CN213496860U - Machining equipment - Google Patents

Machining equipment Download PDF

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Publication number
CN213496860U
CN213496860U CN202021869332.0U CN202021869332U CN213496860U CN 213496860 U CN213496860 U CN 213496860U CN 202021869332 U CN202021869332 U CN 202021869332U CN 213496860 U CN213496860 U CN 213496860U
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CN
China
Prior art keywords
workpiece body
cylinder
cutting
cutter
supporting seat
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Active
Application number
CN202021869332.0U
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Chinese (zh)
Inventor
高敏
于嘉奕
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Zhenjiang Bosen Internal Combustion Engine Parts Co ltd
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Zhenjiang Bosen Internal Combustion Engine Parts Co ltd
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Priority to CN202021869332.0U priority Critical patent/CN213496860U/en
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Abstract

The utility model discloses a machining device, which comprises a workpiece body, wherein the workpiece body is cylindrical, and further comprises a base, a supporting seat, a cutting cylinder, a cutter, a locking cylinder and a moving module, wherein the supporting seat is arranged at the center of the base, and the workpiece body is horizontally placed at the center of the base; the cutting cylinder is arranged above the supporting seat, and a piston rod of the cutting cylinder is downwards vertically connected with the cutter; the locking cylinder is arranged at the end part of the workpiece body. The base and the supporting seat provide a field for machining the workpiece body so that the workpiece body is supported, the cutting cylinder is used for driving the cutter to cut off the workpiece body, and the locking cylinder is matched with the moving module to move the workpiece body towards the other side of the supporting seat so as to cut the workpiece body. This equipment adopts and cuts off the cylinder and drive the cutter and cut the work piece body, and the cutting process is driven by cutting off the cylinder, need not the manual operation of manual work, improves machining efficiency.

