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  6. Ultrasonic equipment measurement and analysis services (consulting support)

Ultrasonic equipment measurement and analysis services (consulting support)

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Analysis of ultrasonic sound pressure measurement

last updated:Dec 03, 2024

超音波システム研究所
超音波システム研究所
  • Official site

We provide on-site services for the measurement, analysis, and evaluation of ultrasonic equipment.

Application of technology to analyze and evaluate the dynamic characteristics of ultrasound The Ultrasound System Research Institute has developed a method (system) for the <analysis, experimentation, and evaluation> of ultrasound, utilizing "measurement, analysis, and control" technology related to the nonlinearity of ultrasound. Using this technology, we conduct <sound pressure measurement, experimentation, analysis, and evaluation> (including on-site support) for ultrasonic cleaning machines. To evaluate the complex and varying usage conditions of ultrasound, we do not rely solely on sound pressure and frequency; instead, we consider "timbre." We analyze it using a time series data autoregressive model and report and propose <evaluation and application> based on statistical models.

    pumpTurbid water and muddy water treatment machinesManufacturing Technology
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Ultrasonic equipment measurement and analysis services (consulting support)

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  • Related Link - http://ultrasonic-labo.com/?p=15865

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basic information

<Example 1> *Month* *Day* 13:00 - 13:30 Greeting, Meeting 13:30 - 15:00 Simple experiment on ultrasound based on sound pressure measurement 15:00 - 16:00 Discussion based on sound pressure data One week later, a report and improvement proposal including the analysis results of the sound pressure data will be submitted. After that, email correspondence will continue.

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Delivery Time

P4

Applications/Examples of results

Cleaning equipment for precision parts Cleaning devices for semiconductors Ultrasonic processing equipment Ultrasonic stirring devices Vibration measurement in manufacturing systems Noise measurement as a countermeasure Ultrasonic additional support for surface treatment devices Condition evaluation of degassing fine bubble generation liquid circulation pumps Evaluation of ultrasonic beauty devices Surface condition inspection of metal parts The Ultrasonic System Research Institute applies feedback analysis technology using multivariate autoregressive models to provide consulting services related to ultrasonic utilization, utilizing technology that measures, analyzes, and evaluates the propagation state of ultrasound. By organizing the previous measurements, analyses, and results (note) using an ultrasonic tester in chronological order, we will establish and confirm new evaluation criteria (parameters) that indicate the appropriate state of ultrasound for the intended purpose. Note: Nonlinear characteristics (dynamic characteristics of acoustic flow) Response characteristics Fluctuation characteristics Effects due to interactions

Detailed information

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    << Measurement and Analysis of Ultrasonic Sound Pressure >> 1) Regarding time series data, we will analyze and evaluate the statistical properties of the measurement data (stability and changes of ultrasonic waves) through feedback analysis using a multivariate autoregressive model.

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    2) The effects of the oscillation part due to ultrasonic oscillation will be analyzed and evaluated as interactions of ultrasonic vibration phenomena concerning the surface condition of the target object through the analysis of impulse response characteristics and autocorrelation.

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    3) The interaction between the oscillator and the target objects (cleaning items, cleaning solution, water tank, etc.) will be evaluated through the analysis of power contribution rates.

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    4) Regarding the use of ultrasound (cleaning, processing, stirring, etc.) We will analyze and evaluate the dynamic characteristics of ultrasound due to the nonlinear phenomena (results of bispectral analysis) of the object (propagation of surface elastic waves) or the ultrasound propagating in the target liquid, which are the main factors of the ultrasound effect.

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    Ultrasonic measurement analysis service

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    Ultrasonic measurement and analysis service

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    Ultrasonic measurement analysis service

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    Ultrasonic measurement analysis service

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    Ultrasonic measurement analysis service

catalog(22)

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Effects of Megahertz Ultrasonic Waves (Improvements in Ultrasonic Cleaners)

Effects of Megahertz Ultrasonic Waves (Improvements in Ultrasonic Cleaners)

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Surface Residual Stress Relaxation Treatment Technology 2

Surface Residual Stress Relaxation Treatment Technology 2

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Case Study of Ultrasonic Sound Pressure Measurement No. 4

Case Study of Ultrasonic Sound Pressure Measurement No. 4

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Case Study of Ultrasonic Sound Pressure Measurement Analysis No. 3

Case Study of Ultrasonic Sound Pressure Measurement Analysis No. 3

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Case Study of Ultrasonic Sound Pressure Measurement Analysis No. 2

Case Study of Ultrasonic Sound Pressure Measurement Analysis No. 2

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Case Study of Ultrasonic Sound Pressure Measurement No. 1

Case Study of Ultrasonic Sound Pressure Measurement No. 1

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Surface modification technology using dynamic control of ultrasound and fine bubbles.

