CN210148336U - Wood door comprehensive processing machine - Google Patents

Wood door comprehensive processing machine Download PDF

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Publication number
CN210148336U
CN210148336U CN201920098626.9U CN201920098626U CN210148336U CN 210148336 U CN210148336 U CN 210148336U CN 201920098626 U CN201920098626 U CN 201920098626U CN 210148336 U CN210148336 U CN 210148336U
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direction power
component
power
power tool
cutter
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CN201920098626.9U
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Chinese (zh)
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刘烨
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Shanghai Ye Heng Wood Machinery Co Ltd
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Shanghai Ye Heng Wood Machinery Co Ltd
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Abstract

The utility model provides a timber integrated processing machine, include: the device comprises a transverse guide rail frame, a workbench, a PLC control box, a sliding seat, an X-direction power tool component, a Z-direction power tool component and a Y-direction power tool component; the transverse guide rail frame spans on the workbench; the transverse guide rail bracket moves along the X direction; the sliding seat is arranged on the transverse guide rail frame; the sliding seat moves along the Y direction; the X-direction power cutter assembly is arranged on the workbench; the X-direction power cutter component moves along the X direction; the working end of the X-direction power cutter component faces the workbench; the Z-direction power cutter assembly is arranged at the upper part of the sliding seat; the Z-direction power cutter component moves along the Y direction; the Y-direction power cutter component is arranged on the sliding seat; the moving part of the Y-direction power cutter component moves along the Y direction; the Y-direction power tool assembly is positioned between the Z-direction power tool assembly and the workbench; the PLC control box is in signal connection with the X-direction power tool assembly, the Z-direction power tool assembly and the Y-direction power tool assembly respectively. The utility model discloses simple structure, processing precision height, degree of automation height, process integrate the degree height.

