Geological distance exploration device based on intelligent sensor

By using an exploration device based on intelligent sensors, which utilizes friction transmission between the detection wheel and the exploration drill rod and magnetic sensors, the problems of low efficiency and large error in drilling depth measurement are solved, and automatic, real-time and accurate detection of the drilling rod lowering distance is achieved.

CN122407069APending Publication Date: 2026-07-17ZHEJIANG CHEM ENG GEOLOGICAL SURVEY INST CO

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ZHEJIANG CHEM ENG GEOLOGICAL SURVEY INST CO
Filing Date
2026-05-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing methods for measuring drilling depth are inefficient, have large errors, and are unreliable. Manual recording is a huge workload and prone to errors, and the cumulative error of drill rod length deviation is significant.

Method used

A geological distance exploration device based on intelligent sensors is adopted. It utilizes the friction transmission between the detection wheel and the exploration drill rod, combined with magnetic sensors and permanent magnet supports, to detect the lowering distance of the exploration drill rod in real time, avoiding manual counting and errors in the drill rod thread connection.

Benefits of technology

It enables automatic and real-time detection of the drilling distance of exploration drill pipe, improving work efficiency, reducing labor intensity, reducing counting errors, adapting to exploration drill pipes of different diameters, and working stably under harsh conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及地质勘探技术领域,公开了基于智能传感器的地质距离勘探装置,包括勘探驱动设备、勘探钻杆、支撑组件及检测机构;支撑组件安装于勘探驱动设备底部,用于检测机构的吊装与位置调节,其包含可前后移动的调节组件,能适应不同直径的勘探钻杆;检测机构采用上下对称的 T 形导轨与限位板组成矩形框架,两个检测组件可滑动安装于导轨之间,通过压紧弹簧使检测轮紧贴钻杆外壁,利用磁感式传感器与永磁体支架的非接触式磁性计数原理,通过检测轮的转动圈数实时计算钻探深度;本发明实现了钻探深度的自动、高精度检测,不受泥浆、岩屑等污染物影响,在恶劣地质环境下工作稳定,保证地质勘探作业的效率与数据准确性。
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