CN221421113U - Fodder fermentation turns structure - Google Patents

Fodder fermentation turns structure Download PDF

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Publication number
CN221421113U
CN221421113U CN202322967598.9U CN202322967598U CN221421113U CN 221421113 U CN221421113 U CN 221421113U CN 202322967598 U CN202322967598 U CN 202322967598U CN 221421113 U CN221421113 U CN 221421113U
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fixedly connected
feed
driving motor
roller
frame
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CN202322967598.9U
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刘建河
赫兰保
孙泉
王永奇
常慧
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Shandong Agricultural Microorganism Technology Co ltd
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Shandong Agricultural Microorganism Technology Co ltd
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  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The utility model discloses a feed fermentation turning structure, which comprises a turning mechanism and a first driving motor arranged on one side of the top of the turning mechanism, wherein the turning mechanism is provided with a first driving motor; one side of the turnover mechanism is provided with a blanking mechanism and a second driving motor arranged at one side of the top of the blanking mechanism; further comprises: the turnover mechanism comprises a feed mixing bin, wherein the left side and the right side of the bottom of the feed mixing bin are fixedly connected with supporting legs, and one side of the bottom of the feed mixing bin is provided with a discharge hole; the feed mixing bin comprises a feed mixing bin, a feed inlet, a feed outlet and a support frame, wherein the feed inlet is formed in one side of the top of the feed mixing bin; wherein, the top and the first driving motor fixed connection of support frame, the output of first driving motor runs through support frame and the first roller of fixedly connected with, utilizes unloading mechanism to accomplish more accurate to the input of fodder, can carry out intensive mixing to the fodder through setting up tilting mechanism.

