CN210173803U - Decorative moulding saw cutting machine - Google Patents

Decorative moulding saw cutting machine Download PDF

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Publication number
CN210173803U
CN210173803U CN201920700195.9U CN201920700195U CN210173803U CN 210173803 U CN210173803 U CN 210173803U CN 201920700195 U CN201920700195 U CN 201920700195U CN 210173803 U CN210173803 U CN 210173803U
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Prior art keywords
sawing
assembly
component
decorative
saw
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CN201920700195.9U
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Chinese (zh)
Inventor
Chunwei Lu
陆春伟
Xiaolu Shao
邵小路
Renjie Ding
丁仁杰
Jin Fan
范进
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Yue Yue Tong Cnc Equipment
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Yue Yue Tong Cnc Equipment
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Abstract

The utility model relates to a trimming saw cuts machine includes: a frame having a table top; the sawing worktable assembly is connected with the front clamping device and arranged on the rack, and is used for clamping and positioning the decorative moulding; the rotatable sawing component is arranged on the rack corresponding to the sawing worktable component and is used for sawing the decorative lines; the rear clamping device is connected with the sawing worktable assembly and arranged on the rack, and the rear clamping device is used for positioning and conveying the decorative molding; the current clamping device conveys the decorative line to the sawing worktable assembly, the sawing worktable assembly clamps and positions the decorative line, and the sawing assembly can be rotated to saw one end of the decorative line; when the rear clamping device positions the decorative molding, the sawing worktable assembly clamps and positions the decorative molding. The utility model discloses a moulding saw cuts machine replaces manual operation, reduces workman intensity of labour, mutually supports through preceding clamping device and back clamping device, improves work efficiency.

Description

Decorative moulding saw cutting machine
Technical Field
The utility model relates to a saw cuts the machine, especially relates to a decorative line saw cuts machine.
Background
At present, before the splicing of the decorative lines, the end parts of the decorative lines are required to be chamfered, then the splicing is carried out, and particularly, in the process of manufacturing wooden doors in some furniture enterprises, the end parts of a large number of wooden door decorative lines are required to be chamfered.
The prior art corner cuts typically involve a worker cutting a single sawn face, then manually moving the molding and then sawing the other face, often requiring at least two cuts to form the desired angle.
In the process of implementing the present invention, the inventor finds that the prior art has at least the following problems:
the mode of sawing of prior art is through manual operation, and operating personnel's work load is great, wastes time and energy, and because the angle of cutting into is relevant with operating personnel's proficiency, consequently, the angle of sawing out generally has certain error, if the error is great, leads to the moulding to install easily to make the moulding become the waste product, cause the waste of manufacturing raw materials, still increased manufacturing cost simultaneously.
SUMMERY OF THE UTILITY MODEL
For solving the problem that prior art exists, the embodiment of the utility model provides a trimming saw cuts machine, specific technical scheme is as follows:
in a first aspect, there is provided a decor line saw for sawing a decor line, wherein the decor line saw comprises:
a frame having a table top;
the front clamping device is arranged on the rack and is used for driving the decorative moulding to be conveyed along the table top;
the sawing worktable assembly is connected with the front clamping device and arranged on the rack, and is used for clamping and positioning the decorative moulding;
the rotatable sawing component is arranged on the rack corresponding to the sawing worktable component and is used for sawing the decorative lines; and
the rear clamping device is connected with the sawing worktable assembly and arranged on the rack, and is used for positioning and conveying the decorative molding;
the current clamping device conveys the decorative line to the sawing worktable assembly, the sawing worktable assembly clamps and positions the decorative line, and the sawing assembly can be rotated to saw one end of the decorative line; when the rear clamping device positions the decorative moulding, the sawing worktable assembly clamps and positions the decorative moulding, and the sawing assembly can be rotated to saw the other end of the decorative moulding.
