CN108524048B - Multi-functional ruminant is with baoding fence - Google Patents

Multi-functional ruminant is with baoding fence Download PDF

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Publication number
CN108524048B
CN108524048B CN201810294699.5A CN201810294699A CN108524048B CN 108524048 B CN108524048 B CN 108524048B CN 201810294699 A CN201810294699 A CN 201810294699A CN 108524048 B CN108524048 B CN 108524048B
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China
Prior art keywords
fence
fences
arm
rod
guide
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Expired - Fee Related
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CN201810294699.5A
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CN108524048A (en
Inventor
靳青
游伟
万***
谭秀文
张相伦
魏晨
赵红波
刘晓牧
刘桂芬
刘倚帆
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Institute Animal Science and Veterinary Medicine of Shandong AAS
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Institute Animal Science and Veterinary Medicine of Shandong AAS
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61DVETERINARY INSTRUMENTS, IMPLEMENTS, TOOLS, OR METHODS
    • A61D3/00Appliances for supporting or fettering animals for operative purposes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61DVETERINARY INSTRUMENTS, IMPLEMENTS, TOOLS, OR METHODS
    • A61D3/00Appliances for supporting or fettering animals for operative purposes
    • A61D2003/003Appliances for supporting or fettering animals for operative purposes with head or neck restraining means

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  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Animal Husbandry (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Catching Or Destruction (AREA)
  • Agricultural Chemicals And Associated Chemicals (AREA)

Abstract

The invention provides a multifunctional ruminant animal baoding fence, and belongs to the technical field of ruminant animal baoding equipment. The technical scheme is as follows: the utility model provides a multi-functional for ruminant baoding fence, includes the chassis, sets up two corresponding fences in chassis both ends, wherein between two fences be provided with two on the chassis and enclose the fender structure two lateral shifting fences of relative setting between the fender structure are enclosed to two, and one of them encloses and is equipped with the pull bounding wall in the clearance that keeps off structure and one of them lateral shifting fence apart from, and another encloses and to correspond in the interval between fender structure and another lateral shifting fence and be equipped with two neck splint. The invention has the beneficial effects that: and overall structure sets up rationally, has further restricted ruminant's activity space, makes things convenient for operating personnel to stand and controls the district and carry out operations such as blood sampling, infusion to ruminant in the experiment, has increased the success rate of experiment.

Description

Multi-functional ruminant is with baoding fence
Technical Field
The invention relates to the technical field of ruminant baoding equipment, in particular to a multifunctional baoding fence for a ruminant.
Background
In the research of nutrition and metabolism of ruminants, ruminants such as dairy cows or beef cattle are mainly used as experimental animals for scientific experiments, and due to the characteristics that the dairy cows and the beef cattle are huge in size, difficult to fix and dangerous to a certain extent, some equipment is necessary to be used for fixing large animals so as to ensure the smooth progress of research work.
Some fixing equipment is arranged at home and abroad, and a six-column fence is common. The basic structure of the six-column is six columns which can be made of wood or iron. Two gateposts can be used for fixed neck portion, have the crossbeam to link to each other between front pillar and the back post for the fixed body trunk and four limbs, upper beam and underbeam between the homonymy front and back post for install pectoral girdle and binder. When the ox is held, the front belt between two front posts is installed, the ox is pulled into the space between two rear posts, and after the ox is put into the space, the tail belt (rear belt) is mounted, and the rope is tied to the metal ring of the gate post.
Thus, the cattle can neither move forward nor backward. In order to prevent the cattle from jumping, a flattening rope can be arranged at the front part of the cattle chignon, and two sides of the flattening rope are respectively fixed on the lower beams at two sides. In order to prevent the cattle from lying down, the cattle can be provided with an abdominal belt. However, the existing retaining device has a rigid structure and a single purpose.
