Mounting mechanism and coulter stirring assembly

The quick-release component design solves the problems of cumbersome installation and loosening/falling off of the plow blade mixing component, enabling convenient assembly and replacement, and improving production efficiency and stability.

CN223586954UActive Publication Date: 2025-11-25SHENZHEN SHANGSHUI INTELLIGENT CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423120236.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-25
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

The existing plow blade mixing assembly is fixed by screws, which makes installation cumbersome and prone to errors, and the plow blades are prone to loosening and falling off after a period of use.

Method used

The system employs quick-release components, including a first quick-release piece and a second quick-release piece. By setting these quick-release pieces in the first and second directions respectively, a multi-dimensional fixed connection between the plow blade and the mounting component is achieved, avoiding the cumbersome nature of screw installation. The quick-release connection facilitates assembly, disassembly, and replacement.

Benefits of technology

It improves the mixing effect of the plow blades, prevents them from loosening and falling off, reduces labor costs, and increases production efficiency and flexibility of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223586954U_ABST
    Figure CN223586954U_ABST
Patent Text Reader

Abstract

The utility model discloses a mounting mechanism and a coulter stirring assembly. The mounting mechanism is used for mounting the coulter. The coulter has a locked state and an unlocked state. The mounting mechanism comprises two mounting pieces and at least one quick release assembly. The two installation parts are installed on the two side walls of the coulter in the first direction respectively. Each quick-release assembly comprises a first quick-release piece and two second quick-release pieces, and the first quick-release piece is movably arranged on the coulter in a penetrating mode in the second direction. And each second quick release piece is movably arranged on the corresponding mounting piece and the coulter in a penetrating manner along the first direction, and is used for being clamped with the first quick release piece or being separated from the first quick release piece. When the coulter is in a locking state, each first quick release piece is clamped with the corresponding second quick release piece, so that the coulter is locked on the mounting piece; and when the coulter is in an unlocking state, each first quick release piece is separated from the corresponding second quick release piece, so that the coulter is unlocked. By adopting the mounting mechanism, the coulter is prevented from loosening and falling off, and the mounting mechanism is convenient to assemble and flexible to use.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of material processing especially relates to a mounting mechanism and ploughshare stirring subassembly. BACKGROUND

[0002] The existing ploughshare stirring subassembly includes a ploughshare and a mounting mechanism fixedly connected with a rotating shaft. However, the existing ploughshare and mounting mechanism are basically fixed by screws. However, screw installation requires more tools, and the screws are often lost due to negligence during installation or replacement, the installation is complicated and prone to errors, the use is not flexible, and the ploughshare is prone to loosening and falling off after being used for a period of time. SUMMARY

[0003] Therefore, one purpose of the utility model is to provide a mounting mechanism and ploughshare stirring subassembly to solve the technical problems of complicated and error-prone installation of the existing ploughshare and mounting mechanism and the ploughshare being prone to loosening and falling off after being used for a period of time.

[0004] In a first aspect, the utility model embodiment provides a mounting mechanism for mounting a ploughshare. The ploughshare has a locked state and an unlocked state. The mounting mechanism includes two mounting members and at least one quick release assembly. The two mounting members are respectively mounted on the two side walls of the ploughshare along a first direction. Each quick release assembly includes a first quick release member and two second quick release members. The first quick release member is movably arranged in the ploughshare along a second direction, and the second direction intersects the first direction. Each second quick release member is movably arranged in the corresponding mounting member and the ploughshare along the first direction, and is used for clamping or unclamping with the first quick release member. When the ploughshare is in the locked state, each first quick release member is clamped with the corresponding second quick release member to lock the ploughshare on the mounting member. When the ploughshare is in the unlocked state, each first quick release member is unclamped with the corresponding second quick release member to unlock the ploughshare locked on the mounting member.

[0005] In some implementations of the first aspect, the plough blade comprises a connecting portion and a stirring portion connected to the connecting portion, the connecting portion is provided with a first connecting hole and at least two second connecting holes, the first connecting hole is in communication with the at least two second connecting holes; each of the mounting members is provided with at least one quick release hole along the second direction, and each of the first quick release members is provided with a clamping groove; when the plough blade is in the locked state, each of the second quick release members is clamped with the clamping groove and locked in the corresponding quick release hole and the second connecting hole, and each of the first quick release members is locked in the first connecting hole; when the plough blade is in the unlocked state, each of the second quick release members is disengaged from the clamping groove and can be pulled out of the corresponding quick release hole and the second connecting hole, and each of the first quick release members can be pulled out of the first connecting hole.

[0006] In some implementations of the first aspect, the mounting mechanism further comprises a connecting seat for fixed connection with the rotating shaft, the connecting seat is provided with a receiving groove, and the connecting portion is arranged in the receiving groove; one end of each of the mounting members is connected to the connecting seat along the second direction, and the other end of each of the mounting members is connected to the connecting portion.

[0007] In some implementations of the first aspect, the connecting seat is independently arranged with the two mounting members and detachably fixedly connected.

[0008] In some implementations of the first aspect, one end of each of the mounting members away from the rotating shaft is provided with a dismounting structure for mounting a dismounting tool.

[0009] In some implementations of the first aspect, two side walls of the connecting seat along the second direction are respectively provided with two limiting grooves in communication with the receiving groove, and each of the mounting members is provided with a limiting structure in sliding fit with the limiting groove.

[0010] In some implementations of the first aspect, the connecting seat is provided with a first through hole corresponding to the position of the first connecting hole and a second through hole corresponding to the position of the second connecting hole; when the plough blade is in the locked state, the first quick release member is sequentially arranged in and locked in the first through hole and the first connecting hole, and the second quick release member is sequentially arranged in and locked in the second through hole, the quick release hole, the second connecting hole and the clamping groove; when the plough blade is in the unlocked state, the first quick release member is arranged in the first through hole and the first connecting hole in a pull-out manner, and the second quick release member is arranged in the second through hole, the quick release hole, the second connecting hole and the clamping groove in a pull-out manner.