In a first possible implementation manner of the first aspect, the decoration device further comprises an upper bin, which is arranged on the rack and used for loading the decoration line onto the table-board; go up the feed bin and still include:
the feeding frame is arranged on the rack;
the feeding mechanism is arranged on the feeding frame and used for feeding the decorative molding;
the material receiving assembly is connected with the feeding mechanism and arranged on the feeding frame, and the material receiving assembly is used for receiving and conveying the decorative lines;
the pushing assembly is arranged on the rack corresponding to the receiving assembly and used for pushing the decorative molding to the table top; and
the front positioning backer component is arranged on the feeding frame corresponding to the material pushing component and is used for positioning the decorative line.
With reference to the first possible implementation manner of the first aspect, in a second possible implementation manner of the first aspect, the feeding mechanism further includes:
the rear clamping assembly is arranged on the feeding frame and is positioned above the material receiving assembly; and
the front material blocking component is arranged on the feeding frame corresponding to the rear clamping component, the front material blocking component and the rear clamping component are matched to clamp the decorative line, when the rear clamping component and the front material blocking component are loosened, the decorative line falls onto the material receiving component, the material receiving component falls to a position corresponding to the material pushing component, and the material pushing component pushes the decorative line to the front positioning backer component.
In a third possible implementation manner of the first aspect, the front clamping device and the rear clamping device further respectively include:
the sliding rail is arranged on the rack in parallel with the table top;
the sliding plate is arranged on the sliding rail;
the clamping hand moving servo driving mechanism is arranged on the sliding plate and is used for driving the sliding plate to move along the sliding rail; and
the tong cylinder corresponds with last feed bin and sets up on the slide, and the tong cylinder passes through the slide and drives and remove along the slide rail, and the tong cylinder is used for pressing from both sides tight moulding to drive moulding and carry along the mesa.
In a fourth possible implementation form of the first aspect, the sawing table assembly further comprises:
the width clamping assembly is arranged on one side of the table top; and
the liftable backer component is arranged on the other side of the table board corresponding to the width clamping component, and the liftable backer component is matched with the width clamping component to clamp and position the decorative moulding.
With reference to the fourth possible implementation manner of the first aspect, in a fifth possible implementation manner of the first aspect, the liftable backer assembly further includes:
the lifting cylinder is arranged on the side surface of the table top; and
the positioning backer is connected with the lifting cylinder and is driven by the lifting cylinder to lift.
In a sixth possible implementation form of the first aspect, the rotatable sawing assembly further comprises:
the rotary driving mechanism is arranged on the rack;
the rotating assembly is connected with the rotating driving mechanism and is driven by the rotating driving mechanism to rotate; and
the sawing mechanism is arranged on the rotating platform assembly, the rotating assembly rotates through driving the sawing mechanism to adjust the sawing angle, and the sawing mechanism is used for sawing the decorative lines.
With reference to the sixth possible implementation manner of the first aspect, in a seventh possible implementation manner of the first aspect, the sawing mechanism further includes:
the sawing frame is arranged on the rotating component;
the sawing and feeding driving mechanism is arranged on the rotating assembly and connected with the sawing machine frame, and the sawing and feeding driving mechanism is used for driving the sawing machine frame to move;
the upper clamping assembly is arranged on the sawing machine frame and is used for pressing the decorative moulding; and
the sawing component is arranged on the sawing rack and used for sawing the decorative lines.
With reference to the seventh possible implementation manner of the first aspect, in an eighth possible implementation manner of the first aspect, the sawing mechanism further includes:
the saw cutting waste ash diversion trench is arranged on the saw cutting rack corresponding to the saw cutting assembly and is used for diverting waste materials after the saw cutting assembly saw cuts; and
and the waste material blowing component is arranged on the sawing machine frame corresponding to the sawing waste ash diversion trench and is used for blowing off waste materials on the table top.
In a ninth possible implementation manner of the first aspect, the method further includes:
the discharging assembly is connected with the rear clamping device and arranged on the rack, and the discharging assembly is used for discharging the decorative moulding; and
the discharging supporting plate is connected with the discharging assembly and arranged on the rack, and the discharging supporting plate is used for receiving the decorative lines discharged by the discharging assembly
Compared with the prior art, the utility model the advantage that has have:
1. the utility model discloses a moulding saw cuts machine replaces manual operation, reduces workman intensity of labour, mutually supports through preceding clamping device and back clamping device, improves work efficiency.