Disclosure of Invention
The invention aims to provide a multifunctional fixation fence for ruminants, which can meet the requirements of blood sampling and transfusion for the ruminants, provide conditions and convenience for operators under the condition of fixing the ruminants, ensure the safety of the operators and facilitate the development of scientific research work.
The invention is realized by the following measures: a multifunctional retaining fence for ruminants comprises a bottom frame and two first fences arranged at two ends of the bottom frame and corresponding to each other, wherein two enclosure structures are arranged on the bottom frame between the two first fences, two lateral moving fences are oppositely arranged between the two enclosure structures, a drawing fence is arranged in a gap between one enclosure structure and one of the lateral moving fences, two neck clamping plates are correspondingly arranged in a gap between the other enclosure structure and the other lateral moving fence, a fixed cross beam is arranged at the top between the two enclosure structures, and a power mechanism for driving the two lateral moving fences and the two neck clamping plates to move is arranged on the fixed cross beam;
the gear transmission mechanism is arranged between one of the two first fences and one of the adjacent drawing enclosing plates, and comprises a rack arranged on the bottom side face of one of the two enclosing structures, a guide rack arranged on the bottom side face of the drawing enclosing plate, a gear transmission assembly positioned between the rack on the bottom side face of one of the enclosing structures and the guide rack, and a gear transmission structure used for driving the gear transmission assembly to move.
Two the relative two outsides of first rail respectively set up a rail door, each rail door respectively with its adjacent rail structure looks lock.
Two enclose the fender structure and be connected two relative fender frames that enclose on the chassis top surface, every is enclosed the top side that keeps off the frame and is equipped with the limiting plate every enclose the top one side that keeps off the frame set up with the relative guide frame of limiting plate.
The bottom surfaces of the two lateral moving fences are respectively provided with two sliding rods, and the tops of the two sliding rods are correspondingly provided with two guide rods in sliding fit with the guide frames.
The drawing coaming is composed of a rectangular frame and a plurality of railings which are arranged at the lower section of the rectangular frame at equal intervals.
The two neck clamping plates are rectangular fences, one side of the upper section of each rectangular fence is connected with a first curved-surface boss, a second curved-surface boss connected with the rectangular fences is arranged below the first curved-surface bosses, and the first curved-surface bosses and the second curved-surface bosses on the two neck clamping plates are opposite to each other to form a neck buckling sleeve;
the bottoms of the two neck clamping plates are in sliding fit with the guide grooves in the top surface of the bottom frame, and the tops of the two neck clamping plates are arranged in the guide frame and move linearly along the guide frame.
The two ends of the fixed cross beam are connected to the support frame on the top surface of the limiting plate, the fixed ring of the support frame is in interference fit connection with the fixed cross beam, and the support frame is higher than the top surface of the neck clamping plate by two.
The power mechanism comprises a locking sleeve in interference fit with one end of the fixed cross beam, a power arm with one end connected to the locking sleeve, a driven arm I, a driven arm II, a driven arm III and a driven arm IV;
the power arm is provided with a traction rod, the traction rod is provided with a first hydraulic rod connected to one of the fences and a second hydraulic rod connected to the power arm and one of the first fences;
a driven hydraulic rod I is arranged between the driven arm I and one neck clamping plate;
the driven arm II is connected with one end of a driven hydraulic rod II, and the other end of the driven hydraulic rod II is connected to one of the lateral moving fences;
the other end of the driven arm III is connected to the other lateral moving fence;
the other end of the driven arm IV is connected to the other neck clamping plate;
the power mechanism also comprises an annular connecting sleeve arranged on the fixed cross beam, and a master linkage arm structure and a slave linkage arm structure which are respectively connected to the annular connecting sleeve;
the main linkage arm structure comprises a main linkage rod connected to the annular connecting sleeve, one end of a traction rod is hinged to the main linkage rod, and the other end of the traction rod is fixedly connected to one of the lateral moving fences;
the driven linkage arm structure is composed of an oblique supporting rod bridged between the annular connecting sleeve and one of the first fences, and a traction arm, one end of the oblique supporting rod is fixed on the annular connecting sleeve, and the other end of the oblique supporting rod is connected to the other lateral moving fence.