[0011] In some implementations of the first aspect, the second quick release member includes a first connecting segment and a second connecting segment, the first connecting segment has a smaller radial dimension than the second connecting segment, the quick release hole includes a first hole and a second hole in communication with the first hole, the first hole has a smaller radial dimension than the second hole, the first connecting segment is threadably disposed in the first hole, and the second connecting segment is threadably disposed in the second hole; when the plow is in the locked state, each second quick release member is locked in the first hole, the second connecting hole, and the clamping slot, and when the plow is in the unlocked state, each second quick release member is threadably disposed in the second hole, the second connecting hole, and the clamping slot.

[0012] In some implementations of the first aspect, the first hole and the second hole are arranged in a direction parallel to the first direction or a third direction, and the third direction is perpendicular to the first direction and the second direction.

[0013] In some implementations of the first aspect, each second quick release member is movable relative to the plow in the direction of arrangement of the first hole and the second hole.

[0014] In some implementations of the first aspect, each mounting member is provided with a guide structure in the direction of arrangement of the first hole and the second hole, and the connecting portion is provided with a guide structure matched with the guide structure.

[0015] In some implementations of the first aspect, the mounting mechanism includes a plurality of quick release assemblies arranged in a third direction, and the third direction is perpendicular to the first direction and the second direction.

[0016] In the second aspect, the utility model provides a plow stirring assembly, including a rotating shaft and a plurality of plow blades which are arranged at intervals on the rotating shaft, each plow blade includes a plow and a mounting mechanism as described above, and the plow is detachably fixedly connected to the rotating shaft through the mounting mechanism.

[0017] The mounting mechanism and the plough blade stirring assembly provided by the utility model, on the one hand, based on the first quick release piece and the second quick release piece arranged in the first direction and the second direction respectively, the fixed connection of the plough blade and the mounting piece in multiple spatial dimensions is realized, the loosening and falling off of the plough blade in the working process are prevented, and the stirring effect of the plough blade is improved; on the other hand, the quick release connection between the plough blade and the mounting piece is realized, the problem that the screws are lost due to negligence in the process of installation or replacement caused by the screw installation and fixation is avoided, the labor cost is reduced, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor.

[0019] Figure 1 It is the structure schematic view of the plough blade stirring assembly in the plough blade drying equipment in

[0020] Figure 2 It is the structure schematic view of the plough blade stirring assembly in the plough blade drying equipment in Figure 1

[0021] Figure 3 It is the sectional view along A-A of the plough blade stirring assembly in Figure 2

[0022] Figure 4 It is the structure schematic view of the mounting mechanism of the plough blade stirring assembly in Figure 2

[0023] Figure 5 It is the structure schematic view of the first quick release piece and the second quick release piece of the plough blade stirring assembly in Figure 2

[0024] Figure 6 It is the structure schematic view of the mounting mechanism and the plough blade of the plough blade stirring assembly in Figure 2

[0025] Figure 7 It is the side view of the mounting piece of the plough blade stirring assembly in Figure 2

[0026] Figure 8 It is the structure schematic view of the plough blade and the mounting piece in the plough blade stirring assembly in Figure 2

[0027] ​​​​​​​Figure 9 is Figure 2 is a sectional view along B-B of the ploughshare stirring assembly in

[0028] Explanation of main reference numerals: ploughshare drying device - 1000; heating cylinder - 100; heating piece - 110; ploughshare stirring assembly - 200; rotating shaft - 20; ploughshare paddle - 40; ploughshare - 50; connecting part - 51; first connecting hole - 5101; second connecting hole - 5102; guide surface - 5103; guide structure - 511; stirring part - 52; round corner structure - 521; supporting part - 53; mounting mechanism - 60; mounting piece - 62; quick release hole - 620; first hole - 6201; second hole - 6202; dismounting structure - 6203; guide sliding structure - 621; limiting structure - 622; quick release assembly - 63; first quick release piece - 64; clamping groove - 6401; rod body - 641; rod head - 642; second quick release piece - 65; first connecting section - 651; second connecting section - 652; gasket - 66; connecting seat - 70; accommodating groove - 701; limiting groove - 702; first through hole - 703; second through hole - 704; first direction - F1; second direction - F2; third direction - F3.

[0029] The following specific embodiments will further illustrate the present application in conjunction with the above-mentioned drawings. Specific embodiments

[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] It can be understood that the terms in the description and claims of the utility model and the above-mentioned drawings are only for describing specific embodiments and not to limit the utility model. The terms "first", "second" and the like in the description and claims of the utility model and the above-mentioned drawings are used to distinguish different objects and not to describe a specific order. Unless the context clearly indicates otherwise, the singular forms "a" and "said" are also intended to include the plural forms. The term "comprising" and any variations thereof are intended to cover non-exclusive inclusion. In addition, the utility model can be realized in many different forms and is not limited to the embodiments described in the embodiments. The purpose of providing the following specific embodiments is to facilitate a clearer and more thorough understanding of the disclosure of the utility model, and the words indicating directions such as up, down, left and right are only for the position of the shown structure in the corresponding drawings. In the description of the utility model, it should be noted that, unless otherwise specifically specified and limited, the terms "mounting", "connection", "connection", "arranged on" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, it can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0032] The subsequent description of the specification is a preferred embodiment for implementing the utility model, however, the above description is for the purpose of illustrating the general principles of the utility model, and is not intended to limit the scope of the utility model. The protection scope of the utility model shall be subject to the appended claims.

