Vibration expertise for critical environments

Vibration management is a fundamental pillar of industrial and structural performance engineering. At GROUPE BOET, we deploy comprehensive, integrated expertise covering the measurement, analysis, modeling and control of vibration phenomena affecting installations, equipment and infrastructures.

Our engineers operate in industrial, tertiary and sensitive environments, carrying out on-site vibration measurement campaigns using tri-axis accelerometers, piezoelectric sensors and real-time recorders. These data enable us to detect characteristic vibration signatures, identify vibration sources (imbalances, resonances, mechanical or acoustic disturbances) and quantify dynamic amplitudes in accordance with ISO 10816, ISO 2631 or DIN 4150 standards.

We develop advanced calculation models (FEM, dynamic simulations) to predict vibration propagation, analyze the natural frequencies of structures, and anticipate dynamic effects in new or refurbishment projects. This predictive approach enables us to optimize the sizing of anti-vibration solutions (suspensions, centrifugal weights, elastomer pads, vibration isolation barriers) adapted to each configuration.

Our expertise applies in particular to high-precision equipment, structures subject to repeated vibratory stress, and critical installations (laboratories, data centers, power plants). Our aim: to guarantee reliable, compliant and sustainable operation, while reducing the risks of mechanical fatigue, premature wear or regulatory non-compliance.

Our solutions and services

Our comprehensive range of services for identifying, analyzing and reducing vibrations, tailored to the requirements of industrial, construction and sensitive environments.

Vibration diagnosis

In situ measurement campaigns using accelerometers, triaxial sensors and dynamic analyzers. Identification of vibration sources, recording of exposure levels, and interpretation according to standards (ISO 10816, ISO 2631, DIN 4150…).

Studies and simulations

Production of numerical models (finite elements, modal calculations, frequency responses) to predict vibration effects and optimize the design of structures and equipment. Sensitivity studies, transmissibility calculations and resonance analysis.

Anti-vibration solutions

Supply and sizing of vibration-reducing devices: elastomer pads, spring suspensions, shock-absorbing supports, dynamic barriers. On-site integration and implementation support.

Technical and regulatory support

Assistance during design and operation phases. Development of recommendations, vibration monitoring, drafting of technical reports, regulatory compliance, and expert appraisal in the event of disputes or vibration damage.

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