CN111761671A - Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door - Google Patents

Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door Download PDF

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Publication number
CN111761671A
CN111761671A CN202010661257.7A CN202010661257A CN111761671A CN 111761671 A CN111761671 A CN 111761671A CN 202010661257 A CN202010661257 A CN 202010661257A CN 111761671 A CN111761671 A CN 111761671A
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plate
hot
gear
bottom plate
groove
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CN202010661257.7A
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Chinese (zh)
Inventor
郭五连
荣志强
邵可心
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Priority to CN202010661257.7A priority Critical patent/CN111761671A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27HBENDING WOOD OR SIMILAR MATERIAL; COOPERAGE; MAKING WHEELS FROM WOOD OR SIMILAR MATERIAL
    • B27H1/00Bending wood stock, e.g. boards

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wood Science & Technology (AREA)
  • Forests & Forestry (AREA)
  • Veneer Processing And Manufacture Of Plywood (AREA)

Abstract

The invention relates to raw material hot-press forming equipment and a hot-press forming method for an ecological wood door, which comprise a bottom plate, a feeding device, a hot-press device, a turnover device and a cooling device, wherein the feeding device is arranged at the left end of the bottom plate, the hot-press device and the turnover device are arranged at the middle end of the bottom plate, and the cooling device is arranged at the right end of the bottom plate; secondly, the existing plate bending equipment can not carry out timely cooling operation on the plate after hot pressing after the plate is bent, but cools the plate through a natural cooling mode, the natural cooling is greatly influenced by weather conditions, the cooling efficiency is low, and the bending efficiency and the effect of the plate can be improved.

Description

Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door
Technical Field
The invention relates to the technical field of plate production, in particular to raw material hot-press forming equipment and a hot-press forming method for an ecological wooden door.
Background
Although the wood has elasticity, the plasticity under the normal state is very small, the wood can be bent within the normal stress range, the original shape can be recovered after the stress is eliminated, if the stress limit is exceeded, the wood can be permanently deformed and the fibers are split, so that the wood can be broken.
However, the following problems exist when the current ecological wood door plate is bent, that is, when the existing wood door plate bending equipment bends the plate, most of the existing wood door plate bending equipment can only heat one surface of the plate, so that the plate is heated unevenly and cannot be softened comprehensively, the bending effect of the plate is influenced, and the yield of the plate bending is reduced; the existing plate bending equipment cannot perform timely cooling operation on the plate after hot pressing after the plate is bent, the plate is cooled in a natural cooling mode, the natural cooling is greatly influenced by weather conditions, the cooling efficiency is low, the plate is cooled unevenly easily during cooling, the quality of the plate is reduced, and the bending efficiency and the bending effect of the plate can be improved.
Disclosure of Invention
Technical problem to be solved
The raw material hot-press forming equipment and the hot-press forming method for the ecological wooden door provided by the invention can solve the problems existing in bending of the ecological wooden door plate.
(II) technical scheme
In order to achieve the purpose, the invention adopts the following technical scheme that the raw material hot-press forming equipment for the ecological wooden door comprises a bottom plate, a feeding device, a hot-press device, a turnover device and a cooling device, wherein the feeding device is installed at the left end of the bottom plate, the hot-press device and the turnover device are installed at the middle end of the bottom plate, and the cooling device is installed at the right end of the bottom plate.
The feeding device comprises a first air cylinder, a flat plate, a first motor, a first gear, a second gear, a sector gear, a sliding plate, a feeding plate and a sucker, wherein the first air cylinder is installed at the left end of the bottom plate, the flat plate is installed at the output end of the first air cylinder, a flat groove is formed in the flat plate, a sliding hole is formed in the inner wall of the right end of the flat groove, the first motor is installed at the upper end of the flat plate, the output end of the first motor penetrates through the upper side of the flat plate and is installed in the flat groove, the second gear which is meshed with the first gear is symmetrically installed on the front side and the rear side of the first gear on the inner wall of the upper side of the flat groove through bearings, the sector gear is installed on the second gear, the sliding plate is installed in the sliding hole in a sliding fit mode, the feeding plate is installed at the right end of the sliding plate, the feeding, the sliding plate drives the feeding plate to do linear reciprocating motion, so that the feeding plate can stably feed the plates.
