CN201467641U - Ridge forming and trenching cutter - Google Patents

Ridge forming and trenching cutter Download PDF

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Publication number
CN201467641U
CN201467641U CN2009201621051U CN200920162105U CN201467641U CN 201467641 U CN201467641 U CN 201467641U CN 2009201621051 U CN2009201621051 U CN 2009201621051U CN 200920162105 U CN200920162105 U CN 200920162105U CN 201467641 U CN201467641 U CN 201467641U
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CN
China
Prior art keywords
ridging
trench digging
soil
shifting sheet
square tube
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2009201621051U
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Chinese (zh)
Inventor
刘大明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing Hwasdan Machinery Manufacturing Co Ltd
Original Assignee
Chongqing Hwasdan Machinery Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Priority to CN2009201621051U priority Critical patent/CN201467641U/en
Application granted granted Critical
Publication of CN201467641U publication Critical patent/CN201467641U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a ridge forming and trenching cutter which comprises ridge forming and trenching component consisting of a bulldozing piece, a dryland farming blade and a first orthohexagonal tube, and a crawling board component consisting of a foot plate connecting plate, a foot plate bracket and a second orthohexagonal tube, wherein one end of the first orthohexagonal tube is provided with a hole; the bulldozing piece and the dryland farming blade are arranged in the first orthohexagonal tube through a bolt and a nut; one end of the second orthohexagonal tube is also provided with the hold; the foot plate is welded on one end of the connecting plate; the other end of the connecting plate is connected with the foot plate bracket through the bolt; seen from the left side, the rotating direction of the connecting plate is clockwise; the center of the foot plate bracket is sleeved with the second orthohexagonal tube; and the crawling plate component is sleeved with the end of the first orthohexagonal tube which is provided with the hole through the second orthohexagonal tube. By adopting the structure, the ridge forming and trenching cutter excavates ahead forwards in the way that the crawling plate is buried in the soil, thereby increasing the forward traction force of ridge forcing or trenching.

