CN214160529U - Steel pipe length material feed mechanism - Google Patents

Steel pipe length material feed mechanism Download PDF

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Publication number
CN214160529U
CN214160529U CN202023219231.1U CN202023219231U CN214160529U CN 214160529 U CN214160529 U CN 214160529U CN 202023219231 U CN202023219231 U CN 202023219231U CN 214160529 U CN214160529 U CN 214160529U
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CN
China
Prior art keywords
steel pipe
long
shaft linkage
short
conveying line
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CN202023219231.1U
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Chinese (zh)
Inventor
肖旭
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Liaoning Tianfeng Special Tool Manufacturing Co ltd
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Liaoning Tianfeng Special Tool Manufacturing Co ltd
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Priority to CN202023219231.1U priority Critical patent/CN214160529U/en
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Publication of CN214160529U publication Critical patent/CN214160529U/en
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Abstract

The utility model discloses a steel pipe long and short material distributing mechanism, which is provided with a long steel pipe conveying line, and further comprises an axle linkage transposition material rack, a material blocking platform, a buffering material blocking device and a short steel pipe conveying line incoming material detection switch, wherein the axle linkage transposition material rack is arranged between the steel pipe incoming material device and the long steel pipe conveying line in a lever mode, the short steel pipe conveying line is arranged below the steel pipe incoming material device and is connected with or separated from one end of the axle linkage transposition material rack; the buffering material blocking device is arranged below the discharge hole of the steel pipe feeding device; the incoming material detection switch is arranged on the opposite side of the steel pipe incoming material device and used for judging the critical positions of the long steel pipe and the short steel pipe.

