List of Water Supply and Drainage Equipment products

  • classification:Water Supply and Drainage Equipment

1306~1350 item / All 9870 items

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Relaxation and homogenization treatment of surface residual stress using ultrasound and microbubbles!!

  • others
  • pump
  • Other measuring instruments

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Nonlinear Oscillation Control Technology for Ultrasonic Probes Based on Sound Pressure Measurement Analysis - Optimization Techniques for Resonance Phenomena and Nonlinear Phenomena -

The Ultrasonic System Research Institute has developed a technology to control nonlinear ultrasonic phenomena by optimizing various interactions through the oscillation control of two types of ultrasonic probes from two oscillation channels of a function generator. Note: Nonlinear (resonance) phenomenon The resonance phenomenon that occurs due to the generation of harmonics resulting from original oscillation control, leading to high amplitude ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various materials according to their intended purpose, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this system technology allows for the control of dynamic changes in surface elastic waves according to their intended use. Ultrasonic Probe: Outline Specifications Measurement Range: 0.01 Hz to 200 MHz Oscillation Range: 0.5 kHz to 25 MHz Propagation Range: 1 kHz to over 900 MHz (confirmed by sound pressure data analysis) Materials: Stainless steel, LCP resin, silicon, Teflon, glass, etc. Oscillation Equipment: Example - Function generator

We have developed a "basic experimental system" for ultrasonic cleaning.

  • others
  • Other analytical equipment
  • Water Treatment

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Ultrasonic sound pressure data analysis and evaluation technology (Leading to new ultrasonic applications from ultrasonic sound pressure and vibration data)

The Ultrasonic System Research Institute conducts consulting related to ultrasonic applications using a technology that measures, analyzes, and evaluates the propagation state of ultrasound, applying feedback analysis techniques based on multivariate autoregressive models. By organizing the measurements, analyses, and results obtained from ultrasonic testers chronologically, we establish and verify new evaluation criteria (parameters) that indicate the appropriate ultrasonic state for the intended purpose. Note: - Nonlinear characteristics (dynamic characteristics of acoustic flow) - Response characteristics - Fluctuation characteristics - Effects due to interactions By developing original measurement and analysis methods that consider the acoustic properties of the target object and surface elastic waves, we deepen our understanding of the relationships between various effects related to vibration phenomena, referencing statistical mathematical concepts. As a result, there is an increasing number of cases demonstrating that new nonlinear parameters are very effective regarding the propagation state of ultrasound and the surface of the target object. In particular, evaluation cases related to cleaning, processing, and surface treatment effects lead to successful control and improvement based on favorable confirmations.

Development technology for dynamic control systems using ultrasound.

  • Water Treatment
  • Analysis and prediction system
  • others

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Control technology for chemical reactions through the control of nonlinear phenomena in ultrasound — Optimization technology for cavitation and acoustic flow —

The Ultrasonic System Research Institute has developed a technology to utilize (control) "nonlinear phenomena related to the generation of harmonics in ultrasound" by analyzing ultrasonic sound pressure measurement data (bispectral analysis, etc.) according to specific objectives. With this technology, when using multiple ultrasonic transducers with different frequencies, it becomes possible to set (manage) the propagation state of ultrasound influenced by harmonics. Therefore, it is possible to achieve appropriate or effective combinations of frequencies. This is very effective as it allows for the detection and confirmation of effective propagation states for cleaning, surface modification, and the promotion of chemical reactions. Furthermore, by combining the control of standing waves with the control of liquid circulation, dynamic control becomes possible to change the effects of cavitation and acceleration (acoustic flow) according to specific objectives. Through original measurement and analysis technology for ultrasonic propagation states, we have confirmed numerous effective cases related to the surface conditions of various components, including cleaning, stirring, surface modification, and chemical reactions.

Original product: Ultrasonic control technology based on measurement, analysis, and evaluation of acoustic flow using an ultrasonic tester.

  • pump
  • others
  • Vibration and Sound Level Meter

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Sweep oscillation control technology using an ultrasonic probe for controlling resonance phenomena and nonlinear phenomena.

