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nozzle Product List and Ranking from 288 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

nozzle Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. スプレーイングシステムスジャパン Tokyo//Industrial Machinery
  2. null/null
  3. ティックコーポレーション 本社 Tokyo//Machine elements and parts
  4. 4 ピュアトラスト Kanagawa//Industrial Machinery
  5. 5 null/null

nozzle Product ranking

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. [Free Materials Available] A Professional's Guide to "Three Ways to Choose Nozzles Without Making Mistakes" スプレーイングシステムスジャパン
  2. Remove dirt and chips from the tap hole! Tornado Air Nozzle Ando Co.,Ltd.
  3. Leave the removal of water droplets after cleaning to 'Hayate'. トリーエンジニアリング
  4. 4 Nano Bubble Generation Nozzle [AUFB Ark] 荒川工業
  5. 5 Tank Mixing Eductor for In-Tank Stirring Nozzle スプレーイングシステムスジャパン

nozzle Product List

871~900 item / All 1424 items

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(STD) Stainless Steel Hand Nozzle

High chemical resistance stainless steel hand nozzle! Screw connection type for safe design! Ideal for gravity transfer from drum pumps and container outlets!

This is a hand nozzle made from high chemical-resistant SUS316. It allows for safe and quick filling and dispensing, as the discharge amount can be adjusted at hand. The usage is simply to press the trigger at hand.

  • Other pumps
  • Pipe Fittings
  • nozzle

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[Case Study] Optimization of Defroster Shape

Introducing a case of optimizing the shape of the defroster nozzle!

We will introduce a case study where our "modeFRONTIER" was applied to optimize the shape of the defroster nozzle. The air conditioning in a vehicle's cabin plays a role in ensuring passenger comfort and visibility, and fluid analysis can predict the temperature distribution caused by airflow and hot/cold air. Regarding visibility, the goal is to eliminate fogging on the front and side windshields, for which the design of the defroster nozzle is crucial. By investigating and predicting the temperature distribution of the airflow ejected from the defroster nozzle along the windshield surface, we can optimize the shape of the defroster while considering the fog removal pattern. [Case Study] - Software Used: modeFRONTIER, ANSYS CFX - Objective: Ensuring passenger comfort and visibility through vehicle cabin air conditioning - Challenge: Optimization of the defroster nozzle shape - Result: Achieved shape optimization considering the fog removal pattern *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator
  • nozzle

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Spray principle capable of atomizing viscous liquids with minimal energy【Miracle Fog】

Since it is possible to micronize viscous liquids even with low air consumption, it can be applied to various uses!

Features of Miracle Fog 1. Energy-saving air spraying principle different from conventional methods 2. Atomization of viscous liquids even at low air pressure and low air consumption 3. Mass production possible through mold forming 4. Applicable to a variety of uses 5. Resin products with excellent wear resistance

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Microfabrication Promotion Technology "Miracle Fog"

Successfully achieved micro-spraying of hair oil! The spraying amount of the liquid decreases as the viscosity increases.

Nozzle Network Co., Ltd. has discovered the micro-atomization promotion technology "Miracle Fog," which reduces room temperature oil to a few microns, after many years of research and development. In the future, we will consider collaborating with manufacturers of beauty devices and medical devices for the application and contract trial production of Miracle Fog products, as well as licensing of Miracle Fog. Please feel free to contact us when needed. 【Example of Use with Commercial Hair Brush】 ■ Spray Liquid: Commercial Hair Oil (Viscosity: Equivalent to Silicone Oil 50cst) ■ Average Particle Diameter: SMD 1.2μm ■ Spray Amount: 0.07ml/min ■ Air Pressure: 50kPa ■ Air Volume: 1.2NL/min *For more details, please download the PDF or feel free to contact us.

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Narrow Nozzle (National University Medical School)

Airless nozzle for syringe use developed for medical research institutions.

We would like to introduce our small-diameter nozzle (National University Medical School) 'FC5.0-291'. This is a custom nozzle that combines a disposable syringe with a stainless steel long pipe-type nozzle to spray trehalose (moisturizing solution) into the body. The outer diameter of the pipe section is φ5mm x length 160mm, and the material is stainless steel. 【Overview】 ■ Nozzle Name: Small-Diameter Nozzle (National University Medical School) ■ Model Number: FC5.0-291 ■ Spraying Principle: Airless *For more details, please download the PDF or feel free to contact us.

