CN113651082A - Wood-plastic board processing is with connecing material conveyer - Google Patents

Wood-plastic board processing is with connecing material conveyer Download PDF

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Publication number
CN113651082A
CN113651082A CN202110832217.9A CN202110832217A CN113651082A CN 113651082 A CN113651082 A CN 113651082A CN 202110832217 A CN202110832217 A CN 202110832217A CN 113651082 A CN113651082 A CN 113651082A
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CN
China
Prior art keywords
plate
wood
plastic
supporting plate
material receiving
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CN202110832217.9A
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Chinese (zh)
Inventor
杨扬
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Anhui Zhongkeda New Material Technology Co ltd
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Anhui Zhongkeda New Material Technology Co ltd
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Application filed by Anhui Zhongkeda New Material Technology Co ltd filed Critical Anhui Zhongkeda New Material Technology Co ltd
Priority to CN202110832217.9A priority Critical patent/CN113651082A/en
Publication of CN113651082A publication Critical patent/CN113651082A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/74Feeding, transfer, or discharging devices of particular kinds or types
    • B65G47/82Rotary or reciprocating members for direct action on articles or materials, e.g. pushers, rakes, shovels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G57/00Stacking of articles
    • B65G57/02Stacking of articles by adding to the top of the stack
    • B65G57/03Stacking of articles by adding to the top of the stack from above

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Veneer Processing And Manufacture Of Plywood (AREA)

Abstract

Wood-plastic panel processing is with connecing material conveyer, including the compound ground shedding mechanism of tilting, shedding mechanism and the extruder straight line butt joint that is used for processing wood-plastic panel, shedding mechanism's discharge side is provided with can vertical stretch-drop ground receiving mechanism, shedding mechanism is used for with wood-plastic panel slope landing extremely in the receiving mechanism, be provided with pushing equipment on the receiving mechanism, pushing equipment with receiving mechanism is synchronous vertical lift, receiving mechanism's discharge end is provided with rectilinear transport mechanism, pushing equipment be used for with pile up in a plurality of wood-plastic panels propelling movement in the receiving mechanism extremely on the transport mechanism, transport mechanism extends to workshop section one side that is used for packing wood-plastic panel. The invention does not need to adopt artificial contact wood-plastic plates, reduces the labor intensity, adopts mechanical material receiving and conveying operation, improves the working efficiency and is greatly beneficial to industrial production.

Description

Wood-plastic board processing is with connecing material conveyer
Technical Field
The invention belongs to the technical field of wood-plastic board processing, and particularly relates to a receiving and conveying device for processing wood-plastic boards.
Background
The wood-plastic board is a high-tech green environment-friendly novel decorative material which is mainly prepared by uniformly mixing wood (wood cellulose and plant cellulose) as a base material, a thermoplastic high polymer material (plastic), a processing aid and the like, and then heating and extruding the mixture by using a die device, has the performance and characteristics of both wood and plastic, and is a novel composite material capable of replacing the wood and the plastic.
In the prior art, the wood-plastic board is processed and molded by an extruder, cut into sections according to the specified length, manually taken down, stacked on a transfer trolley and transferred to a working section for packaging the wood-plastic board; the mode of adopting the manual work to connect the material conveying not only has high labor intensity, and work efficiency is also low, is unfavorable for the industrial production.
Disclosure of Invention
Aiming at the defects in the prior art, the invention provides a receiving and conveying device for processing wood-plastic plates, and the specific technical scheme is as follows:
wood-plastic panel processing is with connecing material conveyer, including the compound ground shedding mechanism of tilting, shedding mechanism and the extruder straight line butt joint that is used for processing wood-plastic panel, shedding mechanism's discharge side is provided with can vertical stretch-drop ground receiving mechanism, shedding mechanism is used for with wood-plastic panel slope landing extremely in the receiving mechanism, be provided with pushing equipment on the receiving mechanism, pushing equipment with receiving mechanism is synchronous vertical lift, receiving mechanism's discharge end is provided with rectilinear transport mechanism, pushing equipment be used for with pile up in a plurality of wood-plastic panels propelling movement in the receiving mechanism extremely on the transport mechanism, transport mechanism extends to workshop section one side that is used for packing wood-plastic panel.