The Ultrasonic System Research Institute is applying and developing manufacturing technology for original ultrasonic probes. We have developed technology to control the nonlinear vibration phenomena of surface elastic waves through oscillation control techniques based on the acoustic characteristics of the probes, and we provide consulting services for various ultrasonic utilization technologies. The key point is the optimization of the ultrasonic propagation section (Note). Note: By relaxing and homogenizing surface residual stress, stable ultrasonic oscillation control becomes possible. Setting technology for oscillation control conditions: 1) Setting of oscillation waveforms corresponding to the vibration modes of devices and equipment. 2) Setting of sweep conditions corresponding to the vibration modes of devices and equipment. 3) Setting of output levels corresponding to the vibration modes of devices and equipment. To achieve this, it is important to evaluate the characteristics related to ultrasonic propagation conditions through operational verification of the ultrasonic propagation characteristics of the original probe (sound pressure level, frequency range, nonlinearity, dynamic characteristics, etc.). Ultrasonic propagation characteristics: 1) Detection of vibration modes (changes in autocorrelation). 2) Detection of nonlinear phenomena (changes in bispectrum). 3) Detection of response characteristics (impulse response). 4) Detection of interactions (power contribution rate).

- Technology for controlling nonlinear ultrasonic phenomena, enabling nano-level stirring, emulsification, dispersion, and grinding techniques.

  • pump
  • Water supply facilities
  • others

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Dynamic control technology of ultrasound applied using Shannon's juggling theorem.

The Ultrasonic System Research Institute has developed a "Dynamic Control Method for Megahertz Ultrasound" by applying Shannon's Juggling Theorem. << Application of Shannon's Juggling Theorem >> (F + F2 + ...) * H = (V + V2 + ...) * N F: The oscillation ratio of the base ultrasonic 1 F2: The oscillation ratio of the base ultrasonic 2 F3: The oscillation ratio of the base ultrasonic 3 H: Basic time (maximum control cycle time) (H = MAX(oscillation cycle of ultrasonic 1, oscillation cycle of ultrasonic 2, ...)) V: Megahertz oscillation cycle time by ultrasonic probe 1 V2: Megahertz oscillation cycle time by ultrasonic probe 2 V3: Megahertz oscillation cycle time by ultrasonic probe 3 V4: Megahertz oscillation cycle time by ultrasonic probe 4 (In the case of pulse oscillation, cycle time = 1) N: Adjustment parameters for harmonics 7, 11, 13, 17, 23, 43, 47, ... The key point (know-how) is to control the occurrence state of nonlinear phenomena based on the measurement, analysis, and evaluation of sound pressure data.

A megahertz ultrasonic oscillation control probe that enables the utilization of ultrasonic propagation conditions from 1 to 900 MHz.

  • pump
  • others
  • Other measuring instruments

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Original Ultrasonic Probe ver2 - Application of Surface Residual Stress Relaxation and Uniformity Treatment Technology through Nonlinear Oscillation Control of Ultrasound -

The Ultrasonic System Research Institute has developed a new "Ultrasonic <Oscillation/Control> System" utilizing the "oscillation/control" technology of its original product: ultrasonic probes, for applications such as component inspection, precision cleaning, nano-dispersion, and chemical reaction experiments. This is an application technology using original ultrasonic probes tailored to specific purposes. By measuring, analyzing, and evaluating ultrasonic sound pressure data, this system enables effective oscillation and control of ultrasonic waves. In particular, by combining multiple oscillation and control methods, it can control ultrasonic stimulation for high sound pressure levels and high frequencies due to nonlinear phenomena. It proposes new utilization methods of ultrasonic vibrations for inspecting the connection state and surface of components, as well as for precision cleaning and surface treatment of very small parts. The ultrasonic probes are "custom-made" based on the confirmed usage purposes. Ultrasonic Probe: Overview Specifications - Measurement Range: 0.01 Hz to 200 MHz - Oscillation Range: 1.0 kHz to 25 MHz - Propagation Range: 0.5 kHz to over 900 MHz (analysis confirmation of sound pressure data)

We will disclose the manufacturing know-how of ultrasonic probes - applying feedback analysis technology, ultrasonic sound pressure data analysis technology.

  • Water Treatment
  • others
  • Measurement and analysis equipment leasing and rental

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Vibration control technology using megahertz ultrasound (control, improvement, and adjustment of vibration modes)

The Ultrasonic System Research Institute has developed a completely new technology for controlling vibrations using original products (ultrasonic systems). Based on the analysis and evaluation of ultrasonic sound pressure measurement and oscillation control technology developed so far, we perform oscillation control of megahertz ultrasonic waves based on the analysis and evaluation of nonlinear phenomena in ultrasonics. From the accumulation of data measuring, analyzing, and evaluating the dynamic characteristics of ultrasonic waves propagating on surfaces, we apply technology that can <measure, analyze, and evaluate> vibration states from low frequencies (0.1 Hz) to high frequencies (over 900 MHz). Regarding vibrations and noise from buildings and roads, equipment, devices, walls, piping, desks, handrails... the vibrations at the moment of metal melting during welding, instantaneous vibrations during machining, and the complex vibration states of entire manufacturing devices and systems... new countermeasures based on vibration measurement and analysis have become possible. This is a new method and technology, and various application cases have developed from the results obtained so far. In particular, since continuous data collection for a standard measurement time of 72 hours is possible, we can measure and respond to very low frequency vibrations and irregularly fluctuating vibrations.

