CN213856606U - Round pipe punching structure - Google Patents

Round pipe punching structure Download PDF

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Publication number
CN213856606U
CN213856606U CN202022150619.4U CN202022150619U CN213856606U CN 213856606 U CN213856606 U CN 213856606U CN 202022150619 U CN202022150619 U CN 202022150619U CN 213856606 U CN213856606 U CN 213856606U
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CN
China
Prior art keywords
punching
cylinder
plate
auxiliary
round pipe
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Active
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CN202022150619.4U
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Chinese (zh)
Inventor
赵怀圣
徐长海
姚加贵
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Wti Building Products Jiangsu Co ltd
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Wti Building Products Jiangsu Co ltd
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Priority to CN202022150619.4U priority Critical patent/CN213856606U/en
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Abstract

The utility model discloses a pipe structure of punching a hole, the utility model discloses a punching device and auxiliary device have solved the problem that current piercing press can not the continuous production operation, realize the continuous feeding of pipe. The punching assembly is pushed to be close to the round pipe through the oil cylinder, the plug is inserted into the round pipe, the punching cylinder is used for driving the punching knife to be close to the round pipe, the punching motor drives the punching knife to rotate to complete punching, in the moving process of the punching assembly, the roller is abutted against the round pipe, and the roller rotates to complete character coding; the auxiliary assembly moves along with the punching assembly in the X direction, the lifting plate is lifted by the aid of the lifting cylinder, a punched round pipe enters the second accommodating groove, another round pipe to be punched enters the first accommodating groove, the auxiliary assembly is pushed to be close to the material moving device by the aid of the auxiliary cylinder, the lifting cylinder drives the lifting plate to descend, the round pipe to be punched is placed in the storage groove, and the material moving device pushes down the punched round pipe.

