CN209986039U - Numerical control bender convenient to adjust - Google Patents

Numerical control bender convenient to adjust Download PDF

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Publication number
CN209986039U
CN209986039U CN201920311191.1U CN201920311191U CN209986039U CN 209986039 U CN209986039 U CN 209986039U CN 201920311191 U CN201920311191 U CN 201920311191U CN 209986039 U CN209986039 U CN 209986039U
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China
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machine body
hydraulic cylinder
fuselage
fixing plate
adjusting hydraulic
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CN201920311191.1U
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Chinese (zh)
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胡振亚
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Shenyang Xingya Chuangwei Technology Development Co Ltd
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Shenyang Xingya Chuangwei Technology Development Co Ltd
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Abstract

The utility model discloses a numerical control bender convenient to adjust, include: go up the fuselage, go up the fuselage regulator, lower fuselage regulator and base, go up the fuselage and be connected through last fuselage regulator with lower fuselage, lower fuselage is connected through fuselage regulator down with the base, goes up the fuselage regulator and includes: go up fixed plate, bottom plate, go up regulation pneumatic cylinder and lower regulation pneumatic cylinder, the machine ware is transferred to lower fuselage includes: the utility model provides a numerical control bender convenient to adjust can adjust the height of fuselage according to production needs, consequently, the application provides a height that the fuselage can be adjusted to the fuselage under to the numerical control bender of being convenient for adjust, satisfies production needs under the different conditions.

