A ridger
Patent Information
- Application Number
- CN202521835603.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-27
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-08-27
AI Technical Summary
[0004]本实用新型提供一种起垄犁,用以解决现有技术中结构复杂导致重量过大的缺陷,实现轻量化、低能耗的起垄作业
[0015]The ridging plow provided by this utility model directly and intermittently mounts the ridging components onto the continuous bearing surface of the mounting beam, eliminating the need for traditional multi-stage connecting components; the suspension components are simultaneously fixed to the composite support structure formed by the mounting beam and the connecting beam. This design reduces the overall weight by reducing the number of connecting parts, thereby reducing steel consumption and processing costs; the lightweight structure reduces traction resistance, thus lowering the energy consumption of the power equipment; at the same time, it reduces the unit area pressure on the soil, preventing the operating machinery from sinking in soft soil and improving passability and ridging stability.
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Figure CN224746942U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of agricultural machinery technology, and in particular to a ridging plow. Background Technology
[0002] In agricultural production, ridging plays a crucial role in improving soil aeration, drainage, and crop root development. The ridging plow, as a core agricultural implement, must efficiently perform the simultaneous operations of ditching, tilling, and ridging formation.
[0003] Existing ridging plows have a significantly increased overall weight due to their complex multi-component connection structure, which not only increases material and manufacturing costs but also leads to increased energy consumption of power equipment and limited adaptability to soft soil operation scenarios. Utility Model Content
[0004] This utility model provides a ridging plow to solve the defects of the existing technology, which has a complex structure and excessive weight, and to achieve lightweight and low-energy ridging operation.
[0005] This utility model provides a ridging plow, comprising: The rack includes: Install beams; A connecting beam is provided on one side of the mounting beam; At least one ridging assembly is spaced apart from the mounting beam, the ridging assembly being used for ridging; the ridging assembly includes: The mounting base is detachably connected to the mounting beam. A connecting part is provided on the mounting base; The ridging plowshare is detachably connected to the connecting part.
[0006] A suspension assembly, mounted on the mounting beam and the connecting beam, is used for connection with the operating machinery.
[0007] According to the ridging plow provided by this utility model, the mounting base includes: The first limiting member is provided on the first side of the mounting beam; The second limiting member is provided on the second side of the mounting beam that is opposite to the first side. Multiple first fixing members are detachably connected to the first limiting member and the second limiting member, respectively, for fixing the first limiting member and the second limiting member to the mounting beam.
[0008] According to the ridging plow provided by this utility model, the connecting part includes: At least two first limiting plates are provided, with the two first limiting plates spaced apart from the second limiting member, and the ridging plowshare is provided between the two first limiting plates; At least two second fixing members are provided, which are detachably connected to the two first limiting plates and the ridging plowshare, respectively, thereby fixing the ridging plowshare between the two first limiting plates.
[0009] According to the present invention, a ridging plow includes: The plowshare connecting rod has two limiting holes at one end, which are used to connect one-to-one with the two second fixing parts; The plowshare head is located at the other end of the plowshare connecting rod.
[0010] According to the ridging plow provided by this utility model, the suspension assembly includes: At least two suspension front beams, the first ends of both suspension front beams being connected to the connecting beam via a second mounting component; A suspension tie rod, the first end of which is connected to the mounting beam via a first mounting component, and the second end of which is located at the second end of the two suspension front beams.
[0011] According to the ridging plow provided by this utility model, the suspended front beam includes: The first straight section is provided with at least two limiting parts, one of which is used to connect with the suspension rod, and the other of which is used to connect with the working machinery; An inclined segment is located at one end of the first straight segment and is set at an angle to the first straight segment; The second straight section is located at the end of the inclined section away from the first straight section and is used to connect with the second mounting component.
[0012] According to the ridging plow provided by this utility model, the second mounting component includes: The mounting base is disposed on the connecting beam; The second limiting plate is located on one side of the mounting base and is used to connect the second straight section.
[0013] According to the ridging plow provided by this utility model, the first mounting component includes: The mounting base is disposed on the mounting beam; A limiting seat is located at the top of the mounting base and is used to connect the suspension rod.
[0014] According to the present invention, a ridging plow also includes support legs, which are disposed on the frame and used to adjust the height of the ridging assembly.