Description

Fodder fermentation turns structure
Technical Field
The utility model relates to the technical field of feed production, in particular to a feed fermentation turning structure.
Background
In the course of the production and manufacture of feeds, a plurality of processes such as stirring, crushing, and fermentation are required, and fermentation, which is an important process in the production of feeds, is generally performed using a fermenter.
Publication number CN214422618U discloses a feed fermentation device, which continuously turns feed raw materials in a fermentation tank in the fermentation tank through a first stirring module and a second stirring module of a plurality of stirring assemblies, so that the feed raw materials in the fermentation tank can be fully fermented; the stirring assembly drives the water spraying assembly to continuously turn over in the fermentation tank, so that the water spraying assembly can be sprayed to all corners inside the fermentation tank to clean the fermentation tank; this fodder fermenting installation can turn the fodder raw materials fully for the fermentation effect of fodder raw materials is better, and the inside sanitization of fermentation cylinder can be with the water spray subassembly simultaneously, makes next batch material not contain impurity, and the fermentation effect of final messenger next batch material is better, but this patent still has following problem in the in-service use:
Although the fodder fermenting installation can spray each corner inside the fermentation tank through the water spraying component to wash the inner wall of the fermentation tank, the amount of the fodder put in can not be accurately controlled, so that the fodder is wasted easily, and the cost is increased.
A feed fermenting and turning structure is provided so as to solve the problems set forth in the above.
Disclosure of utility model
The utility model aims to provide a feed fermentation turning structure, which aims to solve the problems that the prior art can spray water to all corners inside a fermentation tank to clean the inner wall of the fermentation tank, but the feed throwing amount cannot be accurately controlled, the waste of feed is easy to cause and the cost is increased.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a feed fermentation turning structure comprises a turning mechanism and a first driving motor arranged at one side of the top of the turning mechanism;
one side of the turnover mechanism is provided with a blanking mechanism and a second driving motor arranged at one side of the top of the blanking mechanism;
Further comprises:
The turnover mechanism comprises a feed mixing bin, wherein the left side and the right side of the bottom of the feed mixing bin are fixedly connected with supporting legs, and one side of the bottom of the feed mixing bin is provided with a discharge hole;
The feed mixing bin comprises a feed mixing bin, a feed inlet, a feed outlet and a support frame, wherein the feed inlet is formed in one side of the top of the feed mixing bin;
The top and the first driving motor fixed connection of support frame, the output of first driving motor runs through the support frame and fixedly connected with first roller, unloading mechanism is including connecting the bottom block, the first supporting shoe of top fixedly connected with of connecting the bottom block, the top fixedly connected with conveying frame of first supporting shoe, one side fixedly connected with income hopper at conveying frame top, one side and the second driving motor fixed connection that conveying frame is close to income hopper, the output of second driving motor runs through conveying frame and fixedly connected with propulsion thick liquid, the one end that the propulsion thick liquid kept away from second driving motor rotates with conveying frame to be connected, one end fixedly connected with second supporting shoe that the conveying frame kept away from income hopper, one side of second supporting shoe bottom rotates to be connected with first telescopic link, one end and the conveying frame of second supporting shoe rotate to be connected with the baffle, one side fixedly connected with second telescopic link that one side of second supporting shoe is close to first telescopic link, one side of second telescopic link is close to first telescopic link, two half bowls rotate to be connected with push pedal, two side of second telescopic link, two side is connected with the bottom links, two side of first telescopic link rotate fixedly connected with the push plate.
Preferably, the outside laminating that first roller is close to first driving motor one end is connected with the belt, the one end laminating that first roller was kept away from to the belt is connected with the threaded rod, the one end and the support frame rotation of threaded rod are connected, the other end rotation of threaded rod is connected with spacing frame, one side and the support frame fixed connection of spacing frame.
Preferably, the outside threaded connection of threaded rod has the thread bush, the one end fixedly connected with backup pad of thread bush, the one end fixedly connected with second roller that the belt was kept away from to first roller.
Preferably, the second roller is far away from the inside cover of first roller one end and is equipped with the third roller, the one end of third roller runs through the backup pad and fixedly connected with first helical gear, one side meshing of first helical gear is connected with the second helical gear.
Preferably, one end of the second bevel gear is rotationally connected with the supporting plate, one side of the second bevel gear is connected with a third bevel gear in a meshed mode, one end of the third bevel gear is fixedly connected with a stirring frame, the outer side of the stirring frame is fixedly connected with a first stirring blade, the center position of the bottom of the first bevel gear is fixedly connected with a fourth roll shaft, one end of the fourth roll shaft penetrates through the stirring frame and is fixedly connected with a stirring shaft, and the outer side of the stirring shaft is fixedly connected with a second stirring blade.