Surface modification technology using dynamic control of ultrasound and fine bubbles.

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Plating Method Using Ultrasonic Waves and Fine Bubbles - A Case Study of Japan Barrel Industry Co., Ltd.

Plating Method Using Ultrasonic Waves and Fine Bubbles - A Case Study of Japan Barrel Industry Co., Ltd.

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Nanolevel stirring technology using megahertz ultrasound.

Nanolevel stirring technology using megahertz ultrasound.

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Ultrasonic oscillation system (20 MHz) using a commercially available function generator.

Ultrasonic oscillation system (20 MHz) using a commercially available function generator.

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Edge processing technology for metal parts using ultrasound and fine bubbles - Microscopic deburring technology -

Edge processing technology for metal parts using ultrasound and fine bubbles - Microscopic deburring technology -

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Development technology of ultrasonic propagation control systems based on sound pressure measurement analysis - technology to control nonlinear phenomena of ultrasound.

Development technology of ultrasonic propagation control systems based on sound pressure measurement analysis - technology to control nonlinear phenomena of ultrasound.

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Manufacturing and development consulting for ultrasonic cleaning machines (tank design, degassing fine bubble generation liquid circulation devices, ultrasonic control, ...)

Manufacturing and development consulting for ultrasonic cleaning machines (tank design, degassing fine bubble generation liquid circulation devices, ultrasonic control, ...)

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Optimization technology for ultrasound - optimization of tanks, ultrasound, and liquid circulation - optimization of resonance phenomena and nonlinear phenomena -

Optimization technology for ultrasound - optimization of tanks, ultrasound, and liquid circulation - optimization of resonance phenomena and nonlinear phenomena -

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Deaeration fine bubble generation liquid circulation device - a system for uniformizing the dissolved oxygen concentration in ultrasonic cleaning machines.

Deaeration fine bubble generation liquid circulation device - a system for uniformizing the dissolved oxygen concentration in ultrasonic cleaning machines.

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Ultrasonic sound pressure measurement, analysis, and evaluation - cavitation, acoustic flow, various interactions...

Ultrasonic sound pressure measurement, analysis, and evaluation - cavitation, acoustic flow, various interactions...

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Ultrasonics used in cleaning - Propagation phenomena of ultrasonic vibrations - Basic technical documentation

Ultrasonics used in cleaning - Propagation phenomena of ultrasonic vibrations - Basic technical documentation

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Ultrasonic Cleaning Technology Know-How Document (Excerpt)

Ultrasonic Cleaning Technology Know-How Document (Excerpt)

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Integration of Ultrasonic Phenomena and Logical Models - Original Ultrasonic Technology -

Integration of Ultrasonic Phenomena and Logical Models - Original Ultrasonic Technology -

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Ultrasonic cleaning technology based on sound pressure measurement and analysis.

Ultrasonic cleaning technology based on sound pressure measurement and analysis.

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Optimization technology for ultrasonic tanks and liquid circulation.

Optimization technology for ultrasonic tanks and liquid circulation.

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Plating method using ultrasound and fine bubbles

Plating method using ultrasound and fine bubbles

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News about this product(53)

Installation method for the vibrator

Cleaning technology using ultrasound and fine bubbles (microbubbles)

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The Ultrasonic System Research Institute has developed technology that applies "measurement, analysis, and control" techniques related to the nonlinearity of ultrasound to analyze and evaluate the dynamic characteristics of ultrasonic vibrations propagating through various media (elastic bodies, liquids, gases). This technology optimizes interactions concerning cleaning objects, tools, ultrasonic transducers, water tanks, and liquid circulation according to specific purposes. Using ultrasonic oscillation control probes and ultrasonic testers, we have developed optimization technology for ultrasonic applications by examining various relationships and response characteristics through oscillation, measurement, and analysis. Note: Power contribution rate, impulse response... Regarding the measurement and analysis of ultrasound, the setting of sampling time utilizes original simulation technology. This technology is provided as consulting support for the optimization of ultrasonic systems (cleaning, stirring, processing, etc.). We measure and analyze the relationships of each ultrasonic output and propose optimized output methods.

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A system that stably utilizes fine bubbles with a spherical size of 20μm or less.