The gear transmission assembly comprises two first guide gears arranged side by side, and a main linkage rod and a driven linkage rod which are arranged on two sides of the first guide gears.
The gear transmission structure is composed of a traction rod, a rotating piece and a gear driving piece, wherein one end of the traction rod is hinged to a connecting column on the outer side surface of the main linkage rod, the rotating piece is movably connected with a central rotating shaft of a second guide gear at the other end of the traction rod, and the gear driving piece is sleeved on the rotating piece;
the gear driving part comprises a driving gear which is abutted with the second guide gear, a connecting rod connected to a central rotating shaft of the driving gear, and a rocker connected to the connecting rod;
the rotating part comprises a crank and a hollow rotating sleeve arranged at one end of the crank, the hollow rotating sleeve is sleeved on the central rotating shaft of the driving gear, and the hollow rotating sleeve is inserted on a support of one of the two first fences.
The invention has the beneficial effects that: the two corresponding first fences are arranged at the two ends of the underframe of the holding fence for the multifunctional ruminant, the two first fences, the two enclosure structures and the enclosure doors arranged on the two first fences form a safety experiment control area of an experiment operator, firstly, the ruminant to be tested enters the two enclosure structures and the two lateral moving fences through the enclosure structures, and the two neck splints form a holding area for the ruminant, so that the neck of the ruminant to be held is arranged in the neck buckling sleeve formed by the two neck splints, the draw bar on the power arm, the hydraulic rod I, the hydraulic rod, the driven arm I, the driven arm II, the driven arm III, the driven arm IV, the main linkage arm structure and the driven linkage arm structure drive the two lateral moving fences and the two neck splints to move relatively while pressing the power arm by hand, and the two lateral moving fences clamp the body of the ruminant, the two neck clamping plates clamp and fix the necks of the ruminants; the fixing is convenient and flexible, and the distance between the two lateral moving fences and the two neck clamping plates can be adjusted by adjusting the included angle of the power arm relative to the fixed cross beam according to ruminants with different body types; the width can be continuously adjusted, in addition, the rocker of the manual gear driving piece can drive the driving gear to rotate, meanwhile, the guide gear makes circular motion along the circumferential direction of the driving gear, the traction rod drives the two first guide gears of the whole gear transmission assembly to transmit between the rack and the guide rack by driving the main linkage rod to move, because one of the first fences is fixed on the underframe, when the gear transmission assembly transmits, the pull coaming with the guide rack arranged on the side surface of the bottom part is driven to reciprocate along the underframe, and the position of one of the first fences is controlled to realize the fixation of the ruminant; and overall structure sets up rationally, has further restricted ruminant's activity space, makes things convenient for operating personnel to stand and controls the district and carry out operations such as blood sampling, infusion to ruminant in the experiment, has increased the success rate of experiment.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.
Fig. 2 is a schematic overall structure diagram of the embodiment of the present invention.
FIG. 3 is a schematic view of a partial structure of the multi-functional ruminant animal litter box of the present invention.
Fig. 4 is a partial structural view of the multi-functional ruminant animal litter box of the present invention.
Fig. 5 is a schematic structural diagram of a power mechanism according to an embodiment of the invention.
Fig. 6 is a schematic structural view of a neck splint according to an embodiment of the present invention.
Fig. 7 is a schematic structural diagram of a fence structure in the embodiment of the present invention.
Fig. 8 is a schematic structural view of a sidewise moving fence according to an embodiment of the present invention.
Fig. 9 is a schematic structural view of a drawing fence in an embodiment of the present invention.
Fig. 10 is a partial structural schematic view of a gear transmission mechanism in an embodiment of the invention.
Fig. 11 is a partial structural schematic diagram of a gear transmission mechanism in an embodiment of the invention.
