CN207077546U - The three-dimensional mobility framework structure of batten forming machine - Google Patents

The three-dimensional mobility framework structure of batten forming machine Download PDF

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Publication number
CN207077546U
CN207077546U CN201720999032.6U CN201720999032U CN207077546U CN 207077546 U CN207077546 U CN 207077546U CN 201720999032 U CN201720999032 U CN 201720999032U CN 207077546 U CN207077546 U CN 207077546U
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crossbeam
forming machine
framework structure
mobility framework
machine according
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郑伟
葛国平
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Ningbo University
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Ningbo University
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Abstract

The utility model provides a kind of three-dimensional mobility framework structure of batten forming machine, belongs to wood processing technique field.The utility model includes base, described base is provided with guide assembly, support is provided with guide assembly, described support is slidably connected with guide assembly, described support is provided with a crossbeam that is flexibly connected and can be moved back and forth along vertical direction with support, a frame for being used to install cutting machine is provided with crossbeam, and frame is flexibly connected with crossbeam and can moved along the axial reciprocating of crossbeam.The utility model can realize the movement of the three-dimensional of cutting machine, when cutting machine case is when in frame structure, three-dimensional motion can be realized, so as to improve cutting efficiency.

Description

The three-dimensional mobility framework structure of batten forming machine
Technical field
The utility model belongs to wood processing technique field, is related to a kind of three-dimensional mobility framework structure of batten forming machine.
Background technology
Plank is by being obtained after the cutting of the timber of whole, and batten is then by being first cut into plate, then after plate is cut Obtain, it is necessary to adjust the position of cutting machine in cutting process, obtain the plank of different-thickness, it is also desirable to pass through cutting machine edge The axial movement of timber could realize the cutting to plank or batten, and existing cutting machine is or past generally by manual movement Toward can only be relatively low along the axial movement of timber, cutting efficiency.
Utility model content
The purpose of this utility model is in view of the above-mentioned problems, providing a kind of three-dimensional mobility framework structure of batten forming machine.
To reach above-mentioned purpose, the utility model employs following technical proposal:
A kind of three-dimensional mobility framework structure of batten forming machine, including base, described base are provided with guide assembly, Guide assembly is provided with support, and described support is slidably connected with guide assembly, and described support is provided with one and lived with support The dynamic crossbeam that connects and can be moved back and forth along vertical direction, a frame for being used to install cutting machine is provided with crossbeam, and Frame is flexibly connected with crossbeam and can moved along the axial reciprocating of crossbeam.
Preferably, described guide assembly includes two guide rails being parallel to each other, and described support, which includes two, mutually puts down Capable column, described column is corresponded with guide rail and column bottom and guide rail clamping, wherein being provided with a root post vertical Post motor, the output shaft of column motor are connected with roller, and described roller is pressed on guide rail and rolled with guide rail Connection.
Preferably, an elevating screw is provided with column, two ends of crossbeam are inserted respectively into an elevating screw, A beam lifting drive component is respectively equipped with the both ends of crossbeam, described beam lifting drive component is connected with elevating screw And axially reciprocating of the crossbeam along elevating screw can be driven.
Preferably, described beam lifting drive component includes the lifting nut being screwed onto on elevating screw, described liter Nut is dropped to be rotatablely connected with crossbeam.
Preferably, the accommodating cavity for being used for housing lifting nut is provided with crossbeam, described lifting nut can be in accommodating cavity Middle rotation.
Preferably, described lifting nut is located at below the crossbeam, and crossbeam is pressed on lifting nut.
Preferably, described lifting nut is provided with what is engaged with lifting nut to have female gear on crossbeam Drive gear is lifted, described lifting drive gear is connected with motor.
Preferably, described cross rail top is provided with rack, and frame is provided with the gear to be matched with rack, wheel and rack Engage and gear is connected with motor.
Preferably, described frame is suspended on crossbeam, and one end has gear, and the other end is slidably connected with crossbeam.
Preferably, described base is provided with the supporting table for being used for placing timber, and it is in circular arc that the supporting table upper surface, which has, The groove of shape.
Compared with prior art, the utility model has the advantage of:The movement of the three-dimensional of cutting machine can be realized, When cutting machine case is when in frame structure, three-dimensional motion can be realized, so as to improve cutting efficiency.
Brief description of the drawings
