A feed mixer for a beef cattle farm
By designing a linkage adjustment mechanism and a sealing adjustment component, the applicability of existing feed mixers used in beef cattle farms to feeds of different particle sizes has been solved, achieving precise mixing and stable equipment operation, and expanding the equipment's applicability range.
Patent Information
- Application Number
- CN202311654275.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-04
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-12-04
AI Technical Summary
Existing feed mixers used in beef cattle farms are difficult to precisely adjust the mixing according to the different feed particle sizes used in different beef cattle farms, resulting in poor applicability. In addition, feed dust is easily generated during the mixing process, which affects the operation of the equipment.
The system employs a linkage adjustment mechanism, a sealing adjustment component, and a synchronous adjustment component. Through the linkage and adjustment of components such as the linkage shaft, guide groove, guide support, and arc-shaped adjusting grinding cutter, it achieves precise mixing of feed pellets of different diameters. The sealing component prevents dust from entering, ensuring stable operation of the equipment.
It enables mixing according to the feed particle size required by the user, expands the applicability of mixing, ensures the accuracy of mixing and the stability of the equipment, and prevents dust from entering and affecting the operation of the equipment.
Smart Images

Figure CN117482823B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of breeding equipment, more particularly, the present application relates to a feed mixer for beef cattle farm. BACKGROUND
[0002] Beef cattle is a kind of cattle, which is characterized by full body, fast weight gain, high feed conversion rate, good meat performance and good meat quality. However, beef cattle mainly feeds on roughage, which cannot meet its nutritional needs, so it needs to be supplemented with concentrated feed. When using feed, a mixer is needed to mix various feeds to provide sufficient nutrients for beef cattle.
[0003] In the prior art, a vertical feed mixer for beef cattle breeding is disclosed in patent No. CN213050263U. The existing feed mixer has poor mixing effect and cannot guarantee the uniformity of the feed. Moreover, it is inconvenient to dry the feed during mixing, and the mixed feed cannot be discharged in time, which reduces the processing efficiency and quality of the feed. The patent sets a driving motor, which drives the driving wheel, transmission belt and driven wheel to rotate through the cooperation of the shaft, stirring rod and stirring frame, thereby stirring the feed in the machine body and improving the uniformity of the feed during mixing, ensuring the processing quality of the feed and further improving the processing efficiency of the vertical feed mixer for beef cattle breeding. However, the feed mixer for beef cattle farm still has the following defects.
[0004] The above-mentioned mixer has poor mixing suitability because it is difficult to mix the feed with different diameters and particle sizes according to the user's needs during mixing, and it is difficult to achieve precise mixing adjustment. Therefore, a feed mixer for beef cattle farm is provided. SUMMARY
[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides a feed mixer for beef cattle farm.
[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical solution: a feed mixer for beef cattle farm, comprising a mixer housing, a linkage shaft is installed inside the mixer housing, and a linkage adjustment mechanism is connected to the outer wall of the linkage shaft.
[0007] The linkage adjusting mechanism comprises a linkage rotating disc arranged on the outer wall of the linkage rotating shaft, the top end of the linkage rotating disc is provided with a plurality of guide grooves arranged at equal intervals in a circular ring, the inside of each guide groove is provided with a guide support, the outer wall of the guide support is horizontally and slidably connected with a sleeved slider, the top end of the sleeved slider is fixedly connected with a linkage concave plate, the inner wall of the linkage concave plate and close to one end thereof is fixedly connected with a supporting shaft, the outer wall of the supporting shaft is provided with a rotationally connected inclined sleeved hinged frame, one end of the linkage concave plate is sequentially provided with a linkage support block, an arc-shaped linkage support plate and an arc-shaped adjusting grinding tooth cutter from left to right, the outer wall of the linkage support block is provided with a sealing adjusting assembly, and the outer wall of the inclined sleeved hinged frame and close to the top end thereof is provided with a synchronous adjusting assembly.
[0008] Preferably, the guide supports are fixedly connected with the linkage rotating discs to which the guide grooves belong, the sleeved sliders are horizontally and slidably connected with the linkage rotating discs to which the guide grooves belong, the linkage concave plate is welded with the linkage support block, and the linkage support block and the arc-shaped adjusting grinding tooth cutter are fixedly connected with the arc-shaped linkage support plate.
