CN109252509B - Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination - Google Patents

Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination Download PDF

Info

Publication number
CN109252509B
CN109252509B CN201710570791.5A CN201710570791A CN109252509B CN 109252509 B CN109252509 B CN 109252509B CN 201710570791 A CN201710570791 A CN 201710570791A CN 109252509 B CN109252509 B CN 109252509B
Authority
CN
China
Prior art keywords
cutter
bottom plate
chain
cutters
base plate
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.)
Active
Application number
CN201710570791.5A
Other languages
Chinese (zh)
Other versions
CN109252509A (en
Inventor
龚秀刚
孙光庆
李志鹏
高超
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.)
Shanghai Engineering Machinery Co Ltd
Original Assignee
Shanghai Engineering Machinery 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
Application filed by Shanghai Engineering Machinery Co Ltd filed Critical Shanghai Engineering Machinery Co Ltd
Priority to CN201710570791.5A priority Critical patent/CN109252509B/en
Publication of CN109252509A publication Critical patent/CN109252509A/en
Application granted granted Critical
Publication of CN109252509B publication Critical patent/CN109252509B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D5/00Bulkheads, piles, or other structural elements specially adapted to foundation engineering
    • E02D5/18Bulkheads or similar walls made solely of concrete in situ
    • E02D5/187Bulkheads or similar walls made solely of concrete in situ the bulkheads or walls being made continuously, e.g. excavating and constructing bulkheads or walls in the same process, without joints

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Structural Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)
  • Earth Drilling (AREA)

Abstract

The utility model provides a superstrong saw chain type slot milling machine drive chain and milling cutter combination, includes the hoisting frame, contains the unit head of drive sprocket, cuts the case, contains follower wheel tip cutting case, heavy duty chain and a plurality of different types of cutters; the power head is arranged at the front part of the lifting frame, the multi-section cutting box is fixedly arranged below the lifting frame, the end cutting box is fixedly arranged at the lower end surface of the cutting box, the heavy-duty chain forms chain transmission among the driving chain wheel, the end cutting box, the cutting box and the follower wheel, the upper end and the lower end parts of each chain piece on the left and right sides of each chain track are respectively provided with an upper end step hole and a lower end through hole, the pin bush respectively passes through the lower end through holes and is fixedly arranged in the upper end step holes after oil seals are arranged at the two ends of the pin bush, the connecting pin is arranged in a hole formed by butting the pin bush and the upper end step holes, and oil channels are arranged in the connecting pin and lubricating grease is injected; the plurality of cutters are fixed on the outer surface of the heavy-duty chain at intervals. The invention has the characteristics of high cutter body strength, wear resistance, reliability, effective improvement of chain lubrication and sealing, wide application range, strong application capability and the like.