Further, discharge mechanism includes the base, top surface one side of base is provided with first backup pad perpendicularly, the lower part of first backup pad with the slope is provided with the second backup pad between the base, the top level of second backup pad is provided with puts the flitch, put flitch one end side through coupling assembling with first backup pad is articulated to be set up, the second backup pad with it is provided with first cylinder to put between the flitch, the bottom of first cylinder through first otic placode with the articulated setting of second backup pad, the flexible end of first cylinder through the second otic placode with put the articulated setting of flitch, the top surface one end of putting the flitch along with extruder horizontal butt joint, the other end along parallel arrangement has the blend stop.
Further, coupling assembling includes vertical pole, horizontal pole and connecting bush, two vertical pole respectively perpendicular interval set up in the outer facade both sides of first backup pad, two the horizontal fixedly connected with of tip of vertical pole the horizontal pole, the both ends of horizontal pole all extend to the correspondence the vertical pole outside, every the vertical pole both sides axial clearance cover is equipped with on the horizontal pole connecting bush, connecting bush with put the relative terminal side fixed connection of flitch.
Further, the material receiving mechanism comprises a third supporting plate which is vertically arranged, the third supporting plate is positioned below the discharging side of the material placing plate, a fourth supporting plate is vertically arranged on one side of the third supporting plate relatively, the bottoms of the fourth supporting plate and the third supporting plate are fixedly connected through a first connecting plate, a plurality of springs are vertically arranged at intervals along the long side direction in the middle of the top surface of the first connecting plate, the top surfaces of the springs are horizontally provided with the same material receiving plate, the side surfaces of the two ends of the material receiving plate are respectively connected with the corresponding third supporting plate and the fourth supporting plate in a vertical sliding way, the material receiving plate and the wood-plastic plate are matched in size, the lower parts of two end faces of the third supporting plate and the fourth supporting plate are respectively and horizontally symmetrically provided with a stop block, and the stop blocks are used for stopping the material receiving plate from moving downwards; the side, opposite to the discharge end, of the top surface of the material receiving plate is provided with the material pushing mechanism; the conveying mechanism is arranged below the discharge end of the material receiving plate, and the conveying mechanism and the material receiving plate are vertically arranged in space.
Further, the height of the third support plate is lower than the height of the fourth support plate; the top of the third supporting plate is provided with an inclined surface, and the inclined surface faces one side of the material receiving plate; and the top of the fourth supporting plate is connected with a baffle which is obliquely arranged towards one side of the material receiving plate.
Furthermore, four corners of the material receiving plate are symmetrically provided with convex plates respectively, and the two convex plates in the same long edge direction of the material receiving plate are in vertical sliding clamping connection with the corresponding third supporting plate and the corresponding fourth supporting plate respectively.
Further, pushing equipment includes the second cylinder, the second cylinder fixed set up in connect on the top surface of flitch one side middle part relative rather than the discharge end, the power end axial of second cylinder is docked there is the telescopic link, the free end of telescopic link is connected with the push pedal perpendicularly, the width of push pedal suits with the width of wood-plastic panel, the height of push pedal with connect the height after a plurality of wood-plastic panel piles that the flitch can accept to suit.
Furthermore, the conveying mechanism comprises two fifth supporting plates which are vertically arranged oppositely, the lower parts of the two fifth supporting plates are connected through a second connecting plate, the upper parts of the two fifth supporting plates are connected through two parallel screw rods, one end of each screw rod is connected with a motor, the two motors are fixedly supported through supporting frames which are arranged on the corresponding fifth supporting plates, the two screw rods are in threaded connection with the same material supporting plate, and the material supporting plate is driven by the rotation of the two screw rods to perform linear motion;
when the receiving plate is used for receiving a plurality of superposed wood-plastic plates and the compression spring descends to the stop block position, the top surface of the receiving plate is flush with the top surface of the retainer plate, and the retainer plate 44 and the wood-plastic plates 5 are matched in size.
The invention has the beneficial effects that:
according to the invention, the wood-plastic plates flatly placed on the receiving mechanism are obliquely slid into the receiving mechanism through the discharging mechanism, the receiving mechanism capable of vertically lifting can stack a plurality of wood-plastic plates, the wood-plastic plates are pushed to the conveying mechanism through the material pushing mechanism synchronously vertically lifting with the receiving mechanism, and the conveying mechanism can linearly convey the wood-plastic plates to the packaging working section; the invention does not need to adopt artificial contact wood-plastic plates, reduces the labor intensity, adopts mechanical material receiving and conveying operation, improves the working efficiency and is greatly beneficial to industrial production.