[0015] The ridging plow provided by this utility model directly and intermittently mounts the ridging components onto the continuous bearing surface of the mounting beam, eliminating the need for traditional multi-stage connecting components; the suspension components are simultaneously fixed to the composite support structure formed by the mounting beam and the connecting beam. This design reduces the overall weight by reducing the number of connecting parts, thereby reducing steel consumption and processing costs; the lightweight structure reduces traction resistance, thus lowering the energy consumption of the power equipment; at the same time, it reduces the unit area pressure on the soil, preventing the operating machinery from sinking in soft soil and improving passability and ridging stability. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the ridging plow provided by this utility model.
[0018] Figure 2 This is an assembly drawing of the mounting base and mounting beam of the ridging plow provided by this utility model.
[0019] Figure 3 This is a schematic diagram of the mounting base and connecting part of the ridging plow provided by this utility model.
[0020] Figure 4 This is a schematic diagram of the structure of the ridging plowshare of the ridging plow provided by this utility model.
[0021] Figure 5 This is a schematic diagram of the suspension assembly of the ridging plow provided by this utility model.
[0022] Figure 6 This is an assembly drawing of the mounting base and connecting beam of the ridging plow provided by this utility model.
[0023] Figure 7 This is a schematic diagram of the structure of the second mounting component of the ridging plow provided by this utility model.
[0024] Figure label: 100: Frame; 110: Mounting beam; 120: Connecting beam; 200: Ridging component; 210: Mounting base; 211: First limiting member; 212: First fixing member; 213: Second limiting member; 220: Connecting part; 221: First limiting plate; 222: Second fixing member; 230: Ridging plowshare; 231: Plowshare connecting rod; 232: Plowshare head; 300: Suspension assembly; 310: Front suspension beam; 311: First straight section; 312: Inclined section; 313: Second straight section; 320: Suspension tie rod; 330: First mounting component; 340: Second mounting component; 341: Second limiting plate; 400: Support leg. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0026] The following is combined with Figures 1-7 Describe the structure and working principle of this utility model.
[0027] Reference Figure 1 The ridging plow provided by this utility model includes a frame 100, at least one ridging component 200, and a suspension component 300. The frame 100 includes a mounting beam 110 and a connecting beam 120, with the connecting beam 120 located on one side of the mounting beam 110. The ridging components 200 are spaced apart from the mounting beam 110 and are used for ridging. The ridging component 200 includes a mounting base 210 and a connecting portion 220. The mounting base 210 is detachably connected to the mounting beam 110; the connecting portion 220 is located on the mounting base 210; the ridging plowshare 230 is detachably connected to the connecting portion 220; and the suspension component 300 is located on the mounting beam 110 and the connecting beam 120 for connection to operating machinery.
[0028] Before operation, the frame 100 is connected to the working machinery via the suspension assembly 300. The lateral spacing of the ridging components 200 on the mounting beam 110 is adjusted according to planting needs. The working machinery is then started and moved forward, with the ridging components 200 cutting into the soil and continuously completing the operations of furrowing, turning the soil, and building the ridges. After the operation is completed, the suspension assembly 300 is raised to lift the ridging components 200 off the ground.
[0029] This invention utilizes a ridging assembly 200 directly and intermittently installed on the continuous bearing surface of the mounting beam 110, eliminating the need for traditional multi-stage connecting components. The suspension assembly 300 is simultaneously fixed to the composite support structure formed by the mounting beam 110 and the connecting beam 120. This design reduces the overall weight by decreasing the number of connecting components, thereby reducing steel consumption and processing costs. The lightweight structure reduces traction resistance, lowering the energy consumption of the power equipment. Simultaneously, it reduces the pressure per unit area on the soil, preventing the machinery from sinking in soft soil and improving passability and ridging stability.
[0030] Specifically, the mounting base 210 has a through hole, and the mounting beam 110 has a threaded hole at the corresponding position. Bolts pass through the through hole of the mounting base 210 and are screwed into the threaded hole of the mounting beam 110 to achieve a detachable connection. The mounting base 210 is made of Q235 steel plate. The connecting part 220 is vertically fixed in the middle of the plate surface of the mounting base 210. There are two independent implementation methods: the first is that the connecting part 220 is a cast steel part, fixed to the plate surface of the mounting base 210 by welding; the second is that the connecting part 220 and the mounting base 210 are integrally bent from the same steel plate. The ridging plowshare 230 is detachably connected to the connecting part 220 by U-bolts. The U-bolts cover the outer periphery of the column of the connecting part 220, and both ends are locked and fixed by nuts.
