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In-ship cylinder-mounted multifunctional hydrological support

A multi-functional, inner-tube technology, used in safety devices, transportation and packaging, load hanging components, etc., can solve the problems of complex structure of detection devices, easy to hit stones or water bottom, inaccurate detection data of equipment, etc. Collision damage risk, easy disassembly and storage, the effect of saving indoor space

Pending Publication Date: 2021-04-06
YAGUANG TECH GRP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The currently used detection devices are complex in structure and expensive, and need to be fixed and installed at the bottom of the water for detection, which is difficult to install and requires high waterproof performance of the equipment
Secondly, most of the existing hydrological detection devices are installed outboard, and most of them are manual hand-held suspension rod measurement or suspension cable test. During the placement process, due to improper manual operation or shaking up and down, left and right in the water flow, the detection data of the equipment will be damaged. Inaccurate, there is no protective measure for the limit block during the placement process, so that the suspension rod is easy to hit the stone or the bottom of the water when it is manually lowered, causing damage and affecting the service life

Method used

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  • In-ship cylinder-mounted multifunctional hydrological support
  • In-ship cylinder-mounted multifunctional hydrological support
  • In-ship cylinder-mounted multifunctional hydrological support

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Embodiment one: with reference to attached Figure 1-4, a kind of multi-functional hydrographic bracket installed in a ship, including a sleeve assembly, a lifting device, and a sliding sleeve assembly located above the sleeve assembly and controlled by the lifting device; the sliding sleeve assembly includes a sliding sleeve main body 6 and an installation The waterproof structure in the sliding cylinder main body 6 is connected with the lifting device through the hook 7 at the top of the waterproof structure, and the end is connected with the connecting segment 16 through the flange 26, and connected at the end of the connecting segment 16 The equipment base 17 for placing the detection equipment is provided with two vertical guide chute 21 on both sides of the slide main body 6; the sleeve assembly includes a sleeve main body 18, and The upper part of the main body 18 is welded with the guide boss 20 matched with the guide chute 21, and under the action of the liftin...

Embodiment 2

[0039] Embodiment 2. The difference between this embodiment and Embodiment 1 is that, in this embodiment, it also includes that a ring of evenly distributed flange studs 19 is welded on the outer periphery of the top of the sleeve main body 18 . The outer periphery of the detection port cover is provided with a circle of stud holes that match the flange studs 19. When the sliding cylinder main body 6 slides down to the detection position in the sleeve main body 18, the Flange studs 19 are matched with the stud holes.

Embodiment 3

[0040] Embodiment 3. The difference between this embodiment and Embodiment 1 is that, in this embodiment, it also includes that the lifting device is installed on the cabin side wall 2 and the cabin ceiling 3 . The lifting device includes a first fixed frame 4 installed above one side of the cabin side wall 2, a first pulley 5 mounted on the first fixed frame 4, and a second fixed frame installed below the cabin ceiling 3. Frame 4-1 and the second pulley 5-1 installed on the second fixed seat 4-1, a lifting motor 15 is installed under one side of the cabin side wall 2, and a traction steel is wound on the lifting motor 15 A rope 14, the end of the traction steel rope 14 passes through the first pulley 5 and the second pulley 5-1 in sequence and is connected to the hook 7, and the hook 7 is connected to the top of the waterproof structure.

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PUM

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Abstract

The invention provides an in-ship cylinder-mounted multifunctional hydrological support, and belongs to the technical field of marine monitoring equipment. The support comprises a sleeve assembly, a lifting device and a sliding cylinder assembly located above the sleeve assembly and controlled to lift by the lifting device, the sliding cylinder assembly comprises a sliding cylinder body and a waterproof structure mounted in the sliding cylinder body, the top end of the waterproof structure is connected with the lifting device through a lifting hook, the tail end of the waterproof structure is connected with a connecting segment through a flange, the tail end of the connecting segment is connected with an equipment base, two vertical guide chutes are formed in two side surfaces of the sliding cylinder body, the sleeve assembly comprises a sleeve body, a guide boss matched with the guide chutes is welded to the upper portion in the sleeve body, and the sliding sleeve body slides downwards or upwards in the sleeve body along the specified track of the guide boss and the guide chutes. The problem of work transfer from outboard operation to inboard operation is solved, conventional manual carrying is changed into mechanical automatic lifting, and the goal that the instrument is detachable and replaceable is achieved by adopting a module connection mode.

Description

technical field [0001] The invention belongs to the technical field of marine monitoring equipment, and in particular relates to a multi-functional hydrological bracket installed in a ship. Background technique [0002] Hydrological monitoring refers to a complex and comprehensive system engineering that monitors, measures, analyzes and warns of the temporal and spatial distribution and variation of natural water through scientific methods, and is a comprehensive discipline. Hydrological monitoring consists of four parts: monitoring center, communication network, front-end monitoring equipment, and measuring equipment. The currently used detection devices are complex in structure and expensive, and need to be fixedly installed on the bottom of the water for detection, which is difficult to install and requires high waterproof performance of the equipment. Secondly, most of the existing hydrological detection devices are installed outboard, and most of them are manual hand-h...

Claims

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Application Information

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IPC IPC(8): B66C25/00B66C13/06B66C15/00
CPCB66C13/06B66C15/00B66C25/00
Inventor 刘浩郭道生邓恺悌李跃先
Owner YAGUANG TECH GRP CO LTD