Cleaning Machine Product List and Ranking from 262 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 08, 2025~Nov 04, 2025
This ranking is based on the number of page views on our site.

Cleaning Machine Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 08, 2025~Nov 04, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. ホバート・ジャパン 本社 Tokyo//Facility Design Office
  3. フルテック Shizuoka//others
  4. 4 ウィンターハルター・ジャパン Saitama//others
  5. 5 サイト 本社 Shizuoka//Building materials, supplies and fixtures manufacturers

Cleaning Machine Product ranking

Last Updated: Aggregation Period:Oct 08, 2025~Nov 04, 2025
This ranking is based on the number of page views on our site.

  1. Under-counter cleaning machine 'FP' ホバート・ジャパン 本社
  2. Mortar and Ready-Mix Concrete Cleaning Equipment Rental <Environmentally Friendly Wastewater Treatment Device> サイト 本社
  3. CK-1513GSR 精和産業 東京営業所
  4. 4 High-pressure hot water cleaner "Nice Hot Series" バンザイ
  5. 5 Winterhalter Japan Co., Ltd. Comprehensive Catalog 2023 ウィンターハルター・ジャパン

Cleaning Machine Product List

976~990 item / All 1015 items

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Commissioned Analysis: Analysis and Evaluation Technology for Spray Nozzles

Visualizing the performance of spray nozzles! Analysis related to nozzle performance, including fluid analysis, particle size measurement, and impact force distribution.

The performance of spray nozzles is influenced by factors such as pressure, flow rate, spray pattern, particle size, flow velocity, flow distribution, and impact force distribution. Everloy possesses the measurement equipment and analytical evaluation technology for these factors and has conducted numerous analyses to date. Based on years of accumulated experiments and analytical evaluations, we can propose optimization plans for spray nozzles tailored to your specific usage purposes. Customers in need of analysis are welcome to consult with us.

  • others

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Jet Clean Soundproof Structure High-Pressure Washer JC-3515KB

The soundproof structure high-pressure washer, which responds to pressure specifications from government offices, operates at over 30 MPa, providing ample power to expand the range of work!

Effective for dropping and flowing work on sites with a large area! Supports pressure specifications!! The pump uses a highly durable ceramic piston★ Easy starting with a self-start feature♪ Even surfaces with weak adhesion can be peeled off!! Achieves sufficient workability in both pressure and water volume☆ ● Adopts a soundproof structure to reduce noise issues in urban areas♪ ● Easy to handle with a new OHV engine and excellent starting performance♪ ● Easy to move with four-wheel tires! Comes with a stopper♪

  • Work tools
  • Other commercial buildings and service facilities
  • Flood prevention facilities, fire tanks, and flood control ponds

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Jet Clean Soundproof Structure High-Pressure Washer JC-3518KB

The soundproof structure high-pressure washer, which responds to pressure specifications from government offices, has a pressure of over 30 MPa, providing ample power to expand the range of work!

Maximum power output in the country!! Effective for dropping and flushing operations at sites with a large area! Supports pressure specifications!! The pump uses a highly durable ceramic piston★ Easy start with a self-start feature♪ Even weakly adhered resin surfaces can be peeled off!! With a water volume of 18L, cleaning capability is increased by 50%☆ compared to 12L. ● Adopts a soundproof structure to reduce noise problems in urban areas♪ ● New OHV engine for ease of handling and excellent starting performance♪ ● Easy to move with four-wheel tires! Equipped with a stopper♪

  • Work tools
  • Other commercial buildings and service facilities
  • Flood prevention facilities, fire tanks, and flood control ponds

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Hot Water High Pressure Washer JS-2015C

Comparison with cold water high-pressure washing! High-pressure hot water washer with 30-40% improved cleaning effectiveness!

200V Hot Water High Pressure Cleaner For powerful stains that cannot be cleaned with cold water high pressure cleaning Compared to cold water, cleaning effectiveness is improved by 30-40% High durability with ceramic piston and stainless steel boiler Even without your own cleaning machine, this one unit is sufficient *No connection to a cleaning machine required

  • Other civil engineering works
  • Other earthworks, foundation works, and exterior floors

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Rooftop Floor-Compatible Debris Prevention Cleaning System "Asile HJ & V Rooftop"

Ideal for rooftop cleaning! High-pressure hot water without chemicals, splash prevention, and simultaneous sludge recovery for hygiene!

The 'Ashire HJ & V Rooftop' is the optimal cleaning method for rooftop surfaces, combining hot water high-pressure washing technology with wastewater recovery technology for steam cleaning. Since a dedicated surface is used, there is no splashing of liquids. Additionally, the vacuum machine can powerfully recover sludge, allowing for hygienic and efficient processing of sludge layers that have accumulated over time. [Features] ■ High pressure of up to 45Mpa and water temperature of 80℃ ■ Safe as no chemicals are used ■ Sterilization effect through hot water high-pressure washing *For more details, please refer to the catalog or feel free to contact us.

