Plough body mounting structure of amplitude modulation turnover plow

By introducing telescopic and adjustment mechanisms into the amplitude-modulation flip plow, the problem of inconvenient adjustment of the plow body angle and depth is solved, convenient adjustment of the plow body position is achieved, and plow efficiency is improved.

CN223157568UActive Publication Date: 2025-07-29SHENYANG RUI LIFENG MASCH CO LTD
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Patent Information

Application Number
CN202421612281.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-07-29
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The existing AMF flip plow is difficult to easily adjust the angle and depth of the plow body, and it is difficult to adjust the spacing between the plow bodies.

Method used

The telescopic mechanism and adjustment mechanism are adopted to adjust the angle and depth of the plow body through rotation, and the movement and adjustment of the plow body is realized through pulleys, and the position is fixed using a card block and a knob.

Benefits of technology

It realizes convenient adjustment of plow body angle and depth, improves tillage efficiency and ability to adapt to different soil conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of plow body installation, and discloses a plow body installation structure of an amplitude modulation turnover plow, which comprises two telescopic mechanisms, a movable shell and two adjusting mechanisms, each telescopic mechanism comprises a telescopic outer cylinder, two sides of the upper end face of each telescopic outer cylinder are provided with telescopic grooves, and the telescopic grooves are arranged in the movable shell. Telescopic rods are movably arranged in the two telescopic grooves, and clamping blocks are movably embedded in the positions, close to the upper ends, of the front end face and the rear end face of the telescopic outer cylinder. According to the utility model, the telescopic mechanism and the adjusting mechanism are fixedly arranged on the two sides of the upper end surface and the lower end surface of the movable shell, so that the fixedly connected plow body can be subjected to certain telescopic adjustment, and the plowing depth of the plow body is changed; and meanwhile, the supporting mechanism and the adjusting mechanism which are fixedly arranged can also adjust the inclination angle of the plough body to a certain degree, and a pulley rotationally arranged in the movable shell can conveniently and movably adjust the movable shell on the outer surface of the first cross beam.
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Description

Technical Field

[0001] The utility model relates to the technical field of plow body installation, in particular to a plow body installation structure of an amplitude-adjustable reversible plow. Background Technique

[0002] An amplitude-adjustable reversible plow is a plowing tool with the function of adjusting the amplitude, usually used for tilling and plowing fields. Compared with traditional plowing tools, the amplitude-adjustable reversible plow can change the plowing depth and angle by adjusting the tilt angle or depth of the plow body, so as to adapt to different tillage requirements and soil conditions. The amplitude-adjustable reversible plow can achieve precise control of the soil depth and loosening degree, improving tillage efficiency and crop quality.

[0003] At present, most of the existing amplitude-adjustable reversible plows fix the plow body in the cross beam through bolts, so that the plow body can plow the land. Due to different land conditions, it is necessary to adjust the plowing depth and angle of the plow body. Most amplitude-adjustable reversible plows are difficult to move and adjust the angle and plowing depth of the plow body more conveniently. At the same time, the existing amplitude-adjustable reversible plows are difficult to adjust and move the frame spacing between the plow bodies more conveniently. Therefore, the utility model provides a plow body installation structure of an amplitude-adjustable reversible plow to solve the problems put forward in the above background technique. Content of the Utility Model

[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and to propose a plow body installation structure of an amplitude-adjustable reversible plow. Through the fixedly arranged adjusting mechanism and telescopic mechanism, the angle and plowing depth of the plow body can be adjusted to a certain extent. The plow body can be adjusted more conveniently by rotating. At the same time, the pulley rotatably arranged in the movable housing can make the movable housing drive the fixed plow body to move and adjust to different positions. Rotating the handwheel can drive the rubber block to fix the position of the plow body, so as to more conveniently move and adjust the spacing between the plow bodies.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A plow body installation structure of an amplitude-adjustable reversible plow, including two telescopic mechanisms, a movable housing and two adjusting mechanisms. Both of the two telescopic mechanisms include telescopic outer cylinders. Both sides of the upper end surface of each telescopic outer cylinder are provided with telescopic grooves. Telescopic rods are movably arranged in the two telescopic grooves. Clamping blocks are movably embedded at the upper ends of the front end surface and the rear end surface of each telescopic outer cylinder. A bidirectional screw rod is rotatably arranged at the midpoint of the upper end of each telescopic outer cylinder. A supporting mechanism is movably arranged at the lower end of one side of each telescopic outer cylinder;