FIG. 12 is a schematic structural diagram illustrating a positional relationship between a traction rod and a second guide gear according to an embodiment of the present invention.
FIG. 13 is a schematic structural diagram of a gear driving member according to an embodiment of the present invention.
Wherein the reference numerals are: 1. a chassis; 2. a first fence; 3. a fence structure; 4. moving the fence laterally; 5. drawing and pulling the coaming; 6. a neck splint; 7. fixing the cross beam; 8. a power mechanism; 20. a fence door; 30. a surrounding baffle frame; 31. a limiting plate; 32. a guide frame; 40. a sliding bar; 41. a guide bar; 50. a rectangular frame; 51. a railing; 60. a rectangular fence; 61. a first curved boss; 62. a second curved boss; 80. a locking sleeve; 81. a power arm; 810. a draw bar; 811. a first hydraulic rod; 812. a second hydraulic rod; 82. a driven arm I; 826. a driven hydraulic rod I; 83. a driven arm II; 830. a driven hydraulic rod II; 84. a driven arm III; 85. a driven arm IV; 86. an annular connecting sleeve; 87. a primary linkage arm structure; 88. a driven linkage arm structure; 9. a gear transmission mechanism; 90. a rack; 91. a guide rack; 92. a gear drive assembly; 920. A first guide gear; 921. a main link rod; 922. a driven linkage rod; 93. a gear transmission structure; 930. a traction rod; 9300. a second guide gear; 931. a rotating member; 932. a gear drive.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
Referring to fig. 1-13, the present invention is: a multi-functional ruminant uses baoding fence, including the chassis 1, set up two corresponding first fences 2 in both ends of chassis 1, wherein, there are two that enclose the fender structure 3 on the chassis 1 between two first fences 2, enclose and set up two lateral shifting fences 4 relatively between two fender structures 3, there are pull coamings 5 in the interval between one of them lateral shifting fences 4 and one of 3, another encloses and is equipped with two neck splints 6 correspondingly in the interval between another fender structure 3 and another lateral shifting fence 4, the top between two fender structures 3 has fixed crossbeams 7, there are actuating unit 8 driving two lateral shifting fences 4 and two neck splints 6 to move on the fixed crossbeam 7;
a gear transmission mechanism 9 is arranged between one of the two first fences 2 and one of the adjacent drawing coamings 5, the gear transmission mechanism 9 comprises a rack 90 arranged on the bottom side of one of the two enclosure structures 3, a guide rack 91 arranged on the bottom side of the drawing coamings 5, a gear transmission assembly 92 arranged between the rack 90 on the bottom side of one of the enclosure structures and the guide rack 91, and a gear transmission structure 93 for driving the gear transmission assembly 92 to move.
Two opposite outsides of two first rails 2 respectively set up a fence door 20, and each fence door 20 is buckled rather than adjacent fence structure 3 mutually respectively.
Two enclose fender structure 3 for connecting two relative fender frames 30 that enclose on chassis 1 top surface, every encloses the top side that keeps off frame 30 and is equipped with limiting plate 31, encloses the top one side that keeps off frame 30 at every and sets up the guide frame 32 relative with limiting plate 31.
The two lateral moving fences 4 are each provided at the bottom with two slide bars 40 and at the top with two corresponding guide bars 41 slidably engaged with the guide frame 32.
The drawing coaming 5 is composed of a rectangular frame 50 and a plurality of railings 51 which are arranged at the lower section of the rectangular frame 50 at equal intervals.
The two neck clamping plates 6 are rectangular fences 60, one side of the upper section of each rectangular fence 60 is connected with a first curved boss 61, a second curved boss 62 connected with the rectangular fence 60 is arranged below the first curved boss 61, and the first curved bosses 61 and the second curved bosses 62 on the two neck clamping plates 6 are oppositely arranged to form a neck buckling sleeve;
the bottoms of the two neck clamping plates 6 are in sliding fit with the guide grooves on the top surface of the underframe 1, and the tops of the two neck clamping plates are arranged in the guide frame 32 and move linearly along the guide frame 32.