Technology to control low-frequency resonance phenomena and high-frequency nonlinear phenomena.

  • others
  • Other measuring instruments
  • Water Treatment

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Vibration control technology using megahertz ultrasound (control, improvement, and adjustment of vibration modes)

The Ultrasonic System Research Institute has developed a completely new technology for controlling vibrations using original products (ultrasonic systems). Based on the analysis and evaluation of ultrasonic sound pressure measurement and oscillation control technology developed so far, we perform oscillation control of megahertz ultrasonic waves based on the analysis and evaluation of nonlinear phenomena in ultrasonics. From the accumulation of data measuring, analyzing, and evaluating the dynamic characteristics of ultrasonic waves propagating on surfaces, we apply technology that can <measure, analyze, and evaluate> vibration states from low frequencies (0.1 Hz) to high frequencies (over 900 MHz). Regarding vibrations and noise from buildings and roads, equipment, devices, walls, piping, desks, handrails... the vibrations at the moment of metal melting during welding, instantaneous vibrations during machining, and the complex vibration states of entire manufacturing devices and systems... new countermeasures based on vibration measurement and analysis have become possible. This is a new method and technology, and various application cases have developed from the results obtained so far. In particular, since continuous data collection for a standard measurement time of 72 hours is possible, we can measure and respond to very low frequency vibrations and irregularly fluctuating vibrations.

We provide consulting services for the development methods of ultrasonic propagation tools tailored to various usage purposes. --Application of sound pressure measurement and analysis technology--

  • Water Treatment
  • Other measuring instruments
  • others

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Ultrasonic Control Technology Using Glass Containers - Application Technology of the Ultrasonic System Research Institute Based on Ultrasonic Measurement and Analysis Techniques -

The Ultrasonic System Research Institute has developed an ultrasonic oscillation control probe based on the acoustic properties of glass containers. By confirming the basic acoustic characteristics (response characteristics, propagation characteristics) depending on the shape and material of each container, it enables the desired ultrasonic propagation state through oscillation control (output, waveform, oscillation frequency, variations, etc.). The key point is to evaluate the dynamic vibration characteristics of the system based on the measurement and analysis of sound pressure data. We are establishing and confirming new evaluation criteria (parameters) that indicate the suitable state of ultrasound for the purpose. Note: - Nonlinear characteristics (dynamic characteristics of harmonics) - Response characteristics - Characteristics of fluctuations - Effects due to interactions By developing original measurement and analysis methods that consider the acoustic properties and surface elastic waves of the target object, referencing the ideas of statistical mathematics, we have developed a new technology regarding the relationships of various detailed effects related to vibration phenomena. The specific conditions for oscillation control are determined based on experimental confirmation, as they are also influenced by the characteristics of ultrasonic probes and oscillation equipment. As a result, there are increasing examples and achievements demonstrating that the new nonlinear parameters are very effective.

Development of an ultrasonic probe utilizing the acoustic properties of Teflon rods (with iron cores).

  • pump
  • Analysis and prediction system
  • others

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Developed optimization and evaluation technology related to water tanks, ultrasound, and liquid circulation.

The Ultrasonic System Research Institute has developed a technology to optimize ultrasonic propagation systems that can control resonance and nonlinear phenomena based on various analysis results of ultrasonic propagation states using an original ultrasonic system (sound pressure measurement analysis and oscillation control). Furthermore, we have advanced the above technology and developed optimization and evaluation techniques related to water tanks, ultrasonic waves, and liquid circulation. Compared to previous control technologies, this technology utilizes new measurement and evaluation parameters (note) concerning the entire propagation path of ultrasonic vibrations, including various propagation tools, to achieve a dynamic propagation state of ultrasonic waves tailored to specific applications (cleaning, stirring, processing, etc.). This is a method and technology that can be applied immediately, and we offer it as a consulting service (with increasing achievements in ultrasonic processing, precision cleaning at the nano level, stirring, etc.). Note: Parameters include: Power spectrum, autocorrelation, bispectrum, power contribution ratio, impulse response characteristics, and others. Ultrasonic propagation characteristics: 1) Detection of vibration modes 2) Detection of nonlinear phenomena 3) Detection of response characteristics 4) Detection of interactions

A flow-type UV sterilization device equipped with a high-efficiency new ultraviolet lamp and electronic stabilizer!