2. The utility model discloses a moulding saw cuts machine is through servo drive control, and it is high to saw cut the precision, can avoid the moulding because of saw cutting the problem that the angle error is big and can't install to rotatable saw cutting subassembly can realize saw cutting the moulding multi-angle, and is energy-concerving and environment-protective.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic front view of a decorative molding sawing machine according to an embodiment of the present invention.
Fig. 2 is a schematic top view of one end of the molding sawed by the molding sawing machine according to an embodiment of the present invention.
Fig. 3 is a schematic top view of the other end of the molding sawed by the molding sawing machine according to an embodiment of the present invention.
Fig. 4 is a schematic structural diagram of the feeding bin according to an embodiment of the present invention.
Fig. 5 is a schematic structural diagram of a feeding mechanism according to an embodiment of the present invention.
Fig. 6 is a partial schematic structural view of a front clamping device according to an embodiment of the present invention.
Fig. 7 is a schematic structural view of a sawing table assembly according to an embodiment of the present invention.
Fig. 8 is a front view of a rotatable sawing assembly according to an embodiment of the present invention.
Fig. 9 is a schematic side view of a rotatable sawing assembly according to an embodiment of the present invention.
Detailed Description
The terms "first," "second," and the like, as used herein, do not denote any order or importance, nor do they denote any order or importance, but rather are used to distinguish one element from another.
In order to make the objects, technical solutions and advantages of the present invention clearer, embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
In an embodiment of the present invention, please refer to fig. 1, which shows a schematic view of a main structure of a decorative molding sawing machine 1 according to an embodiment of the present invention. Moulding saw cut machine 1 can saw cut any work piece that is applicable to the utility model discloses saw cut, including but not limited to moulding 9, plank isotructure, it is right with saw cutting moulding 9 that present embodiment the utility model discloses carry out detailed description, moulding saw cut machine 1 includes frame 2, preceding clamping device 4, saw cuts workstation subassembly 5, rotatable saw cuts subassembly 6 and back clamping device 7, wherein:
to further describe the trimming line sawing machine 1 shown in fig. 1, please refer to fig. 2, which shows a schematic top view structure diagram of one end of the trimming line 9 sawed by the trimming line sawing machine 1 according to an embodiment of the present invention. The frame 2 is provided with a table top 21, the frame 2 is mainly used for providing rigid support for the feeding bin 3, the front clamping device 4, the sawing worktable component 5, the rotatable sawing component 6, the rear clamping device 7 and the discharging component 8, and the table top 21 is mainly used for providing a conveying and sawing platform for the moulding 9. The frame 2 disclosed in this embodiment is a rectangular frame structure, and the table 21 is located at the upper end of the rectangular frame structure, but this is not limited thereto, and those skilled in the art can also select other suitable frame 2 structures according to the teachings of this embodiment.
In a preferred embodiment, the trimming line sawing machine 1 further comprises an upper bin 3, the upper bin 3 is disposed on the frame 2 corresponding to the table 21, and the upper bin 3 is used for loading the trimming line 9 onto the table 21. To further describe the trimming line saw 1 shown in fig. 1, please refer to fig. 4, which shows a schematic structural diagram of a feeding bin 3 according to an embodiment of the present invention. The feeding bin 3 disclosed in this embodiment further includes a feeding frame 31, a feeding mechanism 32, a receiving assembly 33, a pushing assembly 34, and a front positioning backer assembly 35, the feeding frame 31 is disposed on the rack 2, and the feeding frame 31 is mainly used to provide a rigid support for the feeding mechanism 32, the receiving assembly 33, the pushing assembly 34, and the front positioning backer assembly 35.