Description

Numerical control bender convenient to adjust
Technical Field
The application relates to the technical field of bending machines, in particular to a numerical control bending machine convenient to adjust.
Background
The numerical control bending machine is essentially a numerical control bending machine die for bending a thin plate, and the die comprises a support, a workbench and a clamping plate, wherein the attractive force to the pressing plate is generated by electrifying a coil, so that the clamping of the thin plate between the pressing plate and a base is completed.
The existing numerical control bending machine is usually integrated, the height of the machine body per se can not be adjusted, but in actual processing production, the machine body is influenced by the shape and the size of a processed workpiece, the processed workpiece needs to be lifted by a crane at times to be processed, the processed workpiece cannot be stably fixed, the processing precision is influenced, and therefore the problem of urgently waiting to be solved is to provide the numerical control bending machine capable of adjusting the height of the machine body.
SUMMERY OF THE UTILITY MODEL
An object of this application is to provide a numerical control bender convenient to adjust to solve the current not adjustable problem of numerical control bender fuselage height.
A numerically controlled bending machine convenient to adjust, comprising: the device comprises an upper machine body, an upper machine body regulator, a lower machine body regulator and a base, wherein the upper machine body is connected with the lower machine body through the upper machine body regulator, and the lower machine body is connected with the base through the lower machine body regulator;
a hydraulic cylinder is arranged at the top of the upper body, a pressure rod is arranged on the hydraulic cylinder, an upper die is arranged at one end, far away from the hydraulic cylinder, of the pressure rod, a processing rack is arranged on one side, close to the upper body, of the lower body, a processing platform is arranged on the processing rack, a lower die is arranged on the processing platform, and the lower die and the upper die are arranged oppositely;
the upper body regulator includes: the upper fixing plate is fixedly connected with the upper machine body, the lower fixing plate is fixedly connected with the lower machine body, the upper fixing plate is arranged opposite to the lower fixing plate, the upper adjusting hydraulic cylinder and the lower adjusting hydraulic cylinder are arranged between the upper fixing plate and the lower fixing plate, the upper adjusting hydraulic cylinders are arranged in a plurality of numbers, the upper adjusting hydraulic cylinders are uniformly arranged along the edges of two opposite sides of the upper fixing plate, the upper adjusting hydraulic cylinder is provided with an upper connecting rod, one end of the upper connecting rod is connected with the upper adjusting hydraulic cylinder, the other end of the upper connecting rod is connected with the lower fixing plate, the lower adjusting hydraulic cylinder is arranged in the middle of the lower fixing plate, the lower adjusting hydraulic cylinder is arranged in a plurality of numbers, and the lower adjusting hydraulic cylinder is arranged in the middle of the upper adjusting hydraulic cylinder, a lower connecting rod is arranged on the lower adjusting hydraulic cylinder, one end of the lower connecting rod is connected with the lower adjusting hydraulic cylinder, and the other end of the lower connecting rod is connected with the upper fixing plate;
the machine ware is transferred to lower fuselage includes: the upper connecting plate is fixedly connected with the lower machine body, the lower connecting plate is fixedly connected with the base, the upper connecting plate is arranged opposite to the lower connecting plate, the scissors mechanism is arranged between the upper connecting plate and the lower connecting plate, the lower machine body hydraulic cylinder is arranged on the lower connecting plate, the lower machine body hydraulic cylinder is a plurality of hydraulic cylinders, the lower machine body hydraulic cylinders are uniformly distributed on two sides of the scissors mechanism, one end of the lower machine body push rod is connected with the lower machine body hydraulic cylinder, and the other end of the lower machine body push rod is connected with the upper connecting plate.
Optionally, an upper body level gauge is arranged on the upper body close to the upper body adjuster.
Optionally, a lower fuselage level is arranged on the lower fuselage near the lower fuselage adjuster.
Optionally, be provided with stabilizing support down on the fuselage, stabilizing support is the several, stabilizing support along the relative both sides surface evenly distributed of fuselage down, stabilizing support includes: fuselage connecting rod and telescopic prop, telescopic prop with the fuselage passes through down the fuselage connecting rod is connected.