Compared with the prior art, the utility model has the beneficial effects that: this fodder fermentation turns structure utilizes unloading mechanism to accomplish more accurate to the input of fodder, can carry out intensive mixing to the fodder through setting up tilting mechanism, and its concrete content is as follows:
1. The feed can be fully stirred and mixed by arranging the turnover mechanism, the first roller shaft is driven to rotate by the first driving motor, the threaded rod and the first roller shaft can be simultaneously rotated by utilizing the synchronous action of the belt, the feeds with different depths can be stirred by driving the first stirring blade and the second stirring blade to simultaneously move up and down by utilizing the threaded action between the threaded rod and the threaded sleeve, the first stirring blade is driven to positively rotate by utilizing the meshing action between the second bevel gear and the third bevel gear, the second stirring blade is driven to reversely rotate by utilizing the first bevel gear, and the feed can be more uniformly mixed;
2. Through setting up the volume that feed mechanism can be convenient for control feed input, drive through the second driving motor and impel thick liquid rotation, break up the fodder when can promote the fodder to advance, avoid the fodder to have the phenomenon of caking, drive the baffle through first telescopic link and rotate around conveying frame, can control whether the fodder is put in, drive whether two half type bowls are closed through the second telescopic link, can take out unnecessary fodder in holding the household utensils, drive through the third telescopic link and hold the household utensils and remove, thereby put into the agitator tank with the fodder, can control the required volume of fodder through observing the digit of weighing.
Drawings
FIG. 1 is a schematic diagram of a front cross-sectional structure of the present utility model;
FIG. 2 is an enlarged schematic view of the supporting frame of the present utility model;
FIG. 3 is an enlarged schematic view of the structure of FIG. 2A according to the present utility model;
FIG. 4 is an enlarged schematic view of the structure of FIG. 1 according to the present utility model;
FIG. 5 is an enlarged schematic view of the structure of FIG. 4B according to the present utility model;
FIG. 6 is a schematic top view of a semi-bowl according to the present utility model.
In the figure: 1. a turnover mechanism; 101. a feed mixing bin; 102. support legs; 103. a discharge port; 104. a feed inlet; 105. a support frame; 106. a first driving motor; 107. a first roller shaft; 108. a belt; 109. a threaded rod; 110. a limit frame; 111. a thread sleeve; 112. a support plate; 113. a second roller shaft; 114. a third roller shaft; 115. a first helical gear; 116. a second helical gear; 117. a third bevel gear; 118. a stirring rack; 119. a first stirring blade; 120. a fourth roller shaft; 121. a stirring shaft; 122. a second stirring blade; 2. a blanking mechanism; 201. connecting the bottom block; 202. a first support block; 203. a conveying frame; 204. feeding into a hopper; 205. a second driving motor; 206. propelling the slurry; 207. a second support block; 208. a first telescopic rod; 209. a baffle; 210. a second telescopic rod; 211. a half bowl; 212. a connecting rod; 213. a third telescopic rod; 214. a push plate; 215. a hinge; 216. a vessel; 217. weighing.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-6, the present utility model provides the following technical solutions: a feed fermentation turning structure comprises a turning mechanism 1 and a first driving motor 106 arranged on one side of the top of the turning mechanism 1; one side of the turnover mechanism 1 is provided with a blanking mechanism 2 and a second driving motor 205 arranged on one side of the top of the blanking mechanism 2; the turnover mechanism 1 comprises a feed mixing bin 101, wherein the left side and the right side of the bottom of the feed mixing bin 101 are fixedly connected with supporting legs 102, one side of the bottom of the feed mixing bin 101 is provided with a discharge hole 103, and the discharge hole 103 is arranged to facilitate the discharge of feed;
Wherein, a feed inlet 104 is arranged on one side of the top of the feed mixing bin 101, and a supporting frame 105 is fixedly connected on one side of the feed mixing bin 101 close to the feed inlet 104; the top of the supporting frame 105 is fixedly connected with the first driving motor 106, the output end of the first driving motor 106 penetrates through the supporting frame 105 and is fixedly connected with the first roller shaft 107, the first roller shaft 107 is driven to rotate by the first driving motor 106, the discharging mechanism 2 comprises a connecting bottom block 201, the top of the connecting bottom block 201 is fixedly connected with a first supporting block 202, the top of the first supporting block 202 is fixedly connected with a conveying frame 203, one side of the top of the conveying frame 203 is fixedly connected with a feeding hopper 204, one side of the conveying frame 203 close to the feeding hopper 204 is fixedly connected with a second driving motor 205, the output end of the second driving motor 205 penetrates through the conveying frame 203 and is fixedly connected with a propelling paste 206, one end of the propelling paste 206 away from the second driving motor 205 is rotationally connected with the conveying frame 203, the propelling paste 206 is driven to rotate by the second driving motor 205, one end of the conveying frame 203 away from the feeding hopper 204 is fixedly connected with a second