The hot-pressing device comprises an L-shaped plate, a square plate, a second air cylinder, a power plate, a pull rod, a hot-pressing upper die, a hot-pressing pipe and an air outlet, wherein the L-shaped plate is symmetrically arranged on the outer walls of the front end and the rear end of the middle side of the bottom plate, the square plate is arranged at the upper end of the L-shaped plate, a through hole is formed in the middle of the square plate, chutes are symmetrically formed in the left end and the right end of the square plate, which are positioned on the through hole, the second air cylinder is arranged on the front side of the square plate, the power plate is arranged at the output end of the second air cylinder, the power plate is arranged in the chutes in a sliding fit manner, a power groove is formed in the power plate, the pull rod is arranged in the power groove in a sliding fit manner, the pull rod is arranged in the through hole in a sliding fit manner, the hot-pressing upper, the lower end of the lower hot-pressing die on the bottom plate is provided with a hot-pressing groove, the hot-pressing pipe is installed in the hot-pressing groove, the gas outlet is evenly installed on the hot-pressing pipe along the circumferential direction of the hot-pressing pipe, the plate can be heated evenly and softened comprehensively, and the bending effect of the plate can be improved.
Turning device include No. two motors, power gear, rotatory round bar, two-way cylinder, connecting rod and cambered plate, the bottom plate on lie in hot pressing lower mould right-hand member and be provided with hollow groove, install No. two motors in the hollow groove, No. two motor output ends install power gear, rotatory round bar is installed through the bearing in hollow groove left side, evenly be provided with the tooth movable groove along its circumference direction on the outer wall in rotatory round bar middle part, and intermeshing uses between tooth movable groove and the power gear, the draw-in groove has been seted up on the rotatory round bar, draw-in groove inner wall mid-mounting has two-way cylinder, the connecting rod is installed to two-way cylinder output, install the cambered plate on the connecting rod, can carry cooling device with hot pressing bending's panel on, the artifical risk of scalding has been.
Cooling device include cooling frame, No. three motors, fan, filter screen, outlet pipe, cardboard and collecting box, the bottom plate outer wall on install the cooling frame, No. three motors are installed to cooling frame upper end, No. three motor output passes the cooling frame and installs the fan, the rectangular groove has been seted up to the bottom plate right-hand member, install the filter screen between the inner wall of rectangular groove upper end, the perforation has been seted up to rectangular groove front end, install the outlet pipe in the perforation, it installs the cardboard to lie in the outlet pipe lower extreme on the bottom plate front end outer wall, install the collecting box on the cardboard, drive the fan through No. three motors and rotate, the fan can carry out timely cooling operation to panel, make the cooling of panel more even, the cooling efficiency of panel has been.
As a preferred technical scheme of the invention, the front end and the rear end of the right part of the sliding plate are uniformly provided with gear grooves, and the gear grooves and the sector gears are matched with each other for use, so that the sector gears can drive the sliding plate to perform linear reciprocating motion.
As a preferred technical scheme of the invention, the lower end of the bottom plate is uniformly provided with the supporting plates, so that a stable working environment is provided for hot-press bending and forming of the plate.
As a preferred technical scheme of the invention, the bottom plate is uniformly provided with rotating grooves, and rotating rollers are arranged in the rotating grooves through pin shafts, so that the plate can be better conveyed to a hot-pressing device.
