ISSO-SG5 Vibrating Wire Rebar/ Sisterbar Strain Gauge

ISSO-SG5  Vibrating Wire Rebar/ Sisterbar Strain Gauge

Embedded reinforcement strain sensors ISSOSG5 are designed to detect the deformation of reinforcement, and are installed directly into building structures. When manufacturing the structure, the sensor must be positioned parallel to the armature and fixed by welding or on wire or nylon ties.

They are made of high-strength steel with an integrated vibrating wire strain gauge, which ensures high strength and durability.

The connection cable exits the enclosure through a sealed compression fitting, which provides protection from moisture and eliminates the influence of external factors on the signal. Full dustproof and resistant to water jets from different angles.

Specifications

Parameter Meaning
Model SG5
Measuring range of relative deformation, microns/m ±2000
The limits of the permissible relative deformation measurement error reduced to the full measurement range, % ±0,25
Output signal range, Hz from 2000 to 2950
Overall dimensions (length × diameter), mm, max
– ISSO-SG5-12-300
– ISSO-SG5-14-300
– ISSO-SG5-16-300
– ISSO-SG5-18-300
– ISSO-SG5-20-300
900×12
900×14
900×16
900×18
900×20
Operating conditions: ambient temperature, C from -45 to +80
Weight, kg, max 2,7

The ISSO-SG5 string reinforcement strain gauge is used in systems

Design of Structural Health Monitoring Systems (SHMS)
Design of Structural Health Monitoring Systems (SHMS)
Design of transportation safety systems
Design of transportation safety systems
Maintenance and operation
Maintenance and operation
Design of automated geotechnical monitoring systems
Design of automated geotechnical monitoring systems

Software

KSM.Bridge

KSM.Bridge

System for monitoring engineering structures/facilities

Read more
KSM.Flow

KSM.Flow

Automated Traffic Control System

Read more

In which projects was it used

Automated Traffic Control System of the Moscow Highway, Samara
Automated Traffic Control System of the Moscow Highway, Samara
Design of Automated Traffic Control System for the reconstruction of the Moscow Highway and Karl Marx Avenue in Samara
Automated Traffic Control System, Road integrated communication system, Startseva St. – Oktyabryat Avenue – Tselinnaya St. crossing
Automated Traffic Control System, Road integrated communication system, Startseva St. – Oktyabryat Avenue – Tselinnaya St. crossing
Design of Automated Traffic Control System and a road integrated communication system on “Startseva St. - Oktyabryat Avenue - Tselinnaya St. crossing” Highway under construction
Automated Traffic Control System, Toll Collection System, Structural Health Monitoring System of the bridge over the Lena River, Yakutsk
Automated Traffic Control System, Toll Collection System, Structural Health Monitoring System of the bridge over the Lena River, Yakutsk
Design of a bridge crossing over the Lena River near the city of Yakutsk
Automated Traffic Control System, Toll Collection System, Engineering Systems Monitoring, Structural Health Monitoring System of Vladivostok Ring Road, Primorsky Territory
Automated Traffic Control System, Toll Collection System, Engineering Systems Monitoring, Structural Health Monitoring System of Vladivostok Ring Road, Primorsky Territory
Design of system-wide solutions for an intelligent transport system and monitoring systems for engineering systems and structures on the Vladivostok Ring Road in the Primorsky Territory