[0031] During installation, first fix the mounting base 210 to the predetermined position on the mounting beam 110 with bolts, then attach the back of the ridging plow 230 to the connecting part 220 and secure it with U-bolts. For disassembly and replacement, loosen the nuts on the U-bolts to remove the ridging plow 230; when adjusting the working spacing, release the bolts connecting the mounting base 210 and the mounting beam 110, then move it laterally and re-fix it.
[0032] This embodiment achieves rapid positioning and adjustment of the mounting base 210 and the mounting beam 110 through bolt connection, meeting different ridge spacing requirements. The U-shaped bolt clamping structure allows the ridging plowshare 230 to be replaced individually after wear, reducing maintenance costs. The connecting part 220 is directly fixed to the middle of the mounting base 210 to form a rigid support. During operation, soil resistance is evenly transmitted to the mounting beam 110 through the ridging plowshare 230. This structure avoids the stress concentration problem caused by traditional multi-stage linkages, reduces the number of connecting parts, lowers the overall weight and material cost, and improves the efficiency of plowshare replacement.
[0033] Reference Figure 2 and Figure 3 In some embodiments of this utility model, the mounting base 210 includes a first limiting member 211, a plurality of first fixing members 212, and a second limiting member 213. The first limiting member 211 is disposed on a first side of the mounting beam 110; the second limiting member 213 is disposed on a second side of the mounting beam 110 opposite to the first side; the first fixing member 212 is detachably connected between the first limiting member 211 and the second limiting member 213, for fixing the first limiting member 211 and the second limiting member 213 to the mounting beam 110.
[0034] Specifically, the mounting beam 110 has a cuboid structure, and the first limiting member 211 and the second limiting member 213 are plate-like structures, respectively attached to the upper and lower sides of the mounting beam 110. The first fixing member 212 is a bolt, and there are at least four of them. The four first fixing members 212 are arranged in a rectangular array, all passing through the first limiting member 211 and the second limiting member 213, and are fixed by threads.
[0035] In use, the first limiting member 211 is installed on the upper side of the mounting beam 110, and the second limiting member 213 is installed on the lower side of the mounting beam 110. The four first fixing members 212 are passed through the corresponding through holes of the first limiting member 211 and the second limiting member 213, and the nuts are tightened to clamp the mounting beam 110 between the first limiting member 211 and the second limiting member 213. For disassembly, the nuts of the first fixing members 212 are loosened in reverse order, and the limiting members are removed.
[0036] In this embodiment, the upper and lower surfaces of the mounting beam 110 are clamped by the plate-like structure of the first limiting member 211 and the second limiting member 213, and the rectangular array arrangement of the first fixing member 212 ensures uniform pressure distribution. This design avoids welding or drilling on the mounting beam 110, preserving the integrity of the beam; the detachable connection allows for quick adjustment of the installation position to adapt to different ridge spacing requirements; the modular limiting members reduce the number of customized parts, lowering processing costs and inventory pressure.
[0037] In some other possible embodiments, a tapered washer may be provided between the nut of the first fixing member 212 and the first limiting member 211. The large end face of the tapered washer contacts the plate surface of the first limiting member 211, and the small end face contacts the nut, and its taper matches the helix angle of the bolt thread. In this embodiment, the self-locking effect of the tapered washer prevents the nut from loosening due to tillage vibration, reducing the number of work interruptions; the tapered structure disperses local pressure, avoiding deformation of the plate surface of the first limiting member 211; and the standard part design does not add extra disassembly and assembly steps.
[0038] Reference Figure 2 and Figure 3 In some embodiments of this utility model, the connecting portion 220 includes at least two first limiting plates 221 and at least two second fixing members 222. Specifically, there are two first limiting plates 221 and two fixing members 222. The two first limiting plates 221 are spaced apart from the second limiting members 213, and the connecting end of the ridging plow 230 is located between the two first limiting plates 221. The two second fixing members 222 are detachably provided at the connecting end of the two first limiting plates 221 and the ridging plow 230, thereby fixing the ridging plow 230 between the two first limiting plates 221.
