And by using the fact that the diameter of the conical filter screen 54 gradually increases from bottom to top, the solid fat will slide down along the inner wall of the conical filter screen 54 and gather at the bottom of the conical filter screen 54.
[0031] The sliders 52 are evenly distributed inside the annular track 51, the stop blocks 56 are evenly distributed inside the annular track 51, and the sliders 52 and the stop blocks 56 are arranged alternately.
[0032] One end of the right-angled toggle rod 465 extends between the bottom of the annular track 51 and the top of the conical frame 53. When the butterfly-shaped scraping plate 464 drives the right-angled toggle rod 465 to rotate, the right-angled toggle rod 465 exerts a pushing force on the slider 52. Then, through the sliding of the slider 52, the conical filter screen 54 rotates, and the return spring 57 is compressed. As the right-angled toggle rod 465 is driven by the butterfly-shaped scraping plate 464 to rotate in the reverse direction, the pushing force on the slider 52 disappears. Under the elastic force of the return spring 57, the slider 52 drives the conical filter screen 54 to rotate in the reverse direction. Thus, by using the reciprocating rotation of the conical filter screen 54, the conical filter screen 54 is always in a dynamic state, promoting the filtering and separation of the solid fat.
[0033] Third embodiment. On the basis of the first and second embodiments, please refer to Figures 1 to 9 as shown in A heating mechanism 6 is fixedly installed in the middle of the separation tank 1, and the heating mechanism 6 includes a connecting frame 61. The square block on the surface of the connecting frame 61 is fixedly connected to the inner wall of the separation tank 1, and a heater 62 is fixedly installed on the inner side surface of the connecting frame 61. A curling elastic plate 63 is fixedly connected to the surface of the heater 62. A three-claw connecting rod 64 is fixedly connected to the middle of the bottom of the connecting frame 61, and a spherical support platform 65 is fixedly connected to the center of the three-claw connecting rod 64. A ball 66 is rollingly installed on the surface of the spherical support platform 65. As the right-angle toggle rod 465 is toggled, the conical frame 53 rotates, and the spherical surface of the ball 66 fits with the inner side surface of the snap-on cap 55, so that the ball 66 can roll. Through rolling friction, the conical frame 53 drives the conical filter screen 54 to rotate smoothly.
[0034] The connecting frame 61 is installed directly below the conical frame 53, and the heater 62 is installed at an angle. The heater 62 is evenly installed on the inner side of the connecting frame 61, and the curling elastic plate 63 is evenly installed on the surface of the heater 62. The staff turns on the heater 62 to work, and uses the heat generated by the heater 62 to heat the cream and butter material that falls into the conical filter 54, so that the temperature of the cream and butter material increases, and the low-melting-point cream and butter become more sparse, which is convenient for passing through the conical filter 54 and flowing downward, while the high-melting-point solid fat will not melt and will be filtered down. The connecting frame 61 is separated between the heater 62 and the conical filter 54, so that the heater 62 heats the cream and butter material inside the conical filter 54 in the air to avoid burning.
[0035] The spherical support platform 65 is embedded in the interior of the snap-on cap 55, and the balls 66 are evenly distributed on the surface of the spherical support platform 65. The spherical surface of the balls 66 fits with the inner side surface of the snap-on cap 55. The heater 62 supports the curling elastic plate 63, and the conical frame 53 is rotated to make the curved curling of the curling elastic plate 63 contact the edge of the conical frame 53, and the curved curling of the curling elastic plate 63 is elastically deformed by the top pressure of the conical frame 53, and the conical frame 53 is used to separate the curved curling of the curling elastic plate 63, and the elastic force of the curling elastic plate 63 itself is used to make the curling of the curling elastic plate 63 elastically reset, so that the conical filter screen 54 can be knocked, so that the conical filter screen 54 vibrates, and the solid fat filtered by the conical filter screen 54 rolls down.