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Narrow Nozzle "FC3 FC5"

Hydraulic variable airless spray nozzle for medical research! Maximum water pressure 500 kPa.

The small diameter nozzle "FC3 FC5" is an airless nozzle developed for the medical research departments of national universities. It can spray slightly viscous liquids. Good spraying can be achieved with a liquid pressure of 50 to 500 kPa. There are two sizes of long pipes: an outer diameter of φ3.7mm (total length 485mm) and φ5mm (total length 383mm), made of stainless steel. 【Overview】 ■ Nozzle Name: Small Diameter Nozzle ■ Model Number: FC3 FC5 ■ Spraying Principle: Airless *For more details, please download the PDF or feel free to contact us.

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Miracle Fog MINI MF008C

Even with a resin material, it has passed wear resistance tests with continuous spraying for over 1,000 hours at an air pressure of 300 kPa!

The "Miracle Fog MINI MF008C" is a unique nozzle made of molded resin that shares both internal and external mixing principles. It achieves a stable spray pattern without disturbances or droplets over a wide range of air pressures from 30 kPa to 500 kPa. It can easily spray low-viscosity liquids. In particular, even at the minimum air pressure of 30 kPa, the average particle diameter is 22 μm, and at 300 kPa, it is below 10 μm. (At an air pressure of 300 kPa and a suction height of 500 mm, the average particle diameter is 7 μm.) Although it is a molded resin product, it has high molding accuracy, with a variation in spray volume of ±8%, and we can accommodate custom requests for ±3%. 【Overview】 ■ Nozzle Name: Miracle Fog MINI ■ Model Number: MF008C ■ Spray Principle: Air Spray *For more details, please download the PDF or feel free to contact us.

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Mokumoku Pattern MF004V6

A nozzle with a softer short-range spray pattern using low air energy mist!

The "Mokumoku Pattern MF004V6" is a nozzle with a delicate spray pattern that has a soft touch. It is a nozzle designed for softer short-range spraying with low air energy spray. We recommend using it within an air pressure range of 50 to 100 kPa. Please feel free to contact us if you have any inquiries. 【Overview】 ■ Nozzle Name: Mokumoku Pattern ■ Model Number: MF004V6 ■ Spray Principle: Air Spray *For more details, please download the PDF or feel free to contact us.

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Miracle Fog MF008D12NW

12 resin nozzles made of mold-formed material are arranged in a single cluster head! This creates a wide circular pattern.

We would like to introduce the "Miracle Fog MF008D12NW" that we handle. By arranging 12 units of the unique principle of MF008C, which shares both internal and external mixing of gas and liquid, a stable circular wide-range spray pattern can be achieved. At a siphon height of 100mm and an air pressure of 300kPa, the average particle diameter is below 10μm. (At an air pressure of 300kPa and a lift height of 500mm, the average particle diameter is 7μm.) Although it is a molded resin product, the molding precision is high, and the variation in spray volume is ±8%. [Overview] ■ Nozzle Name: Miracle Fog ■ Model Number: MF008D12NW ■ Spray Principle: Air Spray *For more details, please download the PDF or feel free to contact us.

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Miracle Fog KEN0980

Air spray nozzle mainly used in precision humidification systems in semiconductor production sites!

We would like to introduce the "Miracle Fog KEN0980" that we handle. By controlling air pressure and water pressure, it is possible to combine fog volume and particle diameter over a wide range. It is used by major automobile manufacturers to control humidity within plus or minus 1%. 【Overview】 ■ Nozzle Name: Miracle Fog ■ Model Number: KEN0980 ■ Spraying Principle: Air Spray *For more details, please download the PDF or feel free to contact us.

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Miracle Fog KEN110023BS

Developed in collaboration with an automotive manufacturer's engine research institute! Narrow-angle circular pattern air spray nozzle.

We would like to introduce the "Miracle Fog KEN110023BS" that we handle. This is an air spray nozzle developed in collaboration with an automotive manufacturer's engine research laboratory, featuring a narrow-angle circular pattern. It achieves an average particle diameter comparable to conventional nozzles with only a fraction (compared to our company) of the air volume used by traditional air spray nozzles. 【Overview】 ■ Nozzle Name: Miracle Fog ■ Model Number: KEN110023BS ■ Spray Principle: Air Spray *For more details, please download the PDF or feel free to contact us.