[0007] Fixed blocks are fixedly provided at the midpoints of the upper and lower ends of both sides of the movable shell, and threaded blocks are threadedly embedded at the midpoints of the upper end surfaces of the four fixed blocks. A sliding groove is provided at the midpoint of one side of the movable shell, and pulleys are rotatably provided on both sides of the bottom and top surfaces of the sliding groove. The two adjustment mechanisms each include a first rotating member, a first rotating disk, a supporting block, a second rotating disk, a threaded rod, a movable cylinder, a second rotating member, a movable member, an adjusting block, a movable block and a third rotating member, and the supporting mechanism includes a rotating cylinder, a rotating rod, a connecting block, a fourth rotating member and a third rotating block;

[0008] Through the above technical solution, after the telescopic slide rod is movably set in the telescopic outer cylinder with a telescopic slot, after the telescopic rod is telescopically moved, the bidirectional screw can be rotated to drive the block to fix the telescopic rod, and the fixed plow body can be adjusted to a certain extent. At the same time, rotating the support mechanism fixed on one side of the telescopic mechanism can drive the telescopic mechanism to adjust a certain angle. The adjustment mechanism fixed on the other side of the upper end surface of the movable shell can adjust the fixed auxiliary plow body to a certain angle and can also adjust the plowing depth of the auxiliary plow body to a certain extent.

[0009] Furthermore, the two clamping blocks are respectively threadedly sleeved with the bidirectional screw, and the front end surface and the rear end surface of the telescopic rod are both provided with a plurality of clamping grooves, and the two clamping blocks are respectively engaged with the clamping grooves provided on the front end surface and the rear end surface of the telescopic rod, and knobs are fixedly provided on both sides of the bidirectional screw, and a first rotating block is fixedly provided on the lower end surface of the telescopic outer cylinder, and a second rotating block is rotatably provided near the lower end of the first rotating block;

[0010] Through the above technical solution, after the knobs are fixedly set at both ends of the bidirectional screw, the threaded sleeve block can be driven to move and adjust, the telescopic rod after telescopic adjustment can be clamped and fixed, and after the first rotating block and the second rotating block fixedly set on the lower end surface of the telescopic outer cylinder are rotatably connected, the telescopic mechanism can be better rotated and adjusted.

[0011] Furthermore, the first turntable is rotatably embedded in the midpoint of the upper end of one side of the supporting block, the movable member is threadedly embedded in the midpoint of one side of the first turntable, the second rotating member is fixedly arranged on the lower end of one side of the movable cylinder, the movable block is movably embedded in the upper end surface of the movable cylinder, the adjusting block is fixedly arranged on the upper end of one side of the movable cylinder, the threaded rod is rotatably embedded in the midpoint of the upper end surface of the adjusting block, the second turntable is fixedly arranged on the upper end surface of the threaded rod, a second crossbeam is fixedly arranged on the upper end surface of the threaded rod, the outer surface of the threaded rod is rotatably connected to the protruding portion of the lower end of one side of the second crossbeam, and the second rotating member is rotatably connected to one end of the movable member;

[0012] Through the above technical solution, the first turntable rotatably arranged in the rotating support plate can drive the telescopically arranged movable part to perform telescopic adjustment, and can drive the second rotating part connected by rotation and the movable cylinder connected fixedly to perform rotational adjustment at different angles. At the same time, rotating the second turntable can drive the threaded rod to perform rotational adjustment. When rotating, it can drive the adjusting block to perform telescopic adjustment in the movable cylinder, and can also perform translational adjustment on the fixedly arranged second cross beam.

[0013] Further, both the support block and the third rotating part are fixedly arranged on one side of the upper end surface of the movable housing, and the third rotating part is rotatably arranged at the lower part of the movable cylinder;

[0014] Through the above technical solution, after the adjusting mechanism is fixedly arranged on the upper end surface of the movable housing through the support block and the third rotating part, the movable housing can better drive the adjusting mechanism to perform position movement.

[0015] Further, the fourth rotating part is rotatably arranged at the upper part of the rotating cylinder, the threaded rod is threadedly embedded in the lower end surface of the rotating cylinder, the threaded rod is rotatably connected with the connecting block, the third rotating block is rotatably connected at the lower part, the lower end surface of the third rotating block is fixedly arranged on one side of the upper end surface of the movable housing, and one side of the fourth rotating part is fixedly arranged at the lower part of one side of the telescopic outer cylinder;

[0016] Through the above technical solution, after the threaded rod and the connecting block are rotatably connected, the threaded rod can be threadedly embedded in the rotating cylinder. When the threaded rod rotates, it can push the fourth rotating part connected by rotation to perform translational adjustment, and can also drive the telescopic outer cylinder to perform angular adjustment at different angles.