[0009] Preferably, one side of the arc-shaped adjusting grinding tooth cutter is provided with a plurality of fixed arc-shaped grinding tooth cutters arranged at equal intervals in a circular ring, the fixed arc-shaped grinding tooth cutters are fixedly connected with the mixer shell, a distance sensor is fixedly connected in one of the fixed arc-shaped grinding tooth cutters, a sleeved shaft ring is slidably connected with the outer wall of the guide support and located at the side of the sleeved slider, a stirring rod for stirring is fixedly connected with the outer wall of the linkage rotating shaft and located below the linkage rotating disc, a plurality of inclined pulverizing blades for cutting feed are sequentially fixedly connected with one side of each inclined sleeved hinged frame from top to bottom, a lower discharge pipe is fixedly connected with the bottom end of the mixer shell, mounting brackets are fixedly connected with the two sides of the mixer shell and located close to the lower discharge pipe, and a controller is fixedly connected with one side of the mounting bracket.
[0010] By adopting the above technical scheme, the inclined sleeved hinged frame drives the supporting shaft to move horizontally, the linkage concave plate drives the sleeved slider to move along the inside of the guide groove and the outer wall of the guide support, the sleeved shaft ring moves along the outer wall of the guide support, the arc-shaped linkage support plate drives the arc-shaped adjusting grinding tooth cutter to move rightward, the arc-shaped adjusting grinding tooth cutter can move close to the fixed arc-shaped grinding tooth cutter, and the distance sensor in the fixed arc-shaped grinding tooth cutter can sense the tooth spacing between the arc-shaped adjusting grinding tooth cutter and the fixed arc-shaped grinding tooth cutter.
[0011] Preferably, the sealing adjusting assembly comprises a rubber stretching ring fixedly arranged on the outer wall of the linkage support block, a rubber ring arranged on the top end of the rubber stretching ring, and a lower rubber ring arranged on the bottom end of the rubber stretching ring, a sleeve frame block fixedly connected to the outer wall of the linkage recessed plate and located at one side of the inclined sleeve jointed hinged frame, a sealing rubber ring fixedly connected to the outer wall of the sleeve frame block and fixedly connected to the linkage turntable, a fixed recessed block fixedly connected to the outer wall of the inclined sleeve jointed hinged frame and located at the top end of the upper rubber ring, a inclined sealing rubber ring arranged on the outer wall of the sealing rubber ring, a support ring fixedly connected to the inner wall of the inclined sealing rubber ring and located close to the top end of the inclined sealing rubber ring, a rubber flow guide ring arranged on the top end of the inclined sealing rubber ring, a fixed support ring fixedly connected to the top end of the rubber flow guide ring, and the fixed support ring and the support ring are welded between the linkage rotating shaft, the upper rubber ring and the lower rubber ring are integrally formed by injection molding between the rubber stretching ring, and the inclined sealing rubber ring is integrally formed by injection molding between the sealing rubber ring and the rubber flow guide ring.
[0012] By adopting the technical scheme, the linkage recessed plate drives the linkage support block to stretch the rubber stretching ring to the right, the rubber stretching ring drives the upper rubber ring to stretch, the rubber stretching ring drives the lower rubber ring to stretch on the linkage turntable, the fixed recessed block drives the upper rubber ring to stretch, the sealing rubber ring can drive the inclined sealing rubber ring to stretch when stretching, the linkage rotating shaft supports the fixed support ring and the support ring, the fixed support ring supports the rubber flow guide ring, the inclined sleeve jointed hinged frame and the support shaft connection can be stretched in linkage, feed dust cannot enter the inside of the support shaft, feed dust cannot enter the inside of the guide groove, and the sleeve sliding block cannot be moved.
[0013] Preferably, the synchronous adjusting assembly comprises a concave hinge block arranged on the outer wall of the inclined sleeve joint hinge frame and close to the top end position, one side of the concave hinge block is provided with a linkage guide sliding ring in vertical sliding connection with the linkage rotating shaft, the inside of the linkage guide sliding ring is provided with two guide branches fixedly connected with the linkage rotating shaft, the outer wall of the linkage rotating shaft is fixedly connected with a guide frame plate at a position above the linkage guide sliding ring, the inside of the guide frame plate is rotatably connected with a linkage adjusting screw, the outer wall of the linkage adjusting screw is threadedly connected with a threaded sleeve joint support block, one side of the outer wall of the threaded sleeve joint support block is mounted with a linkage adjusting support plate, the top end of the linkage adjusting screw extends above the guide frame plate and is coaxially drivingly connected with a servo reduction motor, the servo reduction motor is fixedly connected between the guide frame plate, the upper side of the linkage rotating shaft is provided with a rotating shaft and a rotating motor arranged in equal distance from bottom to top, the rotating shaft is fixedly connected between the rotating motor output end and the linkage rotating shaft, the bottom end of the rotating motor and a position outside the rotating shaft are fixedly connected with a conductive slip ring, the upper side of the rotating motor is mounted with a concave fixing frame, the concave fixing frame is fixedly connected between the rotating motor and the blender shell, the threaded sleeve joint support block and the linkage guide sliding ring are fixedly connected with the linkage adjusting support plate, the threaded sleeve joint support block and the linkage adjusting support plate are vertically slidingly connected with the guide frame plate.