The invention also provides a hot-press forming method of the raw material hot-press forming equipment for the ecological wooden door, which comprises the following steps:
s1, manually placing the plate on the bottom plate, driving the flat plate to move downwards by the first air cylinder until the sucker is adsorbed on one side surface of the plate, driving the sector gear to rotate by the first motor through the first gear and the second gear, and driving the plate adsorbed on the sucker on the feeding plate to move to the rotating roller by the sector gear through the sliding plate;
s2, the first air cylinder drives the flat plate to move towards the upper end, so that the sucking disc loosens the adsorption on the plate, the first motor continues to drive the first gear to rotate, the sector gear drives the sliding plate to move to a proper position from the left end under the mutual matching action of the sector gear and the sliding plate, the first air cylinder drives the flat plate to move to a proper pushing position from the lower end, the first motor drives the sector gear to rotate through the first gear and the second gear, the sector gear drives the feeding plate to move towards the right end through the sliding plate, and the feeding plate pushes the plate to move to the lower end of the hot-pressing upper die;
s3, inputting hot steam into the hot pressing pipe to enable the hot pressing upper die and the hot pressing groove to reach a certain hot pressing temperature, driving a pull rod to move towards the lower end by a second cylinder through a power plate, driving the hot pressing upper die to move towards the lower end by the pull rod, and performing hot pressing bending operation on the plate by the hot pressing upper die and the hot pressing lower die to enable the plate to be softened by heating and deform and bend under the pressure of the hot pressing upper die, so that the hot pressing bending operation can be performed on the plate;
s4, the bidirectional cylinder drives the cambered plate to move towards the inner end through the connecting rod, so that the cambered plate is clamped on the outer wall of the plate, the second motor drives the rotary round rod to rotate through the power gear, and the rotary round rod drives the plate clamped on the cambered plate to rotate to the filter screen;
s5, a third motor drives a fan to rotate, so that the fan cools the plate, residual liquid flows into a long-strip groove through a filter screen when the plate is cooled, the liquid is conveyed into a collecting box through a water outlet pipe, and after the plate is cooled, the bent plate is manually collected.
(III) advantageous effects
1. The invention can solve the following problems existing in the bending of the existing ecological wood door plate, i.e. when the existing wood door plate bending equipment bends the plate, most of the existing wood door plate bending equipment can only heat one surface of the plate, so that the plate is heated unevenly and cannot be softened comprehensively, the bending effect of the plate is influenced, and the yield of the plate bending is reduced; the existing plate bending equipment cannot perform timely cooling operation on the plate after hot pressing after the plate is bent, the plate is cooled in a natural cooling mode, the natural cooling is greatly influenced by weather conditions, the cooling efficiency is low, the plate is cooled unevenly easily during cooling, the quality of the plate is reduced, and the bending efficiency and the bending effect of the plate can be improved.
2. According to the feeding device, the first motor, the first gear, the second gear, the sector gear, the sliding plate, the feeding plate and the sucker are matched with each other, so that the sector gear can drive the sliding plate to perform linear reciprocating motion, the sliding plate drives the feeding plate to perform linear reciprocating motion, the feeding plate can perform stable feeding operation on plates, and the risk of scalding of workers by a hot pressing device is reduced.
3. According to the hot pressing device, hot steam is conveyed into the hot pressing upper die and the hot pressing groove through the hot pressing pipe and the air outlet, the second cylinder drives the power plate to move, the power plate drives the hot pressing upper die to move towards the lower end through the pull rod, so that the hot pressing upper die and the hot pressing lower die can simultaneously perform hot pressing softening operation on two surfaces of a plate, the plate is uniformly and comprehensively softened, and the plate bending effect can be improved.
4. According to the cooling device, the fan is driven to rotate by the third motor, the fan can timely cool the plate, so that the plate is cooled more uniformly, the cooling efficiency of the plate is improved, and the bending efficiency and effect of the plate can be improved.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a cross-sectional view of FIG. 1 of the present invention;
FIG. 3 is a cross-sectional view taken along line A-A of FIG. 2 in accordance with the present invention;
FIG. 4 is a cross-sectional view taken along line B-B of FIG. 2 in accordance with the present invention;
FIG. 5 is a schematic view of a partial structure of the feeding device of the present invention;
FIG. 6 is a schematic view of a partial structure of the hot press apparatus of the present invention;
FIG. 7 is a schematic view of a partial structure of the turning device of the present invention;
fig. 8 is a partial structural schematic view of the cooling device of the present invention.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
As shown in fig. 1 to 8, an ecological wooden door raw material hot press molding device comprises a bottom plate 1, a feeding device 2, a hot press device 3, a turnover device 4 and a cooling device 5, wherein the feeding device 2 is installed at the left end of the bottom plate 1, the hot press device 3 and the turnover device 4 are installed at the middle end of the bottom plate 1, and the cooling device 5 is installed at the right end of the bottom plate 1.
