CN210172697U - Cutting device is used in aluminum alloy door and window production - Google Patents

Cutting device is used in aluminum alloy door and window production Download PDF

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Publication number
CN210172697U
CN210172697U CN201920637827.1U CN201920637827U CN210172697U CN 210172697 U CN210172697 U CN 210172697U CN 201920637827 U CN201920637827 U CN 201920637827U CN 210172697 U CN210172697 U CN 210172697U
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fixedly connected
sliding block
sliding
workbench
screw rod
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CN201920637827.1U
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Junsheng Kong
孔俊生
Huiling Yu
俞慧玲
Kuisheng Kong
孔愧生
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Jiangsu Deli Energy Saving Technology Co Ltd
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Jiangsu Deli Energy Saving Technology Co Ltd
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Abstract

The utility model relates to a cutting device for the production of aluminum alloy doors and windows, which belongs to the technical field of aluminum alloy cutting equipment; the inner wall of the right side plate of the base is fixedly connected with a motor, the motor is arranged below the workbench, an output shaft on the left side of the motor is fixedly connected with a first lead screw, the left end of the first lead screw is fixedly connected with a second lead screw, the left end of the second lead screw is screwed and fixed on the base through a bearing, the first bearing is embedded and fixed on the inner wall of the left side plate of the base, the first lead screw and the second lead screw are arranged in an opposite mode through threads, a first lower sliding block is arranged on the first lead screw in a rotating mode, a second lower sliding block is arranged on the second lead screw in a rotating mode, a sliding rail is fixedly connected on the bottom plate of the base, the first lower sliding block and the second lower sliding block are arranged on the sliding rail in a left-right sliding mode, and lower hinge seats are fixedly connected; carry out spacing fixed to not equidimension aluminum alloy frame, stability when having ensured the cutting of aluminum alloy frame has improved the accuracy nature of equal section cutting.