Drawings
Fig. 1 shows a schematic structural diagram of a receiving and conveying device of the invention;
FIG. 2 is a schematic view showing the construction of the discharging mechanism in the present invention;
FIG. 3 shows a schematic view of the construction of the connection assembly of the present invention;
fig. 4 shows a schematic structural diagram of the receiving mechanism in the invention;
FIG. 5 is a schematic structural diagram illustrating the arrangement of the pushing mechanism on the receiving plate in the present invention;
FIG. 6 is a side view showing the structure of the transfer mechanism of the present invention;
FIG. 7 is a top view of the structure of the transfer mechanism of the present invention;
FIG. 8 shows a schematic perspective view of the wood-plastic plate material of the present invention;
fig. 9 shows an operational representation of the receiving conveyor of the present invention.
Shown in the figure: 1. a discharge mechanism; 11. a base; 12. a first support plate; 13. a second support plate; 14. placing a material plate; 141. blocking strips; 15. a connecting assembly; 151. a longitudinal bar; 152. a cross bar; 153. connecting the shaft sleeve; 16. a first cylinder; 161. a first ear plate; 162. a second ear panel; 2. a material receiving mechanism; 21. a third support plate; 211. an inclined surface; 22. a fourth support plate; 221. a baffle plate; 23. a first connecting plate; 24. a material receiving plate; 241. a convex plate; 25. a spring; 26. a stopper; 3. a material pushing mechanism; 31. a second cylinder; 32. a telescopic rod; 33. pushing the plate; 4. a transport mechanism; 41. a fifth support plate; 42. a second connecting plate; 43. a screw rod; 44. a material supporting plate; 45. a motor; 46. a support frame; 5. a wood-plastic plate.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
As shown in fig. 1, the receiving and conveying device for wood-plastic board processing comprises a tiltable double-flat discharging mechanism 1, wherein the discharging mechanism 1 is in linear butt joint with an extruder used for processing wood-plastic boards 5, a discharging side of the discharging mechanism 1 is provided with a receiving mechanism 2 capable of vertically extending and descending, the discharging mechanism 1 is used for obliquely sliding the wood-plastic boards 5 into the receiving mechanism 2, a pushing mechanism 3 is arranged on the receiving mechanism 2, the pushing mechanism 3 and the receiving mechanism 2 synchronously vertically lift, a discharging end of the receiving mechanism 2 is provided with a linear conveying mechanism 4, the pushing mechanism 3 is used for pushing a plurality of wood-plastic boards 5 stacked in the receiving mechanism 2 to the conveying mechanism 4, and the conveying mechanism 4 extends to one side of a working section used for packaging the wood-plastic boards 5.
By adopting the technical scheme, the material receiving and conveying device obliquely slides the wood-plastic plates 5 flatly placed on the material receiving and conveying device into the material receiving mechanism 2 through the discharging mechanism 1, the material receiving mechanism 2 which is arranged and can vertically lift can stack a plurality of wood-plastic plates, the wood-plastic plates 5 are pushed to the conveying mechanism 4 through the material pushing mechanism 3 which vertically lifts synchronously with the material receiving mechanism 2, and the conveying mechanism 4 can linearly convey the wood-plastic plates 5 to the packaging working section; this connect material conveyer need not to adopt artifical contact wood-plastic panel 5, and intensity of labour can reduce, adopts mechanical ground to connect material and conveying operation, and work efficiency can improve, is favorable to the industrial production greatly.
As shown in fig. 2, the discharging mechanism 1 includes a base 11, a first supporting plate 12 is vertically disposed on one side of a top surface of the base 11, a second supporting plate 13 is obliquely disposed between a lower portion of the first supporting plate 12 and the base 11, a material placing plate 14 is horizontally disposed above the second supporting plate 13, a side surface of one end of the material placing plate 14 is hinged to the first supporting plate 12 through a connecting assembly 15, a first cylinder 16 is disposed between the second supporting plate 13 and the material placing plate 14, a bottom end of the first cylinder 16 is hinged to the second supporting plate 13 through a first ear plate 161, a telescopic end of the first cylinder 16 is hinged to the material placing plate 14 through a second ear plate 162, one end of the top surface of the material placing plate 14 is horizontally butted to the extruder, and a barrier strip 141 is disposed on the other end in parallel.