Description

Ridging, trench digging cutter
Technical field
The utility model relates to agricultural machinery technological field, more particularly, relates to that a kind of ridging is opened, the ditch cutter.
Background technology
The mode of burying that market is existing to cooperate the plate of creeping in tie ridger, the plough is for oppositely advancing soil, rather than the forward shoveling, has reduced the tractive force that tie ridger or plough move ahead; Thereby have influence on ridging or listing efficient is low, labour intensity is big.The cutter of farming causes function singleness, tool-holder soil and inharmonious with the collocation of tie ridger, plough because of the defective of its structural design again; Particularly operate deficiencies such as dumb and dismounting inconvenience.
The utility model content
In view of this, the utility model provides a kind of ridging, trench digging cutter, and is low to realize the operating efficiency that causes because of oppositely burying of the plate of creeping, and the irrational shortcoming of structural design.
For achieving the above object, the utility model provides a kind of ridging, trench digging cutter, comprising:
Contain ridging, the trench digging assembly of soil-shifting sheet, the cultivated blade in nonirrigated farmland and the one or six square tube, wherein, described the one or six square tube one end is porose, and described soil-shifting sheet and described nonirrigated farmland are ploughed blade and be installed on described the one or six square tube by screw bolt and nut;
The board component of creeping that contains sole connecting plate, sole bearing and the two or six square tube, wherein, described the two or six square tube one end is porose, described sole is welded on described connecting plate one end, the described connecting plate other end links to each other with described sole bearing by bolt, and described connecting plate sees that from the left side direction of rotation is a clockwise direction, and described sole bearing center is socketed on described the two or six square tube, and the described board component of creeping is sleeved on that porose end of described the one or six square tube by described the two or six square tube.
Preferably, described six square tubes are specially:
Plough blade support, the cultivated blade support in second nonirrigated farmland and the 3rd nonirrigated farmland in first nonirrigated farmland that is welded with coplane near that porose end of described six square tubes and plough blade support, and the cultivated blade support angulation in each nonirrigated farmland is 120 ° of five equilibriums;
With described six square tube axle center is benchmark, is welded with the first soil-shifting sheet bearing at the other end;
With the described first soil-shifting sheet bearing is original position, and spiral three equal parts are welded with the second soil-shifting sheet bearing, the 3rd soil-shifting sheet bearing and the 4th soil-shifting sheet bearing, and each bearing axle center angle equates;
With the described first soil-shifting sheet bearing coplane, and be that turn clockwise 120 ° position of benchmark is welded with the 4th nonirrigated farmland and ploughs blade support with the described first soil-shifting sheet bearing center;
With the described first soil-shifting sheet bearing coplane, and be that benchmark is rotated counterclockwise 120 ° position and is welded with the 5th nonirrigated farmland and ploughs blade support with the described first soil-shifting sheet bearing center.
Preferably, described soil-shifting sheet is installed on the described soil-shifting sheet bearing by bolt, and described soil-shifting sheet two ends are parallel to each other, and and the axial angle of described six square tubes between 15 ° to 75 °, the left side sees that direction of rotation is a clockwise direction.
Preferably, described nonirrigated farmland is ploughed blade and is installed on the cultivated blade support in described nonirrigated farmland by bolt, and the left side sees that direction of rotation is a clockwise direction.
Preferably, described sole is rectangle or square.
Preferably, described sole bearing also is provided with sole bearing positioning hole, and the centre is equipped with described the two or six square tube, by described the two or six square tube the described board component of creeping is installed on described ridging, the trench digging assembly.
Preferably, described connecting plate is provided with the connecting plate positioning hole that is connected with described sole bearing positioning hole by bolt.
Preferably, described ridging, trench digging cutter are divided into right side ridging, trench digging cutter and left side ridging, trench digging stage property, and described right side ridging, trench digging cutter and described left side ridging, trench digging cutter become axial symmetry.
Preferably, the board component of creeping in described right side ridging, the trench digging cutter is installed in ridging trench digging assembly right side.
Preferably, the board component of creeping in described left side ridging, the trench digging cutter is installed in described ridging, trench digging assembly left side.