Description

Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination
Technical Field
The invention relates to a transmission chain and milling cutter combination, in particular to a transmission chain and a milling cutter of a super-strong saw chain type slot milling machine.
Background
The saw chain type slot milling machine is used as an underground foundation construction machine for constructing supporting structures, water interception curtain walls, isolation wall bases and reinforcing foundation in foundation engineering, and is suitable for stratum construction of cohesive soil, sand, gravel, sand, soft rock and the like. After the multi-section cutting box is inserted into the ground section by section and is completely connected, a chain in a guide groove on the side surface of the cutting box forms chain transmission between a driving chain wheel and a follow-up chain wheel, a digging cutter fixedly arranged on the surface of the chain at intervals rotates along with the chain, and transversely and horizontally moves and cuts along the foundation, and cement slurry, stabilizing solution and soil solidifying solution are sprayed out of an inner cavity pipeline of the cutting box body, so that the cement slurry, the stabilizing solution and the soil solidifying solution are mixed and stirred with soil in a home position to form the cement underground diaphragm wall with equal thickness.
In the prior art, when a chain drives a milling cutter to reciprocate up and down in an underground groove body to perform cutting operation, the chain is affected and surrounded by cement slurry, cutting fluid, curing fluid and sand, and lubrication and sealing of the chain are difficult technical problems; when the slot milling machine mills 50-60 meters underground, various dense sand layers, gravel layers and rock layers in the stratum are extremely easy to cause excessive damage and abrasion to chains and milling cutters, the general cutting cutters are welded on the bottom plate in a butt joint mode, the stress of the cutters is high, and the quality problems of cutter root breakage, bottom plate tearing and cutter bit cracking are caused; meanwhile, the connecting screw for fixing the cutting tool is severely worn and even broken due to the action of a large shearing force, so that the construction efficiency is influenced, the maintenance cost of equipment is increased, and the construction quality of the cement-soil continuous wall with the same thickness is particularly influenced.
Disclosure of Invention
According to the defects existing in the prior art, the invention provides the ultra-strong saw chain type slot milling machine transmission chain and milling cutter combination which are high in strength, reliable in wear resistance and effectively improved in chain lubrication and sealing performance, so that the cutting capacity and penetrating capacity of the slot milling machine in ultra-deep strata such as dense sand layers, gravel layers and weathered strata are improved, and the application range and application capacity of equipment are effectively greatly enlarged.
A drive chain and milling cutter assembly for a super-strong saw chain type slot milling machine, comprising:
The lifting frame comprises a lifting frame body and a lower box-shaped member;
the power head comprises a power head mounting frame and a driving head with a driving chain wheel;
the cutting box is formed by butt joint of a plurality of sections of unit cutting box bodies with unequal lengths;
The end cutting box comprises an end cutting box body, a follower wheel assembly and guide guard plates positioned on the left side surface and the right side surface of the end cutting box body;
The heavy-duty chain is formed by connecting multiple sections of chain rails in series, and each section of chain rail comprises a left chain piece, a right chain piece, a pin bush, a connecting pin and an oil seal;
A plurality of different types of cutters including a first base plate, a first outer cutter provided with a cutter head, a first end cutter provided with a cutter head, and a first cutter provided with a first planar cutter, a second base plate, a second end cutter provided with a cutter head, and a second cutter provided with a second planar cutter, a third base plate, a third outer cutter provided with a cutter head, and a third cutter provided with a third planar cutter, a fourth base plate, a fourth outer cutter provided with a cutter head, and a fourth cutter provided with a fourth planar cutter, a fifth base plate, a fifth outer cutter provided with a cutter head, a fifth inner cutter provided with a cutter head, and a fifth cutter provided with a fifth planar cutter, and a sixth cutter including a sixth bottom plate, a sixth outer cutter provided with a cutter head, a sixth inner cutter provided with a cutter head, and a sixth plane cutter provided with a cutter head, a seventh cutter including a seventh bottom plate, a seventh outer cutter provided with a cutter head, a seventh inner cutter provided with a cutter head, and a seventh plane cutter provided with a cutter head, an eighth cutter including an eighth bottom plate, an eighth outer cutter provided with a cutter head, and an eighth inner cutter provided with a cutter head, and a ninth cutter including a ninth bottom plate and a ninth outer cutter provided with a cutter head, which are fixed to outer surfaces of left and right links of each section of a track of a heavy-duty chain by bolts in a manner of being spaced apart by a certain distance;
The method is characterized in that:
the power head is fixedly arranged above a lower box-shaped member at the front part of the lifting frame through a power head mounting frame;
the cutting box is formed by longitudinally connecting multi-section unit cutting box bodies with different lengths according to the digging depth configuration of the slot milling machine, and is fixedly arranged on the lower end face of a lower box-shaped member of the lifting frame through bolts by means of the uppermost first section unit cutting box body;
the end cutting box is fixedly arranged on the lower end face of the lowest section unit cutting box body of the cutting box through an end cutting box body by bolts; the follower wheel assembly is fixedly arranged on the lower end face of the end cutting box body;
The heavy-duty chain is formed by connecting a plurality of sections of chain rails in series, forms chain transmission between a driving sprocket and a follower wheel, and is positioned on the left side surface and the right side surface of the cutting box and the end cutting box to move up and down; the upper end mounting holes of the two left and right chain pieces of each chain rail are arranged as upper end step holes, and the lower end mounting holes of the two left and right chain pieces are arranged as lower end through holes; the pin bush is arranged in a mode of penetrating through the lower end through hole of the chain piece and locally entering the upper end step hole so as to form a gap between the pin bush and the step of the upper end step hole, and an oil seal is arranged at the gap position; the connecting pin is arranged in a hole formed by butt joint of the pin sleeve and the upper end step holes of the two left and right chain pieces, an oil duct leading to the inner wall of the pin sleeve is arranged in the connecting pin, and one end of the connecting pin is provided with an end oil nozzle which is communicated with the oil duct and used for injecting lubricating grease; in addition, two fastening screw holes are respectively arranged on the end face of each chain piece;
The first cutter, the second cutter, the third cutter, the fourth cutter, the fifth cutter and the sixth cutter in the plurality of cutters of different types are respectively provided with two through holes of the bottom plate at the left side and the right side of the longitudinal center of the first bottom plate, the second bottom plate, the third bottom plate, the fourth bottom plate, the fifth bottom plate and the sixth bottom plate which are respectively contained, and the two through holes of the bottom plate and the fastening screw holes of the two left and right chain pieces of the chain rail of the heavy-duty chain are respectively penetrated by bolts to be fixed on the upper end surfaces of the chain pieces, and a certain distance is reserved on the outer surface of the heavy-duty chain;