Fig. 1 is front view of the present utility model;
Fig. 2 is top view of the present utility model.
In figure, base 1, guide assembly 2, support 3, crossbeam 4, frame 5, guide rail 6, column 7, column motor 8, roller 9th, elevating screw 10, beam lifting drive component 11, lifting nut 12, lifting drive gear 13, gear 14, supporting table 15, cut Cutting mill 100.
Embodiment
As depicted in figs. 1 and 2, the three-dimensional mobility framework structure of a kind of batten forming machine, including base 1, described base 1 Guide assembly 2 is provided with, support 3 is provided with guide assembly 2, described support 3 is slidably connected with guide assembly 2, described Support 3 is flexibly connected with support 3 provided with one and can hung down along the crossbeam 4 that vertical direction moves back and forth, crossbeam 4 with support 3 Straight to set, support 3 is vertically arranged with base 1, and a frame 5 for being used to install cutting machine 100, and frame 5 are provided with crossbeam 4 It is flexibly connected and can be moved along the axial reciprocating of crossbeam 4 with crossbeam 4.
The utility model, support 3 can be movable along the guide assembly 2 on base 1, and crossbeam 4 can be along support about 3 It is mobile, and frame 5 can move forward and backward along crossbeam, because installation cutting machine 100 is arranged in frame 5, therefore, cutting machine 100 The movement of 3 different directions can be realized, namely is moved along the three-dimensional of X, Y, Z axis.
In the present embodiment, guide assembly 2 includes two guide rails 6 being parallel to each other, and guide rail 6 is horizontally disposed, described support 3 Including two columns being parallel to each other 7, column 7 is vertically arranged, described column 7 and guide rail correspond and the bottom of column 7 with The clamping of guide rail 6, column 7 can move along guide rail 6, wherein being provided with column motor 8, column motor 8 on a root post 7 Output shaft be connected with roller 9, described roller 9 is pressed on guide rail 6 and rolled with guide rail 6 and connected.
An elevating screw 10 is provided with column 7, two ends of crossbeam 4 are inserted respectively into an elevating screw 10, A beam lifting drive component 11, described beam lifting drive component 11 and lifting silk are respectively equipped with the both ends of crossbeam 4 Bar 10 connects and can drive axially reciprocating of the crossbeam 4 along elevating screw 10.
Elevating screw 10 can be arranged on the sidepiece of column 7, and be fixedly connected with column 7.Can also be dug in column 7 Go out a groove, elevating screw 10 is located in groove.
Beam lifting drive component 11 includes the lifting nut 12 being screwed onto on elevating screw 10, described lifting nut 12 It is rotatablely connected with crossbeam 4.
The one of which scheme of beam lifting drive component 11 is that elevating screw 10 passes through crossbeam 4, and lifting nut 12 is located at The lower section of crossbeam 4, crossbeam 4 are pressed on lifting nut 12, are rotated lifting nut 12 and are risen or fallen and can push up along elevating screw 10 Firmly crossbeam rises or falls.
Another scheme of beam lifting drive component 11 is that the appearance for being used for housing lifting nut 12 is provided with crossbeam 4 Chamber is put, described lifting nut 12 can rotate in accommodating cavity, and two surfaces up and down of lifting nut 12 connect with accommodating cavity gap Touch, when lifting nut 12 rises or falls, upper surface or lower surface can withstand accommodating cavity wall, so as to withstand crossbeam rise or Decline.
Preferred scheme is that lifting nut 12 is provided with crossbeam 4 and engaged with lifting nut 12 to have female gear Lifting drive gear 13, described lifting drive gear 13 is connected with motor.When motor driven lifting drive gear 13 rotates When, lifting nut 12 can be driven to rotate, so as to drive beam lifting.
The top of crossbeam 4 is provided with rack, frame 5 engaged provided with the gear 14 to be matched with rack, gear 14 with rack and Gear 14 is connected with motor.
Preferred scheme, frame 5 are suspended on crossbeam 4, and one end has gear, and the other end is slidably connected with crossbeam 4.
Base 1 is provided with the supporting table 15 for being used for placing timber, and the upper surface of supporting table 15 has the groove in circular arc. Groove matches with timber to be cut, plays a part of positioning support.
Operation principle of the present utility model is:
The axial direction of crossbeam 4 is defined as X-axis, and the axial direction of guide rail 6 is defined as Y-axis, and the axial direction of column 7 is defined as Z axis.
When cutting machine 100 needs the axial movement along crossbeam 4, gear 14 rotates, shape after being engaged with the rack on crossbeam 4 Into movable effect, gear 14 can connect motor.
When cutting machine 100 needs to move axially along guide rail 6, column motor 8 drives roller 9 to rotate, and column 7 is along leading Rail 6 moves axially back and forth.
When cutting machine 100 needs to move axially along column 7, lifting drive gear 13 drives lifting nut 12 to rotate, and rises Drop nut 12 lifts along elevating screw 10, drives crossbeam 4 to be lifted along column 7, namely drives the synchronization lifting of cutting machine 100.
Specific embodiment described herein is only to the utility model spirit explanation for example.The utility model institute Category those skilled in the art can make various modifications or supplement to described specific embodiment or using similar Mode substitute, but without departing from spirit of the present utility model or surmount scope defined in appended claims.