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Mist water and oil at an air pressure of 50 kPa! Ultra-compact resin nozzle.

Can be atomized at a low energy with a minimum air pressure of 50 kPa. Compatible with viscous liquids such as hair oils and beauty serums. Products with domestic patents and PCT international applications are available.

"Miracle Fog" is a technology that can atomize oil to a micron level at a low air pressure of just 50 kPa. It allows for the spraying of high-viscosity liquids, such as hair oils and beauty serums, which are difficult to atomize, while maintaining low energy consumption and controlling air pressure and air volume. This technology can be utilized in research institutions conducting spraying experiments, as well as in the development of cosmetics and beauty devices. 【Features】 ■ Atomization at low air pressure (minimum 50 kPa) and reduced air volume ■ Fine spraying of high-viscosity oils is possible ■ Products with domestic patents obtained and PCT international applications filed *For more details, please refer to the materials. Feel free to contact us with any inquiries.

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Implementation machine suction nozzle (standard, special, mechanical chuck nozzle)

The shortest delivery time from order to delivery is just 10 days.

Implementation machine suction nozzle (standard, special, mechanical chuck nozzle)

  • nozzle
  • nozzle

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Fine holes, irregular shapes, and press processing of the application nozzle

Leave it to us when you want to apply high-viscosity resin in your desired shape!

At Tokyo Dice Co., Ltd., we offer a variety of coating nozzles, from simple shapes to complex designs, utilizing advanced processing technology. Please contact us when you want to apply high-viscosity resin in your desired shape. 【Special Nozzles】 ■ Bending and Molding - L-shaped, flat type, glasses shape, V-shaped, round connection ■ Multi-channel and irregular holes *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
  • Other processing machines
  • nozzle
  • nozzle

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Blue-green algae floating experiment

The bubble diameter generates microbubbles around 20 microns.

The separation of floating algae by adding a neutralizing agent is perfect.

  • valve
  • others
  • Water Activation Device
  • nozzle

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How to increase the concentration of microbubbles

Simple pressure dissolution tank

The nozzle that generates microbubbles the best among about 50 test nozzles is No. 24.

  • valve
  • others
  • nozzle

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Birth of the Loop Flow Microbubble Generation Nozzle

The birth of the loop flow microbubble generation nozzle is in the "rice field."

The impetus for developing the loop flow microbubble generation nozzle came from the inspiration I got from observing the phenomenon of stealth bubbles.

  • others
  • nozzle

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Creating Microbubbles and Generation Devices - Use in Agriculture and Horticulture

How to create a device or system that generates microbubbles outdoors without a water supply?

If there is plumbing equipment, I think it can be used in the same way as in the bathroom.

  • others
  • nozzle

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From households to agriculture, fisheries, and industry! Introduction of achievements in the use of microbubbles.

There are over 300 inquiries with clear applications for microbubbles! We have achievements in hydroponics, drainage, wastewater treatment, portable toilets, microbubble showers, and more.

<Agriculture> Individuals and agricultural workers are starting to show interest in microbubbles. There have been many inquiries about hydroponics. ● Hydroponics ● Irrigation cultivation ● Liquid fertilizer production ● Improved germination efficiency <Water Treatment> Since 2013, inquiries about this matter have suddenly increased. The power of microbubbles seems to be gaining recognition. ● Wastewater treatment ● Purification of ponds, rivers, and lakes ● Purification of seawater ● Application in portable toilets <Fisheries> Inquiries related to fisheries have also increased. ● Aquaculture of fish and shellfish ● Sterilization and cleaning of oysters ● Live fish tanks ● Fish pens on boats ● Live bait such as sardines ● Transport of juvenile shrimp <Cleaning> Since 2013, inquiries related to cleaning have increased. ● Vegetable cleaning ● Animal cleaning ● Parts cleaning ● Cleaning machines <Household> There are many inquiries. ● Microbubble baths ● Jacuzzis (bubble baths) ● Microbubble showers ● Bubble showers ● Ornamental aquariums ● Coral cultivation ● Ranchu goldfish cultivation ● Arowana cultivation <Others> ● Fuel improvement ● Various oil separation ● Plating-related ● Deodorization ● Reduction of ship resistance ● Medical-related ● Chemical ● Cosmetics *For more details, please request materials or contact us.