The feeding device 2 comprises a first air cylinder 21, a flat plate 22, a first motor 23, a first gear 24, a second gear 25, a sector gear 26, a sliding plate 27, a feeding plate 28 and a sucker 29, wherein the first air cylinder 21 is installed at the left end of the bottom plate 1, the flat plate 22 is installed at the output end of the first air cylinder 21, a flat groove is formed in the flat plate 22, a sliding hole is formed in the inner wall of the right end of the flat groove, the first motor 23 is installed at the upper end of the flat plate 22, the first gear 24 is installed in the flat groove by penetrating the output end of the first motor 23 through the upper side of the flat plate 22, the second gear 25 which is meshed with the first gear 24 is symmetrically installed on the front side and the rear side of the first gear 24 through a bearing, the sector gear 26 is installed on the second gear 25, the sliding plate 27 is installed in the sliding hole in a sliding fit manner, the feeding plate 28 is installed at the right end, the suction cup 29 is arranged in the feeding groove.
The bottom plate 1 is evenly provided with a rotating groove, and a rotating roller 12 is arranged in the rotating groove through a pin shaft.
The front end and the rear end of the right part of the sliding plate 27 are uniformly provided with gear grooves, and the gear grooves and the sector gears 26 are matched with each other for use.
When the plate feeding device works, a plate is manually placed on the bottom plate 1, the first air cylinder 21 drives the flat plate 22 to move downwards to the position that the sucking disc 29 is adsorbed on one side surface of the plate, the first motor 23 drives the first gear 24 to rotate, the first gear 24 drives the second gear 25 to rotate, the second gear 25 drives the sector gear 26 to rotate, the sector gear 26 drives the sliding plate 27 to move towards the right end, the sliding plate 27 drives the feeding plate 28 to move towards the right end, after the feeding plate 28 drives the plate adsorbed on the sucking disc 29 to move onto the rotating roller 12, the first air cylinder 21 drives the flat plate 22 to move upwards, so that the sucking disc 29 loosens the adsorption on the plate, the first motor 23 continues to drive the first gear 24 to rotate, under the mutual matching action between the sector gear 26 and the sliding plate 27, the sector gear 26 drives the sliding plate 27 to move towards the left end to a proper position, and the first air cylinder 21 drives the flat plate 22 to move towards the lower end to a, the first motor 23 drives the first gear 24 to rotate, so that the sliding plate 27 drives the feeding plate 28 to move towards the right end, and the feeding plate 28 pushes the plate to move to the right lower end of the upper hot-pressing die 36.
The hot-pressing device 3 comprises an L-shaped plate 31, a square plate 32, a second cylinder 33, a power plate 34, a pull rod 35, a hot-pressing upper die 36, a hot-pressing pipe 37 and an air outlet 38, the L-shaped plate 31 is symmetrically installed on the outer walls of the front end and the rear end of the middle side of the bottom plate 1, the square plate 32 is installed at the upper end of the L-shaped plate 31, a through hole is formed in the middle of the square plate 32, sliding grooves are symmetrically formed in the left end and the right end of the through hole on the square plate 32, the second cylinder 33 is installed on the front side of the square plate 32, the power plate 34 is installed at the output end of the second cylinder 33, the power plate 34 is installed in the sliding grooves in a sliding fit manner, the pull rod 35 is installed in the power groove in a sliding fit manner, the pull rod 35 is installed in the through hole in a sliding fit manner, the hot-pressing upper die 36 is, air outlets 38 are uniformly arranged on the hot pressing pipe 37 along the circumferential direction of the hot pressing pipe, a hot pressing lower die is arranged at the middle end of the bottom plate 1, a hot pressing groove is formed in the lower end of the hot pressing lower die on the bottom plate 1, the hot pressing pipe 37 is arranged in the hot pressing groove, and the air outlets 38 are uniformly arranged on the hot pressing pipe 37 along the circumferential direction of the hot pressing pipe.