The feeding mechanism 32 is disposed on the feeding frame 31, the feeding mechanism 32 is used for feeding the decoration lines 9, and for further description of the feeding bin 3 shown in fig. 4, please refer to fig. 5, which shows a schematic structural diagram of the feeding mechanism 32 according to an embodiment of the present invention. The feeding mechanism 32 disclosed in this embodiment further includes a rear clamping component 321 and a front blocking component 322, the rear clamping component 321 is disposed on the feeding frame 31 and is located above the receiving component 33, the rear clamping component 321 is used for clamping or releasing the moulding 9, the front blocking component 322 is disposed on the feeding frame 31 corresponding to the rear clamping component 321, the front blocking component 322 and the rear clamping component 321 cooperate to clamp the moulding 9, in this embodiment, the clamping of the L-shaped moulding and the flat moulding can be realized through the cooperation of the front blocking component 322 and the rear clamping component 321, but not limited thereto. When the rear clamping assembly 321 and the front material retaining assembly 322 are loosened to release the molding 9, the molding 9 falls down onto the material receiving assembly 33 to achieve the loading of the molding 9, but the structure of the loading mechanism 32 is not limited thereto, and those skilled in the art can select other suitable structures of the loading mechanism 32 according to the teachings of the embodiment.
Connect material subassembly 33 and feed mechanism 32 to link and set up on material loading frame 31, connect material subassembly 33 to be used for receiving and carrying moulding 9. The material receiving assembly 33 disclosed in this embodiment is disposed below the material feeding mechanism 32, and when the molding 9 falls onto the material receiving assembly 33, the material receiving assembly 33 falls to drive the molding 9 to fall, and the molding 9 falls to a position corresponding to the material pushing assembly 34, but not limited thereto. The material receiving assembly 33 disclosed in this embodiment is a lifting cylinder, but not limited thereto.
The pushing assembly 34 and the receiving assembly 33 are correspondingly arranged on the rack 2, and the pushing assembly 34 is used for pushing the moulding 9 to the table top 21. The material pushing assembly 34 disclosed in this embodiment is disposed on one side of the table top 21, the molding 9 descends to a position corresponding to the material pushing assembly 34, and the material pushing assembly 34 pushes the molding 9 to the table top 21, but not limited thereto. The pushing assembly 34 of the present embodiment is further disclosed as a pushing cylinder, but not limited thereto.
The front positioning backer component 35 and the pushing component 34 are correspondingly arranged on the feeding frame 31, and the front positioning backer component 35 is used for positioning the moulding 9. The front positioning backer component 35 disclosed in this embodiment is disposed on the other side of the table top 21, and when the material pushing component 34 pushes the decoration line 9 to the front positioning backer component 35, the front positioning backer component 35 can prevent the material pushing component 34 from continuing to push the decoration line 9, so as to position the decoration line 9, but not limited thereto. The front positioning backer assembly 35 of the present embodiment is further disclosed as a baffle, but not limited thereto.
Referring to fig. 4 again, the feeding bin 3 sequentially drops one or more molding strips 9 onto the receiving assembly 33 by loosening and clamping the rear clamping assembly 321 and the front retaining assembly 322, when each molding strip 9 drops onto the receiving assembly 33, the receiving assembly 33 drives the molding strip to drop to a position corresponding to the pushing assembly 34, and the pushing assembly 34 pushes the molding strip 9 to the front positioning backer assembly 35, so as to complete feeding of the molding strip 9, and the feeding bin 3 disclosed in this embodiment can realize the function of supplementing/feeding workpieces to be processed (molding strips 9) at any time. However, the structure of the feeding bin 3 is not limited thereto, and a person skilled in the art may select other suitable structures of the feeding bin 3 according to the teachings of the present embodiment, for example, the structure may be a six-axis robot arm, and the decoration line 9 is grabbed by the six-axis robot arm for feeding.
Preceding clamping device 4 sets up in frame 2 with last feed bin 3 links up, and preceding clamping device 4 is used for driving moulding 9 and carries along mesa 21. To further describe the trimming saw 1 shown in fig. 1, please refer to fig. 6, which shows a schematic structural diagram of the front clamping device 4 according to an embodiment of the present invention. The front clamping device 4 disclosed in this embodiment further includes a sliding rail 41, a sliding plate 42, a clamping hand moving servo driving mechanism 43 and a clamping hand cylinder 44, respectively, the sliding rail 41 and the table top 21 are disposed on the frame 2 in parallel, the sliding rail 41 disclosed in this embodiment is a dual sliding rail structure, and the dual sliding rail structure is disposed on the frame 2 and located on one side of the table top 21, but not limited thereto.