[0014] By the above technical scheme, the servo reduction motor drives the linkage adjusting screw to rotate inside the guide frame plate, the linkage adjusting screw drives the threaded sleeve joint support block to move downward along the guide frame plate under the action of the thread, the linkage adjusting support plate drives the linkage guide sliding ring to move downward along the outer wall of the guide branch and the outer wall of the linkage rotating shaft, the concave hinge block drives the top end of the inclined sleeve joint hinge frame to move downward for adjustment, the rotating motor drives the rotating shaft to rotate, the rotating shaft drives the linkage rotating shaft to rotate the guide branch, the guide frame plate rotates the linkage adjusting screw, the linkage adjusting screw drives the servo reduction motor to rotate, the servo reduction motor can rotate around the conductive slip ring and be electrified, the linkage guide sliding ring drives the plurality of concave hinge blocks to rotate, the concave hinge block drives the inclined sleeve joint hinge frame to rotate the supporting shaft, the linkage concave plate drives the linkage support block to rotate the arc linkage support plate, the high-speed rotation of the arc-shaped adjusting grinding tooth cutter and the engagement with the fixed arc-shaped grinding tooth cutter again stir and crush the feed according to the specified diameter particles.
[0015] Technical effects and advantages of the present application:
[0016] 1. This invention employs a linkage adjustment mechanism to cause the inclined sleeve hinge frame to move the support shaft horizontally. The support shaft drives the linkage concave plate to move the sleeve slider along the inside of the guide groove and the outer wall of the guide pillar. The linkage block causes the arc-shaped linkage support plate to move to the right. The arc-shaped linkage support plate drives the arc-shaped adjusting grinding tooth cutter to move to the right. The arc-shaped adjusting grinding tooth cutter can move closer to the fixed arc-shaped grinding tooth cutter. The distance sensor can sense the tooth gap between the arc-shaped adjusting grinding tooth cutter and the fixed arc-shaped grinding tooth cutter. When the gap sensed by the distance sensor is the same as the gap set on the controller, the servo reduction motor drive is turned off by the controller. It can stir according to the feed diameter and particle size required by the user, making the stirring applicability wider.
[0017] 2. This invention uses a sealing adjustment component to cause the linkage concave plate to drive the linkage support block, which in turn stretches the rubber stretching ring to the right. The rubber stretching ring then stretches the upper rubber ring and the lower rubber ring on the linkage turntable. When the sealing rubber ring stretches, it can also stretch the inclined sealing rubber ring. The fixed support ring supports the rubber guide ring, and the support ring supports the inclined sealing rubber ring. The inclined sleeve hinge frame and the support shaft can form a linkage stretch at their connection. Furthermore, feed dust will not enter the support shaft or the guide groove, preventing the sleeve slider from moving. This ensures that a stable circular gap adjustment can be formed between the arc-shaped adjusting grinding tooth and the fixed arc-shaped grinding tooth. This invention is suitable for rotating and stirring feed with different diameter particle sizes, making it more versatile.
[0018] 3. This invention starts a servo reduction motor fixed on the guide frame plate through a synchronous adjustment component. The linkage adjustment screw drives the threaded sleeve support block to move downward along the inside of the guide frame plate under the action of the thread. The linkage adjustment support plate drives the linkage guide slip ring to move downward along the outer wall of the guide support bar and the outer wall of the linkage rotating shaft. The concave hinge block drives the top of the inclined sleeve hinge frame to move downward. It can realize the linkage downward adjustment operation of multiple inclined sleeve hinge frames. It can also start a rotary motor to drive the rotary shaft to rotate. The rotary shaft drives the linkage rotating shaft to rotate the guide support bar. The concave hinge block drives the inclined sleeve hinge frame to rotate the support shaft. The linkage rotating shaft drives the linkage turntable to rotate the guide pillar. The linkage concave plate drives the linkage support block to rotate the arc linkage support plate. The arc linkage support plate drives the arc adjusting grinding cutter to rotate at high speed. The inclined sleeve hinge frame can also provide rotational force to the support shaft. Therefore, after the size of the arc adjusting grinding cutter is adjusted, it can achieve stable stirring during stirring and crushing, and the stirring applicability is wider.