Description

Cutting device is used in aluminum alloy door and window production
Technical Field
The utility model relates to an aluminum alloy cutting equipment technical field, concretely relates to cutting device is used in aluminum alloy door and window production.
Background
The cutting device is a general name of a multi-finger cutting machine and cutting connection equipment, the cutting machine is divided into a flame cutting machine, a plasma cutting machine, a laser cutting machine, water cutting and the like, along with the development of the modern machining industry, the requirements on the cutting quality and precision are continuously improved, and the requirements on the improvement of the production efficiency, the reduction of the production cost and the high-intelligent automatic cutting function are also improved; the cutting to aluminum alloy door and window generally indicates that the aluminum alloy frame on door frame and the window frame carries out the geometric proportion cutting more, and traditional aluminum alloy frame cutting is supported mostly by simple support frame and is passed through cutting machine direct cutting, traditional cutting equipment, equipment structure is simple, can not be accurate cut the aluminum alloy frame, leads to producing error, perhaps causes the skew of material when the cutting, this just leads to production efficiency to reduce to and improved manufacturing cost.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art's defect and not enough, provide a reasonable in design, convenient to use's cutting device is used in aluminum alloy door and window production, carry on spacingly fixed to equidimension aluminum alloy frame not, stability when having ensured the cutting of aluminum alloy frame has improved the accuracy nature of section cutting such as.
In order to achieve the above object, the utility model adopts the following technical scheme: the cutting machine comprises a base, a workbench, a cutting machine, an up-down adjusting mechanism and a positioning mechanism, wherein the workbench is arranged in the base in a sliding manner, the workbench is fixedly connected with the base through the up-down adjusting mechanism, the cutting machine is fixedly connected onto the workbench, the positioning mechanism is arranged between the cutting machine and the workbench, and the cutting machine is connected with an external power supply;
the up-down adjusting mechanism comprises a motor, a first lead screw, a second lead screw, a first connecting rod and a second connecting rod, the motor is fixedly connected on the inner wall of the right side plate of the base, the motor is arranged below the workbench, a first lead screw is fixedly connected on an output shaft on the left side of the motor, a second lead screw is fixedly connected on the left end of the first lead screw, the left end of the second lead screw is screwed and fixed on the base through a bearing, the first bearing is embedded and fixed on the inner wall of the left side plate of the base, the first lead screw and the second lead screw are arranged in an opposite threaded manner, a first lower sliding block is arranged on the first lead screw in a threaded manner, a second lower sliding block is arranged on the second lead screw in a threaded manner, a sliding rail is fixedly connected on the bottom plate of the base, the first lower sliding block and the second lower sliding block are arranged on the sliding rail in a left-right sliding manner, lower hinging seats are fixedly connected on the first, the first upper sliding block and the second upper sliding block are sequentially arranged in the sliding groove in a sliding mode from left to right, the bottoms of the first upper sliding block and the second upper sliding block are fixedly connected with upper hinge seats, a first connecting rod is hinged between the upper hinge seat at the bottom of the first upper sliding block and a lower hinge seat on the first lower sliding block, a second connecting rod is hinged between the upper hinge seat at the bottom of the second upper sliding block and the lower hinge seat on the second lower sliding block, the first connecting rod and the second connecting rod are arranged in a crossed mode, the middle portions of the first connecting rod and the second connecting rod are movably connected through rotating shafts, limiting blocks are fixedly connected to the left side and the right side of the workbench, limiting grooves are formed in the inner sides of the left side plate and the right side plate of the base, the limiting blocks are arranged in the limiting grooves in;
positioning mechanism contain fixed block, electric putter, dog, bilateral symmetry fixedly connected with fixed block on the workstation, the inboard fixedly connected with electric putter of fixed block, the inboard push rod end fixedly connected with dog of electric putter, the bottom fixedly connected with sliding block of dog, bilateral symmetry is provided with the sliding tray on the workstation, the sliding tray sets up in the inboard of fixed block, the sliding block horizontal slip sets up in the sliding tray, electric putter be connected with external power source.
Furthermore, the left end of the first screw rod is fixedly connected with a connecting column, and the left end of the connecting column is fixedly connected with the second screw rod.
Further, the workbench is provided with a cutting groove, the cutting groove is arranged on the front side of the cutting machine, and the cutting groove is arranged between the left sliding groove and the right sliding groove.
Furthermore, a scale mark layer is arranged on the workbench.
Furthermore, a plurality of positioning grooves are formed in the inner side of the stop block, and the width of the plurality of positioning grooves is gradually increased from front to back.
Furthermore, a sealing sleeve is fixedly sleeved on the limiting block.
After the structure is adopted, the utility model discloses beneficial effect does: a cutting device is used in aluminum alloy door and window production, carry on spacingly fixed to equidimension aluminum alloy frame not, stability when having ensured the cutting of aluminum alloy frame has improved the accuracy nature of section cutting such as, the utility model has the advantages of set up rationally, the cost of manufacture is low.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a top view of fig. 1.
Fig. 3 is a right side schematic view of fig. 1.
Description of reference numerals:
the automatic cutting machine comprises a base 1, a workbench 2, a cutting machine 3, an up-down adjusting mechanism 4, a motor 4-1, a first screw rod 4-2, a second screw rod 4-3, a first connecting rod 4-4, a second connecting rod 4-5, a bearing 4-6, a first lower slider 4-7, a second lower slider 4-8, a sliding rail 4-9, a lower hinged seat 4-10, a sliding groove 4-11, a first upper slider 4-12, a second upper slider 4-13, an upper hinged seat 4-14, a limiting block 4-15, a limiting groove 4-16, a positioning mechanism 5, a fixed block 5-1, an electric push rod 5-2, a stopping block 5-3, a sliding block 5-4, a sliding groove 5-5, a cutting groove 6, a scale mark layer 7, a positioning groove 8, a sealing sleeve 9 and a connecting column 10.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