By adopting the technical scheme, firstly, the material placing plate 14 is kept in a horizontal state under the support of the first air cylinder 16 so as to receive the wood-plastic plate 5 conveyed from the extruder in a cutting mode until the wood-plastic plate 5 abuts against the barrier strip 141, then, the first air cylinder 16 is started, the first air cylinder 16 contracts to drive the material placing plate 14 to descend and incline, the wood-plastic plate 5 slides into the material receiving mechanism 2, and then, the first air cylinder 16 extends to drive the material placing plate 14 to reset to the horizontal state so as to continuously receive the next wood-plastic plate 5; the whole process is simple, convenient and stable in material receiving and discharging, and the wood-plastic plate does not need to be manually contacted.
As shown in fig. 3, the connecting assembly 15 includes two vertical rods 151, two horizontal rods 152 and a connecting shaft sleeve 153, the two vertical rods 151 are respectively vertically disposed at intervals on two sides of the outer vertical surface of the first supporting plate 12, two end portions of the vertical rods 151 are horizontally and fixedly connected to the horizontal rods 152, two end portions of the horizontal rods 152 extend to the outer sides of the corresponding vertical rods 151, the connecting shaft sleeve 153 is axially and intermittently sleeved on the horizontal rods 152 on two sides of each vertical rod 151, and the connecting shaft sleeve 153 is fixedly connected to the opposite end side surfaces of the material placing plate 14.
By adopting the above technical scheme, the material placing plate 14 and the first supporting plate 12 form a pivot connection through the vertical rod 151, the cross rod 152 and the connecting shaft sleeve 153, the connection is firm, and the material placing plate 14 is convenient to descend and incline.
As shown in fig. 4, the receiving mechanism 2 includes a third supporting plate 21 vertically disposed, the third supporting plate 21 is located below the discharging side of the material placing plate 14, a fourth supporting plate 22 is vertically disposed on one side of the third supporting plate 21, bottoms of the fourth supporting plate 22 and the third supporting plate 21 are fixedly connected through a first connecting plate 23, a plurality of springs 25 are vertically disposed at intervals along a long side direction of the first connecting plate 23 in the middle of a top surface of the first connecting plate 23, a same material receiving plate 24 is horizontally disposed on top surfaces of the plurality of springs 25, side surfaces of two ends of the material receiving plate 24 are respectively vertically slidably connected with the corresponding third supporting plate 21 and fourth supporting plate 22, the material receiving plate 24 is adapted to the wood-plastic plate 5 in size, and stoppers 26 are respectively horizontally and symmetrically disposed on lower portions of two end surfaces of the third supporting plate 21 and the fourth supporting plate 22, the stop block 26 is used for stopping the receiving plate 24 from moving downwards; the side, opposite to the discharge end, of the top surface of the material receiving plate 24 is provided with the material pushing mechanism 3; the conveying mechanism 4 is arranged below the discharge end of the material receiving plate 24, and the conveying mechanism 4 and the material receiving plate 24 are vertically arranged in space.
By adopting the technical scheme, the wood-plastic plates 5 slide onto the material receiving plate 24 of the material receiving mechanism 2 from the material placing plate 14, meanwhile, the spring 25 is pressed to descend until the material receiving plate 2 descends to the stop block 26 due to receiving of a plurality of wood-plastic plates 5, and the sizes of the material receiving plate 24 and the wood-plastic plates 5 are matched, so that the wood-plastic plates 5 can be vertically stacked on the material receiving plate 2 in a relatively regular manner, and the pushing of the material pushing mechanism 3 at the later stage is facilitated.
As shown in fig. 4, the height of the third support plate 21 is lower than the height of the fourth support plate 22; the top of the third support plate 21 is provided with an inclined surface 211, and the inclined surface 211 faces one side of the material receiving plate 24; the top of the fourth supporting plate 22 is connected with a baffle 221 which is obliquely arranged towards one side of the material receiving plate 24.