Description

Wood door comprehensive processing machine
Technical Field
The utility model belongs to the technical field of wood working machinery, especially, relate to a timber integrated processing machine.
Background
Chinese patent CN 103481335 a discloses an automatic woodworking machine tool, belonging to the technical field of woodworking machines. It has solved the current woodworking machining efficiency problem that is not high, the product precision is lower. The automatic woodworking machine tool comprises a frame, wherein a workpiece conveying device is arranged on the frame, a feed hopper is arranged at the front end of the conveying device, a sawing device, a drilling device and a milling groove device are further arranged on the frame, and the sawing device comprises power heads arranged at two ends of the frame, saw blades arranged on power head output shafts, and lifting cylinders for driving the saw blades to move up and down. This automatic wood working machine passes through the electric apparatus combination actions such as PLC system control servo motor, cylinder, power head, can realize actions such as flush cutting, tip drilling, side milling flutes of sheet material through once fixing a position, but this patent structure is complicated, the processing precision is not high, is not suitable for wooden cutting, drilling moreover.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a timber integrated processing machine, its simple structure, processing precision height, degree of automation height and process integrate the degree height. In order to achieve the above object, the utility model adopts the following technical scheme:
a wood door integrated processing machine comprises: the device comprises a transverse guide rail frame, a workbench, a PLC control box, a sliding seat, an X-direction power tool component, a Z-direction power tool component and a Y-direction power tool component;
wherein the transverse guide rail bracket spans on the workbench; the transverse guide rail bracket moves along the X direction;
the sliding seat is arranged on the transverse guide rail bracket; the sliding seat moves along the Y direction;
the X-direction power cutter assembly is arranged on one side of the workbench along the length direction; the X-direction power cutter component moves along the X direction; the working end of the X-direction power cutter component faces the workbench;
the Z-direction power cutter assembly is arranged at the upper part of the sliding seat; the Z-direction power cutter component moves along the Y direction;
the Y-direction power cutter assembly is arranged on the sliding seat; the moving part of the Y-direction power cutter component moves along the Y direction; the Y-direction power cutter component is positioned between the Z-direction power cutter component and the workbench;
and the PLC control box is in signal connection with the X-direction power cutter assembly, the Z-direction power cutter assembly and the Y-direction power cutter assembly respectively.
Preferably, a ball screw pair is arranged between the sliding seat and the transverse guide rail bracket; the ball screw pair is arranged on the transverse guide rail frame; the input end of the ball screw pair is connected with a power assembly.
Preferably, the Y-direction power cutter assembly includes a rotary power member and a Y-direction cutter member; the rotating power component is in signal connection with the PLC control box; the output end of the rotary power component drives the Y-direction cutter component to move along the Y direction.
Preferably, the number of Y-direction power tool assemblies is 2.
Preferably, the Y-direction power tool assembly includes a Y-direction milling cutter member.
Preferably, the Y-direction power tool assembly includes a motor; the motor is a cantilever milling motor.
Preferably, the Y-direction power cutter assembly includes a Y-direction drill bit member; the Y-direction milling cutter member is located above the Y-direction drill member.
Preferably, the rotary power assembly comprises a stepping motor and an L-shaped connecting rod; the stepping motor is fixed on the sliding seat; an output shaft of the stepping motor is connected with one section of the L-shaped connecting rod; the other section of the L-shaped connecting rod is fixed with the Y-direction cutter component.
Preferably, the Z-direction power cutter assembly includes a Z-direction milling cutter power member and a Z-direction drill power cutter member.
Preferably, the Y-direction power cutter assembly is located on the outside of the Z-direction power cutter assembly.
Compared with the prior art, the beneficial effects of the utility model are that:
1) through X to power tool assembly, Z to power tool assembly and Y to power tool assembly, can accomplish timber processing, tool to lock processing, hinge processing, door closer processing, application tool spot facing work and plane milling process etc. and the manufacturing procedure is various, and the function is diversified.
2) Because the equipment integrates multiple functions, the production cost is saved, and the floor area of the equipment is reduced.
3) Through setting up the rotatory power component, the Y can carry out the rotation of arbitrary angle to the cutter component to satisfy multiple different processing demands.
Drawings
FIG. 1 is a front view of a wood door comprehensive processing machine according to an embodiment of the present invention;
FIG. 2 is a side view of FIG. 1;
FIG. 3 is a top view of FIG. 1;
fig. 4 is a partial schematic view of fig. 3.
The device comprises a transverse guide rail frame, a 2 workbench, a 3 sliding seat, a 4-X direction power cutter component, a 5-Y direction power cutter component, a 51-Y direction milling cutter component, a 52-Y direction drill bit component, a 53-stepping motor, a 54-L type connecting rod, a 6-Z direction power cutter component and a 7-driving component.
Detailed Description
The present invention will now be described in greater detail with reference to the drawings, in which preferred embodiments of the invention are shown, it being understood that those skilled in the art may modify the invention herein described while still achieving the beneficial results of the invention. Accordingly, the following description should be construed as broadly as possible to those skilled in the art and not as limiting the invention.
As shown in FIGS. 1-4, a wood door comprehensive processing machine comprises: the device comprises a transverse guide rail frame 1, a workbench 2, a PLC control box, a sliding seat 3, an X-direction power tool component 4, a Z-direction power tool component 6 and a Y-direction power tool component 5; the PLC control box is in signal connection with the X-direction power cutter assembly 4, the Z-direction power cutter assembly 6 and the Y-direction power cutter assembly 5 respectively.
Specifically, the transverse guide rail frame 1 spans over the workbench 2, in this embodiment, the workbench 2 is horizontally arranged, the transverse guide rail frame 1 spans over the front end and the rear end of the workbench 2, and the transverse guide rail frame 1 is vertically arranged; the transverse guide rail bracket 1 moves along the X direction; a power assembly is arranged between the transverse guide rail frame 1 and the workbench 2, receives signals of the PLC control box and drives the transverse guide rail frame 1 to move along the X direction of the workbench 2; the sliding seat 3 is arranged on the transverse guide rail bracket 1; the slide carriage 3 moves along the Y direction; the X-direction power cutter component 4 is arranged on one side of the workbench 2 along the length direction; in the present embodiment, the X-direction power tool assembly 4 is mounted at the left end of the table 2; the X-direction power cutter component 4 moves along the X direction; the working end of the X-direction power cutter component 4 faces the workbench 2; a power component is arranged between the X-direction power cutter component 4 and the workbench 2; the Z-direction power cutter assembly 6 is arranged at the upper part of the sliding seat 3; the Z-direction power cutter assembly 6 moves along the Y direction; the Y-direction power cutter component 5 is arranged on the sliding seat 3; the moving part of the Y-direction power cutter component 5 moves along the Y direction; the Y-direction power cutter assembly 5 is located between the Z-direction power cutter assembly 6 and the table 2.
As shown in fig. 3, a ball screw pair is arranged between the sliding base 3 and the transverse guide rail bracket 1; the ball screw pair is arranged on the transverse guide rail frame 1; the input end of the ball screw pair is connected with a driving component 7. In this embodiment, the driving assembly 7 is a stepping motor, which drives the ball screw pair to operate and drives the slide 3 to move along the Y direction. As will be appreciated by those skilled in the art, ball screw assemblies are common knowledge.
As shown in FIG. 3, the Y-direction power blade assembly 5 includes a rotary power member and a Y-direction blade member; the rotary power component is in signal connection with the PLC control box; the output end of the rotary power component drives the Y-direction cutter component to move along the Y direction, namely the Y-direction cutter component can rotate at any angle, so that the machining requirement is met.
In this embodiment, the number of Y-direction power cutter assemblies 5 is 2.
In this embodiment, the Y-direction power cutter assembly 5 includes a Y-direction cutter member 51 and a Y-direction bit member 52; the milling and drilling processes of a workpiece can be completed simultaneously; the Y-direction milling cutter member 51 is located above the Y-direction drill member 52. The Y-direction milling cutter member 51 includes a motor; the motor is a cantilever type milling motor, and the motor is used for milling, and is rapid and stable in processing and high in processing precision.
In this embodiment, the rotary power unit includes a stepping motor 53 and an L-shaped connecting rod 54; the stepping motor 53 is fixed on the sliding seat 3; the output shaft of the stepping motor 53 is connected with one section of the L-shaped connecting rod 54; the other section of the L-shaped connecting rod 54 is fixed to the Y-direction cutter member.
As shown in FIG. 4, the Z-power tool assembly 6 includes a Z-mill power tool member and a Z-drill power tool member for simultaneously performing milling and drilling operations on another workpiece
In this embodiment, the Y-direction power cutter assembly 5 is located outside the Z-direction power cutter assembly 6, as shown in fig. 2.
In this embodiment, it will be appreciated by those skilled in the art that the X-direction power cutter assembly 4, the Z-direction power cutter assembly 6 and the Y-direction power cutter assembly 5 each comprise a power member and a corresponding cutter member.
The above description is only for the preferred embodiment of the present invention, and does not limit the present invention. Any technical personnel who belongs to the technical field, in the scope that does not deviate from the technical scheme of the utility model, to the technical scheme and the technical content that the utility model discloses expose do the change such as the equivalent replacement of any form or modification, all belong to the content that does not break away from the technical scheme of the utility model, still belong to within the scope of protection of the utility model.