Description

Round pipe punching structure
Technical Field
The utility model particularly relates to a pipe structure of punching a hole.
Background
Compared with other building structures, the steel structure building has outstanding advantages in design, construction, use and comprehensive economic evaluation. The steel is used as an energy-saving and environment-friendly material, has light dead weight, is half of a concrete structure, and can greatly reduce the cost of the foundation. Meanwhile, the construction time of the steel structure building is short, the steel structural members for construction are produced in a factory and installed on site, and the construction period is shortened by at least one third compared with that of the traditional building.
Steel pipes are one of the important types of steel. The steel pipe needs to be punched in the machining process, and half of the steel pipes need to be punched by using a punching machine, but the existing punching machine needs a person to send the steel pipes into the punching machine outside the punching machine, cannot meet continuous production operation, and cannot automatically send and take materials.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects of the prior art, the utility model provides a pipe punching structure.
The utility model provides a technical scheme of above-mentioned problem does: a circular tube punching structure comprises a punching rack, a feeding plate, a punching device, an auxiliary device and a material moving device, wherein the feeding plate is installed on the punching rack through a connecting column and is inclined to the horizontal plane;
the punching device comprises a pair of punching assemblies which are movably arranged on the punching rack, distributed along the X direction and symmetrical left and right relative to the punching rack;
the punching assembly comprises a main frame, a flat plate, a pair of punching cylinders, a punching motor, a punching knife and an oil cylinder, wherein the flat plate is arranged on the main frame and positioned on opposite surfaces of the two punching assemblies, the upper end surface of the flat plate is provided with a storage groove with an arc structure, the plug is arranged on the main frame and is coaxial with the storage groove, the pair of punching cylinders are arranged on the main frame and are respectively positioned on the front side and the rear side of the main frame and are oppositely arranged, the punching motor is arranged on a telescopic rod of the punching cylinder and is positioned in the main frame, the punching knife is arranged on an output shaft of the punching motor, and the oil cylinder is arranged on the punching frame and is provided with a telescopic rod on the main frame;
the auxiliary device comprises a pair of auxiliary components which are arranged on the punching device, distributed along the X direction and symmetrical left and right relative to the punching rack;
the auxiliary assembly comprises a bottom plate which is arranged on the main frame and located on the opposite surfaces of the two main frames, a guide rail which is arranged on the bottom plate and is perpendicular to the slide rail, a translation plate which is arranged on the guide rail, an auxiliary cylinder which is arranged on the punching frame and is provided with a telescopic rod on the translation plate, a lifting cylinder which is arranged on the translation plate, a lifting plate which is arranged at the top of a telescopic rod of the lifting cylinder and is parallel to the horizontal plane, a first accommodating groove and a second accommodating groove which are arranged at the top of the lifting plate, and the first accommodating groove is located at one end, close to the feeding plate, of the lifting plate.
Furthermore, a pair of groove bodies which are symmetrical in front and back relative to the plug are arranged on the plug, and the cross sections of the groove bodies are of inferior circles; the punch is aligned to the inferior circle.
Furthermore, the punching device also comprises a coding assembly arranged on one of the punching assemblies;
beat the sign indicating number subassembly including installing the subframe at the body frame top, one end is installed on the subframe and the other end passes a pair of code printing plate of body frame, rotates through antifriction bearing and installs the code printing axle on beating the code printing plate, installs and beats epaxial and be used for rolling the word sign indicating number, be located the gyro wheel directly over the end cap.
Furthermore, a through groove for the typewriting code to pass through is formed in the main frame.
Further, the second lifting plate is parallel to the feeding plate.
Furthermore, move the material device and include through the foundation column install on the bottom plate and with horizontal plane slope, along a pair of flitch that moves that the X direction distributes, install the material cylinder that moves on the foundation column, the lower extreme is installed and is moved on the material cylinder telescopic link and the upper end is the supplementary piece of moving of inclined plane.
The utility model discloses beneficial effect has: the utility model discloses a punching device and auxiliary device have solved the problem that current piercing press can not the continuous production operation, realize the continuous feeding of pipe. The punching assembly is pushed to be close to the round pipe through the oil cylinder, the plug is inserted into the round pipe, the punching cylinder is used for driving the punching knife to be close to the round pipe, the punching motor drives the punching knife to rotate to complete punching, in the moving process of the punching assembly, the roller is abutted against the round pipe, and the roller rotates to complete character coding; the auxiliary assembly moves along with the punching assembly in the X direction, the lifting plate is lifted by the aid of the lifting cylinder, a punched round pipe enters the second accommodating groove, another round pipe to be punched enters the first accommodating groove, the auxiliary assembly is pushed to be close to the material moving device by the aid of the auxiliary cylinder, the lifting cylinder drives the lifting plate to descend, the round pipe to be punched is placed in the storage groove, and the material moving device pushes down the punched round pipe. The round tube is ejected out through the material moving device, the automation degree of the existing punching machine is improved, the material moving cylinder is utilized to drive the material moving auxiliary block to rise, and the punched and coded round tube is ejected out through the material moving auxiliary block.
Drawings
Fig. 1 is a top view of the present invention;
FIG. 2 is a schematic left-side view of the structure of the present invention;
fig. 3 is a left side view of the cross-sectional view of the present invention.
In the figure:
301-punching machine frame, 302-feeding plate, 303-feeding groove, 304-punching device, 305-auxiliary device, 306-material moving device, 307-sliding rail, 308-punching component, 309-main frame, 310-flat plate, 311-storage groove, 312-plug, 314-punching cylinder, 315-punching motor, 316-punching knife, 317-oil cylinder, 318-coding component, 319-auxiliary frame, 320-coding plate, 321-roller, 323-bottom plate, 324-guide rail, 325-translation plate, 326-auxiliary cylinder, 327-lifting cylinder, 328-lifting plate, 329-first containing groove, 330-second containing groove, 331-material moving plate, 332-material moving cylinder and 333-material moving auxiliary block.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description.