The slide plate 42 is disposed on the slide rail 41, the gripper moving servo driving mechanism 43 is disposed on the slide plate 42, and the gripper moving servo driving mechanism 43 is used for driving the slide plate 42 to move along the slide rail 41.
The clamping cylinder 44 is arranged on the sliding plate 42 corresponding to the feeding bin 3, the clamping cylinder 44 is driven by the sliding plate 42 to move along the sliding rail 41, the clamping cylinder 44 is used for clamping the decorative line 9 and driving the decorative line 9 to be conveyed along the table top 21, and in the embodiment, the structure of the clamping cylinder 44 can be selected without special requirements, and the clamping cylinder can be selected by referring to the conventional selection of a person skilled in the art.
The front clamping device 4 is mainly used for sequentially conveying the decorative moulding 9 to the sawing worktable component 5 and the rear clamping device 7; the structure of the front holding device 4 is not limited to this, and those skilled in the art can select other suitable structures of the front holding device 4 according to the teaching of the present embodiment.
Saw cut workstation subassembly 5 and preceding clamping device 4 link up and set up in frame 2, saw cut workstation subassembly 5 and be used for pressing from both sides tight location moulding 9. To further describe the trimming saw 1 shown in fig. 1, please refer to fig. 7, which shows a schematic structural diagram of a sawing table assembly 5 according to an embodiment of the present invention. The sawing worktable assembly 5 disclosed in this embodiment further includes a width clamping assembly 51 and a liftable backer assembly 52, the width clamping assembly 51 is disposed on one side of the table top 21, and the width clamping assembly 51 may be composed of a plurality of clamping positioning plates, but not limited thereto. The liftable backer component 52 and the width clamping component 51 are correspondingly arranged on the other side of the table top 21, and the liftable backer component 52 and the width clamping component 51 are matched to clamp two sides of the decorative line 9, so as to prevent the decorative line 9 from shaking during sawing, but not limited thereto.
The liftable backer assembly 52 further disclosed in this embodiment further includes a lifting cylinder 521 and a positioning backer 522, the lifting cylinder 521 is disposed on the side of the table top 21, the positioning backer 522 is connected with the lifting cylinder 521, the positioning backer 522 is driven by the lifting cylinder 521 to lift, when the lifting cylinder 521 drives the positioning backer 522 to lift, the positioning decoration line 9 is clamped, the rotatable sawing assembly 6 saws the positioning decoration line 9, after the sawing is completed, the lifting cylinder 521 drives the positioning backer 522 to descend, the decoration line 9 is loosened (stopped to clamp), the waste material is conveniently moved out of the table top 21, the structure of the liftable backer assembly 52 is not limited thereto, and a person skilled in the art can select the liftable backer assembly 52 with other suitable structures according to the teaching of this embodiment.
The rotatable sawing component 6 is arranged on the machine frame 2 corresponding to the sawing workbench component 5, and the rotatable sawing component 6 is used for sawing the decorative moulding 9. To further describe the trimming saw 1 shown in fig. 1, please refer to fig. 8 and 9, which respectively show the front view and the side view of the rotatable saw cutting assembly 6 according to an embodiment of the present invention. The rotatable sawing component 6 disclosed in this embodiment further includes a rotary servo driving mechanism 61, a rotating component 62 and a sawing mechanism 63, the rotary servo driving mechanism 61 is disposed on the frame 2, the rotating component 62 is connected with the rotary servo driving mechanism 61, the rotating component 62 is driven by the rotary servo driving mechanism 61 to rotate, the sawing mechanism 63 is disposed on the rotating component 62, the rotating component 62 drives the sawing mechanism 63 to rotate to adjust the sawing angle, since the servo driving can be precisely adjusted, the sawing angle can be adjusted with higher precision, and meanwhile, multi-angle sawing of the decorative line 9 by one sawing mechanism 63 can be realized, so as to achieve the functions of energy saving and environmental protection, but the structure of the rotatable sawing component 6 is not limited thereto, and those skilled in the art can select the rotatable sawing component 6 with other suitable structures according to the teaching of this embodiment.