[0039] Specifically, two first limiting plates 221 are vertically welded to the bottom of the second limiting member 213, and an installation space is provided between the two second limiting members 213 for placing the ridging plowshare 230. The second fixing member 222 can also be a bolt. In use, the connecting end of the ridging plowshare 230 is inserted into the installation space between the two first limiting plates 221, aligning the connecting hole of the ridging plowshare 230 with the through hole of the first limiting plate 221. The second fixing member 222 is then passed through the through hole of the first limiting plate 221 and the connecting hole of the ridging plowshare 230, and the nut is tightened to secure it. To disassemble, the nut of the second fixing member 222 can be loosened to remove the ridging plowshare 230.
[0040] In this embodiment, two first limiting plates 221 are vertically welded to the bottom of the second limiting member 213 to form a rigid clamping space, and the second fixing member 222 penetrates and locks in place to achieve axial constraint on the ridging plowshare 230. This structure eliminates traditional U-shaped clamps and other independent fixtures, reducing the number of parts and assembly steps; the double-plate symmetrical support ensures that the plowshare is subjected to uniform force, avoiding uneven wear caused by single-point fixing; the bolt connection method facilitates quick replacement of worn parts, reducing field maintenance time and costs.
[0041] Reference Figure 4 In some embodiments of this utility model, the ridging plow 230 includes a plowshare connecting rod 231 and a plowshare head 232. One end of the plowshare connecting rod 231 is provided with two limiting holes for corresponding connection with two second fixing members 222; the plowshare head 232 is provided at the other end of the plowshare connecting rod 231.
[0042] Specifically, the plowshare connecting rod 231 and the plowshare head 232 are welded together. The plowshare connecting rod 231 has a "U" shaped structure. The plowshare head 232 includes an upper plow section and a lower plow section that are welded together. The upper plow section and the lower plow section are set at an angle and are both "V" shaped with curved surfaces.
[0043] In use, insert the U-shaped end of the plowshare connecting rod 231 into the installation space between the two first limiting plates 221, aligning the limiting holes on both sides of the U-shaped structure with the through holes of the first limiting plates 221. Insert the second fixing piece 222 through the limiting hole and the through hole, and then tighten the nut. During tillage, the V-shaped curved surfaces of the upper and lower plows work together, with the upper plow guiding the soil to both sides and the lower plow creating furrows and ridges.
[0044] This embodiment enhances bending stiffness through a U-shaped plowshare connecting rod 231, and the upper and lower plow sections with double V-shaped curved surfaces are welded together to form a continuous tilling trajectory. The large-angle curved surface of the upper plow section initially diverts the soil, while the small-angle curved surface of the lower plow section further refines and shapes the furrows. This structure reduces the amount of soil backfill and improves the compaction of the ridges; the double-curved diversion design reduces single-point tillage resistance and lightens the load on power equipment; the overall welding process avoids assembly errors and ensures the stability of the tillage angle.
[0045] Reference Figure 1 and Figure 5 In some embodiments of this utility model, the suspension assembly 300 includes at least two suspension front beams 310 and suspension tie rods 320. The first ends of both suspension front beams 310 are connected to the connecting beam 120 via second mounting components 340; the first end of the suspension tie rod 320 is connected to the mounting beam 110 via a first mounting component 330, and the second end of the suspension tie rod 320 is located at the second end of both suspension front beams 310. Specifically, the two suspension front beams 310 and the suspension tie rod 320 are arranged in a "triangular" structure, and the suspension front beams 310 have a plate-like structure.
[0046] In use, the first ends of the two suspension front beams 310 are connected to the connecting beam 120 via the second mounting component 340. The first end of the suspension tie rod 320 is fixed to the mounting beam 110 via the first mounting component 330. After aligning the second end of the suspension tie rod 320 with the second ends of the two suspension front beams 310, a pin is inserted for locking, forming a triangular support structure.
[0047] In this embodiment, a rigid triangular frame is formed by the plate-shaped suspension front beam 310 and the suspension tie rod 320. The second mounting component 340 distributes the longitudinal load of the connecting beam 120, and the first mounting component 330 transmits the lateral moment of the mounting beam 110. The triangular structure suppresses the pitch and sway of the frame 100 during operation, improving the consistency of ridging depth; the plate-shaped beam reduces the number of welding nodes, lowering structural weight and manufacturing costs; the three-point suspension layout enhances adaptability to uneven ground and reduces ridge distortion.