  • Special Construction Method
  • Renovation and repair methods

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Solution: Control System Development

Effort will pave the way for infinite technology with the motto of "enthusiasm," "sincerity," and "hard work."

This is an announcement from Effort Inc. regarding "Solution: Control System Development."

  • Other Software

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Service: Embedded/Control System Development

We will develop and provide with a high level of completeness.

Our company has a wealth of delivery experience in various software/firmware development compatible with different platforms, as well as in the development of various microcontrollers, peripheral interface circuits, and digital circuits using PLD/FPGA, among others.

  • IoT

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Reduce maintenance costs with measures against cooling water contamination in heat exchangers!

Just by installing it, you can prevent dirt! Introducing products that reduce cleaning frequency and minimize scale issues! *Product catalog available.

Cleaning heat exchangers is both time-consuming and costly. However, leaving dirt as it is can lead to decreased efficiency. Our company offers products that prevent dirt and reduce maintenance frequency and costs. 【Products】 ◆ Ball-type automatic cleaning device for heat exchangers 'XAC' 'XAC' is a device that continuously cleans the inside of the tubes of shell & tube heat exchangers using sponge balls. Since regular cleaning is unnecessary, it prevents efficiency loss due to dirt, significantly reduces energy consumption, and lowers maintenance costs. It has been implemented in various industries, including large commercial facilities and manufacturing companies. ◆ Electrolytic scale removal device 'WET' 'WET' reduces scale problems in cooling water circulation systems by forcing the precipitation of scale components that cause dirt in cooling towers through electrolysis. This product takes a portion of the cooling water into the main tank and performs electrolysis. It forces the precipitation and removal of scale components such as Ca, Mg, and silica, and the precipitated scale components are regularly removed. Test installations are also possible. *For more details, please refer to the PDF document or feel free to contact us.

  • Heat exchanger

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Technology that utilizes (optimizes) multiple different frequency "ultrasonic transducers."

Based on sound pressure measurement analysis, ultrasonic optimization technology allows for the efficient and stable use of ultrasound tailored to specific purposes.

The Ultrasonic System Research Institute has developed a technology that utilizes "ultrasonic transducers" of multiple different frequencies. This technology, in addition to standing wave control technology, adjusts the output of each ultrasonic transducer to vary the nonlinear effects of cavitation and acceleration according to specific purposes. By using ultrasonic transducers with a frequency of 40 kHz and an output of 50-600 W, it is possible to disperse a 1-millimeter diameter metal tube into a 1-micron state, as well as to clean it without causing damage. Through original measurement and analysis technology for ultrasonic propagation states, we are confirming various ultrasonic utilization technologies tailored to the unique characteristics of the transducers. This is a new ultrasonic technology that, including the general effects of ultrasonic dynamic characteristics, can be utilized and developed as a distinctive operational technology for the development of new materials, stirring, dispersion, cleaning, chemical reaction experiments, and more. Ultrasonic propagation characteristics: 1) Vibration modes (changes in self-correlation) 2) Nonlinear phenomena (changes in bispectrum) 3) Response characteristics (analysis of impulse response) 4) Interactions (analysis of power contribution rates)

  • pump

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Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

Ultrasound measurement and analysis can be easily performed with the ultrasound tester NA (10MHz oscilloscope type).

The Ultrasonic System Research Institute (located in Hachioji City, Tokyo) has developed the Ultrasonic Tester NA (100MHz oscilloscope type), which makes ultrasonic measurement and analysis easy. Features (Standard Specifications) - Measurement (Analysis) Frequency Range: 0.1Hz to 10MHz - Ultrasonic Oscillation: 1Hz to 1MHz - Capable of measuring surface vibrations - Continuous measurement for 24 hours - Simultaneous measurement of any two points - Display of measurement results in graph form - Attached software for time-series data analysis This is a measurement system using ultrasonic probes. The ultrasonic probe is attached to the target object for oscillation and measurement. The measured data is analyzed considering position, state, and elastic waves, detecting various acoustic performances.

  • Other analytical equipment

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Ultrasonic cleaning machine utilizing acoustic flow control with fine bubbles.

A technology for stably utilizing fine bubbles with a spherical size of 20μm or less—nano-level cleaning method that controls ultrasonic acoustic flow.

The Ultrasonic System Research Institute has developed an ultrasonic cleaning machine utilizing fine bubbles, based on measurement, analysis, and evaluation techniques related to ultrasonic propagation phenomena, which can also be used for ultrasonic processing, stirring, and chemical reactions. Recommended System Overview 1: An ultrasonic transducer subjected to surface modification treatment using ultrasonic waves and fine bubbles. 2: An ultrasonic dedicated tank subjected to surface modification treatment using ultrasonic waves and fine bubbles. 3: A degassing and fine bubble (microbubble) generation liquid circulation system. 4: An optimization control system for ultrasonic waves and liquid circulation controlled by a control device. 5: An acoustic pressure management system using an ultrasonic tester. Note: The tank, transducer, and tools can be adjusted for acoustic characteristics through aging treatment. *Features This is an effective cleaning device using a dedicated ultrasonic tank. Due to the efficient use of ultrasonic waves, the strength and durability of a standard tank become insufficient. (The standard tank is modified for surface treatment using ultrasonic waves and fine bubbles.) Ultrasonic waves (cavitation and acoustic flow) are controlled according to the target and purpose of cleaning, stirring, and surface modification.

  • pump
  • Water Treatment
  • Drainage and ventilation equipment

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Development technology for control systems based on the original ultrasonic model.

To stabilize the effects of cavitation, a statistical perspective is essential — a technology to optimize nonlinear ultrasonic phenomena according to specific purposes.

<Regarding the Creation of Logical Models> (Using Information Quantity Criteria) 1) Based on various fundamental technologies, clearly recognize the "information data group," DS = (D1, D2, D3), related to the subject, consisting of: D1 = Objective knowledge (theory supported by academic logic) D2 = Empirical knowledge (results obtained so far) D3 = Observational data (current state) and create multiple model proposals from its organizational use. 2) Understand statistical thinking as a method of realizing information acquisition through the composition of the information data group (DS) and the repeated proposal and verification of models based on it. 3) Determine the optimal model by comparing various models using evaluation methods such as AIC. 4) Construct ultrasonic devices and systems based on the created models. 5) Considering time and efficiency, the following responses are proposed: 5-1) Taking into account the "logical model creation matters," create "intuitive models" for multiple people to examine. 5-2) Modify and review the models based on actual data and new information. 5-3) Enter into specific discussions about devices and systems based on models that the review members can agree upon.

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  • Scientific Calculation and Simulation Software
  • Other analytical equipment

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Flow and Shape of Ultrasonic Cleaners: Constructal Law

Dynamic control technology for ultrasonic cleaning machines.

The Ultrasonic System Research Institute has developed ultrasonic cleaning technology utilizing the "Constructal Law" related to flow and shape. <References> 1) On Vibration From the Royal Institution's 133rd lecture "Vibration" I intend to describe almost all of the important fields of mechanical engineering here. [Author] Richard B. Bishop [Translator] Hidetaro Nakayama, Kodansha (1981, B-471) 2) Flow and Shape The evolution of all shapes is governed by the "Constructal Law," which aims to improve flow! [Authors] Adrian Bejan, J. Peder Zane [Translator] Hiroyuki Shibata, [Commentator] Shigeo Kimura, Kinokuniya (2013) 3) How Cybernetics Was Born [Author] Norbert Wiener [Translator] Yasuo Shizume, Misuzu Shobo (1956) Using the above as references and hints, we have organized the technology for measuring and utilizing "nonlinear effects" in ultrasonic propagation phenomena according to the "Constructal Law," which aims to improve flow, culminating in ultrasonic cleaning technology.

  • pump
  • Drainage and ventilation equipment
  • others

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Measurement, analysis, and evaluation techniques of ultrasound using a statistical approach.

To stabilize the effects of ultrasound, a statistical perspective is essential.

The Ultrasonic System Research Institute is developing technologies related to effective "measurement, analysis, and evaluation methods" using a <statistical approach> concerning the utilization of ultrasound. <About the Statistical Approach> Statistical mathematics has both abstract and concrete aspects, and through contact with concrete entities, abstract thoughts or methods are developed. This is the characteristic of statistical mathematics. - From "Statistics in Science" edited by Hirotsugu Akaike <About Models> Models are constructed with the aim of effectively advancing understanding, prediction, and control regarding the subject. Building an accurate model is difficult, and the examination is always conducted in a form that appropriately "rounds off" the complexity of the subject. In this sense, the process of constructing or building a model requires statistical thinking. <About the Relationship Between Models and Current Systems> (Points to Consider When Reflecting) 1) It is necessary to consider that preconceived notions and experiences may not be correct. 2) To think about the essence of a model, I believe it is effective to utilize category theory.

  • Scientific Calculation and Simulation Software
  • Non-destructive testing
  • Other analytical equipment

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