Referring to fig. 8 again, the sawing mechanism 63 of the present embodiment further includes a sawing frame 631, a sawing feed servo drive mechanism 632, an upper clamping assembly 633 and a sawing assembly 634, the sawing frame 631 is disposed on the rotating assembly 62, the sawing frame 631 is mainly used for providing rigid support for the upper clamping assembly 633 and the sawing assembly 634, and there may be no special requirement for the selection of the structure of the sawing frame 631 in the present embodiment, and the selection is made by those skilled in the art.
The sawing feed servo drive mechanism 632 is disposed on the rotating assembly 62 and connected to the sawing frame 631, the sawing feed servo drive mechanism 632 is used to drive the sawing frame 631 to move, and the sawing feed servo drive mechanism 632 disclosed in the present embodiment is a motor and ball screw structure, but not limited thereto. The upper clamping assembly 633 is disposed on the sawing frame 631, the upper clamping assembly 633 is used for pressing the molding 9 to prevent the molding 9 from shaking when the molding 9 is sawed, the sawing assembly 634 is disposed on the sawing frame 631, and the sawing assembly 634 is used for sawing the molding 9. However, the structure of the saw mechanism 63 is not limited thereto, and those skilled in the art can select another suitable saw mechanism 63 according to the teachings of the present embodiment.
Referring to fig. 2 again, when the clamping device 3 delivers the molding 9 to the sawing table assembly 5, the sawing table assembly 5 clamps and positions the molding 9, the rotary servo driving mechanism 61 drives the sawing mechanism 63 to rotate by driving the rotary assembly 62, so as to adjust the sawing angle, the sawing feed servo driving mechanism 632 drives the sawing assembly 634 to move by driving the sawing frame 631, so as to adjust the sawing distance, the upper clamping assembly 633 compresses the molding 9, and the sawing assembly 634 saws one end of the molding 9, but not limited thereto.
Referring to fig. 8 and 9 again, the sawing mechanism 63 further disclosed in this embodiment further includes a sawing waste ash guiding groove 635 and a waste material blowing component 636, the sawing waste ash guiding groove 635 and the sawing component 634 are disposed on the sawing frame 631, the sawing waste ash guiding groove 635 is used for guiding the waste material sawn by the sawing component 634, the waste material blowing component 636 and the sawing waste ash guiding groove 635 are disposed on the sawing frame 631, because a part of the waste material falls on the table 21 during sawing, and the waste material blowing component 636 is used for blowing off the waste material on the table 21, but not limited thereto. The waste blowing assembly 636 disclosed in this embodiment may be a blow tube structure, but is not limited thereto.
The rear clamping device 7 is connected with the sawing worktable component 5 and arranged on the frame 2, and the rear clamping device 7 is used for positioning and conveying the decorative moulding 9. The structure of the rear clamping device 7 disclosed in this embodiment is the same as the structure of the front clamping device 3 disclosed above, please refer to the description of the structure of the front clamping device 3, but not limited thereto. The further back clamping device 7 that discloses of this embodiment still includes at least one and goes up and press from both sides gyro wheel subassembly 71, goes up and presss from both sides gyro wheel subassembly 71 and sets up in frame 2, and after back clamping device 7 was fixed a position the completion to moulding 9, go up and press from both sides gyro wheel subassembly 71 and compress tightly moulding 9, moulding 9 slides when preventing to saw cut, and level when guaranteeing to saw cut improves work piece fixed length precision, but does not regard this as the limit.