Description

Machining equipment
Technical Field
The utility model relates to a machining field especially relates to a machining equipment.
Background
The cutting machine is often used for cutting a rod-shaped material. Generally, there are a full-automatic cutting machine and a semi-automatic cutting machine. The full-automatic electric cutting machine is characterized by that the electric energy is converted into kinetic energy by means of motor to control the cutting of cutting knife so as to attain the effect of cutting reinforcing bar. And semi-automatically, the incision is manually controlled to perform the cutting operation. With the increasingly accelerated socialization process, the utilization rate of some stick-shaped raw materials such as reinforcing steel bars and concrete is higher and higher, and the role of the reinforcing steel bars in the construction industry is particularly important. In the prior art, the reinforcing steel bars are often wound into bundles to be conveyed to various places, and when the reinforcing steel bars are used, the reinforcing steel bars are cut into different lengths according to engineering requirements for use.
With the development of the modern machining industry, the requirements for cutting quality and precision are continuously improved, the production efficiency is improved, the production cost is reduced, and the requirement for high-intelligent automatic cutting function is also improved, the development of a numerical control cutting machine must adapt to the requirements for the development of the modern machining industry, the cutting machine is divided into a flame cutting machine, a plasma cutting machine, a cutting knife cutting machine, a laser cutting machine and the like, wherein the laser cutting machine has the fastest efficiency and high cutting precision, but the cost is higher, the operation is complex, the cutting knife cutting machine is generally used, but the current cutting knife needs to manually operate a workpiece when cutting the workpiece, the operation is complex, and the cutting efficiency is too low.
SUMMERY OF THE UTILITY MODEL
Based on the technical problem that the background art exists, the utility model provides a machining equipment adopts and cuts off the cylinder and drive the cutter and cut the work piece body, and the cutting process is driven by cutting off the cylinder, need not the manual operation that the manual work carries on, improves machining efficiency.
The utility model provides a machining device, including the work piece body, the work piece body is cylindrical, still includes base, supporting seat, cuts off cylinder, cutter, locking cylinder and removal module, the central erection bracing seat of base, the base is concave type, the work piece body is placed to the center level of base; the cutting cylinder is arranged above the supporting seat, a piston rod of the cutting cylinder is downwards vertically connected with a cutter, and the cutter is opposite to the workpiece body; the locking cylinder is arranged at the end of the workpiece body, a piston rod of the locking cylinder and the workpiece body are located on the same horizontal line, and the locking cylinder is arranged on the horizontal ground through the moving module. The base and the supporting seat provide a field for machining the workpiece body so that the workpiece body is supported, the cutting cylinder is used for driving the cutter to cut off the workpiece body, and the locking cylinder is matched with the moving module to move the workpiece body towards the other side of the supporting seat so as to cut the workpiece body.
Furthermore, the bottom of the center of the support seat is arc-shaped. Arc-shaped setting makes this physical stamina of work piece and more laminating of supporting seat to make the work piece body place more stably, this physical stamina of the work piece of being convenient for is processed better.
Further, the mobile module comprises a mounting seat, a push rod, a mounting frame and pulleys, a locking cylinder is mounted on the mounting seat, a piston rod of the locking cylinder penetrates through the mounting seat and is horizontally connected with the push rod, the push rod and the workpiece body are located on the same straight line, the end of the push rod is in contact with the end of the workpiece body, the bottom of the mounting seat is horizontally connected with the mounting frame, and the pulleys are mounted at two ends of the mounting frame. The mounting bracket and the pulley are mutually matched and used for driving the mounting seat to move, and then the locking cylinder and the workpiece body are driven to move on the supporting seat, so that the workpiece body is cut.
The utility model provides a pair of machining equipment's advantage lies in: the mechanical processing equipment provided by the structure of the utility model supports the workpiece body by arranging the base and the supporting seat, thereby providing a place for mechanical processing of the workpiece body; cut off cylinder and cutter through the setting, effectively cut the work piece body, whole journey is driven by cutting off cylinder and locking cylinder, realizes that processing is automatic to machining efficiency has also been improved.
Drawings
Fig. 1 is a schematic structural view of a machining apparatus according to the present invention;
FIG. 2 is a schematic structural view of the supporting base;
the cutting device comprises a workpiece body 100, a workpiece body 200, a base 300, a supporting seat 400, a cutting cylinder 500, a cutter 600, a locking cylinder 700, a moving module 701, a mounting seat 702, a push rod 703, a mounting frame 704 and a pulley.
Detailed Description
As shown in fig. 1, fig. 1 is a mechanical processing device disclosed by the present invention, which adopts the combination of floating components and adds suitable connection to meet the requirement of floating function.
Referring to fig. 1, the utility model provides a machining device, including work piece body 100, work piece body 100 is cylindrical, still includes base 200, supporting seat 300, cuts off cylinder 400, cutter 500, locking cylinder 600 and moving module 700, the central installation supporting seat 300 of base 200, supporting seat 300 are concave, the center level of supporting seat 300 places work piece body 100; the cutting cylinder 400 is arranged above the supporting seat 300, a piston rod of the cutting cylinder 400 is downwards vertically connected with the cutter 500, and the cutter 500 is right opposite to the workpiece body 100; the locking cylinder 600 is arranged at the end of the workpiece body 100, the piston rod of the locking cylinder 600 and the workpiece body 100 are located on the same horizontal line, and the locking cylinder 600 is arranged on the horizontal ground through the moving module 700. The workpiece body 100 is horizontally placed on the supporting seat 300 of the base 200, the end of the piston rod of the locking cylinder 600 is aligned with the end of the workpiece body 100, the cutting cylinder 400 is opened, the piston rod of the head hoop of the cutting cylinder 400 drives the cutter 500 to move downwards, the cutter 500 performs cutting processing on the workpiece body 100, and meanwhile, the moving module 700 acts on the workpiece body 100 to enable the workpiece body 100 to horizontally move towards the supporting seat 300, so that the cutting work of the whole workpiece body 100 is completed.
Referring to fig. 2, the bottom of the center of the support base 300 is circular arc. The cylindrical workpiece body 100 is placed at the center of the support base 300, so that the workpiece body 100 is attached to the circular arc at the bottom of the center of the support base 300.
Referring to fig. 1, the moving module 700 includes a mounting seat 701, a push rod 702, a mounting frame 703 and pulleys 704, the mounting seat 701 is provided with a locking cylinder 600, a piston rod of the locking cylinder 600 penetrates through the mounting seat 701 and is horizontally connected with the push rod 702, the push rod 702 and the workpiece body 100 are positioned on the same straight line, an end of the push rod 702 contacts with an end of the workpiece body 100, the bottom of the mounting seat 701 is horizontally connected with the mounting frame 703, and the pulleys 704 are mounted at two ends of the mounting frame 703. The mounting seat 701 is pushed, the mounting seat 701 is driven by the mounting frame 703 and the pulley 704 to move towards the base 200, the mounting seat 701 moves to drive the locking cylinder 600 to move, the locking cylinder 600 moves to push the push rod 702 to move through the piston rod of the locking cylinder, the push rod 702 pushes the workpiece body 100 to move forwards on the supporting seat 300, the workpiece body 100 is sequentially cut off by the cutter 500, and machining of the workpiece body 100 is completed.
The working process is as follows: the workpiece body 100 is horizontally placed on the support base 300 at the center of the base 200, so that the workpiece body 100 is attached to the circular arc at the bottom of the center of the support base 300.
The end part of the piston rod of the locking cylinder 600 is aligned with the end part of the workpiece body 100, the cutting cylinder 400 is started, the head of the cutting cylinder 400 hoops the piston rod thereof to drive the cutter 500 to move downwards, and the cutter 500 performs cutting processing on the workpiece body 100.
The mounting seat 701 is pushed, the mounting seat 701 is driven by the mounting frame 703 and the pulley 704 to move towards the base 200, the mounting seat 701 moves to drive the locking cylinder 600 to move, the locking cylinder 600 moves to push the push rod 702 to move through the piston rod of the locking cylinder, the push rod 702 pushes the workpiece body 100 to move forwards on the supporting seat 300, the workpiece body 100 is sequentially cut off by the cutter 500, and machining of the workpiece body 100 is completed.
In summary, the mechanical processing equipment provided in the structure of the utility model supports the workpiece body by arranging the base and the supporting seat, thereby providing a place for mechanical processing of the workpiece body; cut off cylinder and cutter through the setting, effectively cut the work piece body, whole journey is driven by cutting off cylinder and locking cylinder, realizes that processing is automatic to machining efficiency has also been improved.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (3)