[0036] When in use, firstly, the butter to be separated and processed is injected from the feed pipe 2 into the interior of the separation tank 1. As the butter falls, and under the support of the conical frame 53, the butter falls into the interior of the conical filter 54, and the high melting point butter is filtered through the conical filter 54, so that the liquid oil and the solid fat are separated. In addition, the diameter of the conical filter 54 gradually increases from bottom to top, so that the solid fat can slide down along the inner wall of the conical filter 54 and gather at the bottom of the conical filter 54. One end of the right-angle toggle rod 465 extends to between the bottom of the annular track 51 and the top of the conical frame 53, and the butterfly scraper 464 drives the right-angle toggle rod 465 to rotate, so that the right-angle toggle rod 465 applies a toggle force to the slider 52, and the slider 52 slides, the conical filter 54 rotates, and the return spring 57 is compressed. As the right-angle toggle rod 465 is driven by the butterfly scraper 464 to rotate in the opposite direction, the toggle force on the slider 52 disappears, and under the elastic force of the return spring 57, the slider 52 drives the conical filter 54 to rotate in the opposite direction, so that the conical filter 54 is always in a dynamic state by the reciprocating rotation of the conical filter 54, which promotes the filtration and separation of solid fat. At the same time, as the right-angled toggle rod 465 is toggled, the conical frame 53 rotates, and the spherical surface of the ball 66 fits with the inner side of the clamping cap 55, so that the ball 66 can roll. Through rolling friction, the conical frame 53 drives the conical filter 54 to rotate smoothly. The staff turns on the heater 62 to heat the butter material falling into the conical filter 54, so that the temperature of the butter material increases, and the low-melting-point butter becomes more sparse, which is convenient for passing through the conical filter 54 and flowing downward, while the high-melting-point solid fat will not melt and will be filtered down. The heater 62 and the conical filter 54 are separated by a connecting frame 61, so that the heater 62 heats the butter material inside the conical filter 54 in the air to avoid burning. The heater 62 supports the curling elastic plate 63, and the conical frame 53 is rotated to make the curved curling of the curling elastic plate 63 contact the edge of the conical frame 53, and the curved curling of the curling elastic plate 63 is elastically deformed by the top pressure of the conical frame 53, and the conical frame 53 is separated from the curved curling of the curling elastic plate 63, and the curling of the curling elastic plate 63 is elastically reset by the elastic force of the curling elastic plate 63 itself, so that the conical filter 54 can be knocked, so that the conical filter 54 vibrates, and the solid fat filtered by the conical filter 54 rolls down; Moreover, after the separation of high-melting-point milk fat butter is completed, the staff turns on the water pump 47 to work. The water in the water tank 42 is sucked out through the liquid inlet of the water pump 47, and under the connection of the hose, the water enters the inside of the water channel 44 and sprays out from the nozzle 45, so as to clean the inside of the separation tank 1; As the bending teeth 41 are driven by the output end of the power source 43 to rotate, the water channel 44 is in a swinging state, which can drive the nozzle 45 to swing, increasing the spraying range of the nozzle 45 and evenly cleaning the inner cavity of the separation tank 1.
[0037] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent in such process, method, article or device. Without further limitation, an element defined by the statement "comprising a..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.
[0038] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A high-melting-point milk fat butter fractionation separation device with a self-cleaning function, characterized in that, include: A separation tank (1), and a feed pipe (2) fixedly mounted on the top side of the surface of the separation tank (1), a discharge pipe (3) mounted on the bottom of the separation tank (1), and a cleaning mechanism (4) mounted on the top of the inner cavity of the separation tank (1); The cleaning mechanism (4) comprises a bent tooth (41) and a water tank (42), wherein the bent tooth (41) is rotatably mounted on a conical surface at the top of the inner cavity of the separation tank (1), the water tank (42) is mounted on the side of the surface of the separation tank (1), a power source (43) is mounted on the side of the top of the separation tank (1), a water channel (44) is rotatably mounted on one end of the bent tooth (41) away from the inner wall of the separation tank (1), both sides of the outer circumferential surface of the water channel (44) are connected to nozzles (45), a swing assembly (46) is mounted in the middle of the top of the inner cavity of the separation tank (1), and a water pump (47) is mounted on the top of the water tank (42); A filtering mechanism (5), the filtering mechanism (5) being used to separate and extract high melting point butter fat, the filtering mechanism (5) being installed inside the separation tank (1); The filtering mechanism (5) comprises an annular track (51) and a slider (52); the annular track (51) is fixedly mounted on the top of the inner wall of the separation tank (1); the slider (52) is slidably mounted in a cavity at the bottom of the annular track (51); a conical frame (53) is fixedly mounted on the bottom of the slider (52); a conical filter screen (54) is fixedly connected to the inner side surface of the conical frame (53); a clamping cap (55) is fixedly connected to the middle of the bottom of the conical frame (53); a stopper (56) is fixedly connected to the inner side surface of the annular track (51); and a return spring (57) is fixedly connected between the surface of the stopper (56) and the surface of the slider (52).