[0017] Further, the two telescopic mechanisms are rotatably arranged on one side of the upper end surface and the lower end surface of the movable housing through the second rotating part, the two support mechanisms are respectively fixedly arranged on one side of the upper end surface and the lower end surface of the movable housing, and the two adjusting mechanisms are respectively fixedly arranged on the other side of the upper end surface and the lower end surface of the movable housing;

[0018] Through the above technical solution, after the telescopic mechanism is fixedly arranged on the outer surface of the movable housing through the support mechanism, when the movable housing performs translational adjustment, it can drive the telescopic mechanism to perform position movement adjustment, and at the same time, the fixedly arranged adjusting mechanism can also be driven to perform movement adjustment.

[0019] Further, a first cross beam is movably embedded in the sliding groove, and hand wheels are fixedly arranged at one ends of the four threaded blocks, and rubber blocks are fixedly arranged at the other ends of the four threaded blocks;

[0020] Through the above technical solution, after the first crossbeam is embedded in the movable housing, the movable housing can better drive the telescopic mechanism and the adjustment mechanism to move and adjust. The provided handwheel can drive the fixedly arranged rubber block to fix the position of the movable housing after the movement and adjustment.

[0021] The utility model has the following beneficial effects:

[0022] 1. For the plow body installation structure of an amplitude modulation reversible plow proposed by the utility model, the telescopic mechanism can adjust the telescopic rod to different lengths. At the same time, it can also drive the fixedly arranged main plow body to adjust the plowing depth. Meanwhile, rotating the rotating rod in the support mechanism fixedly arranged on one side of the telescopic outer cylinder can drive the rotating cylinder to perform telescopic adjustment, and can also drive the telescopic mechanism to perform rotational adjustment to adjust the angle of the main plow body, so as to meet the needs of users.

[0023] 2. For the plow body installation structure of an amplitude modulation reversible plow proposed by the utility model, after the adjustment mechanism is fixedly arranged on one side of the upper end surface of the movable housing, the sub-plow body fixedly arranged in the second crossbeam can be adjusted according to the needs of users. Rotating the second turntable can drive the threaded rod to rotate, thereby driving the movement in the movable cylinder, and then driving the fixedly arranged sub-plow body to perform telescopic adjustment to change the plowing depth of the sub-plow body. Rotating the first turntable arranged in the support block can drive the first rotating member embedded with threads to perform telescopic adjustment, and at the same time drive the movable cylinder and the fixedly arranged sub-plow body to perform different angle adjustments, which can improve the plowing requirements of users. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is the axonometric schematic diagram of the utility model;

[0025] Figure 2 is the axonometric schematic diagram of the telescopic mechanism and the adjustment mechanism of the utility model;

[0026] Figure 3 is the first axonometric schematic diagram of the telescopic mechanism of the utility model;

[0027] Figure 4 is the second axonometric schematic diagram of the telescopic mechanism of the utility model;

[0028] Figure 5 is the sectional schematic diagram of the telescopic mechanism of the utility model;

[0029] Figure 6 is the top sectional schematic diagram of the telescopic mechanism of the utility model;

[0030] Figure 7 is the sectional schematic diagram of the support mechanism of the utility model;

[0031] Figure 8 Schematic diagram of the support of the adjustment mechanism of the present utility model;

[0032] Figure 9 Schematic cross-sectional view of the adjustment mechanism of the present utility model;

[0033] Figure 10 Schematic cross-sectional view of the movable housing of the present utility model.