Referring to fig. 1 to fig. 3, the technical solution of the present embodiment is: the cutting machine comprises a base 1, a workbench 2, a cutting machine 3, an up-down adjusting mechanism 4 and a positioning mechanism 5, wherein the workbench 2 is arranged in the base 1 in a sliding manner, the workbench 2 and the base 1 are fixedly connected through the up-down adjusting mechanism 4, the cutting machine 3 is fixed on the workbench 2 by utilizing screws, the positioning mechanism 5 is arranged between the cutting machine 3 and the workbench 2, a scale mark layer 7 is arranged on the workbench 2, and the cutting machine 3 is connected with an external power supply through a power line;
the up-down adjusting mechanism 4 comprises a motor 4-1, a first screw rod 4-2, a second screw rod 4-3, a first connecting rod 4-4 and a second connecting rod 4-5, the motor 4-1 is fixed on the inner wall of the right side plate of the base 1 by screws, the motor 4-1 is arranged below the workbench 2, the first screw rod 4-2 is fixed on the output shaft at the left side of the motor 4-1 in a welding way, a connecting column 10 is fixed at the left end of the first screw rod 4-2 in a welding way, the left end of the connecting column 10 is fixed with the second screw rod 4-3 in a welding way, the left end of the second screw rod 4-3 is fixed on the base 1 in a screwing way through a bearing 4-6, the first bearing 4-6 is fixed on the inner wall of the left side plate of the base 1 in an embedding way, the inner wall of the first bearing 4-6 is fixed with, the first screw rod 4-2 and the second screw rod 4-3 are oppositely arranged in thread, the first screw rod 4-2 is rotatably provided with a first lower sliding block 4-7 in a penetrating manner, the second screw rod 4-3 is rotatably provided with a second lower sliding block 4-8 in a penetrating manner, a bottom plate of the base 1 is fixedly welded with a sliding rail 4-9, the first lower sliding block 4-7 and the second lower sliding block 4-8 are both arranged on the sliding rail 4-9 in a sliding manner, the first lower sliding block 4-7 and the second lower sliding block 4-8 are both fixedly welded with a lower hinge seat 4-10, the bottom of the workbench 2 is provided with a sliding groove 4-11, a first upper sliding block 4-12 and a second upper sliding block 4-13 are sequentially arranged in the sliding groove 4-11 in a sliding manner from left to right, and an upper hinge seat 4-14 is fixedly welded with the bottoms of the first upper sliding block 4-12 and the second upper sliding block 4-13, a first connecting rod 4-4 is hinged between an upper hinge seat 4-14 at the bottom of the first upper sliding block 4-12 and a lower hinge seat 4-10 on the first lower sliding block 4-7, a second connecting rod 4-5 is hinged between an upper hinge seat 4-14 at the bottom of the second upper sliding block 4-13 and a lower hinge seat 4-10 on the second lower sliding block 4-8, the first connecting rod 4-4 and the second connecting rod 4-5 are arranged in a crossed manner, the middle parts of the first connecting rod 4-4 and the second connecting rod 4-5 are movably connected through a rotating shaft, limiting blocks 4-15 are fixedly welded on the left side and the right side of the workbench 2, limiting grooves 4-16 are formed in the inner sides of the left side plate and the right side plate of the base 1, the limiting blocks 4-15 are arranged in the limiting grooves 4-16 in a vertically sliding mode, and the motor 4-1 is connected with an external power supply through a power line;
the positioning mechanism 5 comprises a fixed block 5-1 and an electric push rod 5-2, the automatic positioning device comprises a stop block 5-3, fixed blocks 5-1 are welded and fixed on a workbench 2 in a bilateral symmetry mode, an electric push rod 5-2 with the model PXTL is fixed on the inner side of the fixed block 5-1 through screws, the stop block 5-3 is welded and fixed at the push rod end on the inner side of the electric push rod 5-2, a plurality of positioning grooves 8 are formed in the inner side of the stop block 5-3, the width of the plurality of positioning grooves 8 is gradually increased from front to back, sliding blocks 5-4 are welded and fixed at the bottom of the stop block 5-3, sliding grooves 5-5 are arranged on the workbench 2 in a bilateral symmetry mode, the sliding grooves 5-5 are formed in the inner side of the fixed block 5-1, the sliding blocks 5-4 are arranged in the sliding grooves 5-5 in a leftward and rightward.
Further, the worktable 2 is provided with a cutting groove 6, the cutting groove 6 is arranged at the front side of the cutting machine 3, and the cutting groove 6 is arranged between the left sliding groove 5 and the right sliding groove 5-5.
Furthermore, a sealing sleeve 9 is fixedly sleeved on the limiting blocks 4 to 15.
The working principle of the specific embodiment is as follows: when the device is used, the height position of the control workbench 2 is adjusted through the up-down adjusting mechanism 4, so that the height position of the cutting machine 3 is adjusted and controlled, and different operators can conveniently operate and use the device, the motor 4-1 drives the first screw rod 4-2 and the second screw rod 4-3 to rotate in the rotating process, the first screw rod 4-2 and the second screw rod 4-3 reversely rotate, so as to drive the first lower slide block 4-7 and the second lower slide block 4-8 to move oppositely, the first lower slide block 4-7 moves in the left-right direction, the first upper slide block 4-12 is driven to move in the left-right direction through the first connecting rod 4-4, and similarly, the second lower slide block 4-8 moves in the left-right direction, the second upper slide block 4-13 moves in the left-right direction through the second connecting rod 4-5, therefore, the workbench 2 can stably ascend or descend, actual operation is facilitated, the aluminum alloy frames are subjected to limiting and fixing operation through the check blocks 5-3 on the left side and the right side, the aluminum alloy frames are kept fixed, the cutting operation of the cutting machine 3 is facilitated, the check blocks 5-3 are controlled by the electric push rod 5-2, the cutting operation of the aluminum alloy frames with various lengths is facilitated, the cutting accuracy is improved, meanwhile, the positioning grooves 8 with different sizes are formed in the inner sides of the check blocks 5-3 according to different width sizes of the aluminum alloy frames, the cutting operation of the aluminum alloy frames with different widths is facilitated, the operation range is expanded, and the stability during cutting is met.
After adopting above-mentioned structure, this embodiment beneficial effect does:
1. the first screw rod 4-2 and the second screw rod 4-3 are oppositely arranged through threads of the first screw rod 4-2 and the second screw rod 4-3, so that the first lower slide block 4-7 and the second lower slide block 4-8 oppositely move, the first upper slide block 4-12 and the second upper slide block 4-13 are driven to oppositely move, the workbench 2 is stably lifted or lowered, and operators with different heights can conveniently perform cutting operation;
2. the stop blocks 5-3 are movably pushed by the electric push rods 5-2 on the left side and the right side, so that the aluminum alloy frame is conveniently fixed between the two stop blocks 5-3, the cutting stability is reinforced, and the cutting accuracy is improved.
The above description is only for the purpose of illustrating the technical solutions of the present invention and not for the purpose of limiting the same, and other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solutions of the present invention should be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.