[0019] Through mutual influence of the above-mentioned multiple effects, firstly, the linkage adjusting support plate drives the linkage guide sliding ring to move downward along the outer wall of the guide support and the outer wall of the linkage rotating shaft, linkage adjustment is formed, and then the arc-shaped linkage support plate drives the arc-shaped adjusting grinding tooth cutter to move right, the arc-shaped adjusting grinding tooth cutter can adjust the size close to the fixed arc-shaped grinding tooth cutter, feed dust cannot enter the inside of the supporting shaft, and the feed dust cannot enter the inside of the guide groove body to cause the sleeve sliding block to be unable to move, so that the user can stir the feed diameter particle size according to the need, the discharge diameter particle size of the feed is expanded in multiple directions, accurate stirring adjustment is realized, and the stirring applicability is wider. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a whole structure schematic view of the feed mixer for the beef cattle farm.
[0021] Figure 2 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0022] Figure 3 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0023] Figure 4 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm. Figure 3 It is an enlarged structure schematic view of A in the feed mixer for the beef cattle farm.
[0024] Figure 5 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0025] Figure 6 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0026] Figure 7 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0027] Figure 8 It is a vertical section structure schematic view of the feed mixer for the beef cattle farm.
[0028] The reference signs are: 1, mixer shell; 2, linkage rotating shaft; 3, linkage rotating disc; 4, guide groove body; 5, guide support; 6, sleeved slider; 7, linkage concave plate; 8, support shaft; 9, inclined sleeved hinged frame; 10, linkage support block; 11, arc-shaped linkage support plate; 12, arc-shaped adjusting grinding tooth cutter; 13, fixed arc-shaped grinding tooth cutter; 14, distance sensor; 15, sleeved collar; 16, stirring rod; 17, lower discharge pipe; 18, inclined pulverizing blade; 19, mounting bracket; 20, controller; 21, rubber stretching ring; 22, upper rubber ring; 23, lower rubber ring; 24, sleeved frame block; 25, sealing rubber ring; 26, fixed concave block; 27, inclined sealing rubber ring; 28, support ring; 29, rubber flow guide ring; 30, fixed support ring; 31, concave hinged block; 32, linkage guide sliding ring; 33, guide support; 34, guide frame plate; 35, linkage adjusting screw; 36, threaded sleeved support block; 37, linkage adjusting support plate; 38, servo reduction motor; 39, rotating shaft; 40, rotating motor; 41, conductive slip ring; 42, concave fixed frame. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort fall within the protection scope of the present application.
[0030] As shown in the accompanying drawings, the present application is a feed mixer for a beef cattle farm, which is provided with a linkage adjusting mechanism, a sealing adjusting assembly and a synchronous adjusting assembly. Figures 1-8 The setting of each mechanism and assembly can stir the feed according to the required diameter particle size of the user, expand the diameter particle size of the discharged feed in multiple directions, realize accurate stirring adjustment, and have wider stirring applicability. The specific structural settings of each mechanism and assembly are as follows.
[0031] In some embodiments, as shown in the accompanying drawings, Figures 1-4As shown, the linkage adjusting mechanism comprises a linkage rotating disc 3 arranged on the outer wall of the linkage rotating shaft 2, the top end of the linkage rotating disc 3 is arranged with a plurality of guide grooves 4 in a circular ring equidistant distribution, the inside of each guide groove 4 is arranged with a guide pillar 5, the outer wall of the guide pillar 5 is horizontally slidably connected with a sleeved sliding block 6, the top end of the sleeved sliding block 6 is fixedly connected with a linkage concave plate 7, the inner wall of the linkage concave plate 7 and close to one end thereof is fixedly connected with a supporting shaft 8, the outer wall of the supporting shaft 8 is arranged with a rotationally connected inclined sleeved hinged frame 9, one end of the linkage concave plate 7 is sequentially arranged with a linkage support block 10, an arc linkage support plate 11 and an arc adjusting grinding tooth cutter 12 from left to right, the outer wall of the linkage support block 10 is arranged with a sealing adjusting assembly, the outer wall of the inclined sleeved hinged frame 9 and close to the top end thereof is arranged with a synchronous adjusting assembly.