Ultrasonic cleaning device using a degassed fine bubble generation liquid circulation system

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Ultrasonic Cleaning Device Utilizing a Degassed Fine Bubble Generation Liquid Circulation System 1. Overview This device is an ultrasonic device. 2. Functions 1) Cleaning and Stirring Target Name: Metal Dimensions: MAX 430*300*150 mm Weight: MAX 100 kg Material: Glass, Metal, Ceramic, etc. Contaminants: Cutting oil, fine particles, etc. 2) Processing Unit Processing Amount (per day): - Single Cycle Processing Amount: - Single Cycle Processing Time: To be confirmed by experiments. 3) Control: Liquid circulation system (timer control of circulation pump) 4) Safety Devices: None in particular 5) Operating Conditions (The operating conditions of this device are as follows) Cleaning and Stirring Liquid: Water tank, municipal water (10-80°C) Cleaning and Stirring Liquid: Indirect water tank, weakly acidic, weakly alkaline solution, etc. 6) Liquid Volume Water tank liquid volume: Approximately 64 L Indirect tank liquid volume: - 7) Others: - 3. Regarding Cleaning and Stirring The details regarding the cleaning and stirring content are unclear, so they will be excluded from the acceptance conditions. 4. Regarding the Cleaning Process Cleaning Liquid: Municipal water, Liquid Temperature: Room temperature, Ultrasonic 1: 28 kHz, Ultrasonic 2: 38 kHz

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Surface modification of ultrasonic water tanks

Ultrasonic device: Surface modification of the tank surface (relaxation and uniformization of surface residual stress) technology - Dynamic control technology of ultrasound -

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The Ultrasonic System Research Institute publishes technology for modifying the surfaces of water tanks in ultrasonic cleaning machines, ultrasonic stirring devices, and ultrasonic reaction devices by analyzing and applying measurement, analysis, and control techniques related to the propagation state of ultrasound as the acoustic characteristics of the target object. <<Consulting Services>> As part of consulting services utilizing megahertz ultrasonic oscillation control technology for surface treatment, the following items are provided: 1: Explanation of principles 2: Provision of specific devices: manufacturing and sales (Development and manufacturing of custom ultrasonic oscillation control probes if necessary) 3: Explanation of operation methods and work know-how 4: Explanation of new ultrasonic utilization technologies (application methods, etc.) Achievements and Examples: 1: Surface modification of ultrasonic tanks 2: Surface modification of ultrasonic transducers 3: Ultrasonic plating treatment (control of chemical reactions) 4: Ultrasonic processing and welding (improvement of thermal conductivity efficiency through ultrasound) 5: Surface modification of various components (ultrasonic stimulation above 200 MHz: stimulation of metal structures)

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Development technology for ultrasonic systems

Development technology for ultrasonic systems utilizing multiple sweep oscillations (20kHz to 20MHz).

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Utilization of Nonlinear Control Technology for Ultrasonic Oscillation Probes The Ultrasonic System Research Institute has developed a combination control system for sweep oscillation using multiple ultrasonic probes. Based on the propagation characteristics of the ultrasonic oscillation control probes, we set the conditions for sweep oscillation for various ultrasonic waves according to the intended use and interactions. By utilizing the low-frequency resonance phenomenon in accordance with the vibration modes of the target object, water tank, and tooling, and by combining outputs of around 30W, it becomes possible to control the propagation of high sound pressure and frequency ultrasonic vibrations within a water tank of 3000-5000 liters. As a dynamic change, simultaneous with the low-frequency resonance phenomenon, we can also achieve the generation of higher harmonics of the third, fifth, tenth, thirtieth, and hundredth order due to nonlinear control at 1 MHz.

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超音波システム研究所

超音波システム研究所

Service Industry

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The Ultrasonic System Research Institute conducts the following activities with its original product: ultrasonic systems (sound pressure measurement analysis, oscillation control): 1) Manufacturing and sales of ultrasonic systems (sound pressure measurement analysis, oscillation control) 2) Consulting services for various equipment (Note): cleaning machines, stirring devices, processing equipment, machine tools, plating devices, welding devices, etc. Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) We manufacture and sell a system that combines the "Ultrasonic Tester NA (recommended type)" for easy measurement and analysis of ultrasonic waves and the "Ultrasonic Oscillation System (1 MHz, 20 MHz)" for easy oscillation control. <Patent Applications Filed> Patent Application No. 2021-125866: Ultrasonic Control (Ultrasonic Oscillation Control Probe) Patent Application No. 2021-159990: Ultrasonic Welding Patent Application No. 2021-161532: Ultrasonic Plating Patent Application No. 2021-171909: Ultrasonic Processing Patent Application No. 2021-175568: Flow-type Ultrasonic Cleaning Some of the manufacturing technology for the ultrasonic oscillation control probe is described in Patent Application No. 2021-125866. Patent Application No. 2023-195514: Ultrasonic Plating Using Megahertz Ultrasonic Waves and Fine Bubbles.

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