Description

Steel pipe length material feed mechanism
Technical Field
The utility model relates to a steel pipe material feed divider specifically is a steel pipe length material feed mechanism.
Background
The steel pipe after the hot rolling is cut into segments according to the requirements of users in the segmentation process, the length difference of the segmented steel pipes is large, the long and short steel pipes are mixed together, the steel pipe beam is linked with the inclined rack to directly roll to a long steel pipe conveying line to be conveyed out, the material distribution process is avoided, steel pipes with different lengths need to be manually sorted out in the subsequent processing process to be sawed or packaged, the working efficiency is influenced, the lengths are easy to be confused, and the inconvenience is brought to the work.
SUMMERY OF THE UTILITY MODEL
The steel pipe after the segmentation does not divide long short circuit to transport out to the work efficiency that the subsequent handling influences the subsequent handling among the prior art etc. not enough, the to-be-solved problem of the utility model is to provide a long short material feed mechanism of steel pipe that can divide the material automatically and improve subsequent work efficiency.
In order to solve the technical problem, the utility model discloses a technical scheme is:
the utility model provides a steel pipe long and short material feed mechanism, which is provided with a long steel pipe conveying line, and further comprises an axle linkage transposition material rack, a material blocking platform, a buffering material blocking device and a short steel pipe conveying line incoming material detection switch, wherein the axle linkage transposition material rack is arranged between the steel pipe incoming material device and the long steel pipe conveying line in a lever mode, the short steel pipe conveying line is arranged below the steel pipe incoming material device and is connected with or separated from one end of the axle linkage transposition material rack; the buffering material blocking device is arranged below the discharge hole of the steel pipe feeding device; the incoming material detection switch is arranged on the opposite side of the steel pipe incoming material device and used for judging the critical positions of the long steel pipe and the short steel pipe.
The lower part of the shaft linkage transposition material rack is provided with a fulcrum, and the shaft linkage transposition material rack is rotatably arranged on a bracket through the fulcrum; one end of the buffering material blocking device is rotatably arranged on the rotating shaft, and the bottom of the other end of the buffering material blocking device is connected with a buffering material blocking driving oil cylinder; the shaft linkage transposition material rack and the buffering material blocking devices are at least two groups, and the two groups of shaft linkage transposition material racks and the two groups of buffering material blocking devices are arranged in a spaced mode.
When the shaft linkage transposition material stand is arranged at the original position, one end of the shaft linkage transposition material stand is connected with a long steel pipe conveying line, and the other end of the shaft linkage transposition material stand is connected with a discharge hole of a steel pipe feeding device; when the shaft linkage transposition material rack rotates to a material distribution working state, one end of the shaft linkage transposition material rack is separated from the long steel pipe conveying line, the other end of the shaft linkage transposition material rack is connected with the short steel pipe conveying line, and a material blocking included angle is formed between the shaft linkage transposition material rack and the buffering material blocking device.
The shaft linkage transposition material rack is driven by the oil cylinder to coaxially rotate.
The utility model has the following beneficial effects and advantages:
1. the utility model discloses with length steel pipe on the production line automatic sorting to long steel pipe supply line and short steel pipe supply line, handle respectively, saved the letter sorting time of subsequent handling, reduced the error rate, practice thrift the manpower simultaneously, raise the efficiency.
Drawings
FIG. 1 is a schematic diagram of the structure and the first stage of the sorting process of the present invention;
FIG. 2 is a schematic diagram of the second stage of the sorting process of the present invention;
fig. 3 is a schematic diagram of the third stage of the sorting process of the present invention.
The device comprises a base, a support, a buffer stop device, a buffer stop driving oil cylinder, a short steel pipe conveying line, a long steel pipe conveying line, a shaft linkage transposition material rack, a buffer stop device, a buffer stop driving oil cylinder, a short steel pipe conveying line, a material incoming detection switch and a support, wherein the steel pipe is 1, the long steel pipe is 101, the short steel pipe is 102, the long steel pipe conveying line is 2, the shaft linkage transposition material rack is 3, the buffer stop device is 4, the buffer stop driving oil cylinder is 5, the short steel pipe conveying line is 6, the material incoming detection switch is 7, and the support is 8.
Detailed Description
The invention will be further explained with reference to the drawings attached to the specification.
As shown in fig. 1, the utility model provides a steel pipe long and short material distributing mechanism, which comprises a long steel pipe conveying line 2, and further comprises an axle linkage transposition material rack 3, a buffer stop device 4 and a short steel pipe conveying line 6 as a material supply detection switch 7, wherein the axle linkage transposition material rack 3 is arranged between the steel pipe material supply device and the long steel pipe conveying line 2 in a lever mode, and the short steel pipe conveying line 6 is arranged below the steel pipe material supply device and is connected with or separated from one end of the axle linkage transposition material rack 3; the buffering material blocking device 4 is arranged below the discharge hole of the steel pipe feeding device; the incoming material detection switch 7 is arranged on the opposite side of the steel pipe incoming material device and used for judging the critical positions of the long steel pipe and the short steel pipe.
The lower part of the shaft linkage transposition material rack 3 is provided with a fulcrum, and the shaft linkage transposition material rack 3 is arranged on a bracket 8 through a synchronous shaft; one end of the buffering material blocking device 4 is rotatably arranged on the rotating shaft 8, and the bottom of the other end of the buffering material blocking device is connected with a buffering material blocking driving oil cylinder 5; the shaft linkage transposition material rack 3 and the buffer material blocking devices 4 are at least two groups in linkage, and the two groups of shaft linkage transposition material racks 3 and the two groups of buffer material blocking devices 4 are arranged alternately.
When the shaft linkage transposition material rack 3 is at the original position, one end of the shaft linkage transposition material rack is connected with the long steel pipe conveying line 2, and the other end of the shaft linkage transposition material rack is connected with a discharge hole of a steel pipe feeding device, as shown in figure 1; when the shaft linkage transposition material rack 3 rotates to a material distribution working state, one end of the shaft linkage transposition material rack is separated from the long steel pipe conveying line 2, the other end of the shaft linkage transposition material rack is connected with the short steel pipe conveying line 6, and a material blocking included angle is formed between the shaft linkage transposition material rack and the buffering material blocking device 4, as shown in fig. 2.
In this embodiment, the short steel pipe transport line 6 and the long steel pipe transport line 2 have the same structure and are arranged in parallel, and the steel pipe feeding devices can align one ends of all the feeding steel pipes and make the other ends of the feeding steel pipes have different lengths. The shaft linkage transposition material rack 3 and the buffering material blocking device 4 are both steel structures, the incoming material detection switch 7 adopts a photoelectric switch, and a detected signal is connected to the control unit and used for controlling the extending or retracting action of the buffering material blocking driving oil cylinder 5.
The working process of the utility model is as follows:
in the working state, the incoming material detection switch 7 constantly monitors the length of the steel pipe conveyed by the steel pipe incoming material device. When the incoming material detection switch 7 detects that a material exists, the output is a long steel pipe, the shaft linkage transposition material rack 3 and the buffer material blocking device 4 both keep the original point position, and the long steel pipe directly falls into a steel pipe conveying roller of the long steel pipe conveying line 2 through the upper end surface of the shaft linkage transposition material rack 3 and is conveyed to the next process without action;
when the incoming material detection switch 7 does not detect an output steel pipe in a working state, the output steel pipe is indicated to be a short steel pipe, under the driving control of a rotating shaft oil cylinder, the shaft linkage transposition material rack 3 rotates and inclines around a fulcrum, one end of the shaft linkage transposition material rack is connected with a steel pipe conveying roller of a short steel pipe conveying line 6, and the short steel pipe falls in a material blocking included angle formed by the buffer material blocking device 4 and the shaft linkage transposition material rack 3;
after delaying 3 ~ 5 seconds, send the instruction through the control unit, buffering material blocking drive cylinder 5 retracts, drive 4 bottoms of buffering dam device and move down, as shown in fig. 3, when 4 bottoms of buffering dam device move down to the up end position that is less than axle linkage transposition material rack 3, the short steel is whole to fall on axle linkage transposition material rack 3, under the action of gravity, the slope direction of extending axle linkage transposition material rack 3 falls in the steel pipe conveying roller of short steel pipe conveying line 6 and transports to next process.
The utility model discloses divide into long steel pipe supply line and short steel pipe supply line to handle respectively with long short material according to the requirement on-line, realized the automatic classification of length steel pipe, practice thrift the manpower, raise the efficiency.