To further describe the trimming line sawing machine 1 shown in fig. 1, please refer to fig. 3, which shows a schematic top view structure diagram of the trimming line sawing machine 1 sawing the other end of the trimming line 9 according to an embodiment of the present invention. When one end of the decorative moulding 9 is sawn, the sawing worktable component 5 is loosened, the upper clamping component 633 stops pressing the decorative moulding 9, the front clamping device 4 conveys the decorative moulding 9 to the rear clamping device 7, the rear clamping device 7 positions the decorative moulding 9, the positioning refers to the length of the positioned decorative moulding 9, the upper clamping roller component 71 presses the decorative moulding 9, the sawing worktable component 5 clamps the positioned decorative moulding 9, the rotary servo driving mechanism 61 drives the sawing mechanism 63 by driving the rotary component 62 to rotate, the sawing angle is adjusted again, the sawing feeding servo driving mechanism 632 drives the sawing component 634 to move by driving the sawing rack 631, the sawing distance is adjusted, the upper clamping component 633 presses the decorative moulding 9, the sawing component 634 saws the other end of the decorative moulding 9, after the sawing is finished, the rear clamping device 7 conveys the decorative moulding 9 to the discharging component 8, but not limited thereto.
Meanwhile, after the front clamping device 3 conveys the moulding 9 to the rear clamping device 7, the front clamping device 3 can return to the original position, and when the sawing component 634 saws the other end of the moulding 9 or after the sawing component finishes sawing the other end of the moulding 9, the next moulding 9 to be sawed is conveyed to prepare for sawing the next moulding 9, and the machining efficiency is improved by mutual exchange and matching of the front clamping device 3 and the rear clamping device 7, but the invention is not limited to this.
In a preferred embodiment, the moulding saw cutting machine 1 further includes a discharging assembly 8 and a discharging support plate 10, the discharging assembly 8 is connected with the rear clamping device 7 and is arranged on the frame 2, the discharging assembly 8 discharges the moulding 9, the discharging assembly 8 disclosed in this embodiment is a plurality of discharging cylinders, the plurality of discharging cylinders are arranged on one side of the table top 21, the moulding 9 is pushed out of the table top 21 through the plurality of discharging cylinders, and then the moulding 9 is discharged, but not limited thereto.
The discharging supporting plate 10, the discharging supporting plate 10 and the discharging component 8 are connected to be disposed on the frame 2, the discharging supporting plate 10 further disclosed in this embodiment is a plurality of rectangular wood boards, and the plurality of rectangular wood boards are vertically disposed on the other side of the table top 21, but not limited thereto. The discharging supporting plate 10 is used for receiving the decoration line 9 discharged by the discharging assembly 8, and after the decoration line 9 is discharged to the discharging supporting plate 10, the decoration line 9 can be manually taken out (the decoration line 9) or manually taken out (the decoration line 9) by a mechanical arm, but not limited thereto.
While the foregoing description shows and describes several preferred embodiments of the invention, it is to be understood, as noted above, that the invention is not limited to the forms disclosed herein, but is not intended to be exhaustive of other embodiments, and is capable of use in various other combinations, modifications, and environments and is capable of changes within the scope of the inventive concept as expressed above, or as otherwise known in the relevant art. But that modifications and variations may be effected by those skilled in the art without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. A molding saw for sawing molding, the molding saw comprising:
a frame having a table top;
the front clamping device is arranged on the rack and is used for driving the decorative moulding to be conveyed along the table top;
the sawing worktable assembly is connected with the front clamping device and arranged on the rack, and is used for clamping and positioning the decorative moulding;
the rotatable sawing component is arranged on the rack corresponding to the sawing worktable component and is used for sawing the decorative moulding; and
the rear clamping device is connected with the sawing worktable assembly and arranged on the rack, and is used for positioning and conveying the decorative moulding;
when the front clamping device conveys the decorative moulding to the sawing working table assembly, the sawing working table assembly clamps and positions the decorative moulding, and the rotatable sawing assembly saws one end of the decorative moulding; when the rear clamping device positions the decorative moulding, the sawing worktable assembly clamps and positions the decorative moulding, and the rotatable sawing assembly saws the other end of the decorative moulding.