[0034] Legend:

[0035] 1. Telescopic mechanism; 2. Fixed block; 3. Movable housing; 4. First cross beam; 5. Adjustment mechanism; 6. Support mechanism; 7. First rotating block; 8. Second rotating block; 9. Second cross beam; 10. Handwheel; 11. Pulley; 12. Threaded block; 13. Sliding groove; 14. Rubber block; 101. Telescopic outer cylinder; 102. Telescopic rod; 103. Knob; 104. Telescopic groove; 105. Clamping block; 106. Clamping groove; 107. Bidirectional screw; 501. First rotating member; 502. First turntable; 503. Support block; 504. Second turntable; 505. Threaded rod; 506. Movable cylinder; 507. Second rotating member; 508. Movable member; 509. Adjusting block; 5010. Movable block; 5011. Third rotating member; 601. Rotating cylinder; 602. Rotating rod; 603. Connecting block; 604. Fourth rotating member; 605. Third rotating block. Detailed implementation manners

[0036] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0037] Embodiment

[0038] Refer to Figure 1-10The present invention provides an embodiment of a plow body mounting structure for an amplitude modulation flip plow, comprising two telescopic mechanisms 1, a movable shell 3 and two adjustment mechanisms 5. The two telescopic mechanisms 1 each comprise a telescopic outer cylinder 101, and both sides of the upper end surface of the telescopic outer cylinder 101 are provided with telescopic grooves 104. Telescopic rods 102 are movably arranged in the two telescopic grooves 104. Blocks 105 are movably embedded in the front and rear ends of the telescopic outer cylinder 101. A bidirectional screw 107 is rotatably arranged at the midpoint of the upper end of the telescopic outer cylinder 101. A support mechanism 6 is movably provided at the lower end on one side. After telescopic grooves 104 are provided on both sides of the upper end surface of the telescopic outer cylinder 101, the telescopic rod 102 can be telescoped and adjusted. When the bidirectional screw 107 is rotated, the threaded adjustment block 105 can be driven to engage with the telescopic rod 102 to fix the telescopic rod 102. The support mechanism 6 fixedly provided on one side of the telescopic outer cylinder 101 can rotate and adjust the telescopic mechanism 1. The main plow body can be fixedly provided at the upper end of the telescopic rod 102 embedded in the telescopic outer cylinder 101.

[0039] The movable shell 3 is fixedly provided with fixed blocks 2 at the upper end and the midpoint of the lower end on both sides. The midpoints of the upper end surfaces of the four fixed blocks 2 are all threadedly embedded with threaded blocks 12. A sliding groove 13 is provided at the midpoint of one side of the movable shell 3. The inner bottom surface and the inner top surface of the sliding groove 13 are rotatably provided with pulleys 11 on both sides. After the pulley 11 is rotated on the inner surface of the movable shell 3, the movable shell 3 can be better moved and adjusted on the outer surface of the first beam 4. At the same time, the threaded blocks 12 threadedly embedded in the fixed blocks 2 can be When rotating, the rubber block 14 is driven to fix the movable housing 3. The two adjustment mechanisms 5 include a first rotating member 501, a first rotating disk 502, a support block 503, a second rotating disk 504, a threaded rod 505, a movable cylinder 506, a second rotating member 507, a movable member 508, an adjustment block 509, a movable block 5010 and a third rotating member 5011. The support mechanism 6 includes a rotating cylinder 601, a rotating rod 602, a connecting block 603, a fourth rotating member 604 and a third rotating block 605.

[0040] The two clamping blocks 105 are respectively threadedly connected to the bidirectional screw 107, and a plurality of clamping grooves 106 are provided on the front end surface and the rear end surface of the telescopic rod 102. The two clamping blocks 105 are respectively engaged with the clamping grooves 106 provided on the front end surface and the rear end surface of the telescopic rod 102. Knobs 103 are fixedly provided on both sides of the bidirectional screw 107. A first rotating block 7 is fixedly provided on the lower end surface of the telescopic outer cylinder 101, and a second rotating block 8 is rotatably provided on the lower end of the first rotating block 7. After the clamping block 105 and the bidirectional screw 107 are threadedly connected, the clamping block 105 can be driven to adjust the telescopic rod 102 during rotation, and the fixed knob 103 can better drive the bidirectional screw 107 to rotate.

