CN214155273U - Multifunctional deep plough mounting rack - Google Patents
Multifunctional deep plough mounting rack Download PDFInfo
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- CN214155273U CN214155273U CN202023290528.7U CN202023290528U CN214155273U CN 214155273 U CN214155273 U CN 214155273U CN 202023290528 U CN202023290528 U CN 202023290528U CN 214155273 U CN214155273 U CN 214155273U
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- traction device
- subsoiler
- mounting frame
- socket
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Abstract
The utility model discloses a multifunctional deep ploughing plough mounting rack, which comprises a mounting rack, a traction device is arranged at the rear part of the mounting rack, the traction device is connected with the mounting rack through a connecting component, a plough share component is detachably arranged at the rear part of the traction device, and a positioning component for positioning the plough share component is arranged on the traction device, but also has the advantages of easy installation and stable structure, has more stable effect compared with the prior ploughshare which is directly installed through the sliding chute, and is combined with the matching between the bolt and the socket, the plough share can be guaranteed not to slide in the sliding groove in the working process, the whole device has a more stable effect, the lead screw can guarantee that the device cannot slide left and right in the working process, and the problem that the traction device is unstable in the first sliding groove is solved.
Description
Technical Field
The utility model belongs to the technical field of agricultural machine, concretely relates to simple structure, convenient multi-functional subsoiler mounting bracket of dismouting.
Background
As is known, a deep plough is a common tool in agricultural production, and is a furrow plough with a large cultivating depth. The plough is composed of a full-depth plough, a gap plough for turning up and loosening down, a layer plough and a furrow plough with a break shovel. Deep ploughing also has a variety of types: the deep ploughing of the prepared rhizome of rehmannia is generally 30-45 cm to loosen the cultivated layer and improve the crop yield, and the soil improvement deep ploughing is generally 40-70 cm and can reach 1.4 m at most. Deep ploughing aims to improve soil, such as loosening subsoil, accelerating curing, silting and pressing sand, sanding and pressing alkali and the like.
At present common deep plough on the market all is integrative direct mount on drive arrangement, all has inconvenient nature to the change of spare part or transportation, when need changing the ploughshare to the operating mode of difference moreover, often can be more complicated, and the change degree of difficulty is big, wastes time and energy.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a simple structure, the convenient multi-functional subsoiler mounting bracket of dismouting to solve the problem that provides among the above-mentioned background art.
In order to solve the technical problem, the utility model provides a following technical scheme:
the utility model provides a multi-functional subsoiler mounting bracket, includes the mount, and the rear of mount is provided with draw gear, is connected through coupling assembling between draw gear and the mount, and demountable installation has the share subassembly in draw gear's rear, is provided with the locating component who is used for fixing a position the share subassembly on the draw gear.
The following is the utility model discloses to above-mentioned technical scheme's further optimization:
the traction device comprises a mounting frame which is horizontally arranged, a second sliding groove used for mounting the plough share assembly is arranged in the mounting frame, and an opening communicated with the second sliding groove is formed in one side edge of the mounting frame far away from the fixing frame.
Further optimization: the mounting frame is connected with the connecting block in one side an organic whole near the mount, and the connecting block is connected with first stopper in the one end an organic whole near the mount.
Further optimization: the plough share assembly comprises a plough share main body, one end of the plough share main body, which is close to the mounting frame, is integrally connected with a second limiting block, the shape of the cross section of the second limiting block is matched with the shape of the cross section of the second sliding chute, and the second limiting block is slidably connected in the second sliding chute.
Further optimization: the positioning assembly comprises a plurality of first inserting ports arranged on the mounting frame, and the first inserting ports are sequentially arranged at intervals along the length direction of the mounting frame.
Further optimization: a second socket matched with the first socket for use is formed in the second limiting block, and the same positioning pin is arranged in the first socket and the second socket in a penetrating mode.
Further optimization: the fixing frame is internally provided with a first sliding groove used for installing the traction device, and the side surface of the fixing frame close to the traction device is provided with an opening communicated with the first sliding groove.
Further optimization: coupling assembling is including fixed setting on first spout inner wall and be close to the bearing fixing base of its both ends position department, rotates between two bearing fixing bases and is connected with the lead screw.
Further optimization: the first limiting block is integrally connected with a nut seat at a position close to the screw rod, the nut seat is integrally connected with a nut, and the nut is in threaded connection with the screw rod.
Further optimization: be provided with the trailing arm that is used for being connected with drive arrangement on the mount, the last connecting rod that is provided with of draw gear, the trailing arm can be dismantled with the connecting rod and be connected.
The above technical scheme is adopted in the utility model, think about ingenious, simple structure not only can effectively save manufacturing cost, has easy installation, stable in structure's advantage moreover.