[0033] Please refer to Figure 1 and Figure 2 , Figure 1 It is a structure schematic view of ploughshare drying equipment 1000 provided by the embodiment of the utility model. Figure 2 It is Figure 1 The structure schematic view of ploughshare stirring assembly 200 of ploughshare drying equipment 1000 in the above-mentioned embodiment of the utility model. The embodiment of the utility model provides a kind of ploughshare drying equipment 1000.Ploughshare drying equipment 1000 includes heating cylinder 100 and ploughshare stirring assembly 200.Heating cylinder 100 is used to accommodate the material to be dried inside.Ploughshare stirring assembly 200 is used to stir the material in heating cylinder 100.Ploughshare drying equipment 1000 is used to heat and dry battery slurry.Battery slurry includes a variety of materials, for example, but not limited to, active material, conductive agent powder, binder powder and other powder materials.In the present embodiment, ploughshare drying equipment 1000 is illustrated with battery slurry, it can be understood that ploughshare drying equipment 1000 can also be used to dry its material, for example, food, medicine, fertilizer, building material, etc., and the application of ploughshare drying equipment 1000 is not limited herein.

[0034] The ploughshare stirring assembly 200 comprises a rotating shaft 20 and a plurality of ploughshare blades 40 arranged at intervals on the rotating shaft 20. Each ploughshare blade 40 comprises a ploughshare 50 and a mounting mechanism 60. The ploughshare 50 is detachably fixedly connected to the rotating shaft 20 through the mounting mechanism 60. Thus, based on the detachable fixed connection between the ploughshare 50 and the mounting mechanism 60, the assembly, maintenance, replacement or cleaning of the ploughshare 50 is facilitated. Of course, in some embodiments, part of the ploughshare blades 40 comprise the ploughshare 50 and the mounting mechanism 60, that is, part of the ploughshares 50 are detachably fixedly connected to the rotating shaft 20 through the mounting mechanism 60, and the remaining ploughshares 50 are fixedly connected to the rotating shaft 20.

[0035] Specifically, the rotating shaft 20 is used to drive the ploughshare 50 to rotate. Specifically, the rotating shaft 20 is fixedly connected to the mounting mechanism 60, and the ploughshare 50 is detachably fixedly connected to the rotating shaft 20 through the mounting mechanism 60, so that the ploughshare 50 rotates following the rotation of the rotating shaft 20, thereby realizing the stirring of the material in the heating cylinder 100 by the ploughshare 50.

[0036] Illustratively, in the present embodiment, the ploughshare 50 and the mounting mechanism 60 are both provided in a plurality. The plurality of ploughshares 50 and the plurality of mounting mechanisms 60 are arranged one by one in correspondence. The plurality of ploughshares 50 are arranged at intervals along the axial direction of the rotating shaft 20. Each ploughshare 50 is detachably fixedly connected to the corresponding mounting mechanism 60. Of course, in some embodiments, the number of mounting mechanisms 60 is less than the number of ploughshares 50, and each of at least part of the mounting mechanisms 60 is detachably fixedly connected to the plurality of ploughshares 50.

[0037] In some embodiments, the end of the ploughshare 50 away from the rotating shaft 20 is arranged close to the inner wall of the heating cylinder 100. Thus, on the one hand, the ploughshare 50 can throw the material in the heating cylinder 100 along the inner side wall of the heating cylinder 100, ensuring that the material is in full contact with the inner side wall of the heating cylinder 100, increasing the heating area of the material and the inner side wall of the heating cylinder 100, and improving the drying efficiency and effect of the material; on the other hand, the ploughshare 50 can be used to scrape off the material adhered to the inner side wall of the heating cylinder 100, thereby realizing uniform heating of the material in the heating cylinder 100, and improving the drying efficiency and effect of the material.

[0038] The plow-drying equipment 1000 also includes a drive unit (not shown) and a heating element 110. The drive unit is located outside the heating cylinder 100 and is connected to the plow-stirring assembly 200. The heating element 110 is located on the outer wall of the heating cylinder 100 and is used to heat the heating cylinder 100 to dry the material inside the heating cylinder 100. Specifically, the working principle of the plow-drying equipment 1000 is as follows: the material is conveyed into the heating cylinder 100, and the drive unit drives the rotating shaft 20 to rotate, causing the plow blades 50 on the rotating shaft 20 to rotate inside the heating cylinder 100. The plow blades 50 throw the material inside the heating cylinder 100 up along the inner wall of the heating cylinder 100, ensuring that the material is in full contact with the inner wall of the heating cylinder 100, increasing the heating area between the material and the inner wall of the heating cylinder 100, and improving the drying efficiency of the material.

[0039] It should be noted that, Figure 1 The purpose is merely to illustrate the arrangement between the heating cylinder 100 and the plow-blade stirring assembly 200, and is not to make specific limitations on the connection positions, connection relationships and specific structures of each component. Figure 1 This illustration of the plowshare drying device 1000 is merely a structural representation of an embodiment of the present invention and does not constitute a specific limitation on the plowshare drying device 1000. In other embodiments of the present invention, the plowshare drying device 1000 may include... Figure 1 The device may include more or fewer components, or combinations of certain components, or different components. For example, the plow-drying device 1000 may also include, but is not limited to, a dust removal structure. The dust removal structure can be used to remove the fine powder generated by the material to be heated during the heating process, preventing the fine powder in the material to be heated from affecting the life of the battery product.