The first outer side cutter of the first cutter is symmetrically arranged at the end part of the first bottom plate in a mode of tilting outwards relative to the transverse plane of the first bottom plate, and an included angle A1=133-138 degrees is formed between the first outer side cutter and the back surface of one of the upper surface and the lower surface of the first bottom plate; the first end cutters are vertically arranged on two edge parts of the front surface of the first bottom plate opposite to the back surface of the first bottom plate in a bilateral symmetry mode; the first plane cutters are vertically arranged between the two first end cutters on the front surface of the first bottom plate;
The second end cutters of the second cutters are vertically arranged on two edge portions of the front face of one of the upper and lower surfaces of the second bottom plate in a bilateral symmetry manner; the second plane cutter is vertically arranged between the two third outer cutter parts on the front surface of the second bottom plate;
The third outer side cutters of the third cutters are vertically arranged at two edge parts of the front face of one of the upper surface and the lower surface of the third bottom plate in a bilateral symmetry mode, and an included angle A2=103-108 degrees is formed between the third outer side cutters and the front face of the third bottom plate; the third plane cutter is vertically arranged between the two third outer cutter parts on the front surface of the third bottom plate;
The fourth outer side cutters of the fourth cutters are vertically arranged at two edge parts of the front face of one of the upper surface and the lower surface of the fourth bottom plate in a bilateral symmetry mode, and an included angle A3=103-108 degrees is formed between the fourth outer side cutters and the front face of the fourth bottom plate; the fourth plane cutters are vertically arranged between the two fourth outer cutter parts on the front surface of the fourth bottom plate in a bilateral symmetry mode and deviate from one side or the upper end part of the central line in the length direction;
The fifth outer side cutter of the fifth cutter is symmetrically arranged at the end part of the fifth bottom plate in a mode of tilting outwards relative to the transverse plane of the fifth bottom plate, and an included angle A4=103-108 degrees is formed between the fifth outer side cutter and the front surface of one of the upper surface and the lower surface of the fifth bottom plate; the fifth inner side cutter is symmetrically arranged on the front surface of the fifth bottom plate in a mode of tilting outwards relative to the transverse plane of the fifth bottom plate, is close to the fifth outer side cutter, and forms an included angle B1=97-102 degrees with the front surface of the fifth bottom plate; the fifth plane cutters are vertically arranged between the two fifth outer cutter parts on the front surface of the fifth bottom plate in a bilateral symmetry mode and deviate from one side or the upper end part of the central line in the length direction;
the sixth outer side cutter of the sixth cutter is symmetrically arranged at the end part of the sixth bottom plate in a way of tilting outwards relative to the transverse plane of the sixth bottom plate, and an included angle A5=103-108 degrees is formed between the sixth outer side cutter and the front surface of one of the upper surface and the lower surface of the sixth bottom plate; the sixth inner side cutter is vertically arranged on the front surface of the sixth bottom plate in a bilateral symmetry mode relative to the sixth bottom plate and is close to the sixth outer side cutter; the sixth plane cutter is vertically arranged at a position between the two sixth outer cutter parts on the front surface of the sixth bottom plate;
The seventh outer side cutter of the seventh cutter is symmetrically arranged at the end part of the seventh bottom plate in a mode of tilting outwards relative to the transverse plane of the seventh bottom plate, and an included angle A6=103-108 degrees is formed between the seventh outer side cutter and the front surface of one of the upper surface and the lower surface of the seventh bottom plate; the seventh inner side cutter is vertically arranged on the front surface of the seventh bottom plate in a bilateral symmetry mode relative to the seventh bottom plate and is close to the seventh outer side cutter; the seventh plane cutter is vertically arranged between the two seventh outer cutter parts on the front surface of the seventh bottom plate in a bilateral symmetry mode and deviates from one side of the center line in the length direction;
The eighth outer side cutter of the eighth cutter is symmetrically arranged at the end part of the eighth bottom plate in a mode of tilting outwards relative to the transverse plane of the eighth bottom plate, and forms an included angle A7=103-108 degrees with the front surface of one of the upper surface and the lower surface of the eighth bottom plate; the eighth inner side cutter is vertically arranged on the front surface of the eighth bottom plate in a bilateral symmetry mode relative to the eighth bottom plate;
the ninth outside cutter of the ninth cutter is vertically arranged on two edge portions of the front face of one of the upper and lower surfaces of the ninth bottom plate in a laterally symmetrical manner;
The cutter head is respectively provided with two cutters which are symmetrically arranged on the free end or the two sides of the end of the cutter head, namely a first outer cutter, a first end cutter, a first plane cutter, a second end cutter, a second plane cutter, a third outer cutter, a third plane cutter, a fourth outer cutter, a fourth plane cutter, a fifth outer cutter, a fifth inner cutter, a fifth plane cutter, a sixth outer cutter, a sixth inner cutter, a sixth plane cutter, a seventh outer cutter, a seventh inner cutter, a seventh plane cutter, an eighth outer cutter, an eighth inner cutter and a ninth outer cutter;
The side surfaces of each cutter in the plurality of different types of cutters, which are positioned below the cutter head, are all subjected to surfacing by adopting high-strength wear-resistant surfacing welding electrodes, and the marks of the high-strength wear-resistant surfacing welding electrodes are D608, D648 or D707, so that the wear resistance of the cutters and the connection strength of the cutters and a bottom plate can be improved;
the plurality of cutters of different types are arranged according to the width of the wall body of the underground diaphragm wall milled by the slot milling machine, so that the first cutter, the second cutter, the third cutter, the fourth cutter, the fifth cutter, the sixth cutter, the seventh cutter, the eighth cutter and the ninth cutter ensure that the full cutting and stirring are carried out on the width of the underground diaphragm body when the cutters which are arranged in a crossing way on the heavy-duty chain cut the underground diaphragm body along the upper line and the lower line of the heavy-duty chain, and correspondingly, the distance between the cutter head edges of the outermost cutters is the same as the width of the underground diaphragm body.
The oil seal is made of rubber or polyurethane material with certain hardness and elasticity, and has the advantages of good sealing performance, abrasion resistance and corrosion resistance.
The invention can also be that the lubricating grease injected into the oil duct inside the connecting pin is No. 2 universal lithium grease, no. 3 universal lithium grease or automobile universal lithium grease with good wear resistance, water resistance, oxidation resistance and sealing performance.
The left and right chain plates can be manufactured by adopting 35MnBM alloy steel to perform forging, and the invention has the characteristics of higher strength, high wear resistance and high fine sand resistance.
The connecting pin is made of 45B alloy steel, has high shearing resistance, bending resistance and fracture resistance, and has high impact resistance, fatigue resistance and wear resistance.
The invention can also be that the first bottom plate, the second bottom plate, the third bottom plate, the fourth bottom plate, the fifth bottom plate, the sixth bottom plate, the seventh bottom plate, the eighth bottom plate and the ninth bottom plate are all made of NM300 or NM400 wear-resistant steel plates, and the wear-resistant steel plates have high strength, high wear resistance and high tensile strength.
The invention can also be that the fit clearance between the fastening screw holes on the four bottom plate through holes on the first bottom plate, the second bottom plate, the third bottom plate, the fourth bottom plate, the fifth bottom plate, the sixth bottom plate, the seventh bottom plate, the eighth bottom plate and the ninth bottom plate and the fastening bolts and the fastening screw holes on the two left and right chain pieces of the chain rail is 0.15-0.30 mm.