[0032] In some embodiments, as shown in the accompanying drawings Figures 1-5 As shown, one side of the arc adjusting grinding tooth cutter 12 is arranged with a plurality of fixed arc grinding tooth cutters 13 arranged in a circular ring equidistant distribution, and the plurality of fixed arc grinding tooth cutters 13 are fixedly connected between the blender housing 1, and a distance sensor 14 is fixedly connected inside one of the fixed arc grinding tooth cutters 13, so that the arc adjusting grinding tooth cutter 12 can approach the fixed arc grinding tooth cutter 13, the distance sensor 14 inside the fixed arc grinding tooth cutter 13 can sense the tooth spacing between the arc adjusting grinding tooth cutter 12 and the fixed arc grinding tooth cutter 13, the discharge gap between the mixers can be accurately adjusted, and the feed can be discharged according to the specified diameter particle size, the outer wall of the guide pillar 5 and located at one side of the sleeved sliding block 6 is slidably connected with a sleeved shaft ring 15, the outer wall of the linkage rotating shaft 2 and located below the linkage rotating disc 3 is fixedly connected with a stirring rod 16 for stirring, so that the sleeved sliding block 6 drives the sleeved shaft ring 15 to move along the outer wall of the guide pillar 5, which can ensure that the sleeved shaft ring 15 moves along the guide pillar 5, and the stirring rod 16 can stir the feed after crushing and cutting, a plurality of inclined crushing blades 18 for cutting feed are sequentially fixedly connected on one side of each inclined sleeved hinged frame 9 from top to bottom, the bottom end of the blender housing 1 is fixedly connected with a lower discharge pipe 17, mounting brackets 19 are fixedly connected on both sides of the blender housing 1 and close to the lower discharge pipe 17, and a controller 20 is fixedly connected on one side of the mounting bracket 19, so that the inclined sleeved hinged frame 9 can drive the plurality of inclined crushing blades 18 to initially stir and crush the feed, the initial stirring and crushing can be realized, the mounting bracket 19 can provide support for the blender housing 1, the controller 20 controls the equipment to run, and the lower discharge pipe 17 discharges the crushed and stirred feed.
[0033] In some embodiments, as shown in the accompanying drawings Figures 3-6As shown, the sealing adjusting assembly comprises a rubber stretching ring 21 fixedly arranged on the outer wall of the linkage support block 10, a rubber ring 22 arranged on the top end of the rubber stretching ring 21, and a lower rubber ring 23 arranged on the bottom end of the rubber stretching ring 21, a sleeve frame block 24 fixedly connected to the outer wall of the linkage recessed plate 7 and located at the side of the inclined sleeve joint frame 9, a sealing rubber ring 25 fixedly connected to the sleeve frame block 24 and fixedly connected to the linkage rotating disc 3, a fixed recess block 26 fixedly connected to the outer wall of the inclined sleeve joint frame 9 and located at the top end of the upper rubber ring 22, an inclined sealing rubber ring 27 arranged on the outer wall of the sealing rubber ring 25, a support ring 28 fixedly connected to the inner wall of the inclined sealing rubber ring 27 and located close to the top end of the inclined sealing rubber ring 27, a rubber flow guide ring 29 arranged on the top end of the inclined sealing rubber ring 27, a fixed support ring 30 fixedly connected to the top end of the rubber flow guide ring 29, and the fixed support ring 30 and the support ring 28 are both welded between the linkage rotating shaft 2, the upper rubber ring 22 and the lower rubber ring 23 are both integrally formed by injection molding between the rubber stretching ring 21, and the inclined sealing rubber ring 27 is integrally formed by injection molding between the sealing rubber ring 25 and the rubber flow guide ring 29.