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Loop flow microbubble generation device nozzle 200 mL/min *Customizable

A device (nozzle) with a high generation efficiency of milky white nanobubbles even at low water pressure of 0.22 MPa.

This device (nozzle) directly applies the mechanism of a loop flow microbubble generation device (nozzle). It adopts a multi-stage turbulent method, resulting in a high generation efficiency of nanobubbles and a large gas self-absorption capacity. It can be manufactured in sizes ranging from ultra-small to large, contributing to the enhancement of existing equipment capabilities. *For more details, please download the catalog or contact us directly.*

  • nozzle
  • Ozone Generator
  • nozzle

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[Case] Purification experiment of salmon farming at 60m depth in the Magellan Strait, Chile.

In the experiment, we are using a "400L/min OK nozzle" to inject fine bubbles into the seabed!

As part of the Magellan Strait seabed purification experiment, we are currently conducting seabed purification experiments in the Magellan Strait of Chile, and we are seeing good results. In Chile, salmon farming has been carried out in the strait's bays for many years, leading to the accumulation of leftover feed and waste on the seabed, which has deteriorated the environment to the point where it is no longer suitable for salmon farming. The project, carried out by the responsible parties in collaboration with aquaculture operators, aims to purify the seabed so that salmon farming can be resumed. Fish farming is taking place in bays around the world, facing similar issues to those in Chile, to varying degrees. Therefore, the results of this experiment are expected to be disseminated globally. Here, we summarize the content of email exchanges regarding the experiments conducted by the responsible parties, and we also provide our own suggestions on the 300m seabed purification method. *For detailed information on the case, please refer to the related links. For more details, feel free to contact us.*

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[Application Example] Coverage of measures against clams in Lake Shinji.

An example of application where the collaboration of fine bubbles and jet injectors is believed to have been effective.

As a measure against the clams in Lake Shinji, we would like to introduce an application example using the "100L・500L/min OK nozzle." After fishing, we took turns with fellow fishermen to aerate the lake bottom for two hours every day using a jet sprayer to inject fine bubbles. It is believed that the collaboration of fine bubbles and the jet sprayer has been effective. [Overview] ■ In July 2012, the "100L OK nozzle" was introduced. ■ Approximately one year later, clam catch increased. ■ In August 2014, the "500L" was introduced by the Shinji Lake Fisheries Cooperative. *For more detailed information about this case, please refer to the related links. For further inquiries, feel free to contact us.

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[Example] Use of fine bubbles in clam farming

Used a total of 6 "100L/min OK nozzles"! It became so clean that there is no need for cleaning.

Here is an example of using fine bubbles in clam farming. Immediately after generating fine bubbles, dirt surfaced to the extent that workers were reluctant to continue. One unit was used in this tank, and now the waste that had accumulated at the bottom has disappeared, making it clean enough that there is no need for cleaning. Additionally, a new tank compatible with fine bubble usage has been created. The ammonia concentration has drastically decreased. Furthermore, there have been reports that scallops and top shells suffer damage and die. Microbubbles may be clogging their respiratory systems. 【Sea Water Analysis Results for Clam Farming Tank *Evaluation: 1 is no problem, 5 is problematic】 <Water Quality Analysis Data: 15-ton Tank> ■Ammonia: 0.0mg/L - Evaluation 1 ■Nitrite: 0.0mg/L - Evaluation 1 ■Nitrate: 50mg/L - Evaluation 4 ■Phosphorus: 2.0mg/L - Evaluation 5 ■pH 7.5 *For more details on the case, please refer to the related links. For further inquiries, feel free to contact us.

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[Case] Ship Bottom Resistance Reduction Experiment (500L/min OK Nozzle)

Using a 500L/min OK nozzle! This is an introduction to the hull resistance reduction experiment conducted in October 2016.

We would like to introduce a case where the "500L/min OK nozzle" was used during a hull resistance reduction experiment at a shipyard in the Netherlands. 【Case Overview】 ■ Hull Resistance Reduction Experiment: October 2016 ■ Shipyard in the Netherlands ■ Used the 500L/min OK nozzle *For more details about the case, you can view them through the related links. Please feel free to contact us for more information.