Drawings
FIG. 1 is a schematic diagram of the drive chain and milling cutter assembly of the super-strength chain milling machine of the present invention;
FIG. 2 is a left side view of FIG. 1;
FIG. 3 is a schematic view of the heavy duty chain of FIG. 1;
FIG. 4 is a left side view of FIG. 3;
FIG. 5 is a D-D sectional view of FIG. 3;
FIG. 6 is a schematic view of the first tool of FIG. 1;
FIG. 7 is a top view of FIG. 6;
FIG. 8 is a left side view of FIG. 6;
FIG. 9 is a schematic view of the second tool of FIG. 1;
FIG. 10 is a top view of FIG. 9;
FIG. 11 is a left side view of FIG. 9;
FIG. 12 is a schematic view of the third tool of FIG. 1;
FIG. 13 is a top view of FIG. 12;
FIG. 14 is a left side view of FIG. 12;
FIG. 15 is a schematic view of the fourth tool of FIG. 1;
FIG. 16 is a top view of FIG. 15;
FIG. 17 is a left side view of FIG. 15;
FIG. 18 is a schematic view of the fifth tool of FIG. 1;
FIG. 19 is a top view of FIG. 18;
FIG. 20 is a left side view of FIG. 18;
FIG. 21 is a schematic view of the sixth tool of FIG. 1;
FIG. 22 is a top view of FIG. 21;
fig. 23 is a left side view of fig. 21;
FIG. 24 is a schematic view of the seventh tool of FIG. 1;
FIG. 25 is a top view of FIG. 24;
FIG. 26 is a left side view of FIG. 24;
FIG. 27 is a schematic view of the eighth tool of FIG. 1;
FIG. 28 is a top view of FIG. 27;
fig. 29 is a left side view of fig. 27;
FIG. 30 is a schematic view of the ninth tool of FIG. 1;
FIG. 31 is a top view of FIG. 30;
fig. 32 is a left side view of fig. 30.
Detailed Description
The ultra-strong saw chain type slot milling machine transmission chain and milling cutter combination of the invention are further described below with reference to the accompanying drawings.
A drive chain and milling cutter assembly for a super-strong saw chain type slot milling machine, comprising: a lifting frame 1 comprising a lifting frame body 11 and a lower box member 14; a power head 2 including a power head mount 21 and a drive head 22 having a drive sprocket 221; the cutting box 3 is formed by butt joint of a plurality of sections of unit cutting box bodies with unequal lengths; an end cutting case 4 comprising an end cutting case body and a follower wheel assembly 42 having a follower wheel 422; the heavy-duty chain 5 is formed by connecting multiple sections of chain rails in series, and each section of chain rail 51 comprises a left chain piece 52, a right chain piece 52', a pin sleeve 53, a connecting pin 54 and an oil seal 55; a plurality of different types of tools 6, including a first tool 602 comprising a first base plate 6021, a first outside tool 6022, 6022' provided with a tool bit 66, a first end tool 6023, 6023' provided with a tool bit 66, and a first plane tool 6024 provided with a tool bit 66, a second tool 603 comprising a second base plate 6031, a second end tool 6032, 6032' provided with a tool bit 66, and a second plane tool 6033 provided with a tool bit 66, a third outside tool 6042, 6042' provided with a tool bit 66, and a third tool 604 comprising a third plane tool 6043 provided with a tool bit 66, a fourth tool 605 comprising a fourth base plate 6052, 6052' provided with a tool bit 66, and a fourth plane tool 6053, 6053' provided with a tool bit 66, a fifth inside tool 6063, 6063' provided with a tool bit 66, and a fifth plane tool 6064' provided with a tool bit 66, a seventh inside tool 6082' provided with a tool bit 66, a seventh outside tool 6082' provided with a tool 6082, a tool 6082' provided with a tool bit 66, and a seventh outside tool 6082, a tool 6082, and a tool 60 ' provided with a tool 6082, and a seventh outside tool 60, and a tool 6082, which is provided with a tool 60, and a tool 60 ' provided with a tool 66; the method is characterized in that:
The power head 2 is fixedly arranged above the lower box-shaped member 14 at the front part of the lifting frame 1 through a power head mounting frame 21;
The cutting box 3 is formed by longitudinally connecting multi-section unit cutting boxes with different lengths according to the arrangement of the digging depth of the slot milling machine, and is fixedly arranged on the lower end face of the lower box-shaped member 14 of the lifting frame 1 through bolts by means of the uppermost first section unit cutting box 31;
The end cutting box 4 is fixedly arranged on the lower end face of the lowest section unit cutting box 31 of the cutting box 3 through an end cutting box body by bolts; the follower wheel assembly 42 is fixedly arranged on the lower end face of the end cutting box body;
The heavy-duty chain 5 is formed by connecting a plurality of sections of chain rails in series, forms chain transmission between the driving sprocket 221 and the follower wheel 422, and is positioned on the left side surface and the right side surface of the cutting box 3 and the end cutting box 4 to move up and down; the upper end mounting holes of the two left and right links 52, 52' of each link rail 51 are provided as upper end stepped holes 521, 521', and the lower end mounting holes thereof are provided as lower end through holes 522, 522'; the pin bush 53 is arranged in such a manner as to pass through the lower end through holes 522, 522' and the partial entry upper end stepped holes 521, 521' of the link plate to form a gap between the pin bush 53 and the steps of the upper end stepped holes 521, 521', the gap being an annular gap, and an oil seal 55 being provided at the gap position; the connecting pin 54 is arranged in a hole formed by butt joint of the pin sleeve 53 and the upper end step holes 521, 521 'of the two left and right chain sheets 52, 52', an oil duct 541 communicated with the inner wall of the pin sleeve is arranged in the connecting pin 54, and one end of the connecting pin is provided with an end oil nozzle 542 communicated with the oil duct 541 and used for injecting lubricating grease; the grease injected into the oil duct 541 in the connecting pin 54 is a No. 2 general lithium grease, a No. 3 general lithium grease or an automobile general lithium grease with good wear resistance, water resistance, oxidation resistance and sealing performance; further, two fastening screw holes 524, 524 are provided on the end face of each of the chain pieces 52, 52', respectively; the left and right chain pieces 52, 52' are manufactured by adopting 35MnBM alloy steel preformed forging, and have the characteristics of higher strength, higher wear resistance and high fine sand resistance; ; the pin bush 53 passes through the lower through holes 522, 522 'respectively, and is fixedly arranged in the upper stepped holes 521, 521' after the oil seals 55 are arranged at the two ends of the pin bush, and the oil seals 55 are made of rubber or polyurethane materials with certain hardness and elasticity, so that the pin bush has good tightness, and has the functions of abrasion resistance and corrosion resistance; the connecting pin 54 is arranged in a hole formed by butt joint of the pin sleeve 53 and the upper end step holes 521, 521 'of the two left and right chain pieces 52, 52', the connecting pin 54 is made of 45B alloy steel, and has high shearing resistance, bending resistance and fracture resistance, and higher impact resistance, fatigue resistance and wear resistance;
The first cutter 602, the second cutter 603, the third cutter 604, the fourth cutter 605, the fifth cutter 606, the sixth cutter 607, the seventh cutter 608, the eighth cutter 609 and the ninth cutter 610 of the plurality of cutters 6 of different types are respectively provided with two bottom plate through holes 68, 68' on the left and right sides of the longitudinal center of the first bottom plate 6021, the second bottom plate 6031, the third bottom plate 6041, the fourth bottom plate 6051, the fifth bottom plate 6061 and the sixth bottom plate 6071 which are respectively contained, and are respectively fixed on the upper end faces 523, 523' of the chain pieces by bolts passing through the bottom plate through holes 68, 68' and then being screwed with the respective fastening screw holes 524, 524' of the two left and right chain pieces 52, 52' of the chain rail 51 of the heavy load chain 5 at a certain distance on the outer surface of the heavy load chain 5; the fit clearance between the fastening screw holes 524, 524' on the first bottom plate 6021, the second bottom plate 6031, the third bottom plate 6041, the fourth bottom plate 6051, the fifth bottom plate 6061, the sixth bottom plate 6071, the seventh bottom plate 6081, the eighth bottom plate 6091, and the ninth bottom plate 6101, and the fastening screw holes 68, 68' on the two left and right chain pieces 52, 52' of the chain rail 51 is 0.15-0.30 mm;