The two ends of the fixed cross beam 7 are connected to the support frame on the top surface of the limiting plate 31, the fixed ring of the support frame is connected with the fixed cross beam 7 in an interference fit mode, and the support frame is higher than the top surfaces of the two neck clamping plates 6.
The power mechanism 8 comprises a locking sleeve 80 in interference fit with one end of the fixed cross beam 7, a power arm 81 with one end connected to the locking sleeve 80, a first driven arm 82, a second driven arm 83, a third driven arm 84 and a fourth driven arm 85;
a traction rod 810 is arranged on the power arm 81, a first hydraulic rod 811 connected to one of the first fences 2 and a second hydraulic rod 812 connected to the power arm 81 and one of the first fences 2 are arranged on the traction rod 810;
a driven hydraulic rod one 826 is arranged between the driven arm one 82 and one of the neck clamping plates 6;
the second driven arm 83 is connected with one end of a second driven hydraulic rod 830, and the other end of the second driven hydraulic rod 830 is connected to one of the lateral moving fences 4;
the other end of the follower arm three 84 is connected to the other lateral moving fence 4;
the other end of the driven arm IV 85 is connected with the other neck splint 6;
the power mechanism 8 further comprises an annular connecting sleeve 86 arranged on the fixed cross beam 7, and a master linkage arm structure 87 and a slave linkage arm structure 88 which are respectively connected to the annular connecting sleeve 86;
the main linkage arm structure 87 comprises a main linkage rod connected to the annular connecting sleeve 86, and a traction rod with one end hinged to the main linkage rod, and the other end of the traction rod is fixedly connected to one of the lateral moving fences 4;
the driven linkage arm structure 88 is composed of an oblique supporting rod bridged between the annular connecting sleeve 86 and one of the first fences 2, and a traction arm with one end fixed on the annular connecting sleeve 86 and the other end connected to the other lateral moving fence 4.
The gear transmission assembly 92 comprises two first guide gears 920 arranged side by side, and a main linkage rod 921 and a driven linkage rod 922 arranged on two sides of the two first guide gears 920.
The gear transmission structure 93 is composed of a pulling rod 930 with one end hinged on the connecting column on the outer side surface of the main linkage bar 921, a rotating element 931 movably connected with the central rotating shaft of a second guide gear 9300 at the other end of the pulling rod 930, and a gear driving element 932 sleeved on the rotating element 931;
the gear driving unit 932 includes a driving gear abutting against the second guide gear 9300, a connecting rod connected to a central rotation shaft of the driving gear, and a rocker connected to the connecting rod;
the rotating member 931 includes a crank, a hollow rotating sleeve disposed at one end of the crank, the hollow rotating sleeve is sleeved on the central rotating shaft of the driving gear, and the hollow rotating sleeve is inserted into the bracket of one of the two first rails 2.