By adopting the technical scheme, the height of the third supporting plate 21 is lower than that of the fourth supporting plate 22, so that the wood-plastic board 5 can conveniently slide onto the receiving plate 24; the top of the third supporting plate 21 is provided with the inclined surface 211, so that the contact probability of the wood-plastic plate 5 and the third supporting plate 21 can be reduced; the top of the fourth supporting plate 22 is connected with a baffle 221 which is obliquely arranged towards one side of the material receiving plate 24, so that the balance of material receiving can be further improved.
As shown in fig. 5, the four corners of the material receiving plate 24 are symmetrically provided with a convex plate 241, and two convex plates 241 in the same long-side direction of the material receiving plate 24 are vertically slidably clamped with the corresponding third support plate 21 and fourth support plate 22.
By adopting the technical scheme, the four corners of the material receiving plate 24 are respectively and symmetrically provided with the convex plates 241, so that the stability of the material receiving plate 24 during lifting can be effectively ensured, and the springs 25 can uniformly receive the impact force of the wood-plastic plate 5.
As shown in fig. 5, the material pushing mechanism 3 includes a second cylinder 31, the second cylinder 31 is fixedly disposed in the middle of the top surface of the material receiving plate 24, which is opposite to the discharge end thereof, a power end of the second cylinder 31 is axially butted with an expansion link 32, a free end of the expansion link 32 is vertically connected with a push plate 33, the width of the push plate 33 is adapted to the width of the wood-plastic plate 5, and the height of the push plate 33 is adapted to the height of the stacked wood-plastic plates 5 which can be received by the material receiving plate 24.
Adopt above-mentioned technical scheme, by the flexible push pedal 33 that drives of second cylinder 31 with the whole propelling movement of a plurality of wood-plastic panel 5 after will piling up to the discharge end below of connecing flitch 24 be provided with transport mechanism 4 on, because centre gripping guide about third backup pad 21 and fourth backup pad 2, whole propelling movement process is neat, steady.
As shown in fig. 6 to 9, the conveying mechanism 4 includes two fifth support plates 41 vertically arranged opposite to each other, the lower portions of the two fifth support plates 41 are connected by a second connecting plate 42, the upper portions of the two fifth support plates 41 are connected by two parallel lead screws 43, one end of each lead screw 43 is connected with a motor 45, the two motors 45 are fixedly supported by support frames 46 installed on the corresponding fifth support plates 41, the two lead screws 43 are screwed with a same retainer plate 44, and the retainer plate 44 is driven by the rotation of the two lead screws 43 to perform linear motion;
when the receiving plate 24 receives a plurality of superposed wood-plastic plates and the compression spring 25 descends to the position of the stop 26, the top surface of the receiving plate 24 is flush with the top surface of the retainer plate 44, and the dimensions of the retainer plate 44 and the wood-plastic plates 5 are matched.
By adopting the technical scheme, the transmission mechanism 4 adopts a screw rod transmission form, and is stable and quick; the material supporting plate 44 is convenient for receiving the pushed wood-plastic plates 5, and conveying is stable.
In the implementation of the invention, firstly, the material placing plate 14 is kept in a horizontal state under the support of the first cylinder 16, so as to receive the wood-plastic plate 5 which is conveyed from the extruder in a cutting way, until the wood-plastic plate 5 abuts against the barrier strip 141, then, the first cylinder 16 is started, the first cylinder 16 is contracted to drive the material placing plate 14 to descend and incline, the wood-plastic plate 5 slides down to the material receiving plate 24 of the material receiving mechanism 2, then, the first cylinder 16 is extended to drive the material placing plate 14 to reset to the horizontal state, the next wood-plastic plate 5 is continuously received, until the material receiving plate 24 descends to the position of the stop 26 due to the fact that the material receiving plate receives a plurality of superposed wood-plastic plates, at the moment, the second cylinder 31 is started to drive the telescopic rod 32 to extend to push the push plate 33, the push plate 33 smoothly pushes the plurality of wood-plastic plates 5 to the material supporting plate 44 of the conveying mechanism 4, then, the two motors 45 are synchronously started, the material supporting plate 44 is driven by the rotation of the two screw rods 43, and the wood-plastic plate 5 is linearly moved to one side of the working section for packaging the wood-plastic plate.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (8)

1. Wood-plastic board processing is with connecing material conveyer, its characterized in that: comprises a tiltable compound floor discharging mechanism (1), the discharging mechanism (1) is in straight line butt joint with an extruder for processing the wood-plastic plate (5), a material receiving mechanism (2) capable of vertically extending and descending is arranged on the discharging side of the discharging mechanism (1), the discharging mechanism (1) is used for obliquely sliding the wood-plastic plates (5) into the receiving mechanism (2), the material receiving mechanism (2) is provided with a material pushing mechanism (3), the material pushing mechanism (3) and the material receiving mechanism (2) synchronously and vertically lift, a linear conveying mechanism (4) is arranged at the discharge end of the material receiving mechanism (2), the material pushing mechanism (3) is used for pushing a plurality of wood-plastic plates (5) stacked in the material receiving mechanism (2) to the conveying mechanism (4), the conveying mechanism (4) extends to one side of a working section for packaging the wood-plastic plate (5).
