CN113103466A - EPS lines recovery processing equipment for engineering construction - Google Patents

EPS lines recovery processing equipment for engineering construction Download PDF

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Publication number
CN113103466A
CN113103466A CN202110302332.5A CN202110302332A CN113103466A CN 113103466 A CN113103466 A CN 113103466A CN 202110302332 A CN202110302332 A CN 202110302332A CN 113103466 A CN113103466 A CN 113103466A
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rod
spring
fixed frame
fixed
block
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CN202110302332.5A
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CN113103466B (en
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刘红霞
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Jiangxi Longteng Industrial Co ltd
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Jiangxi Longteng Industrial Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B17/00Recovery of plastics or other constituents of waste material containing plastics
    • B29B17/04Disintegrating plastics, e.g. by milling
    • B29B17/0412Disintegrating plastics, e.g. by milling to large particles, e.g. beads, granules, flakes, slices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B17/00Recovery of plastics or other constituents of waste material containing plastics
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Disintegrating Or Milling (AREA)

Abstract

The invention relates to a recovery processing device, in particular to an EPS line recovery processing device for engineering construction. The EPS lines recycling device for the engineering construction is free of manual continuous feeding, capable of automatically discharging, capable of reducing operation amount and improving efficiency. The utility model provides an engineering construction is with EPS lines recovery processing equipment, including: arc backup pad, fixed frame, broken axle, motor, pressing mechanism and stop gear, the arc backup pad is equipped with 4, is connected with fixed frame between the arc backup pad top, and the symmetry rotary type is equipped with broken axle between the fixed frame inner wall, and fixed frame one side is equipped with the motor, and the output shaft and the broken hub connection in one side of motor are fixed frame one side and are equipped with pressing mechanism, are connected with stop gear between pressing mechanism and the fixed frame. Through setting up broken axle and pressing mechanism, the motor operates and drives the rotation of broken axle and rub the lines, realizes the basic function of this equipment.