The first outer cutters 6022, 6022' of the first cutter 602 are symmetrically disposed at the end of the first bottom plate 6021 in a manner of tilting outwards relative to the transverse plane of the first bottom plate 6021, and form an included angle a1=133-138 ° with the back surface of one of the upper and lower surfaces of the first bottom plate 6021; the first end cutters 6023, 6023' are vertically arranged in a laterally symmetrical manner on the front edge portion of the first base plate 6021 opposite to the rear surface thereof; the first plane cutter 6024 is also vertically arranged between the front two first end cutters of the first base plate 6021;
The second end cutters 6032, 6032' of the second cutter 603 are vertically arranged in a laterally symmetrical manner at both edge portions of the front face of one of the upper and lower surfaces of the second base plate 6031; the second plane cutter 6033 is vertically arranged between the two second end cutters on the front face of the second base plate 6031;
the third outer cutters 6042, 6042' of the third cutter 604 are vertically arranged on two edge portions of the front face of one of the upper and lower surfaces of the third bottom plate 6041 in a laterally symmetrical manner, and form an included angle a2=103° -108 ° with the front face of the third bottom plate 6041; the third plane cutter 6043 is vertically arranged between the front two third outer cutter portions of the third bottom plate 6041;
The fourth outer cutters 6052, 6052' of the fourth cutter 605 are vertically arranged on two edge portions of the front surface of one of the upper and lower surfaces of the fourth bottom plate 6051 in a laterally symmetrical manner, and form an included angle a3=103-108° with the front surface of the fourth bottom plate 6051; the fourth plane cutters 6053, 6053' are vertically arranged between the two fourth outer cutter portions on the front side of the fourth base plate 6051 in a laterally symmetrical manner so as to deviate from one side or the upper end portion of the center line in the longitudinal direction;
The fifth outer cutters 6062, 6062' of the fifth cutter 606 are symmetrically arranged at the end of the fifth bottom plate 6061 in a manner of tilting outwards relative to the transverse plane of the fifth bottom plate 6061, and form an included angle a4=103-108 degrees with the front surface of one of the upper and lower surfaces of the fifth bottom plate 6061; the fifth inner side cutters 6063, 6063' are symmetrically disposed on the front surface of the fifth bottom plate 6061 in a manner of tilting outwards relative to the transverse plane of the fifth bottom plate 6061, and form an included angle b1=97-102 ° with the front surface of the fifth bottom plate 6061; the fifth plane cutters 6064, 6064' are vertically arranged between the two fifth outer cutter portions on the front side of the fifth base plate 6061 in a laterally symmetrical manner so as to deviate from one side or the upper end portion of the center line in the longitudinal direction;
The sixth outer cutters 6072, 6072' of the sixth cutter 607 are symmetrically arranged at the end of the sixth bottom plate 6071 in a manner of tilting outwards relative to the transverse plane of the sixth bottom plate 6071, and form an included angle a5=103-108 degrees with the front surface of the sixth bottom plate 6071; the sixth inside cutters 6073, 6073' are vertically arranged on the front surface of the sixth bottom plate 6071 in a laterally symmetrical manner with respect to the sixth bottom plate 6071 and close to the sixth outside cutters; the sixth plane cutter 6074 is vertically arranged at a position between the two sixth outside cutter parts on the front surface of the sixth bottom plate 6071;
The seventh outer cutters 6082, 6082' of the seventh cutter 608 are symmetrically arranged at the end of the seventh bottom plate 6081 in a manner of tilting outwards relative to the transverse plane of the seventh bottom plate 6081, and form an included angle a6=103-108 degrees with the front surface of one of the upper and lower surfaces of the seventh bottom plate 6081; the seventh inside cutters 6083, 6083' are vertically arranged on the front face of the seventh base plate 6081 in a laterally symmetrical manner with respect to the seventh base plate 6081 and are close to the seventh outside cutters; the seventh plane cutter 6084, 6084' is vertically arranged in a laterally symmetrical manner between the two seventh outside cutter portions on the front side of the seventh base plate 6081 at a position offset from one side of the center line in the longitudinal direction;
The eighth outer cutters 6092, 6092' of the eighth cutter 609 are symmetrically arranged at the end of the eighth bottom plate 6091 in a manner of tilting outwards relative to the transverse plane of the eighth bottom plate 6091, and form an included angle a7=103-108 degrees with the front surface of one of the upper and lower surfaces of the eighth bottom plate 6091; the eighth inside cutters 6093, 6093' are vertically arranged on the front face of the eighth base plate 6091 in a laterally symmetrical manner with respect to the eighth base plate 6091;
the ninth outside cutter 6102, 6102' of the ninth cutter 610 is vertically arranged in a laterally symmetrical manner at both edge portions of the front face of one of the upper and lower surfaces of the ninth base 6101;
The cutter head 66 is provided with two and symmetrically arranged on the free end or both sides of the first outer side cutter 6022, 6022', the first end cutter 6023, 6023', the first plane cutter 6024, the second end cutter 6032, 6032', the second plane cutter 6033, the third outer side cutter 6042, 6042', the third plane cutter 6043, the fourth outer side cutter 6052, 6052', the fourth plane cutter 6053, 6053', the fifth outer side cutter 6062, 6062', the fifth inner side cutter 6063, 6063', the fifth plane cutter 6064, 6064', the sixth outer side cutter 6072, 6072', the sixth inner side cutter 6073, 6073', the sixth plane cutter 6074, the seventh outer side cutter 6082, 6082', the seventh inner side cutter 6083, 6083', the seventh plane cutter 6084, 6084', the eighth outer side cutter 6092, 6092', the eighth inner side cutter 61093, 6093' and the ninth outer side cutter 6102, 2', respectively;
The side surfaces of the cutters 6in different types, which are positioned below the cutter heads, are all subjected to surfacing by adopting high-strength wear-resistant surfacing welding electrodes, and the marks of the high-strength wear-resistant surfacing welding electrodes are D608, D648 or D707, so that the wear resistance of the cutters and the connection strength with a bottom plate can be improved;
the plurality of different types of cutters 6 are provided with different cutter widths according to the wall width of the underground diaphragm wall milled by the slot milling machine, so that the first cutter 602, the second cutter 603, the third cutter 604, the fourth cutter 605, the fifth cutter 606, the sixth cutter 607, the seventh cutter 608, the eighth cutter 609 and the ninth cutter 610 are mutually crossed on the heavy-duty chain 5 and ensure full cutting and stirring on the width of the underground diaphragm wall when the underground diaphragm wall is cut along the upper and lower straight lines of the heavy-duty chain 5, and accordingly, the distance between the cutter edges of the outermost cutters among the cutters is the same as the width of the underground diaphragm wall;
The first bottom plate 6021, the second bottom plate 6031, the third bottom plate 6041, the fourth bottom plate 6051, the fifth bottom plate 6061, the sixth bottom plate 6071, the seventh bottom plate 6081, the eighth bottom plate 6091 and the ninth bottom plate 6101 in the cutter 6 are all made of wear-resistant steel plates NM300 or NM400, and have the characteristics of high strength, high wear resistance, high tensile strength and the like.
The transmission chain and milling cutter combination of the super-strong saw chain type slot milling machine has the characteristics of high strength of a cutter body, reliable wear resistance, effective improvement of lubrication and sealing performance and the like, improves the cutting capacity and penetrating capacity of the slot milling machine in stratum such as a compact sand layer, a gravel layer, a rock stratum and the like, and effectively greatly expands the application range and application capacity of equipment. Greatly expands the application range and application capacity of the equipment.