Claims (10)

1. The utility model provides a timber combined machining machine which characterized in that includes: the device comprises a transverse guide rail frame, a workbench, a PLC control box, a sliding seat, an X-direction power tool component, a Z-direction power tool component and a Y-direction power tool component;
wherein the transverse guide rail bracket spans on the workbench; the transverse guide rail bracket moves along the X direction;
the sliding seat is arranged on the transverse guide rail bracket; the sliding seat moves along the Y direction;
the X-direction power cutter assembly is arranged on one side of the workbench along the length direction; the X-direction power cutter component moves along the X direction; the working end of the X-direction power cutter component faces the workbench;
the Z-direction power cutter assembly is arranged at the upper part of the sliding seat; the Z-direction power cutter component moves along the Y direction;
the Y-direction power cutter assembly is arranged on the sliding seat; the moving part of the Y-direction power cutter component moves along the Y direction; the Y-direction power cutter component is positioned between the Z-direction power cutter component and the workbench;
and the PLC control box is in signal connection with the X-direction power cutter assembly, the Z-direction power cutter assembly and the Y-direction power cutter assembly respectively.
2. The wood door finisher according to claim 1, wherein a ball screw pair is mounted between the slide carriage and the transverse rail frame; the ball screw pair is arranged on the transverse guide rail frame; the input end of the ball screw pair is connected with a power assembly.
3. The wood door finisher of claim 1, wherein the Y-direction power tool assembly includes a rotary power member and a Y-direction tool member; the rotating power component is in signal connection with the PLC control box; the output end of the rotary power component drives the Y-direction cutter component to move along the Y direction.
4. The wood door finisher of claim 3, wherein the number of Y-direction power tool assemblies is 2.
5. The wood door finisher of claim 4, wherein the Y-direction power tool assembly includes a Y-direction milling cutter member.
6. The wood door reprocessor of claim 5, wherein the Y-direction power tool assembly includes a motor; the motor is a cantilever milling motor.
7. The wood door reprocessor of claim 5, wherein the Y-directional power tool assembly includes a Y-directional drill member; the Y-direction milling cutter member is located above the Y-direction drill member.
8. The wood door reprocessor of claim 3, wherein the rotary power module comprises a stepper motor and an L-shaped connecting rod; the stepping motor is fixed on the sliding seat; an output shaft of the stepping motor is connected with one section of the L-shaped connecting rod; the other section of the L-shaped connecting rod is fixed with the Y-direction cutter component.
9. The wood door finisher of claim 1, wherein the Z-direction power tool assembly includes a Z-direction milling cutter power tool member and a Z-direction drill power tool member.
10. The wood door finisher of claim 1, wherein the Y-power tool assembly is located outside the Z-power tool assembly.
CN201920098626.9U 2019-01-22 2019-01-22 Wood door comprehensive processing machine Active CN210148336U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920098626.9U CN210148336U (en) 2019-01-22 2019-01-22 Wood door comprehensive processing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920098626.9U CN210148336U (en) 2019-01-22 2019-01-22 Wood door comprehensive processing machine

Publications (1)

Publication Number Publication Date
CN210148336U true CN210148336U (en) 2020-03-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920098626.9U Active CN210148336U (en) 2019-01-22 2019-01-22 Wood door comprehensive processing machine

Country Status (1)

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CN (1) CN210148336U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112792928A (en) * 2021-01-27 2021-05-14 滨州市虎森数控设备科技有限公司 Woodworking numerical control machining center capable of automatically feeding

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112792928A (en) * 2021-01-27 2021-05-14 滨州市虎森数控设备科技有限公司 Woodworking numerical control machining center capable of automatically feeding

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