From above-mentioned technical scheme as can be seen, the ridging that the utility model embodiment now provides, trench digging cutter adopt the forward shoveling to move ahead because of the mode of burying of the plate of creeping, increased the tractive force that moves ahead of ridging or trench digging, the improvement that these are structural has directly improved the efficiency of ridging or trench digging, big radian has reduced operator's labour intensity, the flexibility of operation and the convenience of dismounting and also improved.Because the reasonably combined of blade ploughed in soil-shifting sheet and nonirrigated farmland, its topology layout is for being benchmark with six square tube axle center, and blade is that spiral three equal parts are uniform, and this structure has played the effect of loosening the soil and developing simultaneously toward the both sides casting, solve blade folder soil simultaneously, be difficult for this drawback of walking.
Description of drawings
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, to do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below, apparently, accompanying drawing in describing below only is embodiment more of the present utility model, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is disclosed a kind of ridging, the trench digging cutter schematic diagram of plate on the right side of creeping of the utility model embodiment;
Fig. 2 is disclosed a kind of plate ridging, the trench digging assembly stereogram in the ridging on right side, the cutter of ditching of creeping of the utility model embodiment;
Fig. 3 is disclosed a kind of plate ridging, the trench digging assembly front view in the ridging on right side, the cutter of ditching of creeping of the utility model embodiment;
Fig. 4 is the cutaway view of A-A among Fig. 3;
Fig. 5 is the cutaway view of B-B among Fig. 3;
Fig. 6 is the disclosed a kind of plate of creeping of the utility model embodiment board component stereogram of creeping in the ridging on right side, trench digging cutter;
Fig. 7 is the disclosed a kind of plate of creeping of the utility model embodiment board component front view of creeping in the ridging on right side, trench digging cutter;
Fig. 8 is disclosed a kind of ridging, the trench digging cutter schematic diagram of plate in the left side of creeping of the utility model embodiment;
Fig. 9 is disclosed a kind of plate ridging, the trench digging assembly stereogram in the ridging in left side, the cutter of ditching of creeping of the utility model embodiment;
Figure 10 is disclosed a kind of plate ridging, the trench digging assembly front view in the ridging in left side, the cutter of ditching of creeping of the utility model embodiment;
Figure 11 is the cutaway view of A-A among Figure 10;
Figure 12 is the cutaway view of B-B among Figure 10;
Figure 13 is the disclosed a kind of plate of creeping of the utility model embodiment board component schematic diagram of creeping in the ridging in left side, trench digging cutter;
Figure 14 is the disclosed and arranged on left and right sides ridging of the utility model embodiment, trench digging cutter installation site schematic diagram.
Embodiment
Below in conjunction with the accompanying drawing among the utility model embodiment, the technical scheme among the utility model embodiment is clearly and completely described, obviously, described embodiment only is the utility model part embodiment, rather than whole embodiment.Based on the embodiment in the utility model, those of ordinary skills are not making the every other embodiment that is obtained under the creative work prerequisite, all belong to the scope of the utility model protection.
The utility model embodiment discloses a kind of ridging, trench digging cutter, and is low to realize the operating efficiency that causes because of oppositely burying of the plate of creeping, and the irrational shortcoming of structural design.
The schematic diagram of the ridging trench digging cutter that is installed on the right side that Fig. 1-Fig. 7 provides.
As shown in Figure 1, ridging, trench digging cutter are formed creep board component 11 and ridging, trench digging toolbox 12, and the board component 11 of creeping is installed in ridging, trench digging assembly 12 right sides.With in the past the board component difference of creeping is that the direction of rotation of this board component 11 of creeping is consistent with the direction of burying, as shown.This structure, the tractive force in the time of can increasing operation increases farming efficient.The diagram arrow is the blade direction of rotation.
Ridging, trench digging assembly 11 each several parts are formed schematic diagram as shown in Figure 2, plough blades 123 by porose the one or six square tube 121 of right-hand member, four soil-shifting sheets 122 and five nonirrigated farmlands and form.
Wherein, 122 two sections of four soil-shifting sheets parallel and with the one or six square tube axial clamp angular region be 15 °-75 °, four soil-shifting sheets 122 are that rotating shaft becomes three equal parts evenly to distribute with two ends soil-shifting sheet with the one or six square tube axle center, and soil-shifting sheet angle three equal parts evenly distribute, as shown in Figure 3.