[0041] The first turntable 502 is rotationally embedded and arranged at the midpoint of the upper end of one side of the support block 503. The movable part 508 is threadedly embedded and arranged at the midpoint of one side of the first turntable 502. The second rotating part 507 is fixedly arranged at the lower end of one side of the movable cylinder 506. The movable block 5010 is movably embedded and arranged in the upper end surface of the movable cylinder 506. The adjusting block 509 is fixedly arranged at the upper end of one side of the movable cylinder 506. The threaded rod 505 is rotationally embedded and arranged at the midpoint of the upper end surface of the adjusting block 509. The second turntable 504 is fixedly arranged on the upper end surface of the threaded rod 505. A second cross beam 9 is fixedly arranged on the upper end surface of the movable block 5010. The upper end of the threaded rod 505 and the protruding part at the lower end of one side of the second cross beam 9 are rotationally connected. One end of the second rotating part 507 and the movable part 508 are rotationally connected. The rotationally embedded first turntable 502 can drive the telescopically embedded movable part 508 to perform telescopic adjustment, and at the same time can drive the rotatably connected movable cylinder 506 to perform rotational adjustment. By rotating the second turntable 504, the threaded rod 505 can be driven to rotate, and the movable block 5010 movably arranged in the movable cylinder 506 can be driven to perform moving adjustment, so as to perform telescopic adjustment on the fixedly arranged second cross beam 9. A sub-plow body can be fixedly arranged at the upper end of the second cross beam 9.

[0042] Both the support block 503 and the third rotating part 5011 are fixedly arranged on one side of the upper end surface of the movable housing 3. The third rotating part 5011 is rotatably arranged at the lower end of the movable cylinder 506. The fixedly arranged support block 503 can fix the first turntable 502 and at the same time can support and fix the adjusting mechanism 5. After the rotationally connected third rotating part 5011 and the movable housing 3 are fixedly connected, the adjusting mechanism 5 can be better rotated and adjusted. The fourth rotating part 604 is rotatably arranged at the upper end of the rotating cylinder 601. The rotating rod 602 is threadedly embedded and arranged in the lower end surface of the rotating cylinder 601. The rotating rod 602 and the connecting block 603 are rotationally connected. The third rotating block 605 is rotationally connected at the lower end. The lower end surface of the third rotating block 605 is fixedly arranged on one side of the upper end surface of the movable housing 3. One side of the fourth rotating part 604 is fixedly arranged at the lower end of one side of the telescopic outer cylinder 101. After the rotating rod 602 and the connecting block 603 are rotationally connected, the rotating rod 602 can be rotated to drive the rotating cylinder 601 to perform telescopic adjustment. Under the action of the fourth rotating part 604, the telescopic mechanism 1 can be driven to perform a certain angle adjustment.

[0043] Two telescopic mechanisms 1 are rotatably arranged on one side of the upper and lower end faces of the movable housing 3 through the second rotating member 507. One ends of two support mechanisms 6 are respectively fixedly arranged on one side of the upper and lower end faces of the movable housing 3. Two adjusting mechanisms 5 are respectively fixedly arranged on the other side of the upper and lower end faces of the movable housing 3. After the telescopic mechanism 1 and the adjusting mechanism 5 are respectively fixedly arranged on the upper and lower end faces of the movable housing 3, the movable housing 3 can be moved according to the usage requirements to adjust the distance between the plow bodies. A first cross beam 4 is movably embedded in the sliding groove 13. Handwheels 10 are fixedly arranged at one ends of four threaded blocks 12, and rubber blocks 14 are fixedly arranged at the other ends of the four threaded blocks 12. After the handwheels 10 are fixedly arranged at one ends of the threaded blocks 12, the rubber blocks 14 can be driven to squeeze the first cross beam 4 during rotation, so as to fix the moved movable housing 3.

[0044] Working principle: During use, first, the user can respectively fixedly arrange the main plow body and the sub-plow body on the upper ends of the telescopic rod 102 and the second cross beam 9. The user can rotate the rotating rod 602 in the support mechanism 6 according to the requirements of plowing to drive the adjusting mechanism 5 to rotate and adjust, so as to change the angle of the main plow body. Secondly, the user can pull the telescopic rod 102 according to the requirements to adjust the plowing depth of the main plow body. Rotating the knob 103 can drive the clamping block 105 to clamp and fix the telescopic rod 102. Thirdly, the user can rotate the first turntable 502 to drive the movable cylinder 506 to make a certain angle adjustment, so as to adjust the sub-plow body. Rotating the second turntable 504 can drive the movable block 5010 to make a telescopic adjustment, so as to adjust the plowing depth of the sub-plow body. Finally, the user can move the movable housing 3 according to the requirements, which can drive the telescopic mechanism 1 and the adjusting mechanism 5 to move and adjust on the outer surface of the first cross beam 4. After adjustment, the handwheel 10 can be rotated to drive the rubber block 14 to fix the position of the movable housing 3.