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[Case Study] Floating Separation Experiment of Plastic Chips

In 10 minutes, nearly 100% of the cutting powder will rise! The specific gravity of plastic is greater than that of water and is negatively charged.

We would like to introduce a case study using the "7L/min OK nozzle" for the floating separation experiment of plastic shavings. 【Experimental Results】 ■ Nearly 100% of the shavings floated after 10 minutes ■ Almost 100% separation was achieved with fine bubbles It was also found that when the generation of fine bubbles was stopped, more than half sank ■ The items that sank were close to 1mm in size ■ The mechanism of floating is thought to be that positively charged particles gather around the negatively charged fine bubbles, and negatively charged shavings gather around them, resulting in flotation. *For more details on the case study, please refer to the related links. For further inquiries, feel free to contact us.

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[Example] Seaweed farming in Ariake Sea (100L/min OK nozzle)

Minimal color fading! This is a case of a bountiful catch due to the generation of nano and microbubbles in the seaweed fishing grounds.

We would like to introduce a case study using the "100L/min OK nozzle" for seaweed cultivation in the Ariake Sea. The generation of nano and microbubbles in the seaweed farming area resulted in a bountiful catch, with minimal color fading. 【Case Overview】 ■ Seaweed cultivation in the Ariake Sea ■ Use of the 100L/min OK nozzle  ・ Bountiful catch due to the generation of nano and microbubbles  ・ Minimal color fading *For more detailed information about the case, please refer to the related links. Feel free to contact us for further inquiries.

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[Example] Agricultural Sector

We are introducing examples of the implementation of the "500L/min OK nozzle" in lettuce hydroponic cultivation.

Here are some examples from the agricultural sector. 【Case Overview】 ■ Tomato and strawberry irrigation cultivation: Approximately 20% increase in production ■ Mini tomato irrigation cultivation: 46% increase in harvest in 2015 ■ Spinach: Reduction of nitrate ions, promotion of growth ■ Hydroponic lettuce cultivation: Introduction of 500L/min OK nozzle ■ Hyogo Prefectural Agricultural Center ■ Shimane Prefecture, successor experiments *For detailed information on the cases, please refer to the related links. For more information, feel free to contact us.

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[Case Study] Microbubbles and Machine Tools

Introducing application examples such as mirror polishing of silicon wafers and reduction of polishing time for small molds!

Since last year, inquiries about the use of fine bubbles in machine tools have been increasing. The effects are particularly notable in aluminum processing and grinding. Applications include the "aluminum composition cutting edge peeling effect," "cleaning of coolant tanks," "mirror polishing of silicon wafers," and "floating separation of lubricants." Please feel free to contact us for requests, questions, or estimates. 【Application Examples】 ■ Aluminum composition cutting edge peeling effect ■ Cleaning of coolant tanks ■ Mirror polishing of silicon wafers ■ Reduction of polishing time for small molds ■ Floating separation of lubricants ■ Prevention of spoilage and odor suppression of water-soluble coolant liquids *Detailed case information can be viewed through the related links. For more details, please feel free to contact us.

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[Case Study] Use of Nanobubbles in Irrigation Cultivation of Mini Tomatoes

Mini tomatoes thrive with nanobubbles! Depending on the variety, there are cases where the harvest increased by 5% to 35%.

Here is a case study from Kumamoto Prefecture using nanobubbles in the irrigation cultivation of mini tomatoes. In 2014, simply incorporating the "200L/min OK nozzle" into the existing pipeline resulted in an increase in harvest of 5% to 35%, depending on the variety. In 2015, by adding 10% oxygen and using the OK nozzle with pig manure, organic fertilizer was produced, leading to a 46% increase in harvest. 【Case Summary】 <2014> ■ Just incorporating the 200L/min OK nozzle into the existing pipeline ■ Harvest increase of 5% to 35% depending on the variety ■ Use of well water ■ Irrigation volume approximately 150% ■ Liquid fertilizer without solidification ■ Increased fertilizer amount ■ Irrigation tubes are cleaned *For detailed information about the case, please refer to the related links. For more information, feel free to contact us.

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