[0040] Please refer to the following: Figure 3 and Figure 4 , Figure 3 yes Figure 2 A cross-sectional view of the plow-blade mixing assembly 200 along AA; Figure 4 yes Figure 2Structure diagram of mounting mechanism 60 of ploughshare stirring assembly 200 in the figure. The mounting mechanism 60 is used for mounting the ploughshare 50. The ploughshare 50 has a locked state and an unlocked state. The mounting mechanism 60 includes two mounting pieces 62 and at least one quick release assembly 63. The two mounting pieces 62 are respectively mounted on the two side walls of the ploughshare 50 along a first direction F1. Each quick release assembly 63 includes a first quick release piece 64 movably penetrating the ploughshare 50 along a second direction F2 intersecting the first direction F1, and two second quick release pieces 65 movably penetrating the corresponding mounting piece 62 and the ploughshare 50 along the first direction F1 and used for clamping or unclamping with the first quick release piece 64. Wherein, when the ploughshare 50 is in the locked state, each first quick release piece 64 is clamped with the corresponding second quick release piece 65 to lock the ploughshare 50 on the mounting piece 62; when the ploughshare 50 is in the unlocked state, each first quick release piece 64 is unclamped with the corresponding second quick release piece 65 to unlock the ploughshare 50 locked on the mounting piece 62.

[0041] The mounting mechanism 60 provided by the utility model, on the one hand, based on setting the first quick release piece 64 and the second quick release piece 65 in the first direction F1 and the second direction F2 respectively, thereby realizing the fixed connection of the ploughshare 50 and the mounting piece 62 in multiple spatial dimensions, further preventing the ploughshare 50 from loosening and falling off in the working process, improving the stirring effect of the ploughshare 50; on the other hand, realizing the quick release connection between the ploughshare 50 and the mounting piece 62, thereby avoiding the problem that the screws are often lost due to negligence in the process of installation or replacement through screw installation and fixation, further reducing the labor cost, and facilitating assembly, disassembly, replacement and maintenance, being flexible to use, and improving the production efficiency.

[0042] In the utility model embodiment, the term "quick release" refers to the quick disassembly or quick disassembly between the two components / elements connected or associated; and the connection mode between the two components / elements connected in a quick disassembly / quick disassembly manner is called "quick release connection". Specifically, quick release can mean that the ploughshare 50 and the mounting piece 62 can be quickly disassembled or quickly assembled through the quick release assembly 63, and correspondingly, the connection mode using quick release is also called quick release connection. The first quick release piece 64 and the second quick release piece 65 refer to the modularization of each part of the ploughshare 50 and the mounting piece 62 to realize quick disassembly of the ploughshare 50 and the mounting piece 62.

[0043] Exemplarily, the coupler 50 comprises a connecting portion 51 and a stirring portion 52 connected with the connecting portion 51. The connecting portion 51 is provided with a first connecting hole 5101 and at least two second connecting holes 5102. The first connecting hole 5101 is in communication with the at least two second connecting holes 5102. Each mounting member 62 is provided with at least one quick release hole 620 along the second direction F2. Each first quick release member 64 is provided with a clamping groove 6401. When the coupler 50 is in the locked state, each second quick release member 65 is clamped with the clamping groove 6401 and locked in the corresponding quick release hole 620 and the second connecting hole 5102, and each first quick release member 64 is locked in the first connecting hole 5101. When the coupler 50 is in the unlocked state, each second quick release member 65 is disengaged from the clamping groove 6401 and can be pulled out of the corresponding quick release hole 620 and the second connecting hole 5102, and each first quick release member 64 can be pulled out of the first connecting hole 5101. Thus, on the one hand, the clamping groove 6401 of the first quick release member 64 limits two first quick release members 64, which realizes the mutual cooperation and buckling of the first quick release member 64 and the second quick release member 65 to achieve the purpose of fixed connection and locking between the coupler 50 and the mounting member 62, improves the stability and reliability of the connection between the coupler 50 and the mounting member 62, avoids the problem of loosening of the coupler 50 and the mounting member 62 during the drying process of the material, reduces the labor cost, facilitates assembly, disassembly, replacement and maintenance, is flexible to use, and improves the production efficiency; on the other hand, the mutual cooperation and buckling of the first quick release member 64 and the second quick release member 65 make the structure of the mounting mechanism 60 simple and compact, save the occupied space of the mounting mechanism 60, and improve the use efficiency and flexibility of the mounting mechanism 60.

[0044] Exemplarily, in the embodiment, the number of quick release holes 620 and the number of first connecting holes 5101 are the same as the number of first quick release members 64 and are one-to-one corresponding, and the number of second connecting holes 5102 is the same as the number of second quick release members 65 and is one-to-one corresponding. Of course, in some embodiments, the number of quick release holes 620 and the number of first connecting holes 5101 are the same and are one-to-one corresponding, and are greater than the number of first quick release members 64, and the number of second connecting holes 5102 is greater than the number of second quick release members 65, that is, the first quick release member 64 and the second quick release member 65 can be connected with the corresponding first connecting hole 5101 and the second connecting hole 5102, respectively.

[0045] In some embodiments, the mounting mechanism 60 further comprises a connecting seat 70. The connecting seat 70 is used to be fixedly connected with the rotating shaft 20. For example, in the embodiment, the connecting seat 70 is integrally formed with the rotating shaft 20, thereby improving the connection strength and reliability between the connecting seat 70 and the rotating shaft 20, and improving the assembly and disassembly efficiency of the connecting seat 70 and the rotating shaft 20. Of course, in some embodiments, the connecting seat 70 and the rotating shaft 20 can also be detachably fixedly connected, thereby facilitating the maintenance, replacement and cleaning operations of the connecting seat 70 and the rotating shaft 20. The connecting seat 70 and the rotating shaft 20 can be fixedly connected through screws, buckles and the like locking structure, and the embodiments of the utility model do not make specific limitations.

[0046] The connecting seat 70 is provided with a receiving groove 701. The connecting part 51 of the plough blade 50 is arranged in the receiving groove 701. At least part of the structure of the two mounting pieces 62 is arranged in the receiving groove 701. Along the second direction F2, one end of each mounting piece 62 is connected to the connecting seat 70, and the other end of each mounting piece 62 is connected to the connecting part 51. For example, in the embodiment, the connecting part 51 of the plough blade 50 and the two mounting pieces 62 are plug-in mounted in the receiving groove 701, thereby facilitating the alignment assembly of the connecting seat 70, the plough blade 50 and the two mounting pieces 62. Specifically, the two side walls of the connecting seat 70 along the second direction F2 are respectively provided with two limiting grooves 702 which are in communication with the receiving groove 701. Each mounting piece 62 is provided with a limiting structure 622 which is in sliding cooperation with the limiting groove 702.