2. The trimming saw machine according to claim 1, further comprising an upper bin disposed on the frame, the upper bin being configured to load the trimming strip onto the table; go up the feed bin and still include:
the feeding frame is arranged on the rack;
the feeding mechanism is arranged on the feeding frame and used for feeding the decorative molding;
the material receiving assembly is connected with the feeding mechanism and arranged on the feeding frame, and the material receiving assembly is used for receiving and conveying the decorative lines;
the pushing assembly is arranged on the rack corresponding to the receiving assembly and used for pushing the decorative molding to the table top; and
the front positioning backer component is arranged on the feeding frame corresponding to the pushing component and is used for positioning the decorative molding.
3. The trim line saw machine of claim 2, wherein the feed mechanism further comprises:
the rear clamping assembly is arranged on the feeding frame and is positioned above the material receiving assembly; and
the front material blocking component is correspondingly arranged on the material loading frame, the front material blocking component is matched with the rear clamping component to clamp the decorative strip, the rear clamping component and the front material blocking component are loosened, the decorative strip falls onto the material receiving component, the material receiving component falls onto a position corresponding to the material pushing component, and the material pushing component pushes the decorative strip to the front positioning backer component.
4. The trim-line saw machine of claim 2, wherein the front and rear clamping devices further comprise:
the sliding rail is arranged on the rack in parallel with the table top;
the sliding plate is arranged on the sliding rail;
the clamping hand moving servo driving mechanism is arranged on the sliding plate and is used for driving the sliding plate to move along the sliding rail; and
the tong cylinder with go up the feed bin correspond set up in on the slide, the tong cylinder passes through the slide drives and along the slide rail removes, the tong cylinder is used for pressing from both sides tightly moulding, and drive moulding along the mesa is carried.
5. The trim line saw machine of claim 1, wherein the saw table assembly further comprises:
the width clamping assembly is arranged on one side of the table top; and
the liftable backer component is arranged on the other side of the table board corresponding to the width clamping component, and the liftable backer component is matched with the width clamping component to clamp and position the decorative moulding.
6. The molding saw cutting machine of claim 5 wherein the liftable backer assembly further comprises:
the lifting cylinder is arranged on the side surface of the table top; and
and the positioning backer is connected with the lifting cylinder and is driven by the lifting cylinder to lift.
7. The trim line saw machine of claim 1, wherein the rotatable saw assembly further comprises:
the rotary driving mechanism is arranged on the rack;
the rotating assembly is connected with the rotating driving mechanism and is driven by the rotating driving mechanism to rotate; and
the sawing mechanism is arranged on the rotating platform assembly, the rotating assembly drives the sawing mechanism to rotate and adjust the sawing angle, and the sawing mechanism is used for sawing the decorative lines.
8. The molding saw machine of claim 7 wherein said saw mechanism further comprises:
the sawing frame is arranged on the rotating component;
the sawing and feeding driving mechanism is arranged on the rotating assembly and connected with the sawing rack, and the sawing and feeding driving mechanism is used for driving the sawing rack to move;
the upper clamping assembly is arranged on the sawing machine frame and is used for pressing the decorative moulding; and
the sawing component is arranged on the sawing rack and used for sawing the decorative molding.
9. The molding saw machine of claim 8 wherein said saw mechanism further comprises:
the saw cutting waste ash diversion trench is arranged on the saw cutting rack corresponding to the saw cutting assembly and is used for diverting waste materials after the saw cutting assembly saw cuts; and
and the waste material blowing component corresponds to the saw cutting waste ash diversion trench and is arranged on the saw cutting rack, and the waste material blowing component is used for blowing off waste materials on the table board.
10. The trim line saw of claim 1, further comprising:
the discharging assembly is connected with the rear clamping device and arranged on the rack, and the discharging assembly is used for discharging the decorative moulding; and
the discharging supporting plate is connected with the discharging assembly and arranged on the rack, and the discharging supporting plate is used for receiving the decorative lines discharged by the discharging assembly.
CN201920700195.9U 2019-05-15 2019-05-15 Decorative moulding saw cutting machine Active CN210173803U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110014483A (en) * 2019-05-15 2019-07-16 南通跃通数控设备有限公司 Moulding sawing machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110014483A (en) * 2019-05-15 2019-07-16 南通跃通数控设备有限公司 Moulding sawing machine

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