Claims (4)

1. The utility model provides a long short material feed mechanism of steel pipe, has long steel pipe supply line, its characterized in that: the device comprises a steel pipe feeding device, a long steel pipe conveying line, a short steel pipe conveying line, an axle linkage transposition material rack, a material blocking platform, a buffering material blocking device and a short steel pipe conveying line feeding detection switch, wherein the axle linkage transposition material rack is arranged between the steel pipe feeding device and the long steel pipe conveying line in a lever mode; the buffering material blocking device is arranged below the discharge hole of the steel pipe feeding device; the incoming material detection switch is arranged on the opposite side of the steel pipe incoming material device and used for judging the critical positions of the long steel pipe and the short steel pipe.
2. The steel pipe long and short material distributing mechanism of claim 1, characterized in that: the lower part of the shaft linkage transposition material rack is provided with a fulcrum, and the shaft linkage transposition material rack is rotatably arranged on a bracket through the fulcrum; one end of the buffering material blocking device is rotatably arranged on the rotating shaft, and the bottom of the other end of the buffering material blocking device is connected with a buffering material blocking driving oil cylinder; the shaft linkage transposition material rack and the buffering material blocking devices are at least two groups, and the two groups of shaft linkage transposition material racks and the two groups of buffering material blocking devices are arranged in a spaced mode.
3. The steel pipe long and short material distributing mechanism of claim 1, characterized in that: when the shaft linkage transposition material stand is arranged at the original position, one end of the shaft linkage transposition material stand is connected with a long steel pipe conveying line, and the other end of the shaft linkage transposition material stand is connected with a discharge hole of a steel pipe feeding device; when the shaft linkage transposition material rack rotates to a material distribution working state, one end of the shaft linkage transposition material rack is separated from the long steel pipe conveying line, the other end of the shaft linkage transposition material rack is connected with the short steel pipe conveying line, and a material blocking included angle is formed between the shaft linkage transposition material rack and the buffering material blocking device.
4. The steel pipe long and short material distributing mechanism of claim 1, which is characterized in that: the shaft linkage transposition material rack is driven by the oil cylinder to coaxially rotate.
CN202023219231.1U 2020-12-28 2020-12-28 Steel pipe length material feed mechanism Active CN214160529U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023219231.1U CN214160529U (en) 2020-12-28 2020-12-28 Steel pipe length material feed mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023219231.1U CN214160529U (en) 2020-12-28 2020-12-28 Steel pipe length material feed mechanism

Publications (1)

Publication Number Publication Date
CN214160529U true CN214160529U (en) 2021-09-10

Family

ID=77609616

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023219231.1U Active CN214160529U (en) 2020-12-28 2020-12-28 Steel pipe length material feed mechanism

Country Status (1)

Country Link
CN (1) CN214160529U (en)

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