Claims (10)

1. a kind of three-dimensional mobility framework structure of batten forming machine, including base (1), it is characterised in that on described base (1) Provided with guide assembly (2), support (3) is provided with guide assembly (2), described support (3) slides with guide assembly (2) to be connected Connect, described support (3) be flexibly connected provided with one with support (3) and can along the crossbeam (4) that vertical direction moves back and forth, A frame (5) for being used to install cutting machine (100) is provided with crossbeam (4), and frame (5) is flexibly connected simultaneously with crossbeam (4) It can be moved along the axial reciprocating of crossbeam (4).
2. the three-dimensional mobility framework structure of batten forming machine according to claim 1, it is characterised in that described set of rails Part (2) includes two guide rails (6) being parallel to each other, and described support (3) includes two columns (7) being parallel to each other, described Column (7) is corresponded with guide rail and column (7) bottom and guide rail (6) clamping, wherein being provided with column drive on a root post (7) Dynamic motor (8), the output shaft of column motor (8) are connected with roller (9), described roller (9) be pressed on guide rail (6) and Roll and connect with guide rail (6).
3. the three-dimensional mobility framework structure of batten forming machine according to claim 2, it is characterised in that in column (7) Provided with an elevating screw (10), two ends of crossbeam (4) are inserted respectively into an elevating screw (10), in crossbeam (4) Both ends are respectively equipped with a beam lifting drive component (11), described beam lifting drive component (11) and elevating screw (10) Connect and axially reciprocating of the crossbeam (4) along elevating screw (10) can be driven.
4. the three-dimensional mobility framework structure of batten forming machine according to claim 3, it is characterised in that described crossbeam liter Drop drive component (11) includes the lifting nut (12) being screwed onto on elevating screw (10), described lifting nut (12) and crossbeam (4) it is rotatablely connected.
5. the three-dimensional mobility framework structure of batten forming machine according to claim 4, it is characterised in that in crossbeam (4) Provided with the accommodating cavity for housing lifting nut (12), described lifting nut (12) can rotate in accommodating cavity.
6. the three-dimensional mobility framework structure of batten forming machine according to claim 4, it is characterised in that described lifting spiral shell Female (12) are located at below crossbeam (4), and crossbeam (4) is pressed on lifting nut (12).
7. the three-dimensional mobility framework structure of batten forming machine according to claim 5, it is characterised in that described lifting spiral shell Female (12) are provided with the lifting drive gear (13) engaged with lifting nut (12) to have female gear on crossbeam (4), Described lifting drive gear (13) is connected with motor.
8. the three-dimensional mobility framework structure of batten forming machine according to claim 1, it is characterised in that described crossbeam (4) top is provided with rack, and frame (5) is provided with the gear (14) to be matched with rack, and gear (14) is engaged with rack and gear (14) it is connected with motor.
9. the three-dimensional mobility framework structure of batten forming machine according to claim 8, it is characterised in that described frame (5) it is suspended on crossbeam (4), and one end has gear, the other end is slidably connected with crossbeam (4).
10. the three-dimensional mobility framework structure of batten forming machine according to claim 1, it is characterised in that described base (1) supporting table (15) for being used for placing timber is provided with, supporting table (15) upper surface has the groove in circular arc.
CN201720999032.6U 2017-08-10 2017-08-10 The three-dimensional mobility framework structure of batten forming machine Active CN207077546U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720999032.6U CN207077546U (en) 2017-08-10 2017-08-10 The three-dimensional mobility framework structure of batten forming machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720999032.6U CN207077546U (en) 2017-08-10 2017-08-10 The three-dimensional mobility framework structure of batten forming machine

Publications (1)

Publication Number Publication Date
CN207077546U true CN207077546U (en) 2018-03-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720999032.6U Active CN207077546U (en) 2017-08-10 2017-08-10 The three-dimensional mobility framework structure of batten forming machine

Country Status (1)

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CN (1) CN207077546U (en)

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