Five cultivated blade 123 three equal parts in nonirrigated farmland are uniform, as shown in Figure 4 and Figure 5, wherein, there are two nonirrigated farmlands to plough blade 123 and a soil-shifting sheet 122 at the one or six square tube left end, its angulation is 120 °, ploughs on the blade support 1212 by weldment soil-shifting sheet bearing 1211 and nonirrigated farmland that bolt is installed on the one or six square tube; Have three nonirrigated farmlands to plough blade 123 at the one or six square tube right-hand member, each blade angulation equates that blade support 1212 axis are ploughed in one plane in its nonirrigated farmland of installing by bolt.
By adopting said structure, this ridging, trench digging cutter had simultaneously loosen the soil soon, do not press from both sides soil, be easy to advantage toward the both sides casting.
The board component 11 of creeping as shown in Figure 6 and Figure 7 comprises sole bearing 111, sole 112 and the two or six square tube 123.Arrow is represented the direction of burying among the figure.
Wherein, there is positioning hole at sole bearing 111 edges, there is hexagonal hole the centre, the positioning hole that matches with positioning hole on the sole bearing 111 is also arranged on the sole 112, fix by the positioning hole of bolt sole bearing 111 and sole 112, the two or six square tube is sleeved on the hexagonal hole in the middle of the sole bearing 111, the two or six square tube external diameter is designed to equate with the one or six square tube internal diameter, the one or six square tube is sleeved on the two or six square tube, and spring catch is installed between the hole of two six square tubes, the board component of creeping so just is fixed on ridging, the trench digging assembly.
In the board component of creeping, its sole 112 is designed to square or rectangular, and after ridging, the assembling of trench digging cutter, its mode of burying is that forward is cut the earth, and increasing traction improves ploughing speed.
Originally creeping plate can be according to actual conditions, by the adjustment hole adjustment board diameter size of creeping, adjusts the degree of depth that the plate of creeping digs earth with this, advances the tractive force of an increase to tie ridger, plough.
The schematic diagram of the ridging that is installed on the left side that Fig. 8-Figure 13 provides, trench digging cutter.
Ridging, trench digging cutter that the board component of creeping is installed in the left side are symmetrically distributed with ridging, the trench digging cutter that the board component of creeping is installed in the right side.This just repeats no more not have substantive difference.Wherein, ridging among the figure, trench digging cutter comprise creep board component 21 and ridging, trench digging assembly 22.
The board component of creeping comprises: sole bearing 211, sole 212 and the two or six square tube 213.
Ridging, trench digging assembly comprise that the one or six square tube 221, soil-shifting sheet 222 and nonirrigated farmland plough blade 223.Wherein be welded with soil-shifting sheet bearing 2211 and nonirrigated farmland on the one or six square tube and plough blade support 2212.
Figure 14 is and arranged on left and right sides ridging, trench digging cutter installation site schematic diagram, left side ridging trench digging cutter is installed in the left side 2 of agro-farming machinery, right side 1, two ridging, trench digging cutter that right side ridging trench digging cutter is installed in agro-farming machinery become axial symmetry, and the direction of rotation of each blade is with burying the direction unanimity.
Adopt ridging, the trench digging cutter of this structure,, be convenient to dismounting because all blades are installed on six square tubes by bolt.The nonirrigated farmland is ploughed blade and play soil-loosening function in cultivating procedure, knotts clay or clay can be dug pine.The soil-shifting sheet plays the casting effect in cultivating procedure, be about to the nonirrigated farmland and plough the earth that cutter digs pine and arrange toward both sides, for follow-up ridging, trench digging create conditions.
Ridging, trench digging cutting tool assembly operation principle: the earth that the soil-shifting sheet will unclamp when the cultivated cutter in nonirrigated farmland loosens the soil arranges, and provides safeguard for tie ridger has played the ridge, and meanwhile, the plate of creeping is cut the earth by forward, improves the speed of travel of ridging or trench digging device.Finally reach customer satisfaction system effect.
To the above-mentioned explanation of the disclosed embodiments, make this area professional and technical personnel can realize or use the utility model.Multiple modification to these embodiment will be conspicuous concerning those skilled in the art, and defined herein General Principle can realize under the situation that does not break away from spirit or scope of the present utility model in other embodiments.Therefore, the utility model will can not be restricted to these embodiment shown in this article, but will meet and principle disclosed herein and features of novelty the wideest corresponding to scope.