A circular tube punching structure comprises a punching rack 301, a feeding plate 302 which is installed on the punching rack 301 through a connecting column and is inclined to the horizontal plane, a feeding groove 303 with an arc-shaped structure is arranged at one end, close to the punching rack 301, of the feeding plate 302, a punching device 304 installed on the punching rack 301, an auxiliary device 305 installed on the punching rack 301, and a material moving device 306 installed on the punching rack 301;
the round tube to be punched is slid into feed chute 303 by feed plate 302.
The punching device 304 comprises a pair of slide rails 307 mounted on the punching frame 301, and a pair of punching assemblies 308 mounted on the slide rails 307 and distributed along the X direction and bilaterally symmetrical with respect to the punching frame 301;
the punching assemblies 308 comprise a main frame 309 arranged on a sliding rail 307, a flat plate 310 arranged on the main frame 309 and positioned on opposite surfaces of the two punching assemblies 308, wherein the upper end surface of the flat plate 310 is provided with a storage groove 311 with an arc structure, a plug 312 which is arranged on the main frame 309 and is coaxial with the storage groove 311, the plug 312 is provided with a pair of groove bodies which are symmetrical front and back relative to the plug 312, the cross sections of the groove bodies are of a poor circle, a pair of punching cylinders 314 which are arranged on the main frame 309 and are respectively positioned on the front side and the back side of the main frame 309 and are oppositely arranged, a punching motor 315 which is arranged on a telescopic rod of the punching cylinders 314 and is positioned in the main frame 309, a punching knife 316 which is arranged on an output shaft of the punching motor 315, the punching knife 316 is aligned with the poor circle, and an oil cylinder 317 which is arranged on the punching frame 301 and is arranged on the main frame 309;
the punch apparatus 304 further includes a code assembly 318 mounted to one of the punch assemblies 308;
the code printing assembly 318 comprises an auxiliary frame 319 installed at the top of the main frame 309, a pair of code printing plates 320 with one ends installed on the auxiliary frame 319 and the other ends penetrating through the main frame 309, a code printing shaft installed on the code printing plates 320 in a rotating mode through a rolling bearing, and a roller 321 installed on the code printing shaft and used for rolling codes and located right above the plug 312.
The main frame 309 is provided with a through groove for the typing code to pass through.
The auxiliary device 305 includes a pair of auxiliary components mounted on the punching device 304 and distributed in the X direction, and bilaterally symmetric with respect to the punching frame 301;
the auxiliary assembly comprises a bottom plate 323 which is arranged on the main frames 309 and positioned on the opposite surfaces of the two main frames 309, a guide rail 324 which is arranged on the bottom plate 323 and is perpendicular to the slide rail 307, a translation plate 325 which is arranged on the guide rail 324, an auxiliary cylinder 326 which is arranged on the punching frame 301 and is provided with a telescopic rod on the translation plate 325, a lifting cylinder 327 which is arranged on the translation plate 325, and a lifting plate 328 which is arranged on the top of the telescopic rod of the lifting cylinder 327 and is parallel to the horizontal plane, wherein a first accommodating groove 329 and a second accommodating groove 330 are arranged on the top of the lifting plate 328, the first accommodating groove 329 is positioned at one end of the lifting plate 328 close to the feeding plate 302, and the sections of the first accommodating groove 329 and the second accommodating groove 330 are arc-shaped structures;
the punching assembly 308 is pushed to be close to the round pipe through the oil cylinder 317, the plug 312 is inserted into the round pipe, the punching air cylinder 314 is used for driving the punching knife 316 to be close to the round pipe, the punching motor 315 is used for driving the punching knife 316 to rotate to complete punching, in the moving process of the punching assembly 308, the roller 321 is abutted to the round pipe, and the roller 321 rotates to complete the character typing; the auxiliary assembly moves along with the punching assembly 308 in the X direction, the lifting plate 328 is lifted by the lifting cylinder 327, a punched circular tube enters the second accommodating groove 330, another circular tube to be punched enters the first accommodating groove 329, the auxiliary assembly is pushed by the auxiliary cylinder 326 to be close to the material moving device 306, the lifting cylinder 327 drives the lifting plate 328 to descend, the circular tube to be punched is placed in the accommodating groove 311, and the material moving device 306 pushes the punched circular tube down, so that the problem that the existing punching machine cannot continuously produce and operate is solved, and continuous feeding of the circular tubes is realized.
The material moving device 306 comprises a pair of material moving plates 331 which are arranged on a bottom plate 323 through a bottom column, inclined to the horizontal plane and distributed along the X direction, a material moving cylinder 332 arranged on the bottom column, and a material moving auxiliary block 333 of which the lower end is arranged on an expansion rod of the material moving cylinder 332 and the upper end is an inclined plane.
The round tube is ejected out through the material moving device 306, the automation degree of the existing punching machine is improved, the material moving cylinder 332 is used for driving the material moving auxiliary block 333 to rise, and the material moving auxiliary block 333 ejects out the punched and coded round tube.
The utility model discloses the theory of operation:
s1: placing the round pipe to be punched on the feeding plate 302, and sliding the round pipe to be punched into the feeding groove 303;
s2: when the auxiliary device 305 works, the lifting cylinder 327 drives the lifting plate 328 to rise, and the round pipe to be punched enters the first accommodating groove 329; the auxiliary cylinder 326 pushes the lifting plate 328 to be far away from the feeding plate 302, the lifting cylinder 327 drives the lifting plate 328 to descend, the first accommodating groove 329 is aligned with the storage groove 311, and the round pipe to be punched falls into the storage groove 311;
s3: the oil cylinder 317 drives the punching assembly 308 to be close to a round pipe to be punched, the plug 312 is inserted into the round pipe to be punched, the punching cylinder 314 drives the punching knife 316 to be close to the round pipe, the punching motor 315 drives the punching knife 316 to rotate to complete punching, in the moving process of the punching assembly 308, the roller 321 is abutted to the round pipe, and the roller 321 rotates to complete character coding;
s4: the auxiliary device 305 works, the auxiliary cylinder 326 pushes the lifting plate 328 to be close to the feeding plate 302, the lifting cylinder 327 drives the lifting plate 328 to be lifted, another round pipe to be punched enters the first accommodating groove 329, and the punched round pipe falls into the storage groove 311; the auxiliary cylinder 326 pushes the lifting plate 328 to be close to the material moving device 306;
s5: the material moving device 306 works, the material moving cylinder 332 drives the material moving auxiliary block 333 to ascend, the material moving auxiliary block 333 ejects out the punched circular tube, and the punched circular tube slides into the next working procedure along the material moving plate 331;
s6: the process of S3-S5 is then repeated.
Many other changes and modifications can be made without departing from the spirit and scope of the invention. It is to be understood that the invention is not to be limited to the specific embodiments, and that the scope of the invention is defined by the appended claims.