Description

EPS lines recovery processing equipment for engineering construction
Technical Field
The invention relates to a recovery processing device, in particular to an EPS line recovery processing device for engineering construction.
Background
Along with the continuous development of architectural decoration trade, the aesthetic requirement of modern building to the exterior decoration is higher and higher, and the designer is difficult in the design stage just can be good and beautiful to also probably all decorations are all done with the structure, and EPS moulding is as a more ancient moulding, and its biggest advantage is can be according to required production fast, convenient and fast's completion installation, reduce cost, reduction of erection time.
EPS lines have passed and to have pulled down it after the life, and the lines after pulling down can add water and rub the recovery, generally continue to put into the rubbing machine with the lines by the manual work, still need the manual work to take out it after the stirring finishes and collect, and the operating load is big, and efficiency is not high, consequently need design one kind and need not the manual work and last the material loading, automatic unloading reduces the operating load, and the engineering construction that raises the efficiency uses EPS lines recovery processing equipment.
Disclosure of Invention
In order to overcome the defects that the lines are continuously placed into the mincing machine manually and still need to be taken out and collected manually after the stirring is finished, the operation amount is large, and the efficiency is not high, the technical problem of the invention is as follows: the EPS lines recycling equipment for engineering construction is free of manual continuous feeding and automatic discharging, reduces the operation amount and improves the efficiency.
The technical scheme is as follows: the utility model provides an EPS lines recovery processing equipment for engineering construction, including arc backup pad, fixed frame, broken axle, motor, pressing mechanism and stop gear, the arc backup pad is equipped with 4, is connected with fixed frame between the arc backup pad top, and symmetry rotary type is equipped with broken axle between the fixed frame inner wall, and fixed frame one side is equipped with the motor, and the output shaft and the broken axle in one side of motor are connected, and fixed frame one side is equipped with pressing mechanism, is connected with stop gear between pressing mechanism and the fixed frame.
In addition, it is especially preferred that the pressing mechanism comprises an air cylinder, a telescopic rod, a pressure rod and a gland, wherein the air cylinder is arranged on one side of the fixing frame, the telescopic rod is arranged at the telescopic end of the air cylinder, the pressure rod is arranged on the upper portion of the telescopic rod, and the gland is arranged at the bottom of the pressure rod.
Furthermore, it is particularly preferred that stop gear is including first fixed block, first dead lever, the rack, first spring, the second fixed block, the apparatus further comprises a rotating shaft, the all-gear, extension strip and second spring, gland top both sides all are equipped with first fixed block, fixed frame is connected with first dead lever, the symmetry slidingtype is equipped with the rack on the first dead lever, be connected with first spring between the rack, first spring housing is established on first dead lever, the equal symmetry in bottom of fixed frame both sides is equipped with the second fixed block, the rotary type is equipped with the pivot between the second fixed block of vertical symmetry, be equipped with the bottom plate in the pivot, be equipped with the all-gear in the pivot, full gear and rack meshing, the inboard equal rotary type of rack is equipped with extension strip, extension strip's other end rotary type is connected with accepts the board, it is connected with the second.
In addition, particularly preferably, the blanking device further comprises a blanking mechanism, the blanking mechanism comprises a first push rod, a bearing block, a third fixed block, a third spring, a guide block, a toothed bar, a fourth spring, an inclined block, a first guide bar, a blanking frame and a first connecting bar, the first push rod is symmetrically arranged on one side of the top of the gland, the bearing blocks are arranged on two sides of the upper part of the fixed frame, the third fixed block is arranged on the top of the bearing block and is connected with the first fixed block in a sliding manner, the third spring is connected between the bottom of the first fixed block and the third fixed block, the guide block is arranged on the top of the third fixed block, the toothed bar is arranged on the guide block in a sliding manner, the inclined block is arranged on one side of the toothed bar in a rotating manner through a torsion spring, the fourth spring is connected between the inclined block and the toothed bar, the first guide bar is arranged on two sides of the fixed frame and is connected with, a blanking frame is connected between the first connecting rods, and the outer sides of the first connecting rods are meshed with the toothed bars through pinions.
In addition, it is particularly preferable that the fixing device further comprises a fixing mechanism, the fixing mechanism comprises a lifting rod, an oblique rod, a second fixing rod, a third fixing rod, a fifth spring, a second connecting rod, a second guide rod, a sixth spring and a second push rod, the lifting rod is arranged on the upper portion of the telescopic rod, the oblique rod is arranged on the lower portion of the lifting rod, the second connecting rod is arranged on one side of the fixing frame, the second guide rod is arranged on the lower portion of the second connecting rod, the third fixing rod is slidably arranged on the second guide rod, the sixth spring is connected between the third fixing rod and the second guide rod, the second push rod is arranged on one side of the top of the third fixing rod, the second fixing rod is arranged on one side of the fixing frame, the second fixing rod is slidably connected with the third fixing rod, and the fifth.
In addition, especially preferred is, still including supporting mechanism, supporting mechanism is equipped with the fourth fixed block including fourth fixed block, support column, fourth dead lever and seventh spring unloading frame one side, and fourth fixed block both sides all are equipped with the fourth dead lever, and the rotary type is equipped with the support column between the fourth dead lever, is connected with the seventh spring between the support column outside and the fourth dead lever.
In addition, it is especially preferred that the dust removal device further comprises a dust removal mechanism, wherein the dust removal mechanism comprises a water spray pipe, a water pipe connector, a switch and an eighth spring, the water spray pipe is arranged on the outer side of the top of the fixing frame, the water pipe connector is arranged on one side of the water spray pipe, the switch is rotatably arranged on the water pipe connector, and the eighth spring is connected between the switch and the water spray pipe.
Further, it is particularly preferable that the crushing shaft is provided with a plurality of iron obtuse angles.
Has the advantages that: through the arrangement of the crushing shaft and the pressing mechanism, the motor operates to drive the crushing shaft to rotate to crush the lines, so that the basic functions of the equipment are realized; by arranging the blanking mechanism and the supporting mechanism, the wire is automatically fed, so that the operation amount is reduced; through setting up stop gear and fixed establishment, carry out intermittent type nature to the bottom plate and open automatically, the cooperation unloading is fixed spacingly to the bottom plate simultaneously, prevents that the too much bottom plate direct rotation that leads to of garrulous material from opening.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a partial perspective view of the present invention.
Fig. 3 is a schematic perspective view of the pressing mechanism of the present invention.
Fig. 4 is a schematic perspective view of the limiting mechanism of the present invention.
Fig. 5 is a schematic perspective view of the blanking mechanism of the present invention.
Fig. 6 is a schematic perspective view of the fixing mechanism of the present invention.
Fig. 7 is a schematic perspective view of the supporting mechanism of the present invention.
Fig. 8 is a schematic perspective view of the dust removing mechanism of the present invention.
Wherein the figures include the following reference numerals: 1. an arc-shaped supporting plate, 2, a fixed frame, 3, a crushing shaft, 4, a motor, 5, a pressing mechanism, 51, an air cylinder, 52, an expansion rod, 53, a pressure rod, 54, a gland, 6, a limiting mechanism, 61, a first fixed block, 62, a first fixed rod, 63, a rack, 64, a first spring, 65, a second fixed block, 66, a rotating shaft, 67, a full gear, 68, a stretching rod, 69, a second spring, 7, a blanking mechanism, 71, a first push rod, 72, a bearing block, 73, a third fixed block, 74, a third spring, 75, a guide block, 76, a rack rod, 77, a fourth spring, 78, an inclined block, 79, a first guide rod, 710, a blanking frame, 711, a first connecting rod, 8, a fixing mechanism, 81, a lifting rod, 82, an inclined rod, 83, a second fixed rod, 84, a third fixed rod, 85, a fifth spring, 86, a second connecting rod, 87 and a second guide rod, 88. the dust removing device comprises a sixth spring, 89, a second push rod, 9, a supporting mechanism, 91, a fourth fixing block, 92, a supporting column, 93, a fourth fixing rod, 94, a seventh spring, 10, a dust removing mechanism, 1001, a water spray pipe, 1002, a water pipe connector, 1003, a switch, 1004 and an eighth spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
The utility model provides an EPS lines recovery processing equipment for engineering construction, as shown in fig. 1 to fig. 4, including arc backup pad 1, fixed frame 2, broken axle 3, motor 4, pressing means 5 and stop gear 6, arc backup pad 1 is equipped with 4, be connected with fixed frame 2 between 1 top of arc backup pad, the symmetry rotary type is equipped with broken axle 3 between the 2 inner walls of fixed frame, the left side is equipped with motor 4 behind fixed frame 2, motor 4's output shaft and right side broken axle 3 are connected, 2 left sides of fixed frame are equipped with pressing means 5, be connected with stop gear 6 between pressing means 5 and the fixed frame 2.
The pressing mechanism 5 comprises an air cylinder 51, an expansion link 52, a pressure lever 53 and a gland 54, the air cylinder 51 is arranged on the left side of the fixed frame 2, the expansion link 52 is arranged at the expansion end of the air cylinder 51, the pressure lever 53 is arranged on the right side of the upper part of the expansion link 52, and the gland 54 is arranged at the bottom of the pressure lever 53.
The limiting mechanism 6 comprises a first fixed block 61, a first fixed rod 62, a rack 63, a first spring 64, a second fixed block 65, a rotating shaft 66, a full gear 67, a stretching bar 68 and a second spring 69, both sides all are equipped with first fixed block 61 around gland 54 top, fixed frame 2 rear portion is connected with first dead lever 62, the symmetry slidingtype is equipped with rack 63 on first dead lever 62, be connected with first spring 64 between the rack 63, first spring 64 cover is established on first dead lever 62, the equal symmetry in bottom of both sides is equipped with second fixed block 65 around fixed frame 2, the rotary type is equipped with pivot 66 between the second fixed block 65 of vertical symmetry, be equipped with the bottom plate on the pivot 66, pivot 66 rear side is equipped with full gear 67, full gear 67 and rack 63 mesh, the equal rotary type in rack 63 inboard is equipped with tensile strip 68, the other end rotary type of tensile strip 68 is connected with accepts the board, it is connected with second spring 69 to accept between board top and the first fixed block 61 of rear side.
The staff can place the lines in the fixed frame 2, start the motor 4 and the cylinder 51, the output shaft of the motor 4 rotates to drive the crushing shaft 3 to rotate and stir the lines, the cylinder 51 operates to drive the pressing rod 53 and the pressing cover 54 to move downwards through the expansion link 52, the fixed frame 2 is blocked by the base plate in the initial state, the second spring 69 is stretched, the racks 63 are all positioned at the inner side, the first spring 64 is compressed, the pressing cover 54 moves downwards, the second spring 69 is no longer stressed to automatically reset, meanwhile, the first spring 64 is no longer stressed to automatically reset to drive the racks 63 to move outwards to drive the full gear 67 to rotate, the full gear 67 rotates to drive the base plate to rotate through the rotating shaft 66 and no longer block the fixed frame 2, the lines after being stirred automatically fall down, when the expansion link 52 drives the pressing rod 53 and the pressing cover 54 to move upwards, the second spring 69 is stretched to drive, the first spring 64 is compressed, the rack 63 moves inwards to drive the rear parts of the rack to operate reversely, the bottom plate rotates and resets to block the fixed frame 2 again, and after all the pieces are crushed, the motor 4 and the air cylinder 51 are stopped.
Example 2
On the basis of embodiment 1, as shown in fig. 5, the blanking device 7 further includes a blanking mechanism 7, the blanking mechanism 7 includes a first push rod 71, a receiving block 72, a third fixed block 73, a third spring 74, a guide block 75, a rack bar 76, a fourth spring 77, an inclined block 78, a first guide bar 79, a blanking frame 710 and a first connecting bar 711, the first push rod 71 is symmetrically disposed on the left side of the top of the pressing cover 54, the receiving blocks 72 are disposed on the front and rear sides of the upper portion of the fixed frame 2, the third fixed block 73 is disposed on the top of the receiving block 72, the third fixed block 73 is slidably connected with the first fixed block 61, the third spring 74 is connected between the bottom of the first fixed block 61 and the third fixed block 73, the guide block 75 is disposed on the top of the third fixed block 73, the rack bar 76 is slidably disposed on the guide block 75, the left side of the rack bar 76 is rotatably disposed with the inclined block 78 through a torsion spring, the fourth spring, the front side and the rear side of the right part of the fixed frame 2 are respectively provided with a first guide rod 79, the first guide rods 79 are connected with the toothed bar 76 in a sliding way, the right side of the fixed frame 2 is symmetrically and rotatably provided with a first connecting rod 711, a blanking frame 710 is connected between the right sides of the first connecting rods 711, and the outer side of the first connecting rods 711 is meshed with the toothed bar 76 through a pinion.
A worker can place a certain number of lines in the blanking frame 710, the pressing cover 54 moves downwards to drive the first push rod 71 to move downwards to be in contact with the inclined block 78, the inclined block 78 rotates to drive the torsion spring to deform, when the first push rod 71 moves to be not in contact with the inclined block 78, the torsion spring resets to drive the inclined block 78 to rotate and reset, the pressing cover 54 drives the first push rod 71 to move upwards to be in contact with the inclined block 78 again when moving upwards, the inclined block 78 moves rightwards to drive the toothed bar 76 to move rightwards to be in contact with the pinion, the fourth spring 77 is stretched, the pinion rotates to drive the blanking frame 710 to rotate through the first connecting rod 711 to pour the lines into the fixed frame 2, the feeding is completed, the pressing cover 54 continues to move upwards to be not in contact with the inclined block 78, and the fourth spring 77 resets to drive the pinion to rotate through the toothed bar 76, so.
Example 3
On the basis of embodiment 2, as shown in fig. 6, the device further comprises a fixing mechanism 8, the fixing mechanism 8 comprises a lifting rod 81, an inclined rod 82, a second fixing rod 83 and a third fixing rod 84, the telescopic frame comprises a fifth spring 85, a second connecting rod 86, a second guide rod 87, a sixth spring 88 and a second push rod 89, wherein the lifting rod 81 is arranged on the left side of the upper part of the telescopic rod 52, the oblique rod 82 is arranged on the left side of the lower part of the lifting rod 81, the second connecting rod 86 is arranged on the left side of the front part of the fixed frame 2, the second guide rod 87 is arranged on the lower part of the second connecting rod 86, a third fixing rod 84 is slidably arranged on the second guide rod 87, the sixth spring 88 is connected between the front side of the third fixing rod 84 and the second guide rod 87, the second push rod 89 is arranged on the left side of the top part of the third fixing rod 84, a second fixing rod 83 is arranged on the front side of the fixed frame 2, the second fixing rod 83 is slidably connected with the.
The gland 54 moves downwards to drive the inclined rod 82 to move downwards through the lifting rod 81 to be in contact with the second push rod 89, the second push rod 89 moves forwards to drive the third fixing rod 84 to move forwards on the second fixing rod 83, the fifth spring 85 and the sixth spring 88 are both compressed, the third fixing rod 84 moves forwards to no longer support the bottom plate, when the gland 54 moves upwards to drive the inclined rod 82 to move upwards through the lifting rod 81, the second push rod 89 is no longer stressed, the fifth spring 85 and the sixth spring 88 reset to drive the second push rod 89 and the third fixing rod 84 to move backwards, the third fixing rod 84 moves backwards to block the bottom plate again, and the situation that the crushed materials are directly rotated and opened due to excessive crushing is prevented.
Example 4
On the basis of embodiment 3, as shown in fig. 7 and 8, the blanking device further includes a supporting mechanism 9, the supporting mechanism 9 includes a fourth fixing block 91, a supporting column 92, a fourth fixing rod 93 and a seventh spring 94, the fourth fixing block 91 is disposed on the right side of the blanking frame 710, the fourth fixing rod 93 is disposed on both the front and rear sides of the fourth fixing block 91, the supporting column 92 is rotatably disposed between the fourth fixing rods 93, and the seventh spring 94 is connected between the outer side of the supporting column 92 and the fourth fixing rod 93.
Still including dust removal mechanism 10, dust removal mechanism 10 is equipped with spray pipe 1001 including spray pipe 1001, water pipe head 1002, switch 1003 and eighth spring 1004 outside fixed frame 2 top, and the left rear side of spray pipe 1001 is equipped with water pipe head 1002, and the last rotation type of water pipe head 1002 is equipped with switch 1003, is connected with eighth spring 1004 between switch 1003 and the spray pipe 1001.
When a worker adds a certain number of lines into the blanking frame 710, the arrangement of the supporting column 92 can prevent the blanking frame 710 from inclining, when the blanking frame 710 rotates to drive the upper part thereof to rotate, the supporting column 92 contacts with the gland 54, the supporting column 92 rotates to drive the seventh spring 94 to deform, the parts are prevented from being contacted and collided, the blanking frame 710 rotates and resets to drive the supporting column 92 to be not stressed any more, and the seventh spring 94 resets to drive the supporting column 92 to rotate and reset; the staff can insert water pipe connector 1002 with external water pipe, controls spray pipe 1001 through rotating switch 1003, and the clear water alright spout through spray pipe 1001, the recovery of cooperation lines.
It should be understood that this example is only for illustrating the present invention and is not intended to limit the scope of the present invention. Further, it should be understood that various changes or modifications of the present invention may be made by those skilled in the art after reading the teaching of the present invention, and such equivalents may fall within the scope of the present invention as defined in the appended claims.

Claims (8)

1. The utility model provides an engineering construction is with EPS lines recovery processing equipment, characterized by, including: arc backup pad (1), fixed frame (2), broken axle (3), motor (4), pressing mechanism (5) and stop gear (6), arc backup pad (1) is equipped with 4, be connected with fixed frame (2) between arc backup pad (1) top, symmetry rotary type is equipped with broken axle (3) between fixed frame (2) inner wall, fixed frame (2) one side is equipped with motor (4), the output shaft and the broken axle (3) in one side of motor (4) are connected, fixed frame (2) one side is equipped with pressing mechanism (5), be connected with stop gear (6) between pressing mechanism (5) and fixed frame (2).
2. The EPS line recycling apparatus for construction work according to claim 1, wherein the pressing mechanism (5) comprises: the telescopic frame comprises an air cylinder (51), a telescopic rod (52), a pressing rod (53) and a gland (54), wherein the air cylinder (51) is arranged on one side of the fixed frame (2), the telescopic rod (52) is arranged at the telescopic end of the air cylinder (51), the pressing rod (53) is arranged on the upper portion of the telescopic rod (52), and the gland (54) is arranged at the bottom of the pressing rod (53).
3. The EPS line recycling apparatus for construction according to claim 2, wherein the position limiting mechanism (6) comprises: the device comprises a first fixed block (61), a first fixed rod (62), a rack (63), a first spring (64), a second fixed block (65), a rotating shaft (66), a full gear (67), a stretching strip (68) and a second spring (69), wherein the first fixed block (61) is arranged on each of two sides of the top of a gland (54), the fixed frame (2) is connected with the first fixed rod (62), the racks (63) are symmetrically and slidably arranged on the first fixed rod (62), the first spring (64) is connected between the racks (63), the first spring (64) is sleeved on the first fixed rod (62), the second fixed blocks (65) are symmetrically arranged at the bottoms of two sides of the fixed frame (2), the rotating shaft (66) is rotatably arranged between the vertically symmetrical second fixed blocks (65), a bottom plate is arranged on the rotating shaft (66), the full gear (67) is arranged on the rotating shaft (66), and the full gear (67) is meshed with, the inner side of the rack (63) is rotatably provided with a stretching strip (68), the other end of the stretching strip (68) is rotatably connected with a bearing plate, and a second spring (69) is connected between the top of the bearing plate and the first fixing block (61) on one side.
4. The EPS lines recovery processing device for engineering construction according to claim 3, further comprising a blanking mechanism (7), wherein the blanking mechanism (7) comprises: the device comprises a first push rod (71), a bearing block (72), a third fixed block (73), a third spring (74), a guide block (75), a toothed bar (76), a fourth spring (77), an inclined block (78), a first guide bar (79), a blanking frame (710) and a first connecting rod (711), wherein the first push rod (71) is symmetrically arranged on one side of the top of a gland (54), the bearing blocks (72) are arranged on two sides of the upper part of a fixed frame (2), the third fixed block (73) is arranged on the top of the bearing block (72), the third fixed block (73) is connected with the first fixed block (61) in a sliding manner, the third spring (74) is connected between the bottom of the first fixed block (61) and the third fixed block (73), the guide block (75) is arranged on the top of the third fixed block (73), the toothed bar (76) is arranged on the guide block (75) in a sliding manner, the inclined block (78) is rotatably arranged on, be connected with fourth spring (77) between sloping block (78) and ratch (76), fixed frame (2) both sides all are equipped with first guide bar (79), first guide bar (79) and ratch (76) sliding connection, and fixed frame (2) one side symmetry rotary type is equipped with head rod (711), is connected with unloading frame (710) between head rod (711), and the pinion is passed through in head rod (711) outside and is engaged with ratch (76).
5. The EPS lines recovery processing device for engineering construction according to claim 4, further comprising a fixing mechanism (8), wherein the fixing mechanism (8) comprises: a lifting rod (81), an inclined rod (82), a second fixing rod (83), a third fixing rod (84), a fifth spring (85), a second connecting rod (86), a second guide rod (87), a sixth spring (88) and a second push rod (89), the upper portion of the telescopic rod (52) is provided with a lifting rod (81), the lower portion of the lifting rod (81) is provided with an inclined rod (82), one side of the fixed frame (2) is provided with a second connecting rod (86), the lower portion of the second connecting rod (86) is provided with a second guide rod (87), the second guide rod (87) is slidably provided with a third fixing rod (84), a sixth spring (88) is connected between the third fixing rod (84) and the second guide rod (87), one side of the top of the third fixing rod (84) is provided with a second push rod (89), one side of the fixed frame (2) is provided with a second fixing rod (83), and the second fixing rod (83) is slidably connected with the third fixing rod (84) and is connected with a fifth spring (85) between the second fixing rod (83.
6. The EPS lines recovery processing device for engineering construction according to claim 5, further comprising a support mechanism (9), wherein the support mechanism (9) comprises: fourth fixed block (91), support column (92), fourth dead lever (93) and seventh spring (94), unloading frame (710) one side is equipped with fourth fixed block (91), fourth fixed block (91) both sides all are equipped with fourth dead lever (93), the rotary type is equipped with support column (92) between fourth dead lever (93), is connected with seventh spring (94) between support column (92) outside and fourth dead lever (93).
7. The EPS line recovery processing device for engineering construction according to claim 6, further comprising a dust removing mechanism (10), wherein the dust removing mechanism (10) comprises: the water spray pipe fixing frame comprises a water spray pipe (1001), a water pipe connector (1002), a switch (1003) and an eighth spring (1004), wherein the water spray pipe (1001) is arranged on the outer side of the top of the fixing frame (2), the water pipe connector (1002) is arranged on one side of the water spray pipe (1001), the switch (1003) is arranged on the water pipe connector (1002) in a rotating mode, and the eighth spring (1004) is connected between the switch (1003) and the water spray pipe (1001).
8. The EPS lines recovery processing device for engineering construction as claimed in claim 1, wherein the crushing shaft (3) is provided with a plurality of iron obtuse angles.
CN202110302332.5A 2021-03-22 2021-03-22 EPS lines recovery processing equipment for engineering construction Active CN113103466B (en)

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Application Number Priority Date Filing Date Title
CN202110302332.5A CN113103466B (en) 2021-03-22 2021-03-22 EPS lines recovery processing equipment for engineering construction

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Application Number Priority Date Filing Date Title
CN202110302332.5A CN113103466B (en) 2021-03-22 2021-03-22 EPS lines recovery processing equipment for engineering construction

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CN113103466B CN113103466B (en) 2022-09-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113828403A (en) * 2021-09-09 2021-12-24 乐安县金坪木竹制品厂 Be used for environmental protection bamboo chopping block recovery plant

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