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Automatic bin device applied to long stepped shaft-type temperature measurement sampling rods in metallurgical industry

A technology of stepped shafts and sampling rods, applied in storage devices, transportation and packaging, etc., can solve problems such as harsh working environment, potential safety hazards, and health impacts, and achieve the effects of improving work efficiency, improving accuracy, and avoiding damage

Active Publication Date: 2020-01-17
HARBIN INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the existing technology, the present invention adopts a manual method to manually realize the transportation and alignment connection of the long-step axial temperature sampling rod. The working environment is extremely harsh, and there are potential safety hazards. The health has a great impact and the work efficiency is low, and the automatic silo device for the long-step axial temperature-measuring sampling rod in the metallurgical industry is proposed

Method used

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  • Automatic bin device applied to long stepped shaft-type temperature measurement sampling rods in metallurgical industry
  • Automatic bin device applied to long stepped shaft-type temperature measurement sampling rods in metallurgical industry
  • Automatic bin device applied to long stepped shaft-type temperature measurement sampling rods in metallurgical industry

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specific Embodiment approach 1

[0032] Embodiment 1: Combining Figure 1 to Figure 8 Illustrating this embodiment, the automatic silo device using the long-step shaft-type temperature measurement sampling rod in the metallurgical industry described in this embodiment includes a frame 1, a No. 1 silo feeding unit 2, a No. 2 silo feeding unit 3, a protection Cavity 4, base 5, guide unit 6, clamping unit 7, guide rail 8, support rod 10 and V-shaped guide groove 12;

[0033] The base 5 and the frame 1 are both cuboid frame structures, one end of the upper surface of the base 5 is provided with a frame 1, and n V-shaped guides are arranged between the bottom surface of the frame 1 and the upper surface of the base 5 along the axis direction. Slot 12, n is a positive integer, the inside of the rack 1 is provided with the No. 1 silo feeding unit 2 and the No. 2 silo feeding unit 3, and the No. 1 silo feeding unit 2 and the No. 2 silo feeding unit 3 are symmetrically arranged. The two outlets of the No. 2 and No. 2...

specific Embodiment approach 2

[0037] Specific implementation mode 2: Combining figure 1 and figure 2 This embodiment is described. This embodiment is a further limitation of the automatic silo device described in the specific embodiment 1. The automatic silo device using the long-step axial temperature measurement sampling rod in the metallurgical industry described in this embodiment, The No. 1 warehouse rack feeding unit 2 includes an S-shaped guide rib plate group and a plurality of electromagnet devices 11. The S-type guide rib plate group is fixedly connected to the side frame of the frame 1, and the two sides of the S-type guide rib plate group are symmetrical. There are m groups of electromagnet devices 11, and m is a positive integer;

[0038] In this specific embodiment, the S-shaped guide rib plate group is fixedly connected to the frame on the side of the frame, and multiple sets of electromagnet devices are symmetrically arranged on both sides of the S-type guide rib plate group to avoid the ...

specific Embodiment approach 3

[0039] Specific implementation three: combination Figure 5 This embodiment is described. This embodiment is a further limitation of the automatic silo device described in the second specific embodiment. The automatic silo device using the long-step shaft-type temperature measurement sampling rod in the metallurgical industry described in this embodiment, The No. 1 warehouse rack feeding unit 2 and the No. 2 warehouse rack feeding unit 3 have the same structure.

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Abstract

The invention discloses an automatic bin device applied to long stepped shaft-type temperature measurement sampling rods in metallurgical industry, relates to the technical field of robots in the metallurgical industry, and aims at solving the problems that the working environment is extremely harsh, the potential safety hazard is present, the body health is greatly influenced, and the working efficiency is relatively low due to the fact that a manual way is employed in the prior art to manually realize carrying and alignment connection and the like of the long stepped shaft-type temperature measurement sampling rods. One end of the upper surface of a base is provided with a frame; n V-shaped guide slots are arranged between the bottom face of the frame and the upper surface of the base inthe axis direction; two bin rack feeding units are arranged in the frame, and are symmetrically arranged; two exit positions of the two bin rack feeding units correspond to the V-shaped guide slots;a support rod is arranged along the median line of the short edge of the side face of the frame; the bottom end of the support rod is provided with a guide unit; a clamping unit is arranged on the upper surface of the base in a manner of being adjacent to the V-shaped guide slots; and the clamping unit is glidingly connected with the base through guide rails. The automatic bin device is suitable for performing carrying and alignment connection of the temperature measurement sampling rods.

Description

technical field [0001] The invention relates to the technical field of robots in the metallurgical industry, in particular to an automatic silo device applying a long-step shaft-type temperature-measuring sampling rod in the metallurgical industry. Background technique [0002] The working environment of the steelmaking industry in the domestic iron and steel industry is harsh, with dust, local high radiation (temperature measurement and sampling operation holes), high electromagnetic interference and other harsh conditions in the working environment. The indoor dust concentration should be ≤7mg / Nm3 after being purified by dust collection and dedusting system. The metallurgical process of the iron and steel industry is a continuous, long-process and large-scale production method. From raw materials through coking, iron-making, steel-making, cold and hot rolling to finished products, these processes involve a large number of manual and high-risk operations and measurements un...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B65G1/04
CPCB65G1/04
Inventor 刘玉斌满卓奇吴俊玉冯冰
Owner HARBIN INST OF TECH