During specific work, hot steam is input into the hot pressing pipe 37, certain hot pressing temperature is reached in mould 36 and the hot pressing recess on the hot pressing, No. two cylinders 33 drive power plate 34 motion, power plate 34 drives pull rod 35 motion to the lower end, pull rod 35 drives mould 36 motion to the lower end on the hot pressing, mould 36 and the hot pressing lower mould carry out hot pressing bending operation to panel on the hot pressing, make panel be heated and soften, and warp the bending under the pressure of mould 36 on the hot pressing, can carry out hot pressing bending operation to panel.
Turning device 4 include No. two motor 41, power gear 42, rotatory round bar 43, two-way cylinder 44, connecting rod 45 and cambered plate 46, bottom plate 1 on lie in hot pressing lower mould right-hand member and be provided with the hollow groove, install No. two motor 41 in the hollow groove, power gear 42 is installed to No. two motor 41 outputs, rotatory round bar 43 is installed through the bearing in the hollow groove left side, evenly be provided with the tooth movable groove along its circumference direction on the outer wall in the middle part of rotatory round bar 43, and intermeshing uses between tooth movable groove and the power gear 42, the draw-in groove has been seted up on the rotatory round bar 43, draw-in groove inner wall mid-mounting has two-way cylinder 44, connecting rod 45 is installed to two-way cylinder 44 output, install cambered plate 46 on the connecting rod.
During operation, panel bending deformation back, two-way cylinder 44 drives the inside end motion of connecting rod 45, connecting rod 45 drives the inside end motion of cambered plate 46, make cambered plate 46 centre gripping on the panel outer wall, No. two motor 41 drive power gear 42 and rotate, power gear 42 drives rotatory round bar 43 through gear engagement and rotates, rotatory round bar 43 drives the panel of centre gripping on the cambered plate 46 and rotates filter screen 54, two-way cylinder 44 drives cambered plate 46 through connecting rod 45 and moves to the outside end, make cambered plate 46 loosen the centre gripping to panel.
Cooling device 5 include cooling frame 51, No. three motor 52, fan 53, filter screen 54, outlet pipe 55, cardboard 56 and collecting box 57, 1 outer wall of bottom plate on install cooling frame 51, No. three motor 52 is installed to cooling frame 51 upper end, No. three motor 52 output passes cooling frame 51 and installs fan 53, rectangular groove has been seted up to bottom plate 1 right-hand member, install filter screen 54 between the inner wall of rectangular groove upper end, the perforation has been seted up to rectangular groove front end, install outlet pipe 55 in the perforation, lie in the outlet pipe 55 lower extreme on the 1 front end outer wall of bottom plate and install cardboard 56, install collecting box 57 on the cardboard 56.
During specific work, after the plate moves to the filter screen 54, the third motor 52 drives the fan 53 to rotate, so that the fan 53 performs cooling operation on the plate, residual liquid flows into the long groove through the filter screen 54 when the plate is cooled, the liquid is conveyed into the collecting box 57 through the water outlet pipe 55, and after the plate is cooled, the bent plate is manually collected.
In addition, the invention also provides a hot-press forming method of the raw material hot-press forming equipment for the ecological wooden door, which comprises the following steps:
s1, manually placing the plate on the bottom plate 1, driving the flat plate 22 to move downwards by the first air cylinder 21 until the suction disc 29 is adsorbed on the surface of one side of the plate, driving the sector gear 26 to rotate by the first motor 23 through the first gear 24 and the second gear 25, and driving the plate adsorbed on the suction disc 29 on the feeding plate 28 to move to the rotating roller 12 by the sector gear 26 through the sliding plate 27;
s2, the first air cylinder 21 drives the flat plate 22 to move upwards, so that the suction disc 29 loosens the adsorption on the plate, the first motor 23 continues to drive the first gear 24 to rotate, the sector gear 26 drives the sliding plate 27 to move to a proper position from the left end under the mutual matching action between the sector gear 26 and the sliding plate 27, the first air cylinder 21 drives the flat plate 22 to move to a proper pushing position from the lower end, the first motor 23 drives the sector gear 26 to rotate through the first gear 24 and the second gear 25, the sector gear 26 drives the feeding plate 28 to move to the right end through the sliding plate 27, and the feeding plate 28 pushes the plate to move to the right lower end of the hot-pressing upper die 36;
s3, inputting hot steam into the hot pressing pipe 37 to enable the hot pressing upper die 36 and the hot pressing groove to reach a certain hot pressing temperature, driving the pull rod 35 to move towards the lower end through the power plate 34 by the second air cylinder 33, driving the hot pressing upper die 36 to move towards the lower end through the pull rod 35, and performing hot pressing bending operation on the plate by the hot pressing upper die 36 and the hot pressing lower die to enable the plate to be heated and softened and to be deformed and bent under the pressure of the hot pressing upper die 36, so that the hot pressing bending operation can be performed on the plate;
s4, the bidirectional cylinder 44 drives the cambered plate 46 to move towards the inner end through the connecting rod 45, so that the cambered plate 46 is clamped on the outer wall of the plate, the second motor 41 drives the rotary round rod 43 to rotate through the power gear 42, and the rotary round rod 43 drives the plate clamped on the cambered plate 46 to rotate to the filter screen 54;
s5, the third motor 52 drives the fan 53 to rotate, so that the fan 53 cools the plate, residual liquid flows into the long groove through the filter screen 54 when the plate is cooled, the liquid is conveyed into the collecting box 57 through the water outlet pipe 55, and after the plate is cooled, the bent plate is manually collected.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The utility model provides an ecological timber raw materials hot briquetting equipment, includes bottom plate (1), material feeding unit (2), hot press unit (3), turning device (4) and cooling device (5), its characterized in that: the left end of the bottom plate (1) is provided with a feeding device (2), the middle end of the bottom plate (1) is provided with a hot-pressing device (3) and a turning device (4), and the right end of the bottom plate (1) is provided with a cooling device (5); wherein:
the feeding device (2) comprises a first air cylinder (21), a flat plate (22), a first motor (23), a first gear (24), a second gear (25), a sector gear (26), a sliding plate (27), a feeding plate (28) and a sucking disc (29), the first air cylinder (21) is installed at the left end of the bottom plate (1), the flat plate (22) is installed at the output end of the first air cylinder (21), a flat groove is formed in the flat plate (22), a sliding hole is formed in the inner wall of the right end of the flat groove, the first motor (23) is installed at the upper end of the flat plate (22), the first gear (24) is installed at the upper end of the first motor (23) after penetrating through the upper side of the flat plate (22), the second gear (25) meshed with the first gear (24) is symmetrically installed at the front side and the rear side of the first gear (24) through bearings, the sector gear (26) is installed on the second gear (25), a sliding plate (27) is arranged in the sliding hole in a sliding fit mode, a feeding plate (28) is arranged at the right end of the sliding plate (27), feeding grooves are uniformly formed in the feeding plate (28), and suckers (29) are arranged in the feeding grooves;
the hot-pressing device (3) comprises an L-shaped plate (31), a square plate (32), a second cylinder (33), a power plate (34), a pull rod (35), a hot-pressing upper die (36), a hot-pressing pipe (37) and an air outlet (38), the L-shaped plate (31) is symmetrically installed on the outer walls of the front end and the rear end of the middle side of the bottom plate (1), the square plate (32) is installed at the upper end of the L-shaped plate (31), a through hole is formed in the middle of the square plate (32), sliding grooves are symmetrically formed in the left end and the right end of the through hole on the square plate (32), the second cylinder (33) is installed on the front side of the square plate (32), the power plate (34) is installed at the output end of the second cylinder (33), the power plate (34) is installed in the sliding grooves in a sliding fit manner, a power groove is formed in the power groove in a sliding fit manner, the pull rod (35), mould (36) on the hot pressing is installed to pull rod (35) lower extreme, the hot pressing has been seted up on mould (36) on the hot pressing, install heat-pressing pipe (37) in the hot pressing circular slot, gas outlet (38) are evenly installed along its circumference direction on heat-pressing pipe (37), bottom plate (1) middle-end is provided with the hot pressing lower mould, it is provided with hot pressing recess to lie in hot pressing lower mould lower extreme on bottom plate (1), install heat-pressing pipe (37) in the hot pressing recess, gas outlet (38) are evenly installed along its circumference direction on heat-pressing pipe (37).
2. The ecological wood door raw material hot press molding equipment of claim 1, characterized in that: turning device (4) including No. two motor (41), power gear (42), rotatory round bar (43), two-way cylinder (44), connecting rod (45) and cambered plate (46), bottom plate (1) on lie in hot pressing lower mould right-hand member and be provided with hollow groove, install No. two motor (41) in the hollow groove, power gear (42) are installed to No. two motor (41) outputs, rotatory round bar (43) are installed through the bearing in the hollow groove left side, evenly be provided with the tooth movable groove along its circumference direction on rotatory round bar (43) middle part outer wall, and intermeshing uses between tooth movable groove and power gear (42), the draw-in groove has been seted up on rotatory round bar (43), draw-in groove inner wall mid-mounting has two-way cylinder (44), connecting rod (45) are installed to two-way cylinder (44) output, install cambered plate (46) on connecting rod (45).
3. The ecological wood door raw material hot press molding equipment of claim 1, characterized in that: cooling device (5) including cooling frame (51), No. three motor (52), fan (53), filter screen (54), outlet pipe (55), cardboard (56) and collecting box (57), bottom plate (1) outer wall on install cooling frame (51), No. three motor (52) are installed to cooling frame (51) upper end, No. three motor (52) output passes cooling frame (51) and installs fan (53), rectangular groove has been seted up to bottom plate (1) right-hand member, install filter screen (54) between the inner wall of rectangular groove upper end, the perforation has been seted up to rectangular groove front end, install outlet pipe (55) in the perforation, lie in outlet pipe (55) lower extreme on bottom plate (1) front end outer wall and install cardboard (56), install collecting box (57) on cardboard (56).
4. The ecological wood door raw material hot press molding equipment of claim 1, characterized in that: the front end and the rear end of the right part of the sliding plate (27) are uniformly provided with gear grooves, and the gear grooves and the sector gears (26) are matched with each other for use.
5. The ecological wood door raw material hot press molding equipment of claim 1, characterized in that: the lower end of the bottom plate (1) is uniformly provided with a supporting plate (11).
6. The ecological wood door raw material hot press molding equipment of claim 1, characterized in that: the bottom plate (1) on evenly be provided with and rotate the groove, rotate the inslot and install live-rollers (12) through the round pin axle.
CN202010661257.7A 2020-07-10 2020-07-10 Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door Withdrawn CN111761671A (en)

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CN202010661257.7A CN111761671A (en) 2020-07-10 2020-07-10 Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door

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Application Number Priority Date Filing Date Title
CN202010661257.7A CN111761671A (en) 2020-07-10 2020-07-10 Hot-press forming equipment and hot-press forming method for raw materials of ecological wooden door

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115091568A (en) * 2022-08-01 2022-09-23 宿州广洋木业有限公司 Bent type processingequipment of timber

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CN210850679U (en) * 2019-09-27 2020-06-26 郑州优博家具有限公司 Plate bending device

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