supporting block 207, a first telescopic rod 208 is rotationally connected to one side of the bottom of the second supporting block 207, a baffle 209 is rotationally connected to the output end of the first telescopic rod 208, one end of the baffle 209 is rotationally connected with the conveying frame 203, a second telescopic rod 210 is fixedly connected to one side of the second supporting block 207 close to the first telescopic rod 208, a half bowl 211 is symmetrically rotationally connected to the output end of the second telescopic rod 210, a connecting rod 212 is rotationally connected to one side of the two half bowls 211, one end of the two connecting rods 212 is rotationally connected with the second telescopic rod 210, a third telescopic rod 213 is fixedly connected to one side of the first supporting block 202, a push plate 214 is fixedly connected to the output end of the third telescopic rod 213, a hinge 215 is fixedly connected to one side of the push plate 214, a vessel 216 is fixedly connected to one side of the hinge 215 away from the push plate 214, a weighing scale 217 is slidingly connected to the bottom of the vessel 216, the bottom of the weighing scale 217 is fixedly connected with the connecting bottom block 201, and the quantity required by the feed can be controlled by observing the number of the weighing scale 217;
The outside of the first roll shaft 107, which is close to one end of the first driving motor 106, is connected with a belt 108 in a fitting way, one end, which is far away from the first roll shaft 107, of the belt 108 is connected with a threaded rod 109 in a fitting way, one end of the threaded rod 109 is rotationally connected with the supporting frame 105, the other end of the threaded rod 109 is rotationally connected with a limiting frame 110, one side of the limiting frame 110 is fixedly connected with the supporting frame 105, and the threaded rod 109 and the first roll shaft 107 can simultaneously rotate under the synchronous action of the belt 108;
The outside thread of the threaded rod 109 is connected with a thread sleeve 111, one end of the thread sleeve 111 is fixedly connected with a supporting plate 112, one end of the first roll shaft 107 far away from the belt 108 is fixedly connected with a second roll shaft 113, and the first stirring blade 119 and the second stirring blade 122 are driven to move up and down simultaneously by utilizing the thread effect between the threaded rod 109 and the thread sleeve 111 so as to stir feeds with different depths;
The inside cover that second roller 113 kept away from first roller 107 one end is equipped with third roller 114, the one end of third roller 114 runs through backup pad 112 and fixedly connected with first helical gear 115, one side meshing of first helical gear 115 is connected with second helical gear 116, the one end and the backup pad 112 rotation of second helical gear 116 are connected with third helical gear 117, the one end fixedly connected with stirring frame 118 of third helical gear 117, the outside fixedly connected with first stirring leaf 119 of stirring frame 118, the number of first stirring leaf 119 is not less than three, and first stirring leaf 119 evenly distributed is in the both sides of stirring frame 118, the central point of first helical gear 115 bottom puts fixedly connected with fourth roller 120, the one end of fourth roller 120 runs through stirring frame 118 and fixedly connected with (mixing) shaft 121, the outside fixedly connected with second stirring leaf 122 of (mixing) shaft 121), the number of second stirring leaf 122 is not less than two sets of, utilize the meshing effect between second helical gear 116 and the third helical gear 117, thereby drive first stirring leaf 119 forward rotation, utilize first helical gear 115 to drive second stirring leaf 122 reverse rotation, can make the even more evenly mixed fodder.
Working principle: before the fodder fermenting and turning structure is used, the whole condition of the device needs to be checked firstly to ensure that normal work can be carried out, and according to the method shown in fig. 1-6, firstly, fodder enters a conveying frame 203 through a feeding hopper 204, then a second driving motor 205 is started to drive a propelling pulp 206 to rotate, so that the fodder can be broken up while being pushed to advance, the phenomenon that the fodder is caked is avoided, then a first telescopic rod 208 is started to drive a baffle 209 to rotate around the conveying frame 203, the baffle 209 is opened, the fodder is poured into a containing vessel 216, and the number on a weighing scale 217 is observed;
Secondly, when the required feed is excessive, the second telescopic rod 210 is started to drive the two half-type bowls 211 to move downwards and rotate, redundant feed in the containing vessel 216 can be taken out, the change of the number on the weighing scale 217 is observed, the work is stopped until the required number is reached, and then the third telescopic rod 213 is started to drive the containing vessel 216 to move, so that the feed is put into the feed mixing bin 101;
Finally, when the feed needs to be mixed, the first driving motor 106 is started to drive the first roller shaft 107 to rotate, the threaded rod 109 and the first roller shaft 107 can be simultaneously rotated by utilizing the synchronous action of the belt 108, the first stirring blade 119 and the second stirring blade 122 are driven to simultaneously move up and down to stir the feed with different depths by utilizing the threaded action between the threaded rod 109 and the threaded sleeve 111, the first stirring blade 119 is driven to positively rotate by utilizing the meshing action between the second bevel gear 116 and the third bevel gear 117, the second stirring blade 122 is driven to reversely rotate by utilizing the first bevel gear 115, and the feed can be mixed more uniformly.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.