  • Water Treatment

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[Water Supply Technology Research Center Standard Compliance Certified Product] Dedicated water supply solution for Cryptosporidium prevention! *Numerous delivery records to water purification plants.

  • Water Treatment

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Top-class domestic market share in the beverage and food industry! Abundant achievements and experience since the 1970s. For microbial control in water storage tanks! Safe measures that do not use che...

  • Water supply facilities

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"Top-class domestic market share in the beverage and food industry! Abundant track record and experience since the 1970s" with various applications such as manufacturing water, rinsing water, and cool...

  • Water Treatment

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Real-time monitoring of ultraviolet radiation exposure achieved; enhanced safety through glass shatterproof coating on the outer tube.

  • Water Treatment

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A composite pipe reinforced with fibers that can withstand use under harsh conditions!

  • Fire extinguishing equipment
  • Railway Construction

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Notice of Participation in the 9th National Small Hydropower Generation Conference in Saitama

We will be exhibiting at the following exhibition. Our company will showcase various types of polyethylene pipes. We sincerely look forward to your visit. Exhibition Name: 9th National Small Hydropower Generation Conference in Saitama

A wide variety of pipes, fittings, and irregular pipes allows for detailed responses to user needs!

  • Piping and insulation
  • Power generation facilities
  • Water Supply Facilities

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Notice of Participation in the 9th National Small Hydropower Generation Conference in Saitama

We will be exhibiting at the following exhibition. Our company will showcase various types of polyethylene pipes. We sincerely look forward to your visit. Exhibition Name: 9th National Small Hydropower Generation Conference in Saitama

High-performance polyethylene pipes suitable for emergency tunnel equipment and fire-fighting equipment's distribution main!

  • Fire extinguishing equipment
  • Bridge Construction
  • Dam construction

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Notice of Participation in "Highway Techno Fair 2024"

We will be exhibiting at the following trade show. Our company will showcase various types of polyethylene pipes. We sincerely look forward to your visit. Trade Show Name: Highway Tech Fair 2024

Multi-functional timer built-in for easier and more reliable concentration management! Conductivity management system 'CBA-PTS'.

  • pump

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The latest information on the conductivity management system "CBA-PTS" has been released, featuring a multifunctional timer for easier and more reliable concentration management!

The leading company in precision pumps, Takumina, presents the conductivity management system 'CBA-PTS'. The 'CBA-PTS' is a conductivity management system that enables detailed concentration management and dosing control, thanks to its built-in interval timer function. It is ideal for cooling water treatment in air conditioning boilers and concentration management of nutrient solutions for hydroponics! It is equipped with the conductivity management device "CB-910," which features accurate measurement capabilities and a variety of pump control functions. 【Main Features】 ■ Accurate measurement capabilities and a variety of pump control functions Equipped with the conductivity management device "CB-910." ■ Multifunctional and capable of detailed concentration management and dosing control - Timer operation - Interval operation - Timer and interval operation - Pulse operation - Flow proportional operation For more details, please refer to the catalog.

Draft chambers and more! Products manufactured by our proud technical staff are featured.

  • Ventilation and smoke exhaust equipment
  • Gas equipment

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Lightweight, small space, compact!

  • Gas equipment
  • Ventilation and smoke exhaust equipment

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Lightweight, small space, compact!

  • Gas equipment
  • Ventilation and smoke exhaust equipment

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Both appearance and usability are enhanced! We offer a variety of faucet options, including stand-up drinking faucets and horizontal faucets.

  • Faucet fittings

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Generated in as little as 0.3 seconds! Connects directly to the water faucet to create hydrogen ultra-fine bubble water! Scale removal for water heaters! Flow rate of 40L/min.

  • Water supply facilities

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The 40A type of the Ultra Fine Bubble Generation Nozzle UFB DUAL is now available for use in factories.

  • Water supply facilities

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A tube for protection from radiant heat and insulation from heat sources. It is suitable for various applications such as protection from heat sources for cables and wiring, burn prevention, and freez...

  • Piping and insulation

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Exhibits outstanding performance for food resistance and chemical resistance applications! Achieves stable sealing through a uniquely developed shaft sealing mechanism!

  • Fittings

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Cost reduction with used equipment.

  • Water Treatment

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Fix two pipes in parallel and perpendicular.

  • Fittings

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Fix two pipes in parallel and perpendicular.

  • Fittings

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Support and fix the pipe by making it float.

  • Fittings

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For supporting and stabilizing vertical pipes.

  • Fittings

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For supporting and stabilizing vertical pipes.

  • Fittings

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For supporting camera mounts and ceiling-mounted piping.

  • Fittings

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For supporting camera mounts and ceiling-mounted piping.