Claims (6)

1. The utility model provides an aluminum alloy door and window production is with cutting device which characterized in that: the automatic cutting machine comprises a base (1), a workbench (2), a cutting machine (3), an up-down adjusting mechanism (4) and a positioning mechanism (5), wherein the workbench (2) is arranged in the base (1) in a sliding manner, the workbench (2) and the base (1) are fixedly connected through the up-down adjusting mechanism (4), the cutting machine (3) is fixedly connected onto the workbench (2), the positioning mechanism (5) is arranged between the cutting machine (3) and the workbench (2), and the cutting machine (3) is connected with an external power supply;
the up-down adjusting mechanism (4) comprises a motor (4-1), a first screw rod (4-2), a second screw rod (4-3), a first connecting rod (4-4) and a second connecting rod (4-5), the inner wall of the right side plate of the base (1) is fixedly connected with the motor (4-1), the motor (4-1) is arranged below the workbench (2), the output shaft on the left side of the motor (4-1) is fixedly connected with the first screw rod (4-2), the left end of the first screw rod (4-2) is fixedly connected with the second screw rod (4-3), the left end of the second screw rod (4-3) is screwed and fixed on the base (1) through a bearing (4-6), the first bearing (4-6) is embedded and fixed on the inner wall of the left side plate of the base (1), and the threads of the first screw rod (4-2) and the second screw rod (4-3) are arranged in an opposite mode, a first lower sliding block (4-7) is arranged on an upper thread of a first screw rod (4-2) in a rotating penetrating mode, a second lower sliding block (4-8) is arranged on an upper thread of a second screw rod (4-3) in a rotating penetrating mode, a sliding rail (4-9) is fixedly connected to a bottom plate of a base (1), the first lower sliding block (4-7) and the second lower sliding block (4-8) are arranged on the sliding rail (4-9) in a sliding mode in a left-right mode, a first upper sliding block (4-12) and a second upper sliding block (4-13) are fixedly connected to the first lower sliding block (4-7) and the second lower sliding block (4-8) in a sliding mode respectively, a sliding groove (4-11) is formed in the bottom of a workbench (2), the first upper sliding block (4-12) and the second upper sliding block (4-13) are arranged in the sliding mode from left to right sequentially, and an upper hinge seat (4-14) is fixedly connected to the A first connecting rod (4-4) is hinged between an upper hinge seat (4-14) at the bottom of a first upper sliding block (4-12) and a lower hinge seat (4-10) on a first lower sliding block (4-7), a second connecting rod (4-5) is hinged between an upper hinge seat (4-14) at the bottom of a second upper sliding block (4-13) and a lower hinge seat (4-10) on a second lower sliding block (4-8), the first connecting rod (4-4) and the second connecting rod (4-5) are arranged in a crossed manner, the middle parts of the first connecting rod (4-4) and the second connecting rod (4-5) are movably connected through a rotating shaft, limiting blocks (4-15) are fixedly connected to the left side and the right side of a workbench (2), limiting grooves (4-16) are arranged on the inner sides of the left side plate and the right side plate of a base (1), the limiting blocks (4-15) are arranged in the limiting grooves (4-16) in a vertically sliding mode, and the motor (4-1) is connected with an external power supply;
the positioning mechanism (5) comprises a fixed block (5-1) and an electric push rod (5-2), the automatic sliding device comprises a stop block (5-3), fixed blocks (5-1) are fixedly connected to the workbench (2) in a bilateral symmetry mode, electric push rods (5-2) are fixedly connected to the inner sides of the fixed blocks (5-1), stop blocks (5-3) are fixedly connected to the push rod ends of the inner sides of the electric push rods (5-2), sliding blocks (5-4) are fixedly connected to the bottoms of the stop blocks (5-3), sliding grooves (5-5) are symmetrically arranged on the workbench (2) in the bilateral symmetry mode, the sliding grooves (5-5) are arranged on the inner sides of the fixed blocks (5-1), the sliding blocks (5-4) are arranged in the sliding grooves (5-5) in a sliding mode, and the electric push rods (5-2) are connected.
2. The cutting device for aluminum alloy door and window production of claim 1, characterized in that: the left end of the first screw rod (4-2) is fixedly connected with a connecting column (10), and the left end of the connecting column (10) is fixedly connected with the second screw rod (4-3).
3. The cutting device for aluminum alloy door and window production of claim 1, characterized in that: the cutting machine is characterized in that a cutting groove (6) is formed in the workbench (2), the cutting groove (6) is formed in the front side of the cutting machine (3), and the cutting groove (6) is formed between the left sliding groove and the right sliding groove (5-5).
4. The cutting device for aluminum alloy door and window production of claim 1, characterized in that: the workbench (2) is provided with a scale mark layer (7).
5. The cutting device for aluminum alloy door and window production of claim 1, characterized in that: the inner side of the stop block (5-3) is provided with a plurality of positioning grooves (8), and the widths of the positioning grooves (8) are sequentially and progressively increased from front to back.
6. The cutting device for aluminum alloy door and window production of claim 1, characterized in that: and a sealing sleeve (9) is fixedly sleeved on the limiting blocks (4-15).
CN201920637827.1U 2019-05-07 2019-05-07 Cutting device is used in aluminum alloy door and window production Active CN210172697U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920637827.1U CN210172697U (en) 2019-05-07 2019-05-07 Cutting device is used in aluminum alloy door and window production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920637827.1U CN210172697U (en) 2019-05-07 2019-05-07 Cutting device is used in aluminum alloy door and window production