[0047] For example, in the embodiment, the connecting seat 70 and the two mounting pieces 62 are independently arranged and detachably fixedly connected. In this way, it is convenient to realize the disassembly of the mounting piece 62 and the plough blade 50 from the connecting seat 70, thereby improving the disassembly efficiency of the plough blade 50.

[0048] In some embodiments, one end of each mounting piece 62 away from the rotating shaft 20 is provided with a disassembly structure 6203. The disassembly structure 6203 is used to install a disassembly tool. In this way, the disassembly tool is connected with the mounting piece 62, thereby facilitating the disassembly of the mounting piece 62, the plough blade 50 and the connecting seat 70, and improving the user experience. The disassembly tool can be but is not limited to a screwdriver, a pincer tool or a sleeve tool. For example, in the embodiment, the disassembly structure 6203 is configured as a groove structure, such as a threaded hole, and the disassembly tool is a screwdriver matched with the threaded hole. Of course, in some embodiments, the disassembly structure 6203 can also be configured as a protruding structure, thereby avoiding the material remaining on the disassembly structure 6203. The disassembly structure 6203 can be arranged according to the actual situation, and the embodiments of the utility model do not make specific limitations.

[0049] Exemplarily, in the embodiment, the limiting groove 702 is configured as a T-shaped sliding groove, and the limiting structure 622 is configured as a T-shaped sliding block. Thus, based on the sliding cooperation of the T-shaped sliding groove and the T-shaped sliding block, the connecting seat 70 can be limited and positioned in a certain dimension, thereby improving the stability and reliability of the connection between the plow blade 50 and the mounting piece 62. Of course, in some embodiments, the limiting groove 702 is configured as an L-shaped sliding groove or a straight sliding groove. The limiting groove 702 can be configured according to actual conditions, and the embodiment of the utility model is not limited.

[0050] The connecting seat 70 is provided with a first through hole 703 at a position corresponding to the first connecting hole 5101. The connecting seat 70 is provided with a second through hole 704 at a position corresponding to the second connecting hole 5102. When the plow blade 50 enters the locked state, the first quick release piece 64 is sequentially arranged in and locked in the first through hole 703 and the first connecting hole 5101, and the second quick release piece 65 is sequentially arranged in and locked in the second through hole 704, the quick release hole 620, the second connecting hole 5102 and the clamping groove 6401. When the plow blade 50 enters the unlocked state, the first quick release piece 64 is arranged in the first through hole 703 and the first connecting hole 5101 in a pull-out manner, and the second quick release piece 65 is arranged in the second through hole 704, the quick release hole 620, the second connecting hole 5102 and the clamping groove 6401 in a pull-out manner.

[0051] Please refer again to Figure 3 、 Figure 4 and Figure 5 , Figure 5 is Figure 2 the structure diagram of the first quick release piece 64 and the second quick release piece 65 of the plow blade stirring assembly 200 in

[0052] At least one of the first quick release piece 64 and the second quick release piece 65 is configured as a bolt. Of course, in some embodiments, at least one of the first quick release piece 64 and the second quick release piece 65 can also be configured as a screw or a bolt. Exemplarily, the first quick release piece 64 and the second quick release piece 65 each include a rod body 641 and a rod head 642 connected to one end of the rod body 641. The end of the rod body 641 of the first quick release piece 64 away from the rod head 642 is provided with the clamping groove 6401.

[0053] In the embodiment, the radial cross section of the shaft 641 is circular. The radial cross section of the head 642 is also circular. In other embodiments, the radial cross section of the shaft 641 and the radial cross section of the head 642 can also be, but are not limited to, square, polygonal, etc. The shapes of the first connecting hole 5101 and the second connecting hole 5102 are matched with the shapes of the first quick release member 64 and the second quick release member 65, respectively, so as to prevent the plow blade 50 from loosening relative to the mounting member 62, improve the smoothness of the plow blade 50 in stirring, and reduce noise.

[0054] In some embodiments, the clamping groove 6401 includes a first groove and a second groove connected with the first groove, and the extension directions of the first groove and the second groove are different. For example, the clamping groove 6401 can also be provided in a T shape or an L shape. The end of the second quick release member 65 is provided with a clamping block matched with the clamping groove 6401. When the clamping block of the second quick release member 65 rotates in the first groove and the second groove, the second quick release member 65 is fixedly clamped with the first quick release member 64. When the clamping block of the second quick release member 65 rotates in the first groove, the second quick release member 65 can be disengaged from the fixed clamping with the first quick release member 64.

[0055] In some embodiments, the mounting mechanism 60 further includes a gasket 66. The gasket 66 is sleeved on the shaft 641 and abuts against the head 642. In this way, on the one hand, the gasket 66 can provide good sealing effect, avoid material entering the gap between the first quick release member 64 and the second quick release member 65 and the connecting part 51 of the mounting member 62 and the plow blade 50, reduce wear and loss of material, and facilitate disassembly and assembly; on the other hand, the gasket 66 can absorb part of vibration energy, reduce the impact between parts, thereby reducing the wear of the plow blade stirring assembly 200 and prolonging the service life of the plow blade stirring assembly 200; on the other hand, the gasket 66 can uniformly disperse the pressure generated by the first quick release member 64 and the second quick release member 65, so as to avoid deformation or damage of the parts due to excessive local pressure during installation of the first quick release member 64 and the second quick release member 65.