  • Fittings

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For positioning and preventing misalignment of pipes.

  • Fittings

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It supports and fixes the pipes by raising them off the walls and floor.

  • Piping and insulation

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Dynamic Liquid Circulation System of Ultrasonic Cleaners - Acoustic Flow Control

  • pump
  • others
  • Other analytical equipment

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Dynamic control technology of ultrasound applied using Shannon's juggling theorem.

The Ultrasonic System Research Institute has developed a "Dynamic Control Method for Megahertz Ultrasound" by applying Shannon's Juggling Theorem. << Application of Shannon's Juggling Theorem >> (F + F2 + ...) * H = (V + V2 + ...) * N F: The oscillation ratio of the base ultrasonic 1 F2: The oscillation ratio of the base ultrasonic 2 F3: The oscillation ratio of the base ultrasonic 3 H: Basic time (maximum control cycle time) (H = MAX(oscillation cycle of ultrasonic 1, oscillation cycle of ultrasonic 2, ...)) V: Megahertz oscillation cycle time by ultrasonic probe 1 V2: Megahertz oscillation cycle time by ultrasonic probe 2 V3: Megahertz oscillation cycle time by ultrasonic probe 3 V4: Megahertz oscillation cycle time by ultrasonic probe 4 (In the case of pulse oscillation, cycle time = 1) N: Adjustment parameters for harmonics 7, 11, 13, 17, 23, 43, 47, ... The key point (know-how) is to control the occurrence state of nonlinear phenomena based on the measurement, analysis, and evaluation of sound pressure data.

Consulting on oscillation control technology for megahertz ultrasound based on ultrasonic (propagation state) measurement and analysis—oscillation waveforms and control know-how.

  • others
  • Other analytical equipment
  • pump

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Ultrasonic Oscillation Control System (Catalog)

--- Nonlinear Oscillation Control Device Using Megahertz Ultrasonic Waves --- The Ultrasonic System Research Institute manufactures and sells an "Ultrasonic Oscillation System" that allows for easy control of megahertz ultrasonic oscillation. Ultrasonic Probe: Outline Specifications Measurement Range: 0.01 Hz to 200 MHz Oscillation Range: 0.5 kHz to 25 MHz Propagation Range: 0.5 kHz to over 900 MHz (confirmed and evaluated through analysis) Materials: Stainless steel, LCP resin, silicone, Teflon, glass... Oscillation Equipment Examples: Function Generators 1) JDS6600-60M (60 MHz 2ch 266 MSa/s) 2) DG1022Z (25 MHz 2ch 200 MSa/s) 3) FY3224S (24 MHz 2ch 250 MSa/s) 4) MHS-5200A (25 MHz 2ch 200 MSa/s) Recommended Settings ch1 Square Wave 47.1% (duty) 8.0 MHz Output 13.4 V ch2 Square Wave 43.7% (duty) 11.0 MHz Output 13.7 V Sweep Oscillation Conditions Square Wave 3.5 MHz to 15 MHz, 2 seconds

Surface modification treatment using ultrasonic propagation control above 200 MHz.

  • Other measuring instruments
  • others
  • Water Treatment

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Surface modification technology using megahertz ultrasound - Relaxation and homogenization treatment of surface residual stress through nonlinear oscillation control - Consulting support available.

The Ultrasonic System Research Institute has made it possible to apply measurement, analysis, and control technology related to the propagation state of megahertz ultrasonic waves to the surface elastic waves of target objects, achieving dynamic control for the relaxation and uniform treatment of surface residual stress. With this technology for relaxing and uniformizing surface residual stress, improvements in fatigue strength against metal fatigue have been realized, along with increased efficiency in subsequent processes (various coatings). In particular, by achieving a propagation state of over 700 MHz to the target object under ultrasonic sweep oscillation conditions (below 20 MHz, below 10 W), a uniform surface treatment has been realized that was not possible before. We have confirmed a wide range of effects on various types of metal parts, resin parts, powder materials, and more. This is a new surface treatment technology using ultrasound, which, including the general effects based on acoustic properties, can be utilized and developed as a unique operational technology with significant characteristics for the development of new materials, stirring, dispersion, cleaning, chemical reaction experiments, and more. We offer this technology as a consulting service. In April 2024, we developed optimization technology for resonance phenomena and nonlinear phenomena.

Intrinsic safety explosion-proof products! [Explosion-proof performance Ex ia II BT4 Ga] For detecting water and oil leaks in explosion-proof areas.

  • Drainage and ventilation equipment

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This is our inquiry sheet that includes specifications such as the purpose and properties of the gases handled.

  • pump

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