1. A machining device comprises a workpiece body (100), wherein the workpiece body (100) is cylindrical, and the machining device is characterized by further comprising a base (200), a supporting seat (300), a cutting cylinder (400), a cutter (500), a locking cylinder (600) and a moving module (700), wherein the supporting seat (300) is installed at the center of the base (200), the base (200) is concave, and the workpiece body (100) is horizontally placed at the center of the base (200); the cutting cylinder (400) is arranged above the supporting seat (300), a piston rod of the cutting cylinder (400) is downwards vertically connected with the cutter (500), and the cutter (500) is right opposite to the workpiece body (100); the locking cylinder (600) is arranged at the end of the workpiece body (100), a piston rod of the locking cylinder (600) and the workpiece body (100) are located on the same horizontal line, and the locking cylinder (600) is arranged on the horizontal ground through the moving module (700).
2. A machining device according to claim 1, characterized in that the central bottom of the support (300) is rounded.
3. The machining device according to claim 1, wherein the moving module (700) comprises a mounting seat (701), a push rod (702), a mounting frame (703) and pulleys (704), a locking cylinder (600) is mounted on the mounting seat (701), a piston rod of the locking cylinder (600) penetrates through the mounting seat (701) and is horizontally connected with the push rod (702), the push rod (702) and the workpiece body (100) are located on the same straight line, the end of the push rod (702) is in contact with the end of the workpiece body (100), the bottom of the mounting seat (701) is horizontally connected with the mounting frame (703), and the pulleys (704) are mounted at two ends of the mounting frame (703).
CN202021869332.0U 2020-08-31 2020-08-31 Machining equipment Active CN213496860U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021869332.0U CN213496860U (en) 2020-08-31 2020-08-31 Machining equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021869332.0U CN213496860U (en) 2020-08-31 2020-08-31 Machining equipment

Publications (1)

Publication Number Publication Date
CN213496860U true CN213496860U (en) 2021-06-22

Family

ID=76443571

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021869332.0U Active CN213496860U (en) 2020-08-31 2020-08-31 Machining equipment

Country Status (1)

Country Link
CN (1) CN213496860U (en)

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