Claims (4)

1. A circular tube punching structure is characterized by comprising a punching rack (301), a feeding plate (302) which is arranged on the punching rack (301) through a connecting column and is inclined to the horizontal plane, a feeding groove (303) with an arc-shaped structure is arranged at one end, close to the punching rack (301), of the feeding plate (302), a punching device (304) arranged on the punching rack (301), an auxiliary device (305) arranged on the punching rack (301), and a material moving device (306) arranged on the punching rack (301);
the punching device (304) comprises a pair of punching assemblies (308) which are movably arranged on the punching rack (301), distributed along the X direction and symmetrical left and right relative to the punching rack (301);
the punching assembly (308) comprises a main frame (309), a flat plate (310) which is arranged on the main frame (309) and is positioned on the opposite surfaces of the two punching assemblies (308), wherein the upper end surface of the flat plate (310) is provided with a storage groove (311) with an arc structure, a plug (312) which is arranged on the main frame (309) and is coaxial with the storage groove (311), a pair of punching cylinders (314) which are arranged on the main frame (309) and are respectively positioned on the front side and the rear side of the main frame (309) and are oppositely arranged, a punching motor (315) which is arranged on a telescopic rod of the punching cylinder (314) and is positioned in the main frame (309), a punching knife (316) which is arranged on an output shaft of the punching motor (315), and an oil cylinder (317) which is arranged on the punching frame (;
the auxiliary device (305) comprises a pair of auxiliary components which are arranged on the punching device (304) and distributed along the X direction and are symmetrical left and right relative to the punching rack (301);
the auxiliary assembly comprises a base plate (323) which is arranged on the main frame (309) and located on the opposite surfaces of the two main frames (309), a guide rail (324) which is arranged on the base plate (323) and perpendicular to the slide rail (307), a translation plate (325) which is arranged on the guide rail (324), an auxiliary cylinder (326) which is arranged on the punching frame (301) and is provided with a telescopic rod on the translation plate (325), a lifting cylinder (327) which is arranged on the translation plate (325), a lifting plate (328) which is arranged at the top of the telescopic rod of the lifting cylinder (327) and is parallel to the horizontal plane, a first accommodating groove (329) and a second accommodating groove (330) are arranged at the top of the lifting plate (328), and the first accommodating groove (329) is located at one end, close to the feeding plate (302), of the lifting plate (328).
2. The round pipe punching structure as claimed in claim 1, wherein a pair of groove bodies which are symmetrical in front and back are arranged on the plug (312), and the cross section of each groove body is an inferior circle; the die cutter (316) is aligned to the inferior circle.
3. A round tube punching structure as in claim 1, characterized in that said punching apparatus (304) further comprises a coding assembly (318) mounted on one of the punching assemblies (308);
beat sign indicating number subassembly (318) including installing subframe (319) at body frame (309) top, one end is installed on subframe (319) and the other end passes a pair of sign indicating number board (320) of beating of body frame (309), rotates the code axle of beating of installing on beat sign indicating number board (320) through antifriction bearing, installs and beats epaxial and be used for the roll word sign indicating number, is located gyro wheel (321) directly over end cap (312).
4. A circular tube punching structure according to claim 1, wherein the material transferring device (306) comprises a pair of material transferring plates (331) which are arranged on the bottom plate (323) through a bottom pillar, inclined to the horizontal plane and distributed along the X direction, a material transferring cylinder (332) arranged on the bottom pillar, and a material transferring auxiliary block (333) which is arranged on the telescopic rod of the material transferring cylinder (332) at the lower end and has an inclined surface at the upper end.
CN202022150619.4U 2020-09-27 2020-09-27 Round pipe punching structure Active CN213856606U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022150619.4U CN213856606U (en) 2020-09-27 2020-09-27 Round pipe punching structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022150619.4U CN213856606U (en) 2020-09-27 2020-09-27 Round pipe punching structure

Publications (1)

Publication Number Publication Date
CN213856606U true CN213856606U (en) 2021-08-03

Family

ID=77050174

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022150619.4U Active CN213856606U (en) 2020-09-27 2020-09-27 Round pipe punching structure

Country Status (1)

Country Link
CN (1) CN213856606U (en)

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