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Soil settlement measuring device based on ultrasonic waves
The invention discloses a soil settlement amount measuring device based on ultrasonic waves, and relates to the technical field of soil settlement amount measurement, the soil settlement amount measuring device based on the ultrasonic waves comprises an ultrasonic wave assembly, a fixed support, an infrared emitter, a telescopic support and a sliding mechanism, the fixed support is fixedly installed on the top of the telescopic support, and the infrared emitter is installed on the sliding mechanism; all the ultrasonic assemblies are arranged on the fixing support at equal intervals, the ultrasonic assemblies are used for responding to a monitoring instruction and measuring the soil settlement amount of a to-be-monitored soil body in real time, the infrared transmitters are fixedly installed at the bottoms of the ultrasonic assemblies through hollow steel pipes, and the infrared transmitters are used for responding to a correction instruction and transmitting infrared laser according to a preset direction; the two sliding mechanisms are symmetrically arranged at the bottom of the telescopic support. The technical problems that the soil settlement amount is directly measured through a settlement ring and a ruler, it is difficult to accurately measure a soft soil foundation in the electroosmosis reinforcement process, and the accuracy of soil settlement amount measurement is reduced are solved.
本发明公开了一种基于超声波的土体沉降量测量装置,涉及土体沉降量测量技术领域,基于超声波的土体沉降量测量装置包括超声波组件、固定支架、红外发射器、伸缩支架和滑动机构,固定支架固定安装于伸缩支架顶部,全部超声波组件等距设置于固定支架上,超声波组件,用于响应监测指令,实时测量待监测土体的土体沉降量,红外发射器通过空心钢管固定安装于超声波组件底部,红外发射器,用于响应校正指令,按照预设方位发射红外线激光,两个滑动机构对称设置于伸缩支架底部。解决通过沉降环与直尺直接测量得到土体沉降量,难以适用于精确测量电渗加固过程中的软土地基,降低了土体沉降量测量的准确性的技术问题。
Soil settlement measuring device based on ultrasonic waves
The invention discloses a soil settlement amount measuring device based on ultrasonic waves, and relates to the technical field of soil settlement amount measurement, the soil settlement amount measuring device based on the ultrasonic waves comprises an ultrasonic wave assembly, a fixed support, an infrared emitter, a telescopic support and a sliding mechanism, the fixed support is fixedly installed on the top of the telescopic support, and the infrared emitter is installed on the sliding mechanism; all the ultrasonic assemblies are arranged on the fixing support at equal intervals, the ultrasonic assemblies are used for responding to a monitoring instruction and measuring the soil settlement amount of a to-be-monitored soil body in real time, the infrared transmitters are fixedly installed at the bottoms of the ultrasonic assemblies through hollow steel pipes, and the infrared transmitters are used for responding to a correction instruction and transmitting infrared laser according to a preset direction; the two sliding mechanisms are symmetrically arranged at the bottom of the telescopic support. The technical problems that the soil settlement amount is directly measured through a settlement ring and a ruler, it is difficult to accurately measure a soft soil foundation in the electroosmosis reinforcement process, and the accuracy of soil settlement amount measurement is reduced are solved.
本发明公开了一种基于超声波的土体沉降量测量装置,涉及土体沉降量测量技术领域,基于超声波的土体沉降量测量装置包括超声波组件、固定支架、红外发射器、伸缩支架和滑动机构,固定支架固定安装于伸缩支架顶部,全部超声波组件等距设置于固定支架上,超声波组件,用于响应监测指令,实时测量待监测土体的土体沉降量,红外发射器通过空心钢管固定安装于超声波组件底部,红外发射器,用于响应校正指令,按照预设方位发射红外线激光,两个滑动机构对称设置于伸缩支架底部。解决通过沉降环与直尺直接测量得到土体沉降量,难以适用于精确测量电渗加固过程中的软土地基,降低了土体沉降量测量的准确性的技术问题。
Soil settlement measuring device based on ultrasonic waves
一种基于超声波的土体沉降量测量装置
LUO SHEN (Autor:in) / HUANG WENCONG (Autor:in) / LI JIANBIN (Autor:in) / XIONG ZHENDONG (Autor:in) / FAN CHANGJUN (Autor:in) / SUN JINGXIAN (Autor:in) / HU XIAOMAN (Autor:in) / ZHANG LUO (Autor:in) / WANG RENPENG (Autor:in) / MENG FEI (Autor:in)
01.03.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
/
G01C
Messen von Entfernungen, Höhen, Neigungen oder Richtungen
,
MEASURING DISTANCES, LEVELS OR BEARINGS
/
G01N
Untersuchen oder Analysieren von Stoffen durch Bestimmen ihrer chemischen oder physikalischen Eigenschaften
,
INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
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