[0034] In some embodiments, as shown in the accompanying drawings, Figures 6-8 As shown, the synchronous adjusting assembly comprises a concave joint block 31 rotatably arranged on the outer wall of the inclined sleeve joint frame 9 and located close to the top end of the inclined sleeve joint frame 9, a linkage guide sliding ring 32 arranged on one side of the concave joint block 31 and vertically slidably connected to the linkage rotating shaft 2, two guide support bars 33 fixedly connected to the linkage rotating shaft 2 and arranged in the linkage guide sliding ring 32, a guide frame plate 34 fixedly connected to the outer wall of the linkage rotating shaft 2 and located above the linkage guide sliding ring 32, a linkage adjusting screw 35 rotatably connected to the inside of the guide frame plate 34, a threaded sleeve support block 36 threadedly connected to the outer wall of the linkage adjusting screw 35, a linkage adjusting support plate 37 arranged on one side of the outer wall of the threaded sleeve support block 36, a servo reduction motor 38 coaxially and transmissionally connected to the top end of the linkage adjusting screw 35 and extending above the guide frame plate 34, and the servo reduction motor 38 is fixedly connected between the linkage adjusting screw 35 and the guide frame plate 34, a rotating shaft 39 and a rotating motor 40 arranged in sequence from bottom to top and equidistantly arranged above the linkage rotating shaft 2, the rotating shaft 39 is fixedly connected between the output end of the rotating motor 40 and the linkage rotating shaft 2, a conductive slip ring 41 fixedly connected to the bottom end of the rotating motor 40 and located outside the rotating shaft 39, a concave fixing frame 42 arranged above the rotating motor 40 and fixedly connected between the rotating motor 40 and the blender housing 1, the threaded sleeve support block 36 and the linkage guide sliding ring 32 are both fixedly connected between the linkage adjusting support plate 37, and the threaded sleeve support block 36 and the linkage adjusting support plate 37 are both vertically slidably connected between the guide frame plate 34.
[0035] The working principle of the beef cattle farm feed mixer is as follows:
[0036] When the synchronous adjustment is performed, the two mounting supports 19 are fixedly installed at the designated positions by bolts, the mounting supports 19 support the mixer shell 1 and increase the stability of the mixer shell 1, the servo reduction motor 38 fixed to the guide frame plate 34 is started, the particle diameter value of the feed to be stirred is set on the controller 20, the servo reduction motor 38 drives the linkage adjustment screw rod 35 to rotate in the guide frame plate 34, the linkage adjustment screw rod 35 drives the threaded sleeve joint support block 36 to move downward along the guide frame plate 34 under the action of the threads, the threaded sleeve joint support block 36 drives the linkage adjustment support plate 37 to move downward, the linkage adjustment support plate 37 drives the linkage guide sliding ring 32 to move downward along the outer wall of the guide support strip 33 and the outer wall of the linkage rotating shaft 2, the linkage guide sliding ring 32 drives the plurality of concave hinged blocks 31 to move downward, the concave hinged blocks 31 drive the top end of the inclined sleeve joint hinged frame 9 to move downward, and the bottom end of the inclined sleeve joint hinged frame 9 slides outward and expands horizontally to be adjusted;
[0037] When the linkage precise adjustment is performed, the inclined sleeve joint hinged frame 9 drives the support shaft 8 to move horizontally, the support shaft 8 drives the linkage concave plate 7 to move the sleeve joint sliding block 6 along the inside of the guide groove body 4 and the outer wall of the guide support column 5, and the sleeve joint sliding block 6 drives the sleeve joint shaft ring 15 to move along the outer wall of the guide support column 5, so that the linkage concave plate 7 can stably drive the linkage support block 10 to move the right of the arc-shaped linkage support plate 11, the arc-shaped linkage support plate 11 drives the arc-shaped adjustment grinding tooth cutter 12 to move right, the arc-shaped adjustment grinding tooth cutter 12 can move close to the fixed arc-shaped grinding tooth cutter 13, the distance sensor 14 in the fixed arc-shaped grinding tooth cutter 13 can sense the tooth gap between the arc-shaped adjustment grinding tooth cutter 12 and the fixed arc-shaped grinding tooth cutter 13, and when the gap sensed by the distance sensor 14 is the same as the gap set on the controller 20, the controller 20 is used to close the servo reduction motor 38 drive;