The application provides a numerical control bender convenient to adjust includes: the device comprises an upper machine body, an upper machine body regulator, a lower machine body regulator and a base, wherein the upper machine body is connected with the lower machine body through the upper machine body regulator; a hydraulic cylinder is arranged at the top of the upper machine body, a pressure rod is arranged on the hydraulic cylinder, an upper die is arranged at one end, far away from the hydraulic cylinder, of the pressure rod, a processing rack is arranged on one side, close to the upper machine body, of the lower machine body, a processing platform is arranged on the processing rack, a lower die is arranged on the processing platform, and the lower die and the upper die are arranged oppositely; the upper body regulator includes: an upper fixing plate and a lower fixing plate, the upper fixing plate is fixedly connected with the upper machine body, the lower fixing plate is fixedly connected with the lower machine body, the upper fixing plate and the lower fixing plate are arranged oppositely, the upper adjusting hydraulic cylinder and the lower adjusting hydraulic cylinder are arranged between the upper fixing plate and the lower fixing plate, the upper adjusting hydraulic cylinders are provided with a plurality of upper connecting rods, one end of each upper connecting rod is connected with the upper adjusting hydraulic cylinder, the other end of each upper connecting rod is connected with the lower fixing plate, the lower adjusting hydraulic cylinders are arranged in the middle of the lower fixing plate, the lower adjusting hydraulic cylinders are provided with a plurality of lower adjusting hydraulic cylinders in the middle of the upper adjusting hydraulic cylinders, the lower adjusting hydraulic cylinders are provided with lower connecting rods, one ends of the lower connecting rods are connected with the lower adjusting hydraulic cylinders, and the other ends of the lower connecting rods are connected with the upper fixing plate; the machine ware is transferred to lower fuselage includes: the numerical control bending machine comprises an upper connecting plate, a lower connecting plate, a scissor mechanism, a lower machine body hydraulic cylinder and a lower machine body push rod, wherein the upper connecting plate is fixedly connected with the lower machine body, the lower connecting plate is fixedly connected with a base, the upper connecting plate and the lower connecting plate are arranged oppositely, the scissor mechanism is arranged between the upper connecting plate and the lower connecting plate, the lower machine body hydraulic cylinder is arranged on the lower connecting plate, the lower machine body hydraulic cylinders are a plurality of, the lower machine body hydraulic cylinders are uniformly distributed at two sides of the scissor mechanism, one end of the lower machine body push rod is connected with the lower machine body hydraulic cylinder, the other end of the lower machine body push rod is connected with the upper connecting plate, the height of the upper machine body can be adjusted by arranging an upper machine body adjuster between the upper machine body and the lower machine body, and the height of the lower machine body relative to the ground can be adjusted by arranging a lower machine, to meet the production requirements under different conditions.
Drawings
In order to more clearly explain the technical solution of the present application, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious to those skilled in the art that other drawings can be obtained according to the drawings without any creative effort.
Fig. 1 is a schematic structural diagram of a numerical control bending machine convenient to adjust according to an embodiment of the present application.
Illustration of the drawings: 1-upper fuselage, 2-upper fuselage adjuster, 3-lower fuselage, 4-lower fuselage adjuster, 5-base, 11-hydraulic cylinder, 12-pressure rod, 13-upper die, 14-upper fuselage level, 21-upper fixed plate, 22-lower fixed plate, 23-upper adjusting hydraulic cylinder, 24-lower adjusting hydraulic cylinder, 25-upper connecting rod, 26-lower connecting rod, 31-processing frame, 32-processing platform, 33-lower die, 34-lower fuselage level, 35-stabilizing stand, 36-fuselage connecting rod, 37-telescopic strut, 41-upper connecting plate, 42-lower connecting plate, 43-scissor mechanism, 44-lower fuselage hydraulic cylinder, 45-lower fuselage push rod.
Detailed Description
Examples
Referring to fig. 1, a numerical control bending machine convenient to adjust provided by an embodiment of the present application includes: go up fuselage 1, go up fuselage regulator 2, lower fuselage 3, lower fuselage regulator 4 and base 5, go up fuselage 1 and be connected through last fuselage regulator 2 with lower fuselage 3, lower fuselage 3 is connected through lower fuselage regulator 4 with base 5.
The top of the upper machine body 1 is provided with a hydraulic cylinder 11, a pressure rod 12 is arranged on the hydraulic cylinder 11, one end, far away from the hydraulic cylinder 11, of the pressure rod 12 is provided with an upper die 13, one side, close to the upper machine body 1, of the lower machine body 3 is provided with a processing rack 31, a processing platform 32 is arranged on the processing rack 31, a lower die 33 is arranged on the processing platform 32, and the lower die 33 and the upper die 13 are arranged oppositely.