When the invention is actually used: the two corresponding first fences 2 are arranged at the two ends of the underframe 1 of the holding fence for the multifunctional ruminant, the two first fences 2, the two enclosure structures 3 and the enclosure doors 20 arranged on the two first fences 2 form a safety experiment control area of an experiment operator, firstly, the ruminant to be tested enters the two enclosure structures 3 and the two lateral moving fences 4 through the enclosure structures, and the two neck splints 6 form an area for holding the ruminant, so that the neck of the ruminant to be held is arranged in the neck buckling sleeve formed by the two neck splints 6, the draw bar 810 on the power arm 81, the hydraulic rod I811, the hydraulic rod 812, the first driven arm 82, the second driven arm 83, the third driven arm 84, the fourth driven arm 85, the main linkage arm structure 87 and the driven linkage arm structure 88 drive the two lateral moving fences 4 and the two neck splints 6 to move relatively when the power arm 81 is pressed by hand, the two lateral moving fences clamp the body of the ruminant, and the two neck splints 6 clamp and fix the neck of the ruminant; the fixing is convenient and flexible, and the distance between the two lateral moving fences 4 and the two neck splints 6 can be adjusted by adjusting the included angle of the power arm 88 relative to the fixed cross beam 7 according to ruminants of different body types; the width can be continuously adjusted, in addition, the rocker of the manual gear driving piece 932 can drive the driving gear to rotate, meanwhile, the second guide gear 9300 can make circular motion along the circumferential direction of the driving gear, at the moment, the pulling rod 930 can drive the main linkage rod 921 to move so as to drive the two first guide gears 920 of the whole gear transmission assembly 92 to transmit between the rack 90 and the guide rack 91, because one fence is fixed on the underframe 1, when the gear transmission assembly 92 transmits, the pulling coaming 5 provided with the guide rack 91 on the side surface of the bottom is driven to reciprocate along the underframe 1, and the position of the one fence is controlled so as to realize the fixation of the ruminant; and overall structure sets up rationally, has further restricted ruminant's activity space, makes things convenient for operating personnel to stand and controls the district and carry out operations such as blood sampling, infusion to ruminant in the experiment, has increased the success rate of experiment.
The technical features of the present invention which are not described in the above embodiments may be implemented by or using the prior art, and are not described herein again, of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and variations, modifications, additions or substitutions which may be made by those skilled in the art within the spirit and scope of the present invention should also fall within the protection scope of the present invention.

Claims (4)

1. A multifunctional restraint fence for ruminants comprises a chassis (1), two first fences (2) arranged at two ends of the chassis (1) correspondingly, it is characterized in that two enclosure structures (3) are arranged on the underframe (1) between the two first enclosures (2), two laterally moving fences (4) are oppositely arranged between the two fence structures (3), a drawing coaming (5) is arranged in a gap between one of the enclosure structures (3) and the lateral moving fence (4), two neck clamping plates (6) are correspondingly arranged in a gap between the other enclosure structure (3) and the lateral moving fence (4), a fixed cross beam (7) is arranged at the top between the two enclosure structures (3), the fixed cross beam (7) is provided with a power mechanism (8) for driving the two lateral moving fences (4) and the two neck clamping plates (6) to move;
a gear transmission mechanism (9) is arranged between one of the two first fences (2) and one of the adjacent drawing fences (5), the gear transmission mechanism (9) comprises a rack (90) arranged on the bottom side of one of the two fences (3), a guide rack (91) arranged on the bottom side of the drawing fence (5), a gear transmission assembly (92) positioned between the rack (90) on the bottom side of one fence and the guide rack (91), and a gear transmission structure (93) for driving the gear transmission assembly (92) to move;
the gear transmission assembly (92) comprises two first guide gears (920) arranged side by side, and a main linkage rod (921) and a driven linkage rod (922) which are arranged on two sides of the two first guide gears (920);
the gear transmission structure (93) is composed of a traction rod (930) with one end hinged on a connecting column on the outer side surface of the main linkage rod (921), a rotating piece (931) movably connected with a central rotating shaft of a second guide gear (9300) at the other end of the traction rod (930), and a gear driving piece (932) sleeved on the rotating piece (931);