[0038] When the sealing adjustment is performed, when the linkage concave plate 7 moves, the linkage concave plate 7 drives the linkage support block 10 to stretch the rubber stretching ring 21 to the right, the rubber stretching ring 21 drives the upper rubber ring 22 to stretch, and the rubber stretching ring 21 drives the lower rubber ring 23 to stretch on the linkage rotating disc 3, the inclined sleeve joint hinged frame 9 drives the fixed concave block 26 to move in the process of rotating and moving, the fixed concave block 26 drives the upper rubber ring 22 to stretch, the sealing rubber ring 25 can drive the inclined sealing rubber ring 27 to stretch when it is stretched, the linkage rotating shaft 2 supports the fixed support ring 30 and the support ring 28, the fixed support ring 30 supports the rubber guide ring 29, and the support ring 28 supports the inclined sealing rubber ring 27, so that the connection between the inclined sleeve joint hinged frame 9 and the support shaft 8 can be stretched, feed dust cannot enter the inside of the support shaft 8, and feed dust cannot enter the inside of the guide groove body 4, so that the sleeve joint sliding block 6 cannot move right, and therefore stable adjustment can be realized in the feed dust;
[0039] When stirring, the feed for beef cattle breeding is put into the inside of the mixer shell 1, and the feed is adjusted to the specified diameter particle size. The concave fixing frame 42 supports the rotating motor 40, the rotating motor 40 drives the rotating shaft 39 to rotate, the rotating shaft 39 drives the linkage shaft 2 to rotate the guide support 33, the linkage shaft 2 drives the guide frame plate 34 to rotate the linkage adjusting screw 35, the linkage adjusting screw 35 drives the servo reducer motor 38 to rotate, the servo reducer motor 38 can be connected with the conductive slip ring 41 to rotate and be electrified around the inside of the conductive slip ring 41, and the electrification operation can be realized during the rotation of the servo reducer motor 38. The guide support 33 and the linkage turntable 3 can drive the linkage guide slip ring 32 to rotate, the linkage guide slip ring 32 drives a plurality of concave hinge blocks 31 to rotate, the concave hinge blocks 31 drive the inclined sleeve hinge frame 9 to rotate the supporting shaft 8, the linkage shaft 2 drives the linkage turntable 3 to rotate the guide support 5, the guide support 5 drives the sleeve sliding block 6 to rotate the linkage concave plate 7, the linkage concave plate 7 drives the linkage support block 10 to rotate the arc-shaped linkage support plate 11, the arc-shaped linkage support plate 11 drives the arc-shaped adjusting grinding tooth cutter 12 to rotate at high speed, the inclined sleeve hinge frame 9 can drive a plurality of inclined crushing blades 18 to initially stir and crush the feed, and the feed is thrown into the gap between the arc-shaped adjusting grinding tooth cutter 12 and the fixed arc-shaped grinding tooth cutter 13 under the action of the rotation centrifugal force of the inclined sleeve hinge frame 9, so that the arc-shaped adjusting grinding tooth cutter 12 rotates at high speed and meshes with the fixed arc-shaped grinding tooth cutter 13 to stir and crush the feed according to the specified diameter particle again. The stirred and crushed feed moves down to the position of the stirring rod 16 in the inside of the mixer shell 1, the linkage shaft 2 drives the stirring rod 16 to rotate at high speed, and the feed can be stirred and mixed. The stirred feed can be discharged from the lower discharge pipe 17 and supplied to the beef trough.
[0040] The contents not described in detail in the specification all belong to the prior art known to those skilled in the art, and the model parameters of various electrical appliances are not specifically limited, and can be determined by using conventional equipment. In the technical solution, the electrical appliance control elements not mentioned belong to the prior art, and therefore are not shown in the drawings and will not be described here.
[0041] The above only describes the preferred embodiments of the present application and is not used to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A feed mixer for a beef cattle farm, comprising a mixer housing, a linkage shaft being installed inside the mixer housing, characterized in that: The outer wall of the linkage rotating shaft is connected with a linkage adjusting mechanism; The linkage adjusting mechanism comprises a linkage rotating disc arranged on the outer wall of the linkage rotating shaft, a plurality of guide grooves are arranged in a circular ring and equidistantly on the top end of the linkage rotating disc, a guide support is arranged in each guide groove, a sleeving sliding block is horizontally and slidably connected to the outer wall of the guide support, a linkage concave plate is fixedly connected to the top end of the sleeving sliding block, a support shaft is fixedly connected to the inner wall of the linkage concave plate and close to one end of the linkage concave plate, an inclined sleeving hinged frame is rotatably connected to the outer wall of the support shaft, a linkage support block, an arc-shaped linkage support plate and an arc-shaped adjusting grinding tooth cutter are sequentially arranged on one end of the linkage concave plate from left to right, a plurality of fixed arc-shaped grinding tooth cutters are arranged on one side of the arc-shaped adjusting grinding tooth cutter in a circular ring and equidistantly, the plurality of fixed arc-shaped grinding tooth cutters are fixedly connected between the blender shell, a distance sensor is fixedly connected in one of the fixed arc-shaped grinding tooth cutters, a sealing adjusting assembly is arranged on the outer wall of the