[0048] Reference Figure 5 In some embodiments of this utility model, the suspension front beam 310 includes a first straight section 311, an inclined section 312, and a second straight section 313. The first straight section 311 is provided with at least two limiting parts, one of which is used to connect with the suspension tie rod 320, and the other of which is used to connect with the working machinery; the inclined section 312 is located at one end of the first straight section 311 and is set at an angle to the first straight section 311; the second straight section 313 is located at the end of the inclined section 312 away from the first straight section 311 and is used to connect with the second mounting component 340.
[0049] Specifically, the first straight section 311, the inclined section 312, and the second straight section 313 are integrally formed and arranged parallel to each other. The inclined section 312 is positioned at an included angle between the first straight section 311 and the second straight section 313. Both limiting portions of the first straight section 311 can be through holes, through which bolts are threaded to connect it to the suspension rod 320 and the working machinery. The second straight section 313 also has through holes and is connected to the second mounting component 340 via bolts.
[0050] During installation, the second straight section 313 is fixed to the second mounting component 340 with bolts. The end of the suspension tie rod 320 is connected to the front through hole bolt of the first straight section 311, and the suspension point of the working machinery is connected to the rear through hole bolt of the first straight section 311. The inclined section 312 naturally creates a displacement difference between the first straight section 311 and the second straight section 313, so that the suspension front beam 310 and the suspension tie rod 320 form the apex of a triangle.
[0051] In this embodiment, the suspension tie rod 320 and the working machinery are connected by double through holes in the first straight section 311, and the second straight section 313 is fixed to the connecting beam 120, forming a stable triangular structure with the two suspension front beams 310 as the hypotenuses and the suspension tie rod 320 as the base. The integrally formed plate-shaped beam body eliminates weak points in welding; the angled design of the inclined section 312 allows the traction force of the working machinery to be evenly distributed along the triangular frame to the mounting beam 110 and the connecting beam 120. This structure suppresses lateral swaying during tillage and ensures the straightness of the furrows; the three-point rigid connection improves the overall torsional stiffness and adapts to slope working conditions.
[0052] Reference Figure 6 and Figure 7 In some embodiments of this utility model, the second mounting component 340 includes a mounting base 210 and a second limiting plate 341. The mounting base 210 is disposed on the connecting beam 120; the second limiting plate 341 is welded to one side of the mounting base 210 and connected to the second straight section 313. Specifically, the connecting beam 120 has a U-shaped structure and is welded to one side of the mounting beam 110. The cross-section of the connecting beam 120 is rectangular, and it is also connected via the mounting base 210, as described above regarding the connection method where the mounting base 210 is disposed on the mounting beam 110.
[0053] During installation, fix the mounting base 210 to the predetermined position on the connecting beam 120. Align the through hole of the second straight section 313 with the through hole of the second limiting plate 341, insert the bolt through both holes, and then tighten the nut. To disassemble, loosen the bolt and nut to separate the suspension front beam 310 from the connecting beam 120.
[0054] In this embodiment, the load of the second straight section 313 is directly borne by the second limiting plate 341 welded to the side of the mounting base 210, and the mounting base 210 transmits the force to the connecting beam 120. This structure eliminates the traditional transition connecting plate and reduces the number of welds; the integrated welding design avoids the risk of bolt loosening and ensures the stability of the triangular suspension frame.
[0055] Reference Figure 1 In some embodiments of this utility model, the first mounting component 330 includes a mounting base 210 and a limiting seat. The mounting base 210 is disposed on the mounting beam 110; the limiting seat is disposed on the top of the mounting base 210 and is used to connect the suspension rod 320. The limiting seat has a U-shaped structure and has through holes on both sides.
[0056] During installation, fix the mounting base 210 to the predetermined position on the mounting beam 110. Insert the first end of the suspension rod 320 into the U-shaped groove of the limiting seat, aligning the pin hole of the suspension rod 320 with the through holes on both sides of the limiting seat. Insert the bolt through the through hole of the limiting seat and the pin hole of the suspension rod 320, and tighten the nut to complete the fixation.