[0056] Please refer again to Figure 2 and Figure 6 , Figure 6 are Figure 2 the structure diagram of the mounting mechanism 60 of the plow blade stirring assembly 200 and the plow blade 50 in

[0057] In some embodiments, the plough 50 further comprises a supporting part 53 connected between the connecting part 51 and the stirring part 52. Thus, the supporting part 53 can support and fix the stirring part 52, so as to facilitate adjustment of the distance between the plough 50 and the heating cylinder 100. The edge of the stirring part 52 of the plough 50 is provided with a rounded structure 521, so as to effectively prevent the plough stirring assembly 200 from damaging the material due to high-speed rotation, causing the material to generate fine powder, and preventing the fine powder in the material from affecting the service life of the battery.

[0058] Please refer to Figure 3 、 Figure 5 and Figure 7 , Figure 7 is Figure 2 the side view of the mounting piece 62 of the plough stirring assembly 200 in the plough 50. The second quick release piece 65 comprises a first connecting section 651 and a second connecting section 652. The radial dimension of the first connecting section 651 is smaller than the radial dimension of the second connecting section 652. The quick release hole 620 comprises a first hole 6201 and a second hole 6202 in communication with the first hole 6201. The radial dimension of the first hole 6201 is smaller than the radial dimension of the second hole 6202. The first connecting section 651 is removably provided in the first hole 6201. The second connecting section 652 is removably provided in the second hole 6202. When the plough 50 is in the locked state, each second quick release piece 65 is locked in the first hole 6201, the second connecting hole 5102 and the clamping groove 6401. When the plough 50 is in the unlocked state, each second quick release piece 65 is removably provided in the second hole 6202, the second connecting hole 5102 and the clamping groove 6401. It can be understood that when the second connecting section 652 is aligned with the second hole 6202, the second quick release piece 65 can be sequentially removed from the clamping groove 6401, the second connecting hole 5102 and the second hole 6202, so that the plough 50 enters the unlocked state; when the second connecting section 652 is aligned with the first hole 6201, the second quick release piece 65 is located outside the quick release hole 620 and is stopped at the position corresponding to the first hole 6201 of the mounting piece 62, i.e. the second quick release piece 65 cannot be removed from the clamping groove 6401, the second connecting hole 5102 and the second hole 6202, so that the plough 50 enters the locked state. Thus, based on the second quick release piece 65 being provided with the first connecting section 651 and the second connecting section 652 with different radial dimensions, and the quick release hole 620 being provided with the first hole 6201 and the second hole 6202 with different hole diameters, when the plough 50 is disassembled, the user can move the mounting piece 62, so that the second connecting section 652 of the second quick release piece 65 is aligned with the second hole 6202, thereby realizing that the user removes the second quick release piece 65 from the clamping groove 6401, the second connecting hole 5102 and the second hole 6202, facilitating the user to disassemble the plough 50, and conforming to the user's usage habit, improving the user's operation and usage experience.

[0059] The shaft 641 of the second quick release member 65 comprises a first connecting section 651 and a second connecting section 652. The first connecting section 651 is connected between the second connecting section 652 and the head 642. In some embodiments, the head 642 of the second quick release member 65 is located outside the quick release hole 620, so that the head 642 can provide a function of being gripped and operated by a user, facilitating the user to pull out the second quick release member 65, and improving the disassembly efficiency of the ploughshare 50.

[0060] For the sake of accuracy of description, all the directions mentioned herein are in the directions of Figure 3 and Figure 4 For reference, the first direction F1 refers to a direction parallel to the insertion direction of the first quick release member 64, i.e., the left-right direction in Figure 3 ; the term "second direction F2" refers to a direction parallel to the insertion direction of the second quick release member 65, i.e., the up-down direction in Figure 3 ; and the term "third direction F3" refers to the arrangement direction of the first hole 6201 and the second hole 6202 of the quick release hole 620, i.e., the up-down direction in Figure 4 . Among them, the first direction F1, the second direction F2 and the third direction F3 together constitute three orthogonal directions of the heating cylinder 100. The first direction F1, the second direction F2 and the third direction F3 of the heating cylinder 100 can be customized according to the specific structure of the product and the perspective of the drawing, and the utility model is not limited specifically. For the convenience of description, the up, down, left, right, front, back and other directions in the utility model are relative positions, and do not constitute a limitation of implementation.

[0061] Exemplarily, in the present embodiment, the arrangement direction of the first hole 6201 and the second hole 6202 is parallel to the third direction F3, wherein the third direction F3 is perpendicular to the first direction F1 and the second direction F2, respectively. Of course, the arrangement direction of the first hole 6201 and the second hole 6202 is parallel to the first direction F1. Thus, on the one hand, the processing and manufacturing difficulty of the mounting member 62 is reduced, and the structure is simple; on the other hand, it conforms to the user's usage habit, improves the user's operation and use experience, and improves the disassembly efficiency of the ploughshare 50.

[0062] In the present embodiment, each second quick release member 65 is movable relative to the ploughshare 50 along the arrangement direction of the first hole 6201 and the second hole 6202. Thus, the ploughshare 50 is switched between the locked state and the unlocked state, facilitating the user to operate, and improving the disassembly efficiency of the ploughshare 50.

[0063] Please refer to Figure 3 and Figure 8 , Figure 8 are Figure 2Structure diagram of the ploughshare 50 and the mounting member 62 in the ploughshare stirring assembly 200. In some embodiments, each mounting member 62 is provided with a guide sliding structure 621 along the arrangement direction of the first hole 6201 and the second hole 6202, and the connecting part 51 is provided with a matched guide structure 511 which is in sliding cooperation with the guide sliding structure 621. In this way, the mounting member 62 and the ploughshare 50 are assembled in alignment, and the assembly efficiency and assembly yield between the ploughshare 50 and the mounting mechanism 60 are improved.

[0064] Exemplarily, in the embodiment, one of the guide sliding structure 621 and the matched guide structure 511 is configured as a T-shaped sliding groove, and the other one is configured as a T-shaped sliding block. In this way, based on the sliding cooperation between the T-shaped sliding groove and the T-shaped sliding block, the ploughshare 50 can be limited and positioned in a certain dimension, and the stability and reliability of the connection between the ploughshare 50 and the mounting mechanism 60 are improved.

[0065] Of course, in some embodiments, one of the guide sliding structure 621 and the matched guide structure 511 is configured as an L-shaped sliding groove, and the other one is configured as an L-shaped sliding block; or one of the guide sliding structure 621 and the matched guide structure 511 is configured as a straight-line sliding groove, and the other one is configured as a straight-line sliding block. The shape of the guide sliding structure 621 and the matched guide structure 511 can be set according to actual conditions, and the embodiment of the utility model is not limited in particular.

[0066] Exemplarily, in the embodiment, the mounting member 62 is H-shaped in the lateral section outside the third direction F3, so as to reduce the assembly requirements of the mounting member 62 and the ploughshare 50, and facilitate the processing and forming of the mounting member 62. The mounting member 62 is provided with two guide sliding structures 621. In this way, any one of the guide sliding structures 621 of the mounting member 62 can be slidingly assembled with the matched guide structure 511 of the connecting part 51 of the ploughshare 50, and the assembly efficiency and assembly yield are improved.

[0067] In some embodiments, the guide sliding structure 621 and the quick release hole 620 are arranged on different side walls of the mounting member 62. In this way, on the one hand, the problem of interference between the mounting member 62, the ploughshare 50 and the second connecting member during assembly is avoided, and the reliability and smoothness of assembly are improved; on the other hand, the overall structural strength of the mounting member 62 is improved, and the service life is prolonged. Of course, in an embodiment, the guide sliding structure 621 and the quick release hole 620 are arranged on the same side wall of the mounting member 62.

[0068] Please refer to Figure 3 , Figure 6 and Figure 9 , Figure 9 is Figure 2The cross-sectional view of the ploughshare stirring assembly 200 along B-B in the figure. In some embodiments, the mounting mechanism 60 comprises a plurality of quick release assemblies 63. The plurality of quick release assemblies 63 are arranged at intervals along a third direction F3, which is perpendicular to the first direction F1 and the second direction F2 respectively. Thus, by arranging multiple sets of quick release assemblies 63, the stability and reliability of the connection between the ploughshare 50 and the mounting member 62 are improved, the ploughshare 50 is prevented from loosening, and the use safety of the ploughshare 50 stirring equipment is improved.

[0069] Exemplarily, the mounting mechanism 60 comprises two quick release assemblies 63. The two quick release assemblies 63 are independently arranged. It should be noted that the number of quick release assemblies 63 can be set according to the specifications of the heating cylinder 100 and other factors, and the embodiments of the present application are not limited.

[0070] When the ploughshare 50 is mounted on the connecting seat 70, the guide sliding structure 621 of the mounting member 62 is inserted into the guide structure 511 of the connecting part 51, and then the limiting structure 622 of the mounting member 62 is inserted into the limiting groove 702 of the connecting seat 70, so as to realize the pre-assembly of the ploughshare 50, the connecting seat 70 and the rotating shaft 20. Then, the first quick release member 64 is sequentially arranged in the first through hole 703 and the first connecting hole 5101, and all the second quick release members 65 are sequentially arranged in the second through hole 704, the second hole 6202, the second connecting hole 5102 and the clamping groove 6401. The mounting member 62 is moved towards the side close to the rotating shaft 20 by means of a dismounting tool, so that the second connecting section 652 of the second quick release member 65 is aligned with the first hole 6201. At this time, the first quick release member 64 is locked in the first through hole 703 and the first connecting hole 5101 by the second quick release member 65, and the second quick release member 65 is locked in the second through hole 704, the first hole 6201 of the quick release hole 620 and the second connecting hole 5102 by the first quick release member 64 and the mounting member 62, so that the ploughshare 50 is in a locked state, thereby realizing the fixed mounting of the ploughshare 50 on the connecting seat 70 which is fixedly connected with the rotating shaft 20.

[0071] When the ploughshare 50 is dismounted from the connecting seat 70, the mounting member 62 is moved away from the rotating shaft 20 by means of a dismounting tool, so that the second connecting section 652 of the second quick release member 65 is aligned with the second hole 6202. At this time, the second quick release member 65 is arranged in the second through hole 704, the second hole 6202, the second connecting hole 5102 and the clamping groove 6401 in a detachable manner, so that the ploughshare 50 is in a locked state. All the second quick release members 65 are separated from the clamping groove 6401 of the first quick release member 64, and then the first quick release member 64 is separated from the first through hole 703 and the first connecting hole 5101, thereby realizing the dismounting of the ploughshare 50 from the connecting seat 70.

[0072] The above has carried out the detailed introduction to the embodiment of the utility model, the principle and implementation mode of the utility model have been described in this article by applying specific examples, the above embodiment explanation is only for helping understanding the method and its core thought of the utility model; simultaneously, for the general technical personnel of the field, according to the thought of the utility model, there will be changes in specific implementation mode and application range, and the above, the content of the specification should not be understood as the limitation of the utility model.

Claims

1. A mounting mechanism (60) for mounting a coulter (50), the coulter (50) having a locked state and an unlocked state, characterized in that, The mounting mechanism (60) comprises: two mounting members (62) respectively mounted to two side walls of the coulter (50) along a first direction (F1); at least one quick release assembly (63), each of which comprises a first quick release member (64) movably penetrating the coulter (50) along a second direction (F2) intersecting the first direction (F1), and two second quick release members (65) movably penetrating the corresponding mounting member (62) and the coulter (50) along the first direction (F1) and used for being clamped or unclamped with the first quick release member (64); wherein, when the coulter (50) is in the locked state, each of the first quick release members (64) is clamped with the corresponding second quick release member (65) to lock the coulter (50) on the mounting member (62); when the coulter (50) is in the unlocked state, each of the first quick release members (64) is unclamped with the corresponding second quick release member (65) to unlock the coulter (50) locked on the mounting member (62).

2. Mounting mechanism (60) according to claim 1, characterized in that The coulter (50) comprises a connecting portion (51) and a stirring portion (52) connected with the connecting portion (51), the connecting portion (51) is provided with a first connecting hole (5101) and at least two second connecting holes (5102), the first connecting hole (5101) and the at least two second connecting holes (5102) are in communication; each of the mounting members (62) is provided with at least one quick release hole (620) along the second direction (F2), each of the first quick release members (64) is provided with a clamping groove (6401); when the coulter (50) is in the locked state, each of the second quick release members (65) is clamped with the clamping groove (6401) and locked in the corresponding quick release hole (620) and the second connecting hole (5102), and each of the first quick release members (64) is locked in the first connecting hole (5101); when the coulter (50) is in the unlocked state, each of the second quick release members (65) is unclamped with the clamping groove (6401) and is movably penetrated in the corresponding quick release hole (620) and the second connecting hole (5102), and each of the first quick release members (64) is movably penetrated in the first connecting hole (5101).

3. Mounting mechanism (60) according to claim 2, characterized in that The mounting mechanism (60) further comprises a connecting seat (70) used for fixedly connecting with the rotating shaft (20), the connecting seat (70) is provided with a receiving groove (701), the connecting portion (51) is arranged in the receiving groove (701), one end of each of the mounting members (62) is connected to the connecting seat (70) along the second direction (F2), and the other end of each of the mounting members (62) is connected to the connecting portion (51).

4. Mounting mechanism (60) according to claim 3, characterized in that The connecting seat (70) is independently arranged with the two mounting members (62) and is detachably fixedly connected.

5. Mounting mechanism (60) according to claim 4, characterized in that Each mounting member (62) is provided with a dismounting structure (6203) at one end away from the rotating shaft (20), and the dismounting structure (6203) is used for mounting a dismounting tool.

6. The mounting mechanism (60) according to claim 3, characterized in that The connecting seat (70) is provided with two limiting grooves (702) in communication with the accommodating grooves (701) on two side walls in the second direction (F2), and each mounting member (62) is provided with a limiting structure (622) in sliding fit with the limiting groove (702).

7. The mounting mechanism (60) according to claim 3, characterized in that The connecting seat (70) is provided with a first through hole (703) corresponding to the position of the first connecting hole (5101), and is provided with a second through hole (704) corresponding to the position of the second connecting hole (5102); when the coulter (50) enters the locking state, the first quick release member (64) is sequentially arranged in and locked in the first through hole (703) and the first connecting hole (5101), and the second quick release member (65) is sequentially arranged in and locked in the second through hole (704), the quick release hole (620), the second connecting hole (5102) and the clamping groove (6401); when the coulter (50) enters the unlocking state, the first quick release member (64) is arranged in the first through hole (703) and the first connecting hole (5101) in a pull-out manner, and the second quick release member (65) is arranged in the second through hole (704), the quick release hole (620), the second connecting hole (5102) and the clamping groove (6401) in a pull-out manner.

8. The mounting mechanism (60) according to claim 2, characterized in that The second quick release member (65) includes a first connecting section (651) and a second connecting section (652); the radial dimension of the first connecting section (651) is smaller than the radial dimension of the second connecting section (652), the quick release hole (620) includes a first hole (6201) and a second hole (6202) in communication with the first hole (6201), the radial dimension of the first hole (6201) is smaller than the radial dimension of the second hole (6202), the first connecting section (651) is arranged in the first hole (6201) in a pull-out manner, and the second connecting section (652) is arranged in the second hole (6202) in a pull-out manner; when the coulter (50) is in the locking state, each second quick release member (65) is locked in the first hole (6201), the second connecting hole (5102) and the clamping groove (6401), and when the coulter (50) is in the unlocking state, each second quick release member (65) is arranged in the second hole (6202), the second connecting hole (5102) and the clamping groove (6401) in a pull-out manner.

9. Mounting mechanism (60) according to claim 8, characterized in that The arrangement direction of the first hole (6201) and the second hole (6202) is parallel to the first direction (F1) or the third direction (F3), and the third direction (F3) is perpendicular to the first direction (F1) and the second direction (F2).

10. The mounting mechanism (60) as claimed in claim 8, characterized in that Each of the second quick release components (65) is movable along the arrangement direction of the first hole (6201) and the second hole (6202) relative to the plough blade (50).

11. The mounting mechanism (60) as claimed in claim 8, characterized in that Each of the mounting components (62) is provided with a guide sliding structure (621) along the arrangement direction of the first hole (6201) and the second hole (6202), and the connecting part (51) is provided with a matched guide structure (511) which is in sliding cooperation with the guide sliding structure (621).

12. The mounting mechanism (60) as claimed in claim 1, characterized in that The mounting mechanism (60) comprises a plurality of quick release assemblies (63) which are arranged and disposed at intervals along a third direction (F3), and the third direction (F3) is perpendicular to the first direction (F1) and the second direction (F2) respectively.

13. A plowshare agitation assembly (200) characterized by, The plough comprises a rotating shaft (20) and a plurality of plough blade blades (40) which are arranged at intervals on the rotating shaft (20), each of the plough blade blades (40) comprises a plough blade (50) and a mounting mechanism (60) according to any one of claims 1-12, and the plough blade (50) is detachably fixedly connected to the rotating shaft (20) through the mounting mechanism (60).