linkage support block, a synchronous adjusting assembly is arranged on the outer wall of the inclined sleeving hinged frame and close to the top end of the inclined sleeving hinged frame, the synchronous adjusting assembly comprises a concave hinged block rotatably arranged on the outer wall of the inclined sleeving hinged frame and close to the top end of the inclined sleeving hinged frame, a linkage guide sliding ring is vertically and slidably connected to one side of the concave hinged block and the linkage rotating shaft, two guide supports are fixedly connected to the linkage rotating shaft and arranged in the linkage guide sliding ring, a guide frame plate is fixedly connected to the outer wall of the linkage rotating shaft and arranged above the linkage guide sliding ring, a linkage adjusting screw is rotatably connected in the guide frame plate, a threaded sleeving support block is threadedly connected to the outer wall of the linkage adjusting screw, a linkage adjusting support plate is arranged on the outer wall of the threaded sleeving support block, a servo speed reducer is coaxially and drivingly connected to the top end of the linkage adjusting screw and arranged above the guide frame plate, the servo speed reducer is fixedly connected between the guide frame plate, a rotating shaft and a rotating motor are sequentially and equidistantly arranged above the linkage rotating shaft from bottom to top, the rotating shaft is fixedly connected between the output end of the rotating motor and the linkage rotating shaft, an electrically conductive sliding ring is fixedly connected to the bottom end of the rotating motor and arranged outside the rotating shaft, a concave fixing frame is arranged above the rotating motor and fixedly connected between the rotating motor and the blender shell.
2. A feed mixer for a beef cattle feed lot as defined in claim 1, characterized in that: The plurality of guide supports are fixedly connected between the linkage rotating disc and the guide grooves, and the sleeving sliding block is horizontally and slidably connected between the linkage rotating disc and the guide grooves.
3. A feed mixer for a feedlot according to claim 1 wherein: The linkage concave plate is welded between the linkage support block, the linkage support block and the arc-shaped adjusting grinding tooth cutter are fixedly connected between the arc-shaped linkage support plate, the guide support is slidably connected to the outer wall of the linkage rotating shaft and arranged on one side of the sleeving sliding block, and the linkage rotating shaft is fixedly connected to the outer wall of the linkage rotating shaft and arranged below the linkage rotating disc for stirring.
4. A feed mixer for a feedlot according to claim 1, characterized in that: A plurality of inclined pulverizing blades for cutting feed are sequentially and fixedly connected to one side of each inclined sleeving hinged frame from top to bottom, a lower discharge pipe is fixedly and communicatively connected to the bottom end of the blender shell, mounting brackets are fixedly connected to both sides of the blender shell and close to the lower discharge pipe, and a controller is fixedly connected to one side of the mounting bracket.
5. A feed mixer for a feedlot according to claim 1 wherein: 6. A feed mixer for a feedlot according to claim 1, characterized in that: The sealing adjusting assembly comprises a rubber stretching ring fixedly arranged on the outer wall of the linkage support block, a rubber ring arranged on the top end of the rubber stretching ring, and a lower rubber ring arranged on the bottom end of the rubber stretching ring, an outer wall of the linkage concave plate is fixedly connected with a sleeved frame block at a position on the side of the inclined sleeved hinged frame, an outer wall of the sleeved frame block is provided with a sealing rubber ring fixedly connected with the linkage rotary disc, an outer wall of the inclined sleeved hinged frame is fixedly connected with a fixed concave block at a position on the top end of the upper rubber ring, an outer wall of the sealing rubber ring is arranged with an inclined sealing rubber ring, an inner wall of the inclined sealing rubber ring is fixedly connected with a support ring close to a position on the top end of the inclined sealing rubber ring, a top end of the inclined sealing rubber ring is arranged with a rubber flow guide ring, and a top end of the rubber flow guide ring is fixedly connected with a fixed support ring.
7. A feed mixer for a beef cattle feed lot as defined in claim 6, wherein: The upper rubber ring and the lower rubber ring are integrally formed with the rubber stretching ring by injection molding, and the inclined sealing rubber ring is integrally formed with the sealing rubber ring and the rubber flow guide ring by injection molding.
8. A feed mixer for a feedlot according to claim 1, characterized in that: The threaded sleeved support block and the linkage guide sliding ring are fixedly connected with the linkage adjusting support plate, and the threaded sleeved support block and the linkage adjusting support plate are vertically slidingly connected with the guide frame plate.
Citation Information
Patent Citations
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