Claims (7)

1. A drive chain and milling cutter assembly for a super-strong saw chain type slot milling machine, comprising:
a lifting frame (1) comprising a lifting frame body (11) and a lower box-shaped member (14);
A power head (2) including a power head mounting bracket (21) and a drive head (22) having a drive sprocket (221);
The cutting box (3) is formed by butt joint of a plurality of sections of unit cutting box bodies with unequal lengths;
an end cutting box (4) comprising an end cutting box body and a follower wheel assembly (42) comprising a follower wheel (422);
The heavy-duty chain (5) is formed by connecting multiple sections of chain rails in series, and each section of chain rail (51) comprises a left chain piece (52, 52'), a right chain piece (53), a pin bush (53), a connecting pin (54) and an oil seal (55);
A plurality of different types of tools (6), including a first tool (602) comprising a first base plate (6021), a first outside tool (6022, 6022 ') provided with a tool bit (66), a first end tool (6023, 6023 ') provided with a tool bit (66) and a first plane tool (6024) provided with a tool bit (66), a second tool (603) comprising a second base plate (6031), a second end tool (6032, 6032 ') provided with a tool bit (66) and a second plane tool (6033) provided with a tool bit (66), a third tool (6041) comprising a third base plate (6041), a third outside tool (6042, 6042 ') provided with a tool bit (66) and a third plane tool (6043) provided with a tool bit (66), a fourth tool (6051) comprising a fourth base plate (6052, 6052 ') and a fourth plane tool (6053, 6053 ') provided with a tool bit (66), a fifth base plate (6061) comprising a fifth inside tool (6062) and a fifth outside tool (6064) provided with a fifth outside tool bit (6062, a sixth outside tool (6064 ') and a fifth outside tool (6064) provided with a tool bit (6064), 6072 '), a sixth inner side cutter (6073, 6073 ') provided with a cutter head (66) and a sixth cutter (607) provided with a sixth plane cutter (6074) of the cutter head (66), a seventh inner side cutter (6083, 6083 ') provided with a cutter head (66) and a seventh cutter (608) of a seventh plane cutter (6084, 6084 ') provided with a cutter head (66), an eighth cutter (609) comprising a seventh bottom plate (6081), a seventh outer side cutter (6092, 6092 ') provided with a cutter head (66) and a eighth inner side cutter (6093, 6093 ') provided with a cutter head (66), and a ninth cutter (610) comprising a ninth bottom plate (6101) and a ninth outer side cutter (6102, 6102 ') provided with a cutter head (66) which are fastened to the outer surfaces of the left and right chain pieces of each link chain link (51) by bolts at a distance;
The method is characterized in that:
the power head (2) is fixedly arranged above a lower box-shaped member (14) at the front part of the lifting frame (1) through a power head mounting frame (21);
the cutting box (3) is formed by longitudinally connecting multi-section unit cutting box bodies with different lengths according to the arrangement of the digging depth of the slot milling machine, and is fixedly arranged on the lower end face of a lower box-shaped component (14) of the lifting frame (1) through bolts by means of a first section unit cutting box body (31) at the uppermost part of the cutting box body;
The end cutting box (4) is fixedly arranged on the lower end face of the lowest section unit cutting box body (31) of the cutting box (3) through an end cutting box body by bolts; the follower wheel assembly (42) is fixedly arranged on the lower end face of the end cutting box body;
The heavy-duty chain (5) is formed into chain transmission between the driving sprocket (221) and the follower wheel (422) after being connected in series by a plurality of sections of chain rails, and is positioned on the left side surface and the right side surface of the cutting box (3) and the end cutting box (4) so as to move up and down; the upper end mounting holes of the two left and right links (52, 52 ') of each link rail (51) are provided as upper end stepped holes (521, 521 '), and the lower end mounting holes thereof are provided as lower end through holes (522, 522 '); the pin bush (53) is arranged in a manner of passing through a lower end through hole (522, 522 ') and a partial entering upper end step hole (521, 521 ') of the chain piece to form a gap between the pin bush (53) and a step of the upper end step hole (521, 521 '), and an oil seal (55) is provided at the gap position; the connecting pin (54) is arranged in a hole formed by butting the pin sleeve (53) with the upper end stepped holes (521, 521 ') of the two left and right chain sheets (52, 52'), an oil duct (541) which is communicated with the oil duct (541) and used for injecting lubricating grease is arranged at one end of the connecting pin (54) and is communicated with the inner wall of the pin sleeve (53); furthermore, two fastening screw holes (524 ) are respectively arranged on the end face of each chain piece (52, 52');
Two base plate through holes (68, 68 ') are respectively formed on the left and right sides of the longitudinal center of the first base plate (602), the second base plate (603), the third base plate (604), the fourth base plate (6081), the eighth base plate (6091) and the ninth base plate (6101) in the plurality of different types of cutters (6), and the first base plate (6021), the second base plate (6031), the third base plate (6041), the fourth base plate (6051), the fifth base plate (6061), the sixth base plate (6071) and the seventh base plate (6081) are respectively fixed on the upper end surfaces (523, 523 ') of the chain pieces by screwing the fifth base plate (606), the sixth base plate (607), the seventh base plate (609) and the ninth base plate (610) through the base plate through holes (68, 68 ') and the fastening screw holes (524 ') of the chain pieces (52, 52 ') of the chain rails (51) of the heavy load chains (5) on the outer surfaces of the heavy load chains (5) at a certain distance;
The first outer side cutters (6022, 6022') of the first cutters (602) are symmetrically arranged at the end part of the first bottom plate (6021) in a mode of tilting outwards relative to the transverse plane of the first bottom plate (6021), and an included angle A1=133-138 degrees is formed between the first outer side cutters and the back surface of one of the upper surface and the lower surface of the first bottom plate (6021); the first end cutters (6023, 6023') are vertically arranged in a laterally symmetrical manner at both edge portions of the front face opposite to the rear face thereof on the first base plate (6021); the first plane cutter (6024) is also vertically arranged between the two first end cutters on the front side of the first bottom plate (6021);
The second end cutters (6032, 6032') of the second cutter (603) are vertically arranged in a laterally symmetrical manner at both edge portions of the front face of one of the upper and lower surfaces of the second base plate (6031); the second plane cutter (6033) is vertically arranged between two second end cutters on the front surface of the second bottom plate (6031);
The third outer side cutters (6042, 6042') of the third cutter (604) are vertically arranged at two edge parts of the front face of one of the upper and lower surfaces of the third bottom plate (6041) in a bilateral symmetry manner, and form an included angle a2=103-108 degrees with the front face of the third bottom plate (6041); the third plane cutter (6043) is vertically arranged between the two third outer cutter parts on the front surface of the third bottom plate (6041);
The fourth outer cutters (6052, 6052') of the fourth cutter (605) are vertically arranged at two edge parts of the front face of one of the upper and lower surfaces of the fourth bottom plate (6051) in a bilateral symmetry manner, and form an included angle a3=103-108 degrees with the front face of the fourth bottom plate (6051); the fourth plane cutters (6053, 6053') are vertically arranged between the two fourth outer cutter portions on the front side of the fourth bottom plate (6051) in a laterally symmetrical manner so as to deviate from one side or the upper end portion of the center line in the longitudinal direction;