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Publication Number Publication Date
CN210172697U true CN210172697U (en) 2020-03-24

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CN201920637827.1U Active CN210172697U (en) 2019-05-07 2019-05-07 Cutting device is used in aluminum alloy door and window production

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111441545A (en) * 2020-04-08 2020-07-24 张中林 Adjustable waterproofing membrane laying device based on convex guide rail transmission principle
CN112071776A (en) * 2020-08-17 2020-12-11 容泰半导体(江苏)有限公司 Integrated circuit chip cutting device
CN116652294A (en) * 2023-06-26 2023-08-29 维尔斯(山东)贸易有限公司 Door and window cutting device
CN118080972A (en) * 2024-04-22 2024-05-28 泰州市鼎力起重机械有限公司 Aluminum casting material handle cutting device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111441545A (en) * 2020-04-08 2020-07-24 张中林 Adjustable waterproofing membrane laying device based on convex guide rail transmission principle
CN112071776A (en) * 2020-08-17 2020-12-11 容泰半导体(江苏)有限公司 Integrated circuit chip cutting device
CN116652294A (en) * 2023-06-26 2023-08-29 维尔斯(山东)贸易有限公司 Door and window cutting device
CN118080972A (en) * 2024-04-22 2024-05-28 泰州市鼎力起重机械有限公司 Aluminum casting material handle cutting device

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