After a second limiting block of the plough share assembly is installed into the second sliding groove, the positioning pin penetrates through the first socket and the second socket to fix the plough share assembly.
Compare the ploughshare in the past and directly install through the spout, have more stable effect, including the cooperation between locating pin and the socket, can guarantee that the ploughshare can not slide in the spout in work, make the integrated device have more stable effect.
After the first limiting block is placed on one side of the first sliding groove, the lead screw is adjusted through rotation, and the traction device slowly slides to the working position along the first sliding groove.
The screw is the most commonly used transmission element on tool machinery and precision machinery, and its main function is to convert rotary motion into linear motion or convert torque into axial repeated acting force, and has the characteristics of high precision, reversibility and high efficiency.
Because the lead screw has very little frictional resistance, can reach laborsaving effect in the in-process of installing draw gear.
Compared with the prior mounting mode, the connecting assembly can ensure that the device cannot slide left and right in the working process, and the problem that the traction device is unstable in the first sliding groove is solved.
The present invention will be further explained with reference to the drawings and examples.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a left side view of the present invention;
FIG. 3 is a schematic view of a plough share of the present invention;
fig. 4 is a schematic structural view of the middle traction device of the present invention.
In the figure: 1-a traction device; 2-a mounting rack; 21-a first socket; 3-reinforcing the bracket; 31-a first reinforcing rib; 32-plug connector; 4, connecting blocks; 41-a second reinforcing rib; 5-a first limiting block; 6-connecting rod; 7-a lead screw; 71-nut seats; 72-a nut; 8-a second chute; 9-a ploughshare assembly; 91-a second limiting block; 92-a second socket; 93-ploughshare body; 10-a first chute; 11-a fixing frame; 12-a traction arm; 13-bearing fixing seat.
Detailed Description
Example (b): as shown in fig. 1-2, the multifunctional deep plow mounting frame comprises a fixing frame 11, a traction device 1 is arranged behind the fixing frame 11, the traction device 1 is connected with the fixing frame 11 through a connecting assembly, a plow share assembly 9 is detachably mounted behind the traction device 1, and a positioning assembly for positioning the plow share assembly 9 is arranged on the traction device 1.
The fixed frame 11 is provided with a traction arm 12 used for being connected with a driving device, the traction device 1 is provided with a connecting rod 6, and the traction arm 12 is detachably connected with the connecting rod 6.
The traction device 1 comprises a horizontally arranged mounting frame 2.
A second chute 8 for mounting the plough share component 9 is arranged in the mounting frame 2, and an opening communicated with the second chute 8 is formed in one side edge of the mounting frame 2 far away from the fixing frame 11.
And a reinforcing support 3 is integrally connected to one side of the mounting frame 2, which is far away from the fixing frame 11.
The corners of the reinforcing bracket 3 are provided with first reinforcing ribs 31.
An inserting block 32 is fixedly arranged on the reinforcing bracket 3 and close to the middle position of the reinforcing bracket.
The connecting rod 6 is detachably connected between the insertion block 32 and the traction arm 13.
The mounting frame 2 is integrally connected with a connecting block 4 at one side close to the fixing frame 11.
And a second reinforcing rib 41 for enhancing stability is fixedly arranged between the connecting block 4 and the mounting rack 2.
One end of the connecting block 4 close to the fixing frame 11 is integrally connected with a first limiting block 5.
The ploughshare assembly 9 comprises a ploughshare main body 93, and a ploughshare is fixedly arranged on the lower side of the ploughshare main body 93.
The ploughshare main body 93 is provided with a second limiting block 91 at a position corresponding to the second chute 8, and the second limiting block 91 is integrally connected with the ploughshare main body 93.
The shape of the cross section of the second limiting block 91 is matched with the shape of the cross section of the second sliding groove 8, and the second limiting block 91 is connected in the second sliding groove 8 in a sliding mode.
The positioning assembly comprises a plurality of first inserting holes 21 formed in the mounting frame 2, and the first inserting holes 21 are sequentially arranged at intervals along the length direction of the mounting frame 2.
The second limiting block 91 is provided with a second socket 92 used in cooperation with the first socket 21, the same positioning pin penetrates through the first socket 21 and the second socket 92, and the diameters of the first socket 21 and the second socket 92 are the same.
In operation, after the second limiting block 91 of the plough share assembly 9 is installed into the second chute 8, the positioning pin passes through the first socket 21 and the second socket 92 to fix the plough share assembly 9.
Design like this, compare the ploughshare in the past and directly install through the spout, have more stable effect, including the cooperation between locating pin and the socket, can guarantee that the ploughshare can not slide in the spout in work, make whole device have more stable effect.
The fixing frame 11 is provided with a first chute 10 for mounting the traction device 1, and the fixing frame 11 is provided with an opening communicated with the first chute 10 on the side surface close to the traction device 1.