The fifth outer side cutters (6062, 6062') of the fifth cutters (606) are symmetrically arranged at the end part of the fifth bottom plate (6061) in a mode of tilting outwards relative to the transverse plane of the fifth bottom plate (6061), and an included angle A4=103-108 degrees is formed between the fifth outer side cutters and the front surface of one of the upper surface and the lower surface of the fifth bottom plate (6061); the fifth inner side cutters (6063, 6063') are symmetrically arranged on the front surface of the fifth bottom plate (6061) in a way of tilting outwards relative to the transverse plane of the fifth bottom plate (6061) and are close to the fifth outer side cutters, and an included angle B1=97-102 degrees is formed between the fifth inner side cutters and the front surface of the fifth bottom plate (6061); the fifth plane cutters (6064, 6064') are vertically arranged in a laterally symmetrical manner between the two fifth outer cutter portions on the front side of the fifth base plate (6061) so as to deviate from one side or the upper end portion of the longitudinal center line;
The sixth outer side cutters (6072, 6072') of the sixth cutter (607) are symmetrically arranged at the end part of the sixth bottom plate (6071) in a way of tilting outwards relative to the transverse plane of the sixth bottom plate (6071), and an included angle A5=103-108 degrees is formed between the sixth outer side cutters and the front surface of one of the upper surface and the lower surface of the sixth bottom plate (6071); the sixth inside cutters (6073, 6073') are vertically arranged on the front surface of the sixth bottom plate (6071) in a laterally symmetrical manner with respect to the sixth bottom plate (6071) and close to the sixth outside cutters; the vertical arrangement of the sixth plane cutter (6074) is arranged at a position between the two sixth outer cutter parts on the front surface of the sixth bottom plate (6071);
The seventh outer side cutters (6082, 6082') of the seventh cutter (608) are symmetrically arranged at the end part of the seventh bottom plate (6081) in a mode of tilting outwards relative to the transverse plane of the seventh bottom plate (6081), and an included angle A6=103-108 degrees is formed between the seventh outer side cutters and the front surface of one of the upper surface and the lower surface of the seventh bottom plate (6081); the seventh inside cutters (6083, 6083') are vertically arranged on the front face of the seventh bottom plate (6081) in a laterally symmetrical manner with respect to the seventh bottom plate (6081) and are close to the seventh outside cutters; the seventh plane cutter (6084, 6084') is vertically arranged in a laterally symmetrical manner between the two seventh outside cutter portions on the front side of the seventh bottom plate (6081) at a position offset from one side of the longitudinal center line;
The eighth outer side cutters (6092, 6092') of the eighth cutter (609) are symmetrically arranged at the end part of the eighth bottom plate (6091) in a mode of tilting outwards relative to the transverse plane of the eighth bottom plate (6091) and form an included angle A7=103-108 degrees with the front surface of one of the upper surface and the lower surface of the eighth bottom plate (6091); the eighth inside cutters (6093, 6093') are vertically arranged on the front face of the eighth base plate (6091) in a laterally symmetrical manner with respect to the eighth base plate (6091);
The ninth outside cutter (6102, 6102') of the ninth cutter (610) is vertically arranged in a laterally symmetrical manner at both edge portions of the front face of one of the upper and lower surfaces of the ninth base plate (6101);
The cutter head (66) is provided with free ends or two symmetrical outer side ends on a first outer side cutter (6022, 6022 '), a first end cutter (6023, 6023 '), a first plane cutter (6024), a second end cutter (6032, 6032 '), a second plane cutter (6033), a third outer side cutter (6042, 6042 '), a third plane cutter (6043), a fourth outer side cutter (6052, 6052 '), a fourth plane cutter (6053, 6053 '), a fifth outer side cutter (6062, 6062 '), a fifth inner side cutter (6063, 6063 '), a fifth plane cutter (6064, 6064 '), a sixth outer side cutter (6072, 6072 '), a sixth inner side cutter (6073, 6073 '), a sixth plane cutter (6074), a seventh outer side cutter (6082, 6082 '), a seventh inner side cutter (6083, 6083 '), a seventh plane cutter (6084, 6084 '), an eighth outer side cutter (6092, 6092 '), an eighth inner side cutter (6093), a ninth inner side cutter (6093) and a ninth outer side cutter (6102) respectively;
The side surface of each cutter (6) positioned below the cutter head is subjected to surfacing by adopting a high-strength wear-resistant surfacing electrode, and the marks are D608, D648 or D707, so that the wear resistance of the cutter and the connection strength with a bottom plate are improved;
the plurality of cutters (6) of different types are arranged according to the width of the wall body of the underground continuous wall milled by the slot milling machine, so that the first cutter (602), the second cutter (603), the third cutter (604), the fourth cutter (605), the fifth cutter (606), the sixth cutter (607), the seventh cutter (608), the eighth cutter (609) and the ninth cutter (610) are arranged in a crossing manner on the heavy-duty chain (5) and ensure full cutting and stirring on the width of the underground groove body when the underground groove body is cut along the upper and lower straight lines of the heavy-duty chain (5), and accordingly, the distance between the cutter head edges of the outermost cutters is the same as the width of the underground groove body.
2. The ultra-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the oil seal (55) is made of rubber or polyurethane with certain hardness and elasticity, and has good sealing performance, abrasion resistance and corrosion resistance.
3. The super-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the grease injected into the oil duct (541) inside the connecting pin (54) is a No. 2 universal lithium-based grease, a No. 3 universal lithium-based grease or an automobile universal lithium-based grease with good wear resistance, water resistance, oxidation resistance and sealing performance.
4. The super-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the left and right chain pieces (52, 52') are manufactured by adopting 35MnBM alloy steel pre-forming forging, and have the characteristics of higher strength, higher wear resistance and higher fine sand resistance.
5. The super-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the connecting pin (54) is made of 45B alloy steel, has high shearing resistance, bending resistance and breaking resistance, and has higher impact resistance, fatigue resistance and wear resistance.
6. The super-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the first base plate (6021), the second base plate (6031), the third base plate (6041), the fourth base plate (6051), the fifth base plate (6061), the sixth base plate (6071), the seventh base plate (6081), the eighth base plate (6091) and the ninth base plate (6101) are all made of NM300 or NM400 wear-resistant steel plates, and have high strength, high wear resistance and high tensile strength.
7. The super-strong saw chain type slot milling machine transmission chain and milling cutter combination according to claim 1, wherein the fit clearance between the fastening screw holes (524, 524 ') on the first bottom plate (6021), the second bottom plate (6031), the third bottom plate (6041), the fourth bottom plate (6051), the fifth bottom plate (6061), the sixth bottom plate (6071), the seventh bottom plate (6081), the eighth bottom plate (6091) and the ninth bottom plate (6101) and the fastening screw holes (524, 524 ') on the two left and right chain pieces (52, 52 ') of the chain rail (51) and the fastening bolts is 0.15-0.30 mm.
CN201710570791.5A 2017-07-13 2017-07-13 Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination Active CN109252509B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710570791.5A CN109252509B (en) 2017-07-13 2017-07-13 Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710570791.5A CN109252509B (en) 2017-07-13 2017-07-13 Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination

Publications (2)

Publication Number Publication Date
CN109252509A CN109252509A (en) 2019-01-22
CN109252509B true CN109252509B (en) 2024-04-30

Family

ID=65051176

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710570791.5A Active CN109252509B (en) 2017-07-13 2017-07-13 Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination

Country Status (1)

Country Link
CN (1) CN109252509B (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102535559A (en) * 2012-03-15 2012-07-04 中国铁建重工集团有限公司 Chain cutter type mixing pile wall forming equipment
CN203270642U (en) * 2013-05-29 2013-11-06 上海工程机械厂有限公司 Slot milling machine digging-cutting stirring mechanism
WO2014161984A1 (en) * 2013-04-05 2014-10-09 Soil Machine Dynamics Limited Trench cutting apparatus
CN207244608U (en) * 2017-07-13 2018-04-17 上海工程机械厂有限公司 A kind of super strong type saw chain formula slotter driving chain and milling cutter combination

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102535559A (en) * 2012-03-15 2012-07-04 中国铁建重工集团有限公司 Chain cutter type mixing pile wall forming equipment
WO2014161984A1 (en) * 2013-04-05 2014-10-09 Soil Machine Dynamics Limited Trench cutting apparatus
CN203270642U (en) * 2013-05-29 2013-11-06 上海工程机械厂有限公司 Slot milling machine digging-cutting stirring mechanism
CN207244608U (en) * 2017-07-13 2018-04-17 上海工程机械厂有限公司 A kind of super strong type saw chain formula slotter driving chain and milling cutter combination

Also Published As

Publication number Publication date
CN109252509A (en) 2019-01-22

Similar Documents

Publication Publication Date Title
CN103835720B (en) Hard Rock Breaking System
CN103635380B (en) Mobile apparatus caterpillar block
CA3076278C (en) Excavator bucket & manufacturing method
US20160332269A1 (en) Cold formed support block and method of making the same
CN105332400B (en) Novel buffer type excavator toothholder and bucket tooth combination device
CN103147477A (en) Cutting box of slot milling machine
CN104594189B (en) The hinge seam structure of the compound shear connector of band and prefabricated slab bridge thereof
CN103161187B (en) A kind of bulldozer and loosening device thereof
CN109252509B (en) Transmission chain of super-strong saw chain type slot milling machine and milling cutter combination
CN113863408B (en) Trenching assembly of chain trencher
CN109252556B (en) Cutting mechanism of super-strong saw chain type slot milling machine
EP3170599B1 (en) Method for non-linear fracture splitting
CN206768598U (en) A kind of unit construction bridge panel
CN207244608U (en) A kind of super strong type saw chain formula slotter driving chain and milling cutter combination
CN108824523B (en) Chain saw type cutting box
US10226858B2 (en) Demolition hammer with wear plate system having debris channels
CN114555888B (en) Square pile construction method and equipment for rotary drilling rig
CN207974184U (en) A kind of wear-resisting mining bucket
CN112943237B (en) Automatic change water conservancy slabbing coal road tunnelling platform truck
CN108915015B (en) Chain knife type cutting box
CN109252558A (en) A kind of saw chain formula slotter cutting mechanism
CN211547854U (en) Grab bucket scraper device for grooving machine
CN216739809U (en) Chain cutter box for ultra-deep TRD construction
CN208650122U (en) A kind of chain cutter type cutting box
CN207177906U (en) Push-bench

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant