CN109551574B - Wood cutting device for architectural decoration - Google Patents

Wood cutting device for architectural decoration Download PDF

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Publication number
CN109551574B
CN109551574B CN201811651124.0A CN201811651124A CN109551574B CN 109551574 B CN109551574 B CN 109551574B CN 201811651124 A CN201811651124 A CN 201811651124A CN 109551574 B CN109551574 B CN 109551574B
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Prior art keywords
sliding
fixedly connected
plate
seat
wood
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CN201811651124.0A
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CN109551574A (en
Inventor
唐海玉
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Anhui Shengning Construction Engineering Co.,Ltd.
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Anhui Shengning Construction Engineering Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C5/00Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor
    • B27C5/02Machines with table
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C5/00Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor
    • B27C5/02Machines with table
    • B27C5/06Arrangements for clamping or feeding work
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27GACCESSORY MACHINES OR APPARATUS FOR WORKING WOOD OR SIMILAR MATERIALS; TOOLS FOR WORKING WOOD OR SIMILAR MATERIALS; SAFETY DEVICES FOR WOOD WORKING MACHINES OR TOOLS
    • B27G3/00Arrangements for removing bark-zones, chips, waste, or dust, specially designed for use in connection with wood-working machine or in wood-working plants

Abstract

The invention relates to the field of building material processing equipment, in particular to a wood cutting device for architectural decoration. Four angles of base top surface are supporting leg of fixed connection respectively, and horizontal work board fixed connection is on four supporting legs, and the saw-dust collection box is placed at the central point of base and is put, and the saw-dust collection box is located the below of horizontal work board, and the mounting slide is provided with two, and two mounting slide symmetry sliding connection are at the lower extreme of horizontal work board, connect a timber fixing component on two mounting slides respectively. The wood fixing device can fix wood, the fixed wood is not easy to shift, so that the wood is cut more smoothly, and the wood scrapping and the waste of wood resources are avoided; the wood-making machine can adapt to wood with different sizes, and the problem of relatively limited application range is solved; the saw-dust collection box is collected to the saw-dust that the cutting during operation produced, avoids causing inconvenience to the constructor.

Description

Wood cutting device for architectural decoration
Technical Field
The invention relates to the field of building material processing equipment, in particular to a wood cutting device for architectural decoration.
Background
With the development of the modern machining industry, the requirements on the cutting quality and precision are continuously improved, and the requirements on improving the production efficiency, reducing the production cost and having a high-intelligent automatic cutting function are also improved. At present, when a wood cutting machine on the market is used, a user needs to press wood with hands to fix the wood when cutting, so that the danger of doing the wood is very large, the user is possibly hurt by taking off the hands, but when the wood cutting machine is used in the prior art, the wood is cut by a saw blade, but when the wood is not fixed by machines, the wood is easy to shift, so that the wood is scrapped, the wood resources are seriously wasted, a limiting device in the prior art cannot adapt to the wood with different sizes, and the application range is limited.
Disclosure of Invention
The invention aims to provide a wood cutting device for architectural decoration, which has the beneficial effects that the wood can be fixed, the fixed wood is not easy to deviate, the wood is cut more smoothly, and the wood scrapping and the wood resource waste are avoided; the wood-making machine can adapt to wood with different sizes, and the problem of relatively limited application range is solved; the saw-dust collection box is collected to the saw-dust that the cutting during operation produced, avoids causing the damage to the constructor.
The purpose of the invention is realized by the following technical scheme:
a wood cutting device for architectural decoration comprises a base, supporting legs, a horizontal working plate, a wood chip recycling box, fixing part sliding seats, wood fixing components, nylon ropes, cutting part sliding seats and a cutting device, wherein four corners of the top surface of the base are respectively and fixedly connected with one supporting leg, the horizontal working plate is fixedly connected onto four supporting legs, the wood chip recycling box is placed at the central position of the base and is positioned below the horizontal working plate, the two fixing part sliding seats are arranged, the two fixing part sliding seats are symmetrically and slidably connected to the lower end of the horizontal working plate, the two fixing part sliding seats are respectively connected with one wood fixing component, the front ends of the upper ends of the two wood fixing components are respectively and fixedly connected with one nylon rope, the lower ends of the two nylon ropes are respectively and fixedly connected to the front ends of the two fixing part sliding seats, the cutting part sliding seats are, cutting device fixed connection is in the middle-end of cutting member slide, and cutting device is located the top of timber fixed subassembly.
The horizontal working plate comprises a working plate body, a chip removal through groove, a trapezoidal sliding rail, a cross beam and a vertical rod; the working plate body is fixedly connected to the four supporting legs, a chip removal through groove is formed in the center of the working plate body, the wood chip recovery box is located below the chip removal through groove, and the two trapezoidal sliding rails are symmetrically and fixedly connected to two ends of the top surface of the working plate body; two cross beams are arranged, and two ends of each cross beam are fixedly connected with a vertical rod respectively; the two cross beams are fixedly connected to the outer ends of the front end and the rear end of the working plate body respectively through vertical rods.
The fixed part sliding seat comprises a sliding base, a screw fixing seat, a fastening screw, a supporting seat, a trapezoidal sliding rod, a rear seat plate, a front seat plate, a rotating shaft, a driving bevel gear, a rope winding wheel, an inserting hole and a clamping piece; the sliding base is connected to the two trapezoidal sliding rails in a sliding mode, the front end of the sliding base is fixedly connected with the transverse plate of the screw fixing seat, the vertical plate of the screw fixing seat is connected with a fastening screw through threads, and the fastening screw abuts against the front end face of the working plate body; the inner end of the sliding base is fixedly connected with the supporting seat, and the middle end of the top surface of the supporting seat is fixedly connected with the trapezoidal sliding rod; the front seat plate and the rear seat plate are respectively fixedly connected to the front end and the rear end of the outer end of the sliding base, the two ends of the rotating shaft are respectively rotatably connected to the front seat plate and the rear seat plate through bearings with seats, the driving bevel gear is fixedly connected to the middle end of the rotating shaft, the rope winding wheel is fixedly connected to the rotating shaft and is located at the rear end of the front seat plate, the plurality of insertion holes are uniformly arranged on the front seat plate in a surrounding mode around the axis of the rotating shaft, the clamping pieces are fixedly connected to the outer end of the front end of the rotating shaft, and; the lower end of the nylon rope is fixedly connected with the rope winding wheel.
The wood fixing assembly comprises a vertical clamping plate, a rectangular sliding groove, a first rack, a gear rotating shaft, a driven bevel gear, a shaft frame plate, a second rack, an upper clamping plate, a sliding plate, a spring sleeve rod, a compression spring and a fixed seat; the two vertical clamping plates are respectively connected to two ends of the trapezoidal sliding rod in a sliding mode, rectangular sliding grooves are formed in the two vertical clamping plates, the outer ends of the lower ends of the two vertical clamping plates are respectively fixedly connected with a first rack and a second rack, the first rack and the second rack are respectively in meshing transmission connection with two sides of a gear, the gear and a driven bevel gear are respectively fixedly connected to the upper end and the lower end of a gear rotating shaft, the driven bevel gear is in meshing transmission connection with a driving bevel gear, the gear rotating shaft is rotatably connected to a shaft frame plate through a bearing with a seat, and the shaft frame plate is fixedly connected; two ends of the upper clamping plate are respectively connected in the two rectangular sliding grooves in a sliding manner, the outer ends of the two ends of the upper clamping plate are respectively fixedly connected with a sliding plate, the two sliding plates are respectively connected on the two spring loop bars in a sliding manner, and the bottom ends of the two spring loop bars are respectively fixedly connected at two ends of the supporting seat; the spring loop bar is sleeved with a compression spring, the compression spring is positioned between the sliding plate and the supporting seat, the fixed seat is fixedly connected with the sliding plate at the front end, and the upper end of the nylon rope is fixedly connected with the fixed seat; the inner side surface of the sliding plate is attached to the vertical clamping plate.
The cutting piece sliding seat comprises a fixed sliding sleeve, a C-shaped plate, a circular sliding rod, a lead screw, a top plate, a motor I, a circular baffle plate and a locking screw; the two fixed sliding sleeves are respectively connected to the two cross beams in a sliding manner, the C-shaped plate is fixedly connected between the two fixed sliding sleeves, the circular sliding rod is connected to one end of the C-shaped plate in a sliding manner, the lead screw is connected to the other end of the C-shaped plate through threads, and the bottom surfaces of the circular sliding rod and the lead screw are respectively and fixedly connected with a catch circular plate; the top end of the circular sliding rod is fixedly connected to one end of the top plate, the top end of the screw rod is rotatably connected to the other end of the top plate through a bearing with a seat, the motor I is fixedly connected to the top surface of the top plate through a motor frame, and an output shaft of the motor I is connected with the screw rod through a coupler; the fixed sliding sleeve at the front end is connected with a locking screw through threads, and the locking screw is propped against the cross beam.
The cutting device comprises a vertical frame plate, a motor II, a driving belt wheel, a driven belt wheel, a belt wheel rotating shaft and a cutting cutter disc; erect frame board upper end fixed connection at the middle-end of roof, motor II passes through motor frame fixed connection at the middle-end of erecting the frame board, and the output shaft fixed connection driving pulley of motor II, driving pulley pass through belt drive with from the driven pulleys and are connected, and from the equal fixed connection of driven pulleys and cutter dish is in the band pulley pivot, and the band pulley pivot is passed through the tape seat bearing and is rotated the lower extreme of connecting at erecting the frame board.
The clamping piece comprises a short shaft, a rotary table, a sliding rod, a spring seat, a first spring and a pull disc; one end of the short shaft is fixedly connected to the outer end of the front end of the rotating shaft, the other end of the short shaft is fixedly connected with the rotary table, the sliding rod is connected to the eccentric position of the rotary table in a sliding mode, the spring seat and the pull disc are fixedly connected to the sliding rod, the spring seat is located at the rear end of the rotary table, the pull disc is located at the front end of the sliding rod, the first spring is sleeved on the sliding rod, and two ends of the first spring are fixedly connected to the spring seat; the rear end of the sliding rod is in clearance fit in one jack.
The top surface of the trapezoidal sliding rod is higher than the top surfaces of the first rack, the gear and the second rack.
The wood cutting device for architectural decoration has the beneficial effects that:
according to the wood cutting device for architectural decoration, disclosed by the invention, wood can be fixed, the fixed wood is not easy to deviate, so that the wood is cut more smoothly, and the wood scrapping and the wood resource waste are avoided; the wood-making machine can adapt to wood with different sizes, and the problem of relatively limited application range is solved; the saw-dust collection box is collected to the saw-dust that the cutting during operation produced, avoids causing the damage to the constructor.
Drawings
FIG. 1 is a first schematic structural diagram of a wood cutting device for architectural decoration according to the present invention;
FIG. 2 is a schematic structural diagram of a wood cutting device for architectural decoration according to the present invention;
FIG. 3 is a schematic structural view of the base, the support legs and the horizontal work plate;
FIG. 4 is a schematic structural view of the fastener slider;
FIG. 5 is a schematic structural view of the card member;
FIG. 6 is a schematic view of a wood-fixing assembly;
fig. 7 is a schematic structural view of the cutter slider and the cutting device.
In the figure: a base 1; support legs 2; a horizontal work plate 3; a working plate body 3-1; a chip removal through groove 3-2; 3-3 of a trapezoidal slide rail; 3-4 of a cross beam; 3-5 parts of a vertical rod; a wood chip recycling bin 4; a fixed member slider 5; a sliding base 5-1; 5-2 parts of a screw fixing seat; 5-3 of a fastening screw; 5-4 parts of a supporting seat; 5-5 parts of a trapezoidal sliding rod; 5-6 parts of a rear seat plate; 5-7 parts of a front seat board; 5-8 parts of a rotating shaft; 5-9 parts of a drive bevel gear; 5-10 of a rope winding wheel; 5-11 of jacks; 5-12 parts of clamping piece; a wood fixing component 6; 6-1 of a vertical clamping plate; a rectangular chute 6-2; a first rack 6-3; 6-4 parts of gear; 6-5 of a gear rotating shaft; driven bevel gears 6-6; 6-7 of a shaft frame plate; 6-8 parts of a second rack; 6-9 parts of an upper splint; a sliding plate 6-10; 6-11 parts of a spring sleeve rod; 6-12 of a compression spring; 6-13 of a fixed seat; a nylon cord 7; a cutter slide 8; a fixed sliding sleeve 8-1; 8-2 parts of a C-shaped plate; 8-3 of a circular slide bar; 8-4 parts of a lead screw; 8-5 of a top plate; 8-6 parts of a motor I; 8-7 of a baffle circular plate; 8-8 parts of locking screw; a cutting device 9; a vertical frame plate 9-1; a motor II 9-2; a driving pulley 9-3; 9-4 of a driven belt wheel; 9-5 of a belt wheel rotating shaft; a cutter disc 9-6.
Detailed Description
The invention is described in further detail below with reference to figures 1-7 and the specific implementation.
The first embodiment is as follows:
the present embodiment will be described with reference to fig. 1-7, a wood cutting device for architectural decoration, which comprises a base 1, supporting legs 2, a horizontal working plate 3, a wood dust recycling box 4, fixing part sliding seats 5, wood fixing components 6, nylon ropes 7, a cutting part sliding seat 8 and a cutting device 9, wherein four corners of the top surface of the base 1 are respectively and fixedly connected with one supporting leg 2, the horizontal working plate 3 is fixedly connected to four supporting legs 2, the wood dust recycling box 4 is placed at the central position of the base 1, the wood dust recycling box 4 is positioned below the horizontal working plate 3, the fixing part sliding seats 5 are provided with two, the two fixing part sliding seats 5 are symmetrically and slidably connected to the lower end of the horizontal working plate 3, the two fixing part sliding seats 5 are respectively connected with one wood fixing component 6, the front ends of the two wood fixing components 6 are respectively and fixedly connected with one, the lower extreme of two nylon ropes 7 is fixed connection respectively at the front end of two mounting slides 5, and 8 sliding connection of cutting member slide are in the upper end of horizontal work board 3, and 9 fixed connection of cutting device are in the middle-end of cutting member slide 8, and cutting device 9 is located the top of the fixed subassembly 6 of timber. When the wood cutting machine is used, the two fixing part sliding seats 5 can move on the horizontal working plate 3 so as to be suitable for woods with different lengths, the wood fixing components 6 and the fixing part sliding seats 5 form rectangular spaces, the woods penetrate into the two rectangular spaces from one end, the two ends of the woods are respectively positioned on the two fixing part sliding seats 5, the two ends of the woods are clamped and fixed by controlling the two wood fixing components 6, the two wood fixing components 6 can be suitable for clamping and fixing the woods with different shapes and sizes, and after the cutting part sliding seats 8 and the cutting device 9 are communicated with a power supply to be started, the cutting part sliding seats 8 drive the working cutting device 9 to move downwards to cut the woods; the cutting piece sliding seat 8 can move left and right to drive the cutting device 9 to change the position, so that different positions of the wood are cut, and the wood with the required size can be conveniently cut; the saw-dust collection box 4 is collected to the saw-dust that the cutting during operation produced, avoids causing inconvenience to the constructor.
The second embodiment is as follows:
the embodiment is described below with reference to fig. 1 to 7, and the horizontal working plate 3 includes a working plate body 3-1, a chip removal through groove 3-2, a trapezoidal sliding rail 3-3, a cross beam 3-4 and a vertical rod 3-5; the working plate body 3-1 is fixedly connected to the four supporting legs 2, a chip removal through groove 3-2 is formed in the center of the working plate body 3-1, the chip recovery box 4 is located below the chip removal through groove 3-2, and the two trapezoidal sliding rails 3-3 are symmetrically and fixedly connected to two ends of the top surface of the working plate body 3-1; two cross beams 3-4 are arranged, and two ends of the two cross beams 3-4 are respectively fixedly connected with a vertical rod 3-5; the two cross beams 3-4 are fixedly connected to the outer ends of the front end and the rear end of the working plate body 3-1 through vertical rods 3-5 respectively. The front end of the working plate body 3-1 is provided with a graduated scale which is convenient for measuring the length of wood.
The third concrete implementation mode:
the embodiment is described below with reference to fig. 1-7, and the fixing member sliding seat 5 includes a sliding base 5-1, a screw fixing seat 5-2, a fastening screw 5-3, a supporting seat 5-4, a trapezoidal sliding rod 5-5, a rear seat plate 5-6, a front seat plate 5-7, a rotating shaft 5-8, a drive bevel gear 5-9, a rope winding wheel 5-10, an insertion hole 5-11 and a clamping member 5-12; the sliding base 5-1 is connected to the two trapezoidal sliding rails 3-3 in a sliding mode, the front end of the sliding base 5-1 is fixedly connected with a transverse plate of the screw fixing base 5-2, a vertical plate of the screw fixing base 5-2 is connected with a fastening screw 5-3 through threads, and the fastening screw 5-3 abuts against the front end face of the working plate body 3-1; the inner end of the sliding base 5-1 is fixedly connected with a supporting seat 5-4, and the middle end of the top surface of the supporting seat 5-4 is fixedly connected with a trapezoidal sliding rod 5-5; the front seat plate 5-7 and the rear seat plate 5-6 are respectively fixedly connected with the front end and the rear end of the outer end of the sliding base 5-1, the two ends of the rotating shaft 5-8 are respectively rotatably connected with the front seat plate 5-7 and the rear seat plate 5-6 through bearings with seats, the driving bevel gear 5-9 is fixedly connected with the middle end of the rotating shaft 5-8, the rope winding wheel 5-10 is fixedly connected with the rotating shaft 5-8, the rope winding wheel 5-10 is positioned at the rear end of the front seat plate 5-7, a plurality of insertion holes 5-11 are uniformly arranged on the front seat plate 5-7 in a surrounding manner around the axis of the rotating shaft 5-8, the clamping piece 5-12 is fixedly connected with the outer end of the front end of the rotating shaft 5-8, and the clamping; the lower end of the nylon rope 7 is fixedly connected with the rope winding wheels 5-10. When the fixed piece sliding seat 5 is used, the sliding base 5-1 can slide left and right, and the position of the sliding base 5-1 is fixed by screwing the fastening screw 5-3; the clamping piece 5-12 is rotated clockwise, the clamping piece 5-12 drives the rotating shaft 5-8 to rotate clockwise around the axis of the clamping piece 5-12, the rotating shaft 5-8 drives the driving bevel gear 5-9 and the rope winding wheel 5-10 to rotate clockwise around the axis of the clamping piece 5-12, and the clamping piece 5-12 is clamped into one insertion hole 5-11 to fix the rotating angle of the clamping piece 5-12.
The fourth concrete implementation mode:
the present embodiment is described below with reference to fig. 1 to 7, and the wood fixing assembly 6 includes a vertical clamping plate 6-1, a rectangular chute 6-2, a first rack 6-3, a gear 6-4, a gear rotating shaft 6-5, a driven bevel gear 6-6, a shaft bracket plate 6-7, a second rack 6-8, an upper clamping plate 6-9, a sliding plate 6-10, a spring loop bar 6-11, a compression spring 6-12 and a fixed seat 6-13; two vertical clamping plates 6-1 are respectively connected to two ends of a trapezoidal sliding rod 5-5 in a sliding mode, rectangular sliding grooves 6-2 are formed in the two vertical clamping plates 6-1, the outer ends of the lower ends of the two vertical clamping plates 6-1 are respectively fixedly connected with a first rack 6-3 and a second rack 6-8, the first rack 6-3 and the second rack 6-8 are respectively in meshed transmission connection with two sides of a gear 6-4, the gear 6-4 and a driven bevel gear 6-6 are respectively fixedly connected to the upper end and the lower end of a gear rotating shaft 6-5, the driven bevel gear 6-6 is in meshed transmission connection with a driving bevel gear 5-9, the gear rotating shaft 6-5 is rotatably connected to a shaft frame plate 6-7 through a bearing with a seat, and the shaft frame plate 6-7 is fixedly connected to a supporting; two ends of an upper splint 6-9 are respectively connected in the two rectangular chutes 6-2 in a sliding manner, the outer ends of the two ends of the upper splint 6-9 are respectively fixedly connected with a sliding plate 6-10, the two sliding plates 6-10 are respectively connected on two spring loop bars 6-11 in a sliding manner, and the bottom ends of the two spring loop bars 6-11 are respectively fixedly connected at two ends of the supporting seat 5-4; the spring loop bar 6-11 is sleeved with a compression spring 6-12, the compression spring 6-12 is positioned between the sliding plate 6-10 and the supporting seat 5-4, the fixed seat 6-13 is fixedly connected with the sliding plate 6-10 at the front end, and the upper end of the nylon rope 7 is fixedly connected with the fixed seat 6-13; the inner side surface of the sliding plate 6-10 is attached to the vertical clamping plate 6-1. When the wood fixing component 6 is used, the driving bevel gear 5-9 drives the driven bevel gear 6-6 to rotate clockwise around the axis of the driven bevel gear 6-6 drives the gear rotating shaft 6-5 to rotate clockwise around the axis of the driven bevel gear 6-5, the gear rotating shaft 6-5 drives the gear 6-4 to rotate clockwise around the axis of the driven bevel gear, the gear 6-4 drives the first rack 6-3 and the second rack 6-8 to slide simultaneously and oppositely, the first rack 6-3 and the second rack 6-8 drive the two vertical clamping plates 6-1 to slide simultaneously, the rope winding wheel 5-10 rotates clockwise to enable the nylon rope 7 to be stored and wound on the rope winding wheel 5-10, the nylon rope 7 drives the sliding plate 6-10 to slide downwards through the fixed seat 6-13, and the sliding plate 6-10 drives the upper clamping plate 6-9 to move downwards, the compression spring 6-12 is compressed, and the wood is clamped under the combined action of the two vertical clamping plates 6-1 sliding towards each other and the upper clamping plate 6-9 moving downwards; the elastic action of the compression spring 6-12 facilitates the resetting of the upper clamping plate 6-9, thereby restoring the stretched state of the nylon rope 7.
The fifth concrete implementation mode:
the embodiment is described below with reference to fig. 1-7, and the cutting member sliding seat 8 comprises a fixed sliding sleeve 8-1, a C-shaped plate 8-2, a circular sliding rod 8-3, a screw rod 8-4, a top plate 8-5, a motor I8-6, a baffle circular plate 8-7 and a locking screw 8-8; two fixed sliding sleeves 8-1 are arranged, the two fixed sliding sleeves 8-1 are respectively connected to two cross beams 3-4 in a sliding manner, a C-shaped plate 8-2 is fixedly connected between the two fixed sliding sleeves 8-1, a circular sliding rod 8-3 is connected to one end of the C-shaped plate 8-2 in a sliding manner, a screw rod 8-4 is connected to the other end of the C-shaped plate 8-2 through threads, and the bottom surfaces of the circular sliding rod 8-3 and the screw rod 8-4 are respectively and fixedly connected with a baffle circular plate 8-7; the top end of the circular sliding rod 8-3 is fixedly connected to one end of the top plate 8-5, the top end of the screw rod 8-4 is rotatably connected to the other end of the top plate 8-5 through a bearing with a seat, the motor I8-6 is fixedly connected to the top surface of the top plate 8-5 through a motor frame, and an output shaft of the motor I8-6 is connected with the screw rod 8-4 through a coupling; the fixed sliding sleeve 8-1 at the front end is connected with a locking screw 8-8 through threads, and the locking screw 8-8 is propped against the cross beam 3-4. When the cutting part sliding seat 8 is used, the two fixed sliding sleeves 8-1 can move left and right on the two cross beams 3-4, the position of the fixed sliding sleeve 8-1 is fixed by screwing the locking screws 8-8, the motor I8-6 is a forward and reverse rotating motor, the motor I8-6 is connected with a power supply and a control switch through guiding and is started, the motor I8-6 drives the screw rod 8-4 to rotate around the axis of the motor I8-4, the position of the screw rod 8-4, which is contacted with the C-shaped plate 8-2, is changed when the screw rod 8-4 rotates, so that the height of the top plate 8-5 is changed, and the circular sliding rod 8-3 plays a role in positioning and guiding; the lead screw 8-4 has the characteristic of one-way self-locking, and when the lead screw 8-4 does not rotate, the position of 8-5 cannot be changed.
The sixth specific implementation mode:
the embodiment is described below with reference to fig. 1-7, and the cutting device 9 comprises a vertical frame plate 9-1, a motor ii 9-2, a driving pulley 9-3, a driven pulley 9-4, a pulley rotating shaft 9-5 and a cutter disc 9-6; the upper end of a vertical frame plate 9-1 is fixedly connected to the middle end of a top plate 8-5, a motor II 9-2 is fixedly connected to the middle end of the vertical frame plate 9-1 through a motor frame, an output shaft of the motor II 9-2 is fixedly connected with a driving pulley 9-3, the driving pulley 9-3 is in transmission connection with a driven pulley 9-4 through a belt, the driven pulley 9-4 and a cutter disc 9-6 are both fixedly connected to a pulley rotating shaft 9-5, and the pulley rotating shaft 9-5 is rotatably connected to the lower end of the vertical frame plate 9-1 through a belt seat bearing. When the cutting device 9 is used, the motor II 9-2 is connected with a power supply and a control switch through guiding and is started, the motor II 9-2 drives the driving belt wheel 9-3 to rotate, the driving belt wheel 9-3 drives the driven belt wheel 9-4 to rotate through a belt, the driven belt wheel 9-4 drives the belt wheel rotating shaft 9-5 to rotate, the belt wheel rotating shaft 9-5 drives the cutting cutter disc 9-6 to rotate, and when the top plate 8-5 is changed to drive the cutting device 9 to move downwards, the rotating cutting cutter disc 9-6 moves downwards to realize the cutting work of wood; when the position of the cutting piece sliding seat 8 is changed, the position of the cutting cutter disc 9-6 is driven to change, so that the cutting work of different positions of the wood is realized.
The seventh embodiment:
the embodiment is described below with reference to fig. 1-7, and the clamping piece 5-12 comprises a short shaft 5-12-1, a rotary disc 5-12-2, a sliding rod 5-12-3, a spring seat 5-12-4, a first spring 5-12-5 and a pull disc 5-12-6; one end of a short shaft 5-12-1 is fixedly connected to the outer end of the front end of a rotating shaft 5-8, the other end of the short shaft 5-12-1 is fixedly connected with a rotary table 5-12-2, a sliding rod 5-12-3 is slidably connected to the eccentric position of the rotary table 5-12-2, a spring seat 5-12-4 and a pull disc 5-12-6 are fixedly connected to the sliding rod 5-12-3, the spring seat 5-12-4 is located at the rear end of the rotary table 5-12-2, the pull disc 5-12-6 is located at the front end of the sliding rod 5-12-3, a first spring 5-12-5 is sleeved on the sliding rod 5-12-3, and two ends of the first spring 5-12-5 are fixedly connected to the spring seat 5-12-4 and the rotary table 5-12-; the rear end of the slide rod 5-12-3 is in clearance fit in one jack 5-11. When the clamping piece 5-12 is used, the pull disc 5-12-6 is pulled outwards, the pull disc 5-12-6 drives the sliding rod 5-12-3 to slide outwards, the rear end of the sliding rod 5-12-3 is separated from the jack 5-11, the first spring 5-12-5 is compressed, the sliding rod 5-12-3 at the front end of the rotary disc 5-12-2 is held by a hand, the sliding rod 5-12-3 is rotated clockwise at the moment, the sliding rod 5-12-3 drives the rotary disc 5-12-2 to rotate clockwise around the axis of the short shaft 5-12-1, the rotary disc 5-12-2 drives the short shaft 5-12-1 to rotate clockwise around the axis of the rotary disc, and the short shaft 5-12-1 drives the rotary shaft 5-8 to rotate clockwise around the axis of the rotary disc; when the sliding rod 5-12-3 is aligned with one insertion hole 5-11, the sliding rod 5-12-3 is pushed backwards, the rear end of the sliding rod 5-12-3 is inserted into the insertion hole 5-11, the rotating angle of the rotating disc 5-12-2 is fixed, the first spring 5-12-5 can give the spring seat 5-12-4 and the pushing sliding rod 5-12-3 backward pushing force, and the pushing sliding rod 5-12-3 cannot be separated from the insertion hole 5-11 under the condition of no external force.
The specific implementation mode is eight:
the top surface of the trapezoidal sliding rod 5-5 is higher than the top surfaces of the first rack 6-3, the gear 6-4 and the second rack 6-8, so that the gravity of wood is prevented from influencing the operation of the rack 6-3, the gear 6-4 and the second rack 6-8 and damaging the rack 6-3, the gear 6-4 and the second rack 6-8.
The invention relates to a working principle of a wood cutting device for architectural decoration, which comprises the following steps: when the wood cutting machine is used, the two fixing part sliding seats 5 can move on the horizontal working plate 3 so as to be suitable for woods with different lengths, the wood fixing components 6 and the fixing part sliding seats 5 form rectangular spaces, the woods penetrate into the two rectangular spaces from one end, the two ends of the woods are respectively positioned on the two fixing part sliding seats 5, the two ends of the woods are clamped and fixed by controlling the two wood fixing components 6, the two wood fixing components 6 can be suitable for clamping and fixing the woods with different shapes and sizes, and after the cutting part sliding seats 8 and the cutting device 9 are communicated with a power supply to be started, the cutting part sliding seats 8 drive the working cutting device 9 to move downwards to cut the woods; the cutting piece sliding seat 8 can move left and right to drive the cutting device 9 to change the position, so that different positions of the wood are cut, and the wood with the required size can be conveniently cut; the saw-dust collection box 4 is collected to the saw-dust that the cutting during operation produced, avoids causing inconvenience to the constructor. When the fixed piece sliding seat 5 is used, the sliding base 5-1 can slide left and right, and the position of the sliding base 5-1 is fixed by screwing the fastening screw 5-3; the clamping piece 5-12 is rotated clockwise, the clamping piece 5-12 drives the rotating shaft 5-8 to rotate clockwise around the axis of the clamping piece 5-12, the rotating shaft 5-8 drives the driving bevel gear 5-9 and the rope winding wheel 5-10 to rotate clockwise around the axis of the clamping piece 5-12, and the clamping piece 5-12 is clamped into one insertion hole 5-11 to fix the rotating angle of the clamping piece 5-12. When the wood fixing component 6 is used, the driving bevel gear 5-9 drives the driven bevel gear 6-6 to rotate clockwise around the axis of the driven bevel gear 6-6 drives the gear rotating shaft 6-5 to rotate clockwise around the axis of the driven bevel gear 6-5, the gear rotating shaft 6-5 drives the gear 6-4 to rotate clockwise around the axis of the driven bevel gear, the gear 6-4 drives the first rack 6-3 and the second rack 6-8 to simultaneously slide in opposite directions, the first rack 6-3 and the second rack 6-8 drive the two vertical clamping plates 6-1 to simultaneously slide in opposite directions, meanwhile, the rope winding wheel 5-10 rotates clockwise to enable the rope 7 to be stored and wound on the rope winding wheel 5-10, the nylon rope 7 drives the sliding plate 6-10 to slide downwards through the fixing seat 6-13, and the sliding plate 6-10 drives the upper clamping plate 6-9, the compression spring 6-12 is compressed, and the wood is clamped under the combined action of the two vertical clamping plates 6-1 sliding towards each other and the upper clamping plate 6-9 moving downwards; the elastic action of the compression spring 6-12 facilitates the resetting of the upper clamping plate 6-9, thereby restoring the stretched state of the nylon rope 7. When the cutting part sliding seat 8 is used, the two fixed sliding sleeves 8-1 can move left and right on the two cross beams 3-4, the position of the fixed sliding sleeve 8-1 is fixed by screwing the locking screws 8-8, the motor I8-6 is a forward and reverse rotating motor, the motor I8-6 is connected with a power supply and a control switch through guiding and is started, the motor I8-6 drives the screw rod 8-4 to rotate around the axis of the motor I8-4, the position of the screw rod 8-4, which is contacted with the C-shaped plate 8-2, is changed when the screw rod 8-4 rotates, the height of the top plate 8-5 is changed, and the circular sliding rod 8-3 plays a role in positioning and guiding. When the cutting device 9 is used, the motor II 9-2 is connected with a power supply and a control switch through guiding and is started, the motor II 9-2 drives the driving belt wheel 9-3 to rotate, the driving belt wheel 9-3 drives the driven belt wheel 9-4 to rotate through a belt, the driven belt wheel 9-4 drives the belt wheel rotating shaft 9-5 to rotate, the belt wheel rotating shaft 9-5 drives the cutting cutter disc 9-6 to rotate, and when the top plate 8-5 is changed to drive the cutting device 9 to move downwards, the rotating cutting cutter disc 9-6 moves downwards to realize the cutting work of wood; when the position of the cutting piece sliding seat 8 is changed, the position of the cutting cutter disc 9-6 is driven to change, so that the cutting work of different positions of the wood is realized. When the clamping piece 5-12 is used, the pull disc 5-12-6 is pulled outwards, the pull disc 5-12-6 drives the sliding rod 5-12-3 to slide outwards, the rear end of the sliding rod 5-12-3 is separated from the jack 5-11, the first spring 5-12-5 is compressed, the sliding rod 5-12-3 at the front end of the rotary disc 5-12-2 is held by a hand, the sliding rod 5-12-3 is rotated clockwise at the moment, the sliding rod 5-12-3 drives the rotary disc 5-12-2 to rotate clockwise around the axis of the short shaft 5-12-1, the rotary disc 5-12-2 drives the short shaft 5-12-1 to rotate clockwise around the axis of the rotary disc, and the short shaft 5-12-1 drives the rotary shaft 5-8 to rotate clockwise around the axis of the rotary disc; when the sliding rod 5-12-3 is aligned with one insertion hole 5-11, the sliding rod 5-12-3 is pushed backwards, the rear end of the sliding rod 5-12-3 is inserted into the insertion hole 5-11, the rotating angle of the rotating disc 5-12-2 is fixed, the first spring 5-12-5 can give backward pushing force to the spring seat 5-12-4 and the sliding pushing rod 5-12-3, and the sliding pushing rod 5-12-3 cannot be separated from the insertion hole 5-11 under the condition of no external force.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.

Claims (4)

1. The utility model provides a wood cutting device for architectural decoration, includes base (1), supporting leg (2), horizontal work board (3), saw-dust collection box (4), mounting slide (5), the fixed subassembly of timber (6), nylon rope (7), cutting member slide (8) and cutting device (9), its characterized in that: four corners of the top surface of the base (1) are respectively fixedly connected with one supporting leg (2), a horizontal working plate (3) is fixedly connected on the four supporting legs (2), a sawdust recovery box (4) is placed at the central position of the base (1), the sawdust recovery box (4) is positioned below the horizontal working plate (3), two fixing part sliding seats (5) are arranged, two fixing part sliding seats (5) are symmetrically and slidably connected at the lower end of the horizontal working plate (3), two fixing part sliding seats (5) are respectively connected with one wood fixing component (6), the front ends of the upper ends of the two wood fixing components (6) are respectively and fixedly connected with one nylon rope (7), the lower ends of the two nylon ropes (7) are respectively and fixedly connected at the front ends of the two fixing part sliding seats (5), a cutting part sliding seat (8) is slidably connected at the upper end of the horizontal working plate (3), a cutting device (9) is fixedly connected at the middle end of the cutting part sliding seat, the cutting device (9) is positioned above the wood fixing component (6);
the horizontal working plate (3) comprises a working plate body (3-1), a chip removal through groove (3-2), a trapezoidal sliding rail (3-3), a cross beam (3-4) and a vertical rod (3-5); the working plate body (3-1) is fixedly connected to the four supporting legs (2), a chip removal through groove (3-2) is formed in the center of the working plate body (3-1), the wood chip recovery box (4) is located below the chip removal through groove (3-2), and the two trapezoidal sliding rails (3-3) are symmetrically and fixedly connected to two ends of the top surface of the working plate body (3-1); two cross beams (3-4) are arranged, and two ends of the two cross beams (3-4) are respectively and fixedly connected with a vertical rod (3-5); the two cross beams (3-4) are respectively and fixedly connected to the outer ends of the front end and the rear end of the working plate body (3-1) through vertical rods (3-5);
the fixed part sliding seat (5) comprises a sliding base (5-1), a screw fixing seat (5-2), a fastening screw (5-3), a supporting seat (5-4), a trapezoidal sliding rod (5-5), a rear seat plate (5-6), a front seat plate (5-7), a rotating shaft (5-8), a driving bevel gear (5-9), a rope winding wheel (5-10), an inserting hole (5-11) and a clamping piece (5-12); the sliding base (5-1) is connected to the two trapezoidal sliding rails (3-3) in a sliding mode, the front end of the sliding base (5-1) is fixedly connected with a transverse plate of the screw fixing seat (5-2), a vertical plate of the screw fixing seat (5-2) is connected with a fastening screw (5-3) through threads, and the fastening screw (5-3) abuts against the front end face of the working plate body (3-1); the inner end of the sliding base (5-1) is fixedly connected with a supporting seat (5-4), and the middle end of the top surface of the supporting seat (5-4) is fixedly connected with a trapezoidal sliding rod (5-5); the front seat plate (5-7) and the rear seat plate (5-6) are respectively fixedly connected to the front end and the rear end of the outer end of the sliding base (5-1), the two ends of the rotating shaft (5-8) are respectively rotatably connected to the front seat plate (5-7) and the rear seat plate (5-6), the driving bevel gear (5-9) is fixedly connected to the middle end of the rotating shaft (5-8), the rope winding wheel (5-10) is fixedly connected to the rotating shaft (5-8), the rope winding wheel (5-10) is positioned at the rear end of the front seat plate (5-7), a plurality of insertion holes (5-11) are uniformly arranged on the front seat plate (5-7) in a surrounding manner around the axis of the rotating shaft (5-8), the clamping piece (5-12) is fixedly connected to the outer end of the front end of the rotating shaft (5-8), and the clamping piece (5-12) is in clearance fit; the lower end of the nylon rope (7) is fixedly connected to the rope winding wheel (5-10);
the wood fixing component (6) comprises a vertical clamping plate (6-1), a rectangular sliding groove (6-2), a first rack (6-3), a gear (6-4), a gear rotating shaft (6-5), a driven bevel gear (6-6), a shaft bracket plate (6-7), a second rack (6-8), an upper clamping plate (6-9), a sliding plate (6-10), a spring loop bar (6-11), a compression spring (6-12) and a fixed seat (6-13); two vertical splints (6-1) are respectively connected with two ends of a trapezoidal sliding rod (5-5) in a sliding way, rectangular sliding grooves (6-2) are respectively arranged on the two vertical splints (6-1), the outer ends of the lower ends of the two vertical splints (6-1) are respectively fixedly connected with a first rack (6-3) and a second rack (6-8), the first rack (6-3) and the second rack (6-8) are respectively connected with two sides of a gear (6-4) in a meshing transmission way, the gear (6-4) and a driven bevel gear (6-6) are respectively fixedly connected with the upper end and the lower end of a gear rotating shaft (6-5), the driven bevel gear (6-6) is connected with a driving bevel gear (5-9) in a meshing transmission way, the gear rotating shaft (6-5) is rotatably connected on a shaft frame plate (6-7, the shaft frame plate (6-7) is fixedly connected to the supporting seat (5-4); two ends of the upper splint (6-9) are respectively connected in the two rectangular sliding chutes (6-2) in a sliding manner, the outer ends of the two ends of the upper splint (6-9) are respectively fixedly connected with one sliding plate (6-10), the two sliding plates (6-10) are respectively connected on the two spring loop bars (6-11) in a sliding manner, and the bottom ends of the two spring loop bars (6-11) are respectively fixedly connected at two ends of the supporting seat (5-4); the spring loop bar (6-11) is sleeved with a compression spring (6-12), the compression spring (6-12) is positioned between the sliding plate (6-10) and the supporting seat (5-4), the fixed seat (6-13) is fixedly connected with the sliding plate (6-10) at the front end, and the upper end of the nylon rope (7) is fixedly connected with the fixed seat (6-13); the inner side surface of the sliding plate (6-10) is attached to the vertical clamping plate (6-1);
the clamping piece (5-12) comprises a short shaft (5-12-1), a rotary disc (5-12-2), a sliding rod (5-12-3), a spring seat (5-12-4), a first spring (5-12-5) and a pull disc (5-12-6); one end of a short shaft (5-12-1) is fixedly connected with the outer end of the front end of a rotating shaft (5-8), the other end of the short shaft (5-12-1) is fixedly connected with a rotary disc (5-12-2), a sliding rod (5-12-3) is slidably connected with the eccentric position of the rotary disc (5-12-2), a spring seat (5-12-4) and a pull disc (5-12-6) are fixedly connected with the sliding rod (5-12-3), the spring seat (5-12-4) is located at the rear end of the rotary disc (5-12-2), the pull disc (5-12-6) is located at the front end of the sliding rod (5-12-3), a first spring (5-12-5) is sleeved on the sliding rod (5-12-3), and two ends of the first spring (5-12-5) are respectively and fixedly connected with the spring seat (5-12-5) 12-4) and a rotary table (5-12-2); the rear ends of the sliding rods (5-12-3) are in clearance fit in one insertion hole (5-11).
2. The architectural ornament wood cutting apparatus according to claim 1, wherein: the cutting part sliding seat (8) comprises a fixed sliding sleeve (8-1), a C-shaped plate (8-2), a circular sliding rod (8-3), a lead screw (8-4), a top plate (8-5), a motor I (8-6), a circular baffle plate (8-7) and a locking screw (8-8); two fixed sliding sleeves (8-1) are arranged, the two fixed sliding sleeves (8-1) are respectively connected to two cross beams (3-4) in a sliding manner, a C-shaped plate (8-2) is fixedly connected between the two fixed sliding sleeves (8-1), a circular sliding rod (8-3) is connected to one end of the C-shaped plate (8-2) in a sliding manner, a screw rod (8-4) is connected to the other end of the C-shaped plate (8-2) through threads, and the bottom surfaces of the circular sliding rod (8-3) and the screw rod (8-4) are respectively and fixedly connected with a circular blocking plate (8-7); the top end of the circular sliding rod (8-3) is fixedly connected to one end of the top plate (8-5), the top end of the screw rod (8-4) is rotatably connected to the other end of the top plate (8-5), the motor I (8-6) is fixedly connected to the top surface of the top plate (8-5) through a motor frame, and the output shaft of the motor I (8-6) is connected with the screw rod (8-4) through a coupler; the fixed sliding sleeve (8-1) at the front end is connected with a locking screw (8-8) through threads, and the locking screw (8-8) is propped against the cross beam (3-4).
3. The architectural ornament wood cutting apparatus according to claim 2, wherein: the cutting device (9) comprises a vertical frame plate (9-1), a motor II (9-2), a driving belt wheel (9-3), a driven belt wheel (9-4), a belt wheel rotating shaft (9-5) and a cutting cutter disc (9-6); the upper end of a vertical frame plate (9-1) is fixedly connected to the middle end of a top plate (8-5), a motor II (9-2) is fixedly connected to the middle end of the vertical frame plate (9-1) through a motor frame, an output shaft of the motor II (9-2) is fixedly connected with a driving pulley (9-3), the driving pulley (9-3) is connected with a driven pulley (9-4) through a belt in a transmission manner, the driven pulley (9-4) and a cutter head (9-6) are both fixedly connected to a pulley rotating shaft (9-5), and the pulley rotating shaft (9-5) is rotatably connected to the lower end of the vertical frame plate (9-1).
4. The architectural ornament wood cutting apparatus according to claim 1, wherein: the top surface of the trapezoidal sliding rod (5-5) is higher than the top surfaces of the first rack (6-3), the gear (6-4) and the second rack (6-8).
CN201811651124.0A 2018-12-31 2018-12-31 Wood cutting device for architectural decoration Active CN109551574B (en)

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CN112975433B (en) * 2021-03-26 2022-12-20 安徽典一金属制品有限公司 Indoor building decoration ceiling aluminum alloy buckle plate forming and processing system
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Publication number Priority date Publication date Assignee Title
EP0044479A1 (en) * 1980-07-18 1982-01-27 Karlheinz Kupfer Device for cutting down radio-active workpieces
CN108115200A (en) * 2016-11-28 2018-06-05 宜昌盼宝宝新材料科技有限公司 Doorframe plate synchronous cutting equipment
CN107718198A (en) * 2017-11-19 2018-02-23 刘毓玉 A kind of machine and wood cutting of recyclable chip
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