Coupling assembling is including fixed bearing fixing base 13 that sets up on first spout 10 inner wall and be close to its both ends position department, rotates between two bearing fixing base 13 and is connected with lead screw 7.
The first limiting block 5 is integrally connected with a nut seat 71 at a position close to the lead screw 7.
The nut seat 71 is integrally connected with a nut 72, and the nut 72 is in threaded connection with the lead screw 7.
In operation, place first stopper 5 behind the one side of first spout 10, through rotating adjusting screw 7, make draw gear 1 slowly slide to operating position department along first spout 10.
With such a design, the screw 7 is the most commonly used transmission element in tool machines and precision machines, and has the main function of converting rotational motion into linear motion or converting torque into axial repeated acting force, and has the characteristics of high precision, reversibility and high efficiency.
Because the lead screw 7 has very small frictional resistance, the effect of saving labor can be achieved in the process of adjusting the traction device 1.
Compared with the prior mounting mode, the connecting assembly can ensure that the device cannot slide left and right in the working process, and the problem that the traction device 1 is unstable in the first sliding groove 10 is solved.
For those skilled in the art, based on the teachings of the present invention, changes, modifications, substitutions and variations can be made to the embodiments without departing from the principles and spirit of the invention.
Claims (10)
1. The utility model provides a multi-functional subsoiler mounting bracket, includes mount (11), its characterized in that: the rear of the fixing frame (11) is provided with a traction device (1), the traction device (1) is connected with the fixing frame (11) through a connecting assembly, a ploughshare assembly (9) is detachably mounted at the rear of the traction device (1), and the traction device (1) is provided with a positioning assembly for positioning the ploughshare assembly (9).
2. The multi-purpose subsoiler mount of claim 1, wherein: the traction device (1) comprises a horizontally arranged mounting frame (2), a second sliding groove (8) for mounting the plough share component (9) is arranged in the mounting frame (2), and an opening communicated with the second sliding groove (8) is formed in one side edge of the mounting frame (2) far away from the mounting frame (11).
3. The multi-purpose subsoiler mount of claim 2, wherein: mounting bracket (2) are being close to one side integral connection of mount (11) connecting block (4), and connecting block (4) are being close to one end integral connection of mount (11) first stopper (5).
4. The multi-purpose subsoiler mount of claim 3, wherein: the plough share assembly (9) comprises a plough share main body (93), one end of the plough share main body (93) close to the mounting frame (2) is integrally connected with a second limiting block (91), the shape of the cross section of the second limiting block (91) is matched with that of the cross section of the second sliding chute (8), and the second limiting block (91) is connected in the second sliding chute (8) in a sliding manner.
5. The multi-purpose subsoiler mount of claim 4, wherein: the positioning assembly comprises a plurality of first inserting holes (21) formed in the mounting frame (2), and the first inserting holes (21) are sequentially arranged at intervals along the length direction of the mounting frame (2).
6. The multi-purpose subsoiler mount of claim 5, wherein: a second socket (92) matched with the first socket (21) for use is formed in the second limiting block (91), and the same positioning pin penetrates through the first socket (21) and the second socket (92).
7. The multi-purpose subsoiler mount of claim 6, wherein: a first sliding groove (10) used for installing the traction device (1) is formed in the fixing frame (11), and an opening communicated with the first sliding groove (10) is formed in the side face, close to the traction device (1), of the fixing frame (11).
8. The multi-purpose subsoiler mount of claim 7, wherein: coupling assembling is including fixed bearing fixing base (13) that set up on first spout (10) inner wall and be close to its both ends position department, rotates between two bearing fixing base (13) to be connected with lead screw (7).
9. The multi-purpose subsoiler mount of claim 8, wherein: the first limiting block (5) is integrally connected with a nut seat (71) at a position close to the lead screw (7), the nut seat (71) is integrally connected with a nut (72), and the nut (72) is in threaded connection with the lead screw (7).
10. The multi-purpose subsoiler mount of claim 9, wherein: the fixed frame (11) is provided with a traction arm (12) connected with the driving device, the traction device (1) is provided with a connecting rod (6), and the traction arm (12) is detachably connected with the connecting rod (6).
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CN202023290528.7U CN214155273U (en) | 2020-12-31 | 2020-12-31 | Multifunctional deep plough mounting rack |
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CN202023290528.7U CN214155273U (en) | 2020-12-31 | 2020-12-31 | Multifunctional deep plough mounting rack |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114405988A (en) * | 2022-01-22 | 2022-04-29 | 山东奥森水利科技有限公司 | Chemical drug repairing and spraying device and method after soil pollution |
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2020
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114405988A (en) * | 2022-01-22 | 2022-04-29 | 山东奥森水利科技有限公司 | Chemical drug repairing and spraying device and method after soil pollution |
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