[0045] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. The plow body mounting structure of an amplitude modulation reversible plow, comprising two telescopic mechanisms (1), a movable housing (3) and two adjusting mechanisms (5), characterized in that: Both of the telescopic mechanisms (1) include telescopic outer cylinders (101). On both sides of the upper end face of the telescopic outer cylinder (101), telescopic grooves (104) are provided. In the two telescopic grooves (104), telescopic rods (102) are movably arranged. On the upper ends of the front end face and the rear end face of the telescopic outer cylinder (101), clamping blocks (105) are movably embedded. At the midpoint of the upper end of the telescopic outer cylinder (101), a bidirectional screw rod (107) is rotatably arranged. At the lower end of one side of the telescopic outer cylinder (101), a support mechanism (6) is movably arranged. On the upper and lower midpoints of both sides of the movable housing (3), fixed blocks (2) are fixedly arranged. At the midpoints of the upper end faces of the four fixed blocks (2), threaded blocks (12) are threadedly embedded. At the midpoint of one side of the movable housing (3), a sliding groove (13) is provided. On both sides of the inner bottom surface and the inner top surface of the sliding groove (13), pulleys (11) are rotatably arranged. Both of the adjusting mechanisms (5) include a first rotating member (501), a first turntable (502), a support block (503), a second turntable (504), a threaded rod (505), a movable cylinder (506), a second rotating member (507), a movable member (508), an adjusting block (509), a movable block (5010), and a third rotating member (5011). The support mechanism (6) includes a rotating cylinder (601), a rotating rod (602), a connecting block (603), a fourth rotating member (604), and a third rotating block (605).

2. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: The two clamping blocks (105) are respectively threadedly sleeved on the bidirectional screw rod (107). On the front end face and the rear end face of the telescopic rod (102), a plurality of card slots (106) are provided. The two clamping blocks (105) are respectively in interference connection with the card slots (106) provided on the front end face and the rear end face of the telescopic rod (102). On both sides of the bidirectional screw rod (107), knobs (103) are fixedly arranged. On the lower end face of the telescopic outer cylinder (101), a first rotating block (7) is fixedly arranged. At the lower end of the first rotating block (7), a second rotating block (8) is rotatably arranged.

3. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: The first turntable (502) is rotatably embedded at the midpoint of the upper end of one side of the support block (503). The movable member (508) is threadedly embedded at the midpoint of one side of the first turntable (502). The second rotating member (507) is fixedly arranged at the lower end of one side of the movable cylinder (506). The movable block (5010) is movably embedded in the upper end face of the movable cylinder (506). The adjusting block (509) is fixedly arranged at the upper end of one side of the movable cylinder (506). The threaded rod (505) is rotatably embedded at the midpoint of the upper end face of the adjusting block (509). The second turntable (504) is fixedly arranged on the upper end face of the threaded rod (505). On the upper end face of the movable block (5010), a second cross beam (9) is fixedly arranged. The upper part of the outer surface of the threaded rod (505) is rotatably connected to the protruding part at the lower end of one side of the second cross beam (9). One end of the second rotating member (507) is rotatably connected to the movable member (508).

4. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: The support block (503) and the third rotating member (5011) are both fixedly arranged on one side of the upper end surface of the movable housing (3), and the third rotating member (5011) is rotatably arranged near the lower end of the movable cylinder (506).

5. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: The fourth rotating member (604) is rotatably arranged near the upper end of the rotating cylinder (601). The rotating rod (602) is threadedly embedded in the lower end surface of the rotating cylinder (601). The rotating rod (602) is rotatably connected to the connecting block (603). The third rotating block (605) is rotatably connected near the lower end. The lower end surface of the third rotating block (605) is fixedly arranged on one side of the upper end surface of the movable housing (3). One side of the fourth rotating member (604) is fixedly arranged near the lower end of one side of the telescopic outer cylinder (101).

6. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: The two telescopic mechanisms (1) are rotatably arranged on one side of the upper end surface and the lower end surface of the movable housing (3) through the second rotating member (507). The two support mechanisms (6) are respectively fixedly arranged on one side of the upper end surface and the lower end surface of the movable housing (3). The two adjusting mechanisms (5) are respectively fixedly arranged on the other side of the upper end surface and the lower end surface of the movable housing (3).

7. The plow body mounting structure of an amplitude modulation reversible plow according to claim 1, characterized in that: A first cross beam (4) is movably embedded in the sliding groove (13). One end of each of the four threaded blocks (12) is fixedly provided with a hand wheel (10), and the other end of each of the four threaded blocks (12) is fixedly provided with a rubber block (14).