The upper body regulator 2 includes: an upper fixing plate 21, a lower fixing plate 22, an upper adjusting hydraulic cylinder 23 and a lower adjusting hydraulic cylinder 24, wherein the upper fixing plate 21 is fixedly connected with the upper body 1, the lower fixing plate 22 is fixedly connected with the lower body 3, the upper fixing plate 21 is arranged opposite to the lower fixing plate 22, the upper adjusting hydraulic cylinder 23 and the lower adjusting hydraulic cylinder 24 are both arranged between the upper fixing plate 21 and the lower fixing plate 22, the upper adjusting hydraulic cylinder 23 is provided with a plurality of upper adjusting hydraulic cylinders 23, the upper adjusting hydraulic cylinder 23 is uniformly arranged along the edges of two opposite sides of the upper fixing plate 21, the upper adjusting hydraulic cylinder 23 is provided with an upper connecting rod 25, one end of the upper connecting rod 25 is connected with the upper adjusting hydraulic cylinder 23, the other end of the upper connecting rod 25 is connected with the lower fixing plate 22, the lower adjusting hydraulic cylinder 24 is arranged in the middle of the lower fixing plate 22, the lower adjusting hydraulic cylinder 24 is provided with a plurality of lower adjusting hydraulic cylinders, one end of the lower connecting rod 26 is connected with the lower adjusting hydraulic cylinder 24, the other end of the lower connecting rod 26 is connected with the upper fixing plate 21, specifically, an upper adjusting hydraulic cylinder 23 and a lower adjusting hydraulic cylinder 24 are arranged between the upper fixing plate 21 and the lower fixing plate 22, the upper adjusting hydraulic cylinder 23 and the lower adjusting hydraulic cylinder 24 are controlled through common adjustment to adjust the interval between the upper fixing plate 21 and the lower fixing plate 22, and further, the height of the upper machine body 1 relative to the ground is adjusted, and the lower adjusting hydraulic cylinder 24 is arranged in the middle of the upper adjusting hydraulic cylinder 23, so that the stability of the equipment during height adjustment can be further guaranteed.
The lower body conditioner 4 includes: the upper connecting plate 41, the lower connecting plate 42, the scissors mechanism 43, lower fuselage pneumatic cylinder 44 and lower fuselage push rod 45, upper connecting plate 41 and lower fuselage 3 fixed connection, lower connecting plate 42 and base 5 fixed connection, upper connecting plate 41 sets up with lower connecting plate 42 relatively, scissors mechanism 43 sets up between upper connecting plate 41 and lower connecting plate 42, lower fuselage pneumatic cylinder 44 sets up on lower connecting plate 42, lower fuselage pneumatic cylinder 44 is the several, lower fuselage pneumatic cylinder 44 evenly distributed is in the both sides of scissors mechanism 43, the one end of lower fuselage push rod 45 is connected with lower fuselage pneumatic cylinder 44, the other end of lower fuselage push rod 45 is connected with upper connecting plate 41, scissors mechanism 43 plays the supporting role, lower fuselage pneumatic cylinder 44 and lower fuselage push rod 45 can adjust the interval distance between upper connecting plate 41 and the lower connecting plate 42, thereby adjust the height of lower fuselage 3 relative to ground.
Optionally, an upper body level 14 is disposed on the upper body 1 near the upper body adjuster 2, and the upper body level 14 can detect whether the upper body 1 is in a horizontal position.
Optionally, a lower body level 34 is disposed on the lower body 3 near the lower body regulator 4, and the lower body level 34 can detect whether the lower body 3 is in a horizontal position.
Optionally, be provided with stabilizing support 35 on fuselage 3 down, stabilizing support 35 is the several, and stabilizing support 35 includes along fuselage 3's the relative both sides surface evenly distributed down: fuselage connecting rod 36 and telescopic strut 37, telescopic strut 37 is connected through fuselage connecting rod 36 with fuselage 3 down, and stabilizing support 35 can play the stabilizing effect to fuselage 3 down, and telescopic strut 37 can play the effect of height-adjusting.
Through setting up fuselage regulator 2 on last fuselage 1 and between fuselage 3 down, can adjust the height of last fuselage 1 for ground, through fuselage regulator 4 under setting up between fuselage 3 and base 5 down, can adjust the height of fuselage 3 for ground down, consequently, the numerical control bender convenient to adjust that this embodiment provided can adjust the height of fuselage according to production needs, satisfies production needs under the different conditions.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the invention following, in general, the principles of the invention and including such departures from the present disclosure as come within known or customary practice within the art to which the invention pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims.
The above embodiments of the present application do not limit the scope of the present application.