the gear driving part (932) comprises a driving gear abutted with the second guide gear (9300), a connecting rod connected to the central rotating shaft of the driving gear, and a rocker connected to the connecting rod;
the rotating member (931) comprises a crank and a hollow rotating sleeve arranged at one end of the crank, the hollow rotating sleeve is sleeved on the central rotating shaft of the driving gear, and the hollow rotating sleeve is inserted and connected onto a bracket of one of the two first rails (2);
two opposite outer sides of the two first fences (2) are respectively provided with a fence door (20), and each fence door (20) is buckled with the adjacent fence structure (3) respectively;
the two enclosure structures (3) are two opposite enclosure frames (30) connected to the top surface of the underframe (1), one side surface of the top of each enclosure frame (30) is provided with a limiting plate (31), and one side of the top of each enclosure frame (30) is provided with a guide frame (32) opposite to the limiting plate (31);
the power mechanism (8) comprises a locking sleeve (80) in interference fit with one end of the fixed cross beam (7), a power arm (81) with one end connected to the locking sleeve (80), a driven arm I (82), a driven arm II (83), a driven arm III (84) and a driven arm IV (85);
a draw bar (810) is arranged on the power arm (81), a first hydraulic rod (811) connected to one of the first fences (2) is arranged on the draw bar (810), and a second hydraulic rod (812) connected to the power arm (81) and one of the first fences (2);
a first driven hydraulic rod (826) is arranged between the first driven arm (82) and one neck clamping plate (6);
the second driven arm (83) is connected with one end of a second driven hydraulic rod (830), and the other end of the second driven hydraulic rod (830) is connected to one of the lateral moving fences (4);
the other end of the driven arm III (84) is connected to the other lateral moving fence (4);
the other end of the driven arm IV (85) is connected to the other neck clamping plate (6);
the power mechanism (8) further comprises an annular connecting sleeve (86) arranged on the fixed cross beam (7), and a master linkage arm structure (87) and a slave linkage arm structure (88) which are respectively connected to the annular connecting sleeve (86);
the main linkage arm structure (87) comprises a main linkage rod connected to the annular connecting sleeve (86), and a traction rod with one end hinged to the main linkage rod, wherein the other end of the traction rod is fixedly connected to one of the lateral moving fences (4);
the driven linkage arm structure (88) is composed of an oblique supporting rod bridged between the annular connecting sleeve (86) and one of the first fences (2), and a traction arm of which one end is fixed on the annular connecting sleeve (86) and the other end is connected to the other lateral moving fence (4);
the bottom surfaces of the two lateral moving fences (4) are respectively provided with two sliding rods (40), and the tops of the two sliding rods are correspondingly provided with two guide rods (41) which are in sliding fit with the guide frames (32).
2. The multi-functional ruminant animal use baoding fence of claim 1, characterized in that, the drawing coaming (5) is composed of a rectangular frame (50) and a plurality of railings (51) arranged at the lower section of the rectangular frame (50) at equal intervals.
3. The multi-functional ruminant animal baoding fence of claim 1, characterized in that, two of the neck splint (6) are rectangular rails (60), one side of the upper section of the rectangular rails (60) is connected with a first curved boss (61), a second curved boss (62) connected with the rectangular rails (60) is arranged under the first curved boss (61), and the first curved boss (61) and the second curved boss (62) on the two neck splint (6) are opposite to each other to form a neck buckling sleeve;
the bottoms of the two neck clamping plates (6) are in sliding fit with the guide grooves in the top surface of the bottom frame (1), and the tops of the two neck clamping plates are arranged in the guide frame (32) and move linearly along the guide frame (32).
4. The multi-functional ruminant animal use baoding fence of claim 1, characterized in that, the fixed crossbeam (7) both ends are connected on the support frame of the limiting plate (31) top surface, the solid fixed ring of support frame and the fixed crossbeam (7) mutual interference fit hookup, the support frame is higher than the top surface of two neck splint (6).
CN201810294699.5A 2018-03-30 2018-03-30 Multi-functional ruminant is with baoding fence Expired - Fee Related CN108524048B (en)

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Families Citing this family (3)

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Publication number Priority date Publication date Assignee Title
CN108524049B (en) * 2018-03-30 2020-06-19 山东省农业科学院畜牧兽医研究所 Experimental cattle baoding fence
CN108685621B (en) * 2018-03-30 2020-06-19 山东省农业科学院畜牧兽医研究所 Ruminant fence type retaining device
CN111166525A (en) * 2020-02-11 2020-05-19 金华职业技术学院 Mobile diagnosis and treatment lifting frame for large livestock

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