[0057] In this embodiment, the mounting base 210 bears the vertical load of the limiting seat, and the U-shaped limiting seat wraps around the suspension rod 320 to achieve radial constraint. Lateral bolt tightening forms a rigid node, ensuring the stability of the apex of the triangular suspension frame. This structure avoids stress concentration caused by welding; the double-sided U-shaped groove limits the sway of the suspension rod 320 during operation; and the modular design facilitates individual replacement of the limiting seat in case of damage.
[0058] Reference Figure 1 In some embodiments of this utility model, the ridging plow also includes support legs 400, the tops of which are welded to the frame 100. When attached to the working machinery, the support legs 400 maintain the balance of the ridging plow itself, preventing it from tilting; when not in operation, the support legs 400 maintain the balance of the ridging plow, facilitating its stable placement on the ground and making maintenance and parts replacement easy. In other possible embodiments, the support legs 400 can be foldable, folding up when in operation and unfolding when needed. Specific structures can refer to existing folding mechanisms, which will not be elaborated here. In other possible embodiments, the support legs 400 can also be telescopic.
[0059] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A ridging plow, characterized in that, include: A rack (100) comprising: Mounting beam (110); A connecting beam (120) is provided on one side of the mounting beam (110); At least one ridging assembly (200) is spaced apart from the mounting beam (110), the ridging assembly (200) being used for ridging; the ridging assembly (200) includes: The mounting base (210) is detachably connected to the mounting beam (110); A connecting part (220) is provided on the mounting base (210); The ridging plowshare (230) is detachably connected to the connecting part (220); A suspension assembly (300), disposed on the mounting beam (110) and the connecting beam (120), is used for connection with the working machinery.
2. The ridging plow according to claim 1, characterized in that, The mounting base (210) includes: The first limiting member (211) is provided on the first side of the mounting beam (110); The second limiting member (213) is provided on the second side of the mounting beam (110) opposite to the first side; Multiple first fasteners (212) are detachably connected to the first limiting member (211) and the second limiting member (213) respectively, for fixing the first limiting member (211) and the second limiting member (213) to the mounting beam (110).
3. The ridging plow according to claim 2, characterized in that, The connecting part (220) includes: At least two first limiting plates (221) are provided at intervals between the two first limiting plates (221) and the second limiting member (213), and the ridging plow (230) is provided between the two first limiting plates (221); At least two second fixing members (222) are detachably connected to two first limiting plates (221) and the ridging plow (230) respectively, fixing the ridging plow (230) between the two first limiting plates (221).
4. The ridging plow according to claim 3, characterized in that, The ridging plowshare (230) includes: The plowshare connecting rod (231) has two limiting holes at one end for corresponding connection with the two second fixing parts (222); The plowshare head (232) is located at the other end of the plowshare connecting rod (231).
5. The ridging plow according to claim 2, characterized in that, The suspension assembly (300) includes: At least two suspension front beams (310), the first ends of both suspension front beams (310) being connected to the connecting beam (120) via a second mounting component (340); A suspension rod (320) is provided, the first end of which is connected to the mounting beam (110) via a first mounting component (330), and the second end of which is located at the second end of the two suspension front beams (310).
6. The ridging plow according to claim 5, characterized in that, The suspension front beam (310) includes: The first straight section (311) is provided with at least two limiting parts, one of which is used to connect with the suspension rod (320), and the other of which is used to connect with the working machinery; An inclined segment (312) is provided at one end of the first straight segment (311) and is set at an angle to the first straight segment (311); The second straight section (313) is located at the end of the inclined section (312) away from the first straight section (311) and is used to connect with the second mounting component (340).
7. The ridging plow according to claim 6, characterized in that, The second mounting component (340) includes: The mounting base (210) is provided on the connecting beam (120); The second limiting plate (341) is located on one side of the mounting base (210) and is used to connect the second straight section (313).
8. The ridging plow according to claim 7, characterized in that, The first mounting component (330) includes: The mounting base (210) is provided on the mounting beam (110); A limiting seat is provided on the top of the mounting base (210) for connecting the suspension rod (320).
9. The ridging plow according to any one of claims 1-8, characterized in that, It also includes a support leg (400) which is disposed on the frame (100).