Claims (4)

1. A numerical control bender convenient to adjust, characterized by, includes: the device comprises an upper machine body (1), an upper machine body regulator (2), a lower machine body (3), a lower machine body regulator (4) and a base (5), wherein the upper machine body (1) is connected with the lower machine body (3) through the upper machine body regulator (2), and the lower machine body (3) is connected with the base (5) through the lower machine body regulator (4);
a hydraulic cylinder (11) is arranged at the top of the upper machine body (1), a pressure rod (12) is arranged on the hydraulic cylinder (11), an upper die (13) is arranged at one end, far away from the hydraulic cylinder (11), of the pressure rod (12), a processing rack (31) is arranged on one side, close to the upper machine body (1), of the lower machine body (3), a processing platform (32) is arranged on the processing rack (31), a lower die (33) is arranged on the processing platform (32), and the lower die (33) and the upper die (13) are arranged oppositely;
the upper housing regulator (2) comprises: an upper fixing plate (21), a lower fixing plate (22), an upper adjusting hydraulic cylinder (23) and a lower adjusting hydraulic cylinder (24), wherein the upper fixing plate (21) is fixedly connected with the upper machine body (1), the lower fixing plate (22) is fixedly connected with the lower machine body (3), the upper fixing plate (21) is arranged opposite to the lower fixing plate (22), the upper adjusting hydraulic cylinder (23) and the lower adjusting hydraulic cylinder (24) are arranged between the upper fixing plate (21) and the lower fixing plate (22), the upper adjusting hydraulic cylinder (23) is provided with a plurality of parts, the upper adjusting hydraulic cylinder (23) is uniformly arranged along the edges of two opposite sides of the upper fixing plate (21), an upper connecting rod (25) is arranged on the upper adjusting hydraulic cylinder (23), one end of the upper connecting rod (25) is connected with the upper adjusting hydraulic cylinder (23), and the other end of the upper connecting rod (25) is connected with the lower fixing plate (22), the lower adjusting hydraulic cylinders (24) are arranged in the middle of the lower fixing plate (22), the number of the lower adjusting hydraulic cylinders (24) is multiple, the lower adjusting hydraulic cylinders (24) are arranged in the middle of the upper adjusting hydraulic cylinder (23), the lower adjusting hydraulic cylinders (24) are provided with lower connecting rods (26), one ends of the lower connecting rods (26) are connected with the lower adjusting hydraulic cylinders (24), and the other ends of the lower connecting rods (26) are connected with the upper fixing plate (21);
the lower fuselage adjuster (4) comprises: an upper connecting plate (41), a lower connecting plate (42), a scissor fork mechanism (43), a lower machine body hydraulic cylinder (44) and a lower machine body push rod (45), the upper connecting plate (41) is fixedly connected with the lower machine body (3), the lower connecting plate (42) is fixedly connected with the base (5), the upper connecting plate (41) and the lower connecting plate (42) are arranged oppositely, the scissors mechanism (43) is arranged between the upper connecting plate (41) and the lower connecting plate (42), the lower body hydraulic cylinder (44) is arranged on the lower connecting plate (42), the number of the lower machine body hydraulic cylinders (44) is several, the lower machine body hydraulic cylinders (44) are uniformly distributed on two sides of the scissor fork mechanism (43), one end of the lower machine body push rod (45) is connected with the lower machine body hydraulic cylinder (44), the other end of the lower machine body push rod (45) is connected with the upper connecting plate (41).
2. Numerical control bending machine facilitating adjustment according to claim 1, wherein an upper body level (14) is provided on said upper body (1) close to said upper body adjuster (2).
3. Numerical control bending machine facilitating adjustment according to claim 1, wherein a lower body level (34) is provided on said lower body (3) close to said lower body adjuster (4).
4. Numerical control bending machine facilitating adjustment according to claim 1, wherein said lower body (3) is provided with a plurality of stabilizing supports (35), said stabilizing supports (35) being uniformly distributed along two opposite side surfaces of said lower body (3), said stabilizing supports (35) comprising: fuselage connecting rod (36) and telescopic strut (37), telescopic strut (37) with fuselage (3) are through down fuselage connecting rod (36) are connected.
CN201920311191.1U 2019-03-12 2019-03-12 Numerical control bender convenient to adjust Active CN209986039U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920311191.1U CN209986039U (en) 2019-03-12 2019-03-12 Numerical control bender convenient to adjust

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920311191.1U CN209986039U (en) 2019-03-12 2019-03-12 Numerical control bender convenient to adjust

Publications (1)

Publication Number Publication Date
CN209986039U true CN209986039U (en) 2020-01-24

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ID=69289237

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920311191.1U Active CN209986039U (en) 2019-03-12 2019-03-12 Numerical control bender convenient to adjust

Country Status (1)

Country Link
CN (1) CN209986039U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114798959A (en) * 2022-04-07 2022-07-29 赵倩 Numerical control bender convenient to adjust

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114798959A (en) * 2022-04-07 2022-07-29 赵倩 Numerical control bender convenient to adjust

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