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Wings - メーカー・企業7社の製品一覧とランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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Wingsのメーカー・企業ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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  1. 佐竹マルチミクス Saitama//Industrial Machinery
  2. GL HAKKO Oita//Industrial Machinery
  3. 三広アステック Tokyo//Industrial Machinery
  4. 4 エカート 日本支社 Tokyo//Chemical
  5. 4 TECHNICAL INFOMATION INSTITUTE CO.,LTD Tokyo//Service Industry

Wingsの製品ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. Classification of impeller discharge characteristics for stirring wings. 佐竹マルチミクス
  2. Stirring blades for cell culture and bioreactors "Parallel Stirring Blades - Parallel Paddle" 三広アステック
  3. Stirring Wing "COMBIJET" エカート 日本支社
  4. [Book] Mixing Technology and Scale-Up (No. 2131BOD) TECHNICAL INFOMATION INSTITUTE CO.,LTD
  5. 4 Stirring Wing "Bend Leaf" GL HAKKO

Wingsの製品一覧

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Classification of impeller discharge characteristics for stirring wings.

The stirring wing (impeller) is the most important part of the stirring device, classified into axial flow type and radial flow type.

The stirring blade (impeller) is the most important part of the stirring device. The rotational energy generated by the motor is transmitted to the impeller through the shaft and converted into kinetic energy. At this time, pressure shear occurs along with fluid motion, and the characteristics of the blade (impeller) are classified into axial flow type and radial flow type based on the ratio of these factors and the flow pattern created by the discharge flow direction. Impellers are divided into high and medium Reynolds number (Re) regions, and (high), medium, and low Re regions. The high and medium Re regions include classifications such as propellers, high discharge propellers, paddle types, flat paddle types, turbine types (with discs), cone types, and surface aeration types, while the (high), medium, and low Re regions include classifications such as special paddles and ribbon-screw types. For more details, please contact us or refer to the catalog.

  • Mixer/agitator

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Stirring blades for cell culture and bioreactors "Parallel Stirring Blades - Parallel Paddle"

Cell culture and bioreactor stirring blades "Parallel Stirring Blades and Parallel Paddles." A new concept! Efficient stirring is achieved with two paddles on parallel surfaces.

The parallel stirring paddle "Parallel Paddle" is an original stirring paddle developed by Mikihiro Astec based on a new concept. Its shape features a very simple structure with two paddles arranged parallel to each other around a rotating axis. Stirring is achieved by rotating the two paddles around the rotating axis. Due to the rotation, the material being stirred is expelled between the two paddles by centrifugal force, while simultaneously being drawn in from the direction along the rotating axis between the two paddles. This repetitive motion is the main mechanism.

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  • Mixer/agitator

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[Book] Mixing Technology and Scale-Up (No. 2131BOD)

【Technical Specialty Books】★ Simulation technology used for equipment design, condition setting, and troubleshooting!

Book Title: Mixing Technology and Scale-Up, Utilization of Simulation ---------------------------- ■ Key Points of This Book ★ Design of Optimal Mixing Equipment According to Purpose - What is the purpose of mixing, the liquid volume, the size of the mixing tank, and the properties of the liquid? - Design the mixing blades based on viscosity, including blade shape, diameter, and number of blades! - Effects and drawbacks of baffles - Does the strength of the mixing shaft meet the conditions? ★ Occurrence of Various Troubles in the Mixing Process and Their Countermeasures - What to do if abnormal heating occurs in the mixing equipment? - Scaling on the inner surface of the tank and its countermeasures - Defoaming techniques for bubbles that mix in during stirring! - Control of dispersion and contamination management ★ Utilization of Various Simulations - Determine the shape and operating conditions of the mixing equipment based on flow rate, temperature, and reaction distribution! - Evaluate stagnant flow, temperature variations, and reaction variations within the mixing equipment! - Evaluation and analysis of torque acting on the mixing blades - How to predict the required mixing power? - How to observe gas in complex flow paths and equipment?

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  • others
  • Technical and Reference Books
  • Technical and Reference Books

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Stirring Wing "Bend Leaf"

A powerful performer capable of handling a wide range of viscosities! High-performance stirring blades that can shorten the complete mixing time.

The "Bendleaf" is a high-performance stirring blade that has established a revolutionary flow pattern that utilizes the characteristics of various stirring blades. It excels in the overall balance of upward and downward discharge forces, promoting the generation of large circulation flows, ensuring that there are no dead zones in the contents. Additionally, it effectively utilizes the bottom of the tank, preventing any retention of contents at the bottom. With a uniform flow pattern that is not affected by conditions, it establishes a stable upward and downward circulation airflow. Compared to conventional blades, it significantly reduces the complete mixing time. 【Features】 ■ Broadly compatible with various viscosity ranges ■ Achieves a significant reduction in complete mixing time ■ Realizes stable gas-liquid mixing that is unaffected by changes in depth ■ Strong upward and downward circulation flow enhances surface gas suction performance ■ Uniform solid dispersion *For more details, please contact us or download the catalog.

  • Mixer/Stirrer

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Ramond stirrer (stirring blade) *Rental available

Powerful shearing inside the honeycomb structure of the stirring blade achieves ultra-fine and uniform mixing in a short time! Can be mounted on a φ8mm shaft.

Compared to other stirring devices, it is a high-efficiency stirring blade. As an agent for Nanox Co., Ltd., we handle