Claims (5)

1. A feed fermentation turning structure comprises a turning mechanism (1) and a first driving motor (106) arranged at one side of the top of the turning mechanism (1);
A blanking mechanism (2) is arranged on one side of the turnover mechanism (1), and a second driving motor (205) is arranged on one side of the top of the blanking mechanism (2);
Characterized by further comprising:
The turnover mechanism (1) comprises a feed mixing bin (101), wherein the left side and the right side of the bottom of the feed mixing bin (101) are fixedly connected with supporting legs (102), and a discharge hole (103) is formed in one side of the bottom of the feed mixing bin (101);
A feed inlet (104) is formed in one side of the top of the feed mixing bin (101), and a support frame (105) is fixedly connected to one side, close to the feed inlet (104), of the feed mixing bin (101);
Wherein the top of the supporting frame (105) is fixedly connected with the first driving motor (106), the output end of the first driving motor (106) penetrates through the supporting frame (105) and is fixedly connected with the first roller shaft (107), the discharging mechanism (2) comprises a connecting bottom block (201), the top of the connecting bottom block (201) is fixedly connected with a first supporting block (202), the top of the first supporting block (202) is fixedly connected with a conveying frame (203), one side of the top of the conveying frame (203) is fixedly connected with a feeding hopper (204), one side of the conveying frame (203) close to the feeding hopper (204) is fixedly connected with a second driving motor (205), the output end of the second driving motor (205) penetrates through the conveying frame (203) and is fixedly connected with a pushing slurry (206), one end of the pushing slurry (206) far away from the second driving motor (205) is rotationally connected with the conveying frame (203), one end of the conveying frame (203) far away from the feeding hopper (204) is fixedly connected with a second supporting block (207), one side of the second supporting block (207) is rotationally connected with a first telescopic rod (208) which is rotationally connected with a telescopic rod (209), one side fixedly connected with second telescopic link (210) that second supporting shoe (207) is close to first telescopic link (208), the output symmetry rotation of second telescopic link (210) is connected with half type bowl (211), two one side rotation of half type bowl (211) is connected with connecting rod (212), two one end and second telescopic link (210) rotation of connecting rod (212) are connected, one side fixedly connected with third telescopic link (213) of first supporting shoe (202), the output fixedly connected with push pedal (214) of third telescopic link (213), one side fixedly connected with hinge (215) of push pedal (214), one side fixedly connected with that hinge (215) kept away from push pedal (214) holds household utensils (216), the bottom sliding connection who holds household utensils (216) has weighing scale (217), the bottom and the connection bottom of weighing scale (217) are fixedly connected with bottom shoe (201).
2. The feed fermentation flip structure of claim 1, wherein: the outside laminating that first roller (107) is close to first driving motor (106) one end is connected with belt (108), the one end laminating that first roller (107) was kept away from to belt (108) is connected with threaded rod (109), the one end and the support frame (105) of threaded rod (109) rotate to be connected, the other end of threaded rod (109) rotates to be connected with spacing frame (110), one side and support frame (105) fixed connection of spacing frame (110).
3. A feed fermentation flip structure according to claim 2, wherein: the outside threaded connection of threaded rod (109) has thread bush (111), the one end fixedly connected with backup pad (112) of thread bush (111), one end fixedly connected with second roller (113) of keeping away from belt (108) of first roller (107).
4. A feed fermentation flip structure according to claim 3, wherein: the inside cover of second roller (113) one end of keeping away from first roller (107) is equipped with third roller (114), the one end of third roller (114) runs through backup pad (112) and fixedly connected with first helical gear (115), one side meshing of first helical gear (115) is connected with second helical gear (116).
5. The feed fermentation flip structure of claim 4, wherein: one end and backup pad (112) of second helical gear (116) rotate to be connected, one side meshing of second helical gear (116) is connected with third helical gear (117), one end fixedly connected with stirring frame (118) of third helical gear (117), the outside fixedly connected with first stirring leaf (119) of stirring frame (118), the central point of first helical gear (115) bottom puts fixedly connected with fourth roller (120), the one end of fourth roller (120) runs through stirring frame (118) and fixedly connected with (121), the outside fixedly connected with second stirring leaf (122) of (121).
CN202322967598.9U 2023-11-03 2023-11-03 Fodder fermentation turns structure Active CN221421113U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322967598.9U CN221421113U (en) 2023-11-03 2023-11-03 Fodder fermentation turns structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322967598.9U CN221421113U (en) 2023-11-03 2023-11-03 Fodder fermentation turns structure

Publications (1)

Publication Number Publication Date
CN221421113U true CN221421113U (en) 2024-07-26

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ID=92016963

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322967598.9U Active CN221421113U (en) 2023-11-03 2023-11-03 Fodder fermentation turns structure

Country Status (1)

Country Link
CN (1) CN221421113U (en)

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