2. The wood-plastic board processing is with connecing material conveyer of claim 1, its characterized in that: the discharging mechanism (1) comprises a base (11), a first supporting plate (12) is vertically arranged on one side of the top surface of the base (11), a second supporting plate (13) is obliquely arranged between the lower portion of the first supporting plate (12) and the base (11), a material placing plate (14) is horizontally arranged above the second supporting plate (13), one end side surface of the material placing plate (14) is hinged to the first supporting plate (12) through a connecting assembly (15), a first air cylinder (16) is arranged between the second supporting plate (13) and the material placing plate (14), the bottom end of the first air cylinder (16) is hinged to the second supporting plate (13) through a first lug plate (161), the telescopic end of the first air cylinder (16) is hinged to the material placing plate (14) through a second lug plate (162), and one end of the top surface of the material placing plate (14) is horizontally butted with the extruder, the other end is provided with a barrier strip (141) in parallel.
3. The wood-plastic board processing is with connecing material conveyer of claim 2, characterized in that: coupling assembling (15) include vertical pole (151), horizontal pole (152) and connecting axle sleeve (153), two vertical pole (151) perpendicular interval respectively set up in the facade both sides of the outer of first backup pad (12), two the horizontal fixedly connected with of tip of vertical pole (151) horizontal pole (152), the both ends of horizontal pole (152) all extend to corresponding the vertical pole (151) outside, every vertical pole (151) both sides axial clearance cover is equipped with on horizontal pole (152) connecting axle sleeve (153), connecting axle sleeve (153) with put the relative terminal side fixed connection of flitch (14).
4. The wood-plastic board processing is with connecing material conveyer of claim 2, characterized in that: the material receiving mechanism (2) comprises a third supporting plate (21) which is vertically arranged, the third supporting plate (21) is positioned below the discharging side of the material placing plate (14), a fourth supporting plate (22) is vertically arranged on one side of the third supporting plate (21) relatively, the bottoms of the fourth supporting plate (22) and the third supporting plate (21) are fixedly connected through a first connecting plate (23), a plurality of springs (25) are vertically arranged in the middle of the top surface of the first connecting plate (23) at intervals along the long side direction of the first connecting plate, the top surfaces of the springs (25) are horizontally provided with the same material receiving plate (24), the side surfaces of two ends of the material receiving plate (24) are respectively and vertically and slidably connected with the corresponding third supporting plate (21) and the fourth supporting plate (22), and the material receiving plate (24) is matched with the wood-plastic plate (5) in size, the lower parts of the two end surfaces of the third supporting plate (21) and the fourth supporting plate (22) are respectively and horizontally symmetrically provided with a stop block (26), and the stop blocks (26) are used for stopping the downward movement of the material receiving plate (24); the side, opposite to the discharge end, of the top surface of the material receiving plate (24) is provided with the material pushing mechanism (3); the conveying mechanism (4) is arranged below the discharge end of the material receiving plate (24), and the conveying mechanism (4) and the material receiving plate (24) are vertically arranged in space.
5. A receiving and conveying device for processing wood-plastic plates as claimed in claim 4, wherein: the height of the third support plate (21) is lower than the height of the fourth support plate (22); the top of the third supporting plate (21) is provided with an inclined surface (211), and the inclined surface (211) faces one side of the material receiving plate (24); the top of the fourth supporting plate (22) is connected with a baffle (221) which is obliquely arranged towards one side of the material receiving plate (24).