2. The high melting point milk fat butter fractionation separation device with self-cleaning function according to claim 1, characterized in that: The water channel (44) is installed at an angle, the nozzles (45) are evenly installed on both sides of the outer circumferential surface of the water channel (44), and the connecting shaft at the end of the bent tooth (41) extends into the interior of the power source (43).
3. The high-melting-point milk fat butter fractionation separation equipment with a self-cleaning function according to claim 1, characterized in that: The liquid inlet end of the water pump (47) extends to the interior of the water tank (42), and the liquid outlet of the water pump (47) is connected to the liquid inlet at the middle of the surface of the water channel (44) via a hose.
4. The high-melting-point milk fat butter fractionation separation equipment with self-cleaning function according to claim 1, characterized in that: The swing assembly (46) comprises a support frame (461), the two ends of the surface of the support frame (461) are fixedly connected to the conical surface at the top of the inner cavity of the separation tank (1), a twisting frame (462) is rotatably mounted at the center of the support frame (461), the water channel (44) passes through the center of the twisting frame (462), and the middle of the surface of the water channel (44) is hinged to the twisting frame (462), the bottom end of the twisting frame (462) is fixedly connected to a bending rod (463), the bottom end of the bending rod (463) is fixedly connected to a butterfly scraper (464), and the top of the butterfly scraper (464) is fixedly connected to a right-angle toggle rod (465).
5. The high-melting-point milk fat butter fractionation separation equipment with self-cleaning function according to claim 4, characterized in that: The butterfly-shaped scraper (464) is installed obliquely. There are three butterfly-shaped scrapers (464), and the three butterfly-shaped scrapers (464) are evenly installed inside the conical filter screen (54). One end of the right-angle toggle rod (465) away from the butterfly-shaped scraper (464) extends between the bottom of the annular track (51) and the top of the conical frame (53).
6. The high-melting-point milk fat butter fractionation separation equipment with a self-cleaning function according to claim 1, characterized in that: The sliders (52) are evenly distributed inside the annular track (51). The stoppers (56) are evenly distributed inside the annular track (51), and the sliders (52) and the stoppers (56) are arranged alternately.
7. A high melting point milk fat butter fractionation separation device with a self-cleaning function according to claim 1, characterized in that: The return spring (57) is arc-shaped. There are three return springs (57), and the three return springs (57) are evenly distributed inside the annular track (51). The caliber of the conical filter screen (54) gradually increases from bottom to top.
8. The high-melting-point milk fat butter fractionation separation equipment with self-cleaning function according to claim 1, characterized in that: A heating mechanism (6) is fixedly installed at the middle part inside the separation tank (1). The heating mechanism (6) includes a connection frame (61). The square blocks on the surface of the connection frame (61) are fixedly connected to the inner wall of the separation tank (1). A heater (62) is fixedly installed on the inner side surface of the connection frame (61). A curled elastic plate (63) is fixedly connected to the surface of the heater (62). A three-claw connecting rod (64) is fixedly connected to the middle part of the bottom of the connection frame (61). A spherical support platform (65) is fixedly connected to the center of the three-claw connecting rod (64). A ball (66) is rollingly installed on the surface of the spherical support platform (65).
9. The high melting point milk fat butter fractionation separation equipment with self-cleaning function according to claim 8, characterized in that: The connection frame (61) is installed directly below the conical frame (53). The heater (62) is installed obliquely. The heaters (62) are evenly installed on the inner side surface of the connection frame (61). The curled elastic plates (63) are evenly installed on the surface of the heaters (62).
10. A high melting point milk fat butter fractionation separation device with a self-cleaning function according to claim 8, characterized in that: The spherical support platform (65) is embedded inside the clamping cap (55). The balls (66) are evenly distributed on the surface of the spherical support platform (65). The spherical surface of the balls (66) fits against the inner side surface of the clamping cap (55).
Citation Information
Patent Citations
Solid-liquid separator and filter
CA2228340A1
Grease filtering device
CN117065449A
Concentration device and method for preparing synthetic raw material medicine
CN118594006A
Industrial mixed grease chloride ion removal device and method
CN119140044A
Soluble sugar filtering device for candy food processing
CN119455487A