Claims (10)

1. a ridging, trench digging cutter is characterized in that, comprising:
Contain ridging, the trench digging assembly of soil-shifting sheet, the cultivated blade in nonirrigated farmland and the one or six square tube, wherein, described the one or six square tube one end is porose, and described soil-shifting sheet and described nonirrigated farmland are ploughed blade and be installed on described the one or six square tube by screw bolt and nut;
The board component of creeping that contains sole connecting plate, sole bearing and the two or six square tube, wherein, described the two or six square tube one end is porose, described sole is welded on described connecting plate one end, the described connecting plate other end links to each other with described sole bearing by bolt, and described connecting plate sees that from the left side direction of rotation is a clockwise direction, and described sole bearing center is socketed on described the two or six square tube, and the described board component of creeping is sleeved on that porose end of described the one or six square tube by described the two or six square tube.
2. ridging according to claim 1, trench digging cutter is characterized in that described six square tubes are specially:
Plough blade support, the cultivated blade support in second nonirrigated farmland and the 3rd nonirrigated farmland in first nonirrigated farmland that is welded with coplane near that porose end of described six square tubes and plough blade support, and the cultivated blade support angulation in each nonirrigated farmland is 120 ° of five equilibriums;
With described six square tube axle center is benchmark, is welded with the first soil-shifting sheet bearing at the other end;
With the described first soil-shifting sheet bearing is original position, and spiral three equal parts are welded with the second soil-shifting sheet bearing, the 3rd soil-shifting sheet bearing and the 4th soil-shifting sheet bearing, and each bearing axle center angle equates;
With the described first soil-shifting sheet bearing coplane, and be that turn clockwise 120 ° position of benchmark is welded with the 4th nonirrigated farmland and ploughs blade support with the described first soil-shifting sheet bearing center;
With the described first soil-shifting sheet bearing coplane, and be that benchmark is rotated counterclockwise 120 ° position and is welded with the 5th nonirrigated farmland and ploughs blade support with the described first soil-shifting sheet bearing center.
3. ridging according to claim 2, trench digging cutter, it is characterized in that described soil-shifting sheet is installed on the described soil-shifting sheet bearing by bolt, described soil-shifting sheet two ends are parallel to each other, and and the axial angle of described six square tubes is between 15 ° to 75 °, and the left side sees that direction of rotation is a clockwise direction.
4. ridging according to claim 2, trench digging cutter is characterized in that, described nonirrigated farmland is ploughed blade and is installed on the cultivated blade support in described nonirrigated farmland by bolt, and the left side sees that direction of rotation is a clockwise direction.
5. ridging according to claim 2, trench digging cutter is characterized in that described sole is rectangle or square.
6. ridging according to claim 5, trench digging cutter, it is characterized in that, described sole bearing also is provided with sole bearing positioning hole, and the centre is equipped with described the two or six square tube, by described the two or six square tube the described board component of creeping is installed on described ridging, the trench digging assembly.
7. ridging according to claim 6, trench digging cutter is characterized in that described connecting plate is provided with the connecting plate positioning hole that is connected with described sole bearing positioning hole by bolt.
8. according to any described ridging of claim 1-7, trench digging cutter, it is characterized in that, described ridging, trench digging cutter are divided into right side ridging, trench digging cutter and left side ridging, trench digging stage property, and described right side ridging, trench digging cutter and described left side ridging, trench digging cutter become axial symmetry.
9. ridging according to claim 7, trench digging cutter is characterized in that, the board component of creeping in described right side ridging, the trench digging cutter is installed in ridging trench digging assembly right side.
10. ridging according to claim 7, trench digging cutter is characterized in that, the board component of creeping in described left side ridging, the trench digging cutter is installed in described ridging, trench digging assembly left side.
CN2009201621051U 2009-07-07 2009-07-07 Ridge forming and trenching cutter Expired - Fee Related CN201467641U (en)

Priority Applications (1)

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CN2009201621051U CN201467641U (en) 2009-07-07 2009-07-07 Ridge forming and trenching cutter

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Application Number Priority Date Filing Date Title
CN2009201621051U CN201467641U (en) 2009-07-07 2009-07-07 Ridge forming and trenching cutter

Publications (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103797909A (en) * 2014-02-25 2014-05-21 杨戈 North biological reactor built-in ditcher cutter
CN104782249A (en) * 2014-12-15 2015-07-22 湖南农夫机电有限公司 Ridging rotary blade shaft mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103797909A (en) * 2014-02-25 2014-05-21 杨戈 North biological reactor built-in ditcher cutter
CN104782249A (en) * 2014-12-15 2015-07-22 湖南农夫机电有限公司 Ridging rotary blade shaft mechanism

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100519

Termination date: 20170707

CF01 Termination of patent right due to non-payment of annual fee