6. A receiving and conveying device for processing wood-plastic plates as claimed in claim 4, wherein: the four corners of the material receiving plate (24) are symmetrically provided with convex plates (241) respectively, and the two convex plates (241) in the same long edge direction of the material receiving plate (24) are in vertical sliding clamping connection with the corresponding third supporting plate (21) and the corresponding fourth supporting plate (22) respectively.
7. A receiving and conveying device for processing wood-plastic plates according to claim 6, characterized in that: pushing equipment (3) include second cylinder (31), second cylinder (31) fixed set up in connect on the top surface of flitch (24) one side middle part relative rather than the discharge end, the power end axial of second cylinder (31) is docked there is telescopic link (32), the free end of telescopic link (32) is connected with push pedal (33) perpendicularly, the width of push pedal (33) suits with the width of wood-plastic board (5), the height of push pedal (33) with connect the height after a plurality of wood-plastic board (5) piles that flitch (24) can accept to suit.
8. A receiving and conveying device for processing wood-plastic plates according to claim 7, characterized in that: the conveying mechanism (4) comprises two fifth supporting plates (41) which are vertically arranged oppositely, the lower parts of the two fifth supporting plates (41) are connected through a second connecting plate (42), the upper parts of the two fifth supporting plates (41) are connected through two screw rods (43) which are arranged in parallel, one end of each screw rod (43) is connected with a motor (45), the two motors (45) are fixedly supported through supporting frames (46) which are arranged on the corresponding fifth supporting plates (41), the two screw rods (43) are in threaded connection with the same material supporting plate (44), and the material supporting plates (44) are driven by the rotation of the two screw rods (43) to perform linear motion;
when the receiving plate (24) receives a plurality of superposed wood-plastic plates and the compression spring (25) descends to the position of the stop block (26), the top surface of the receiving plate (24) is flush with the top surface of the retainer plate (44), and the sizes of the retainer plate (44) and the wood-plastic plates (5) are matched.
CN202110832217.9A 2021-07-22 2021-07-22 Wood-plastic board processing is with connecing material conveyer Pending CN113651082A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110832217.9A CN113651082A (en) 2021-07-22 2021-07-22 Wood-plastic board processing is with connecing material conveyer

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Application Number Priority Date Filing Date Title
CN202110832217.9A CN113651082A (en) 2021-07-22 2021-07-22 Wood-plastic board processing is with connecing material conveyer

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CN106697961A (en) * 2016-12-28 2017-05-24 无锡明珠增压器制造有限公司 Automatic conveying, turning and discharging device for platelike materials
CN108177963A (en) * 2017-12-21 2018-06-19 姜莉 A kind of connection platform with PCB circuit board cooling holding tank
CN209193061U (en) * 2018-09-28 2019-08-02 荆州市衡德实业有限责任公司 Plate device for discharging
CN111056319A (en) * 2020-03-05 2020-04-24 江苏龙源装饰材料有限公司 Adjustable plank material feeding unit
CN111730321A (en) * 2020-07-07 2020-10-02 厦门理工学院 Automatic screw locking device
CN212100880U (en) * 2020-04-03 2020-12-08 山东金天成塑料制品有限公司 Plastic slab conveyer

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1993023221A1 (en) * 1992-05-14 1993-11-25 Societe Platon S.A. Board distributor for unit manufacturing wooden articles such as handling pallets
CN106697961A (en) * 2016-12-28 2017-05-24 无锡明珠增压器制造有限公司 Automatic conveying, turning and discharging device for platelike materials
CN108177963A (en) * 2017-12-21 2018-06-19 姜莉 A kind of connection platform with PCB circuit board cooling holding tank
CN209193061U (en) * 2018-09-28 2019-08-02 荆州市衡德实业有限责任公司 Plate device for discharging
CN111056319A (en) * 2020-03-05 2020-04-24 江苏龙源装饰材料有限公司 Adjustable plank material feeding unit
CN212100880U (en) * 2020-04-03 2020-12-08 山东金天成塑料制品有限公司 Plastic slab conveyer
CN111730321A (en) * 2020-07-07 2020-10-02 厦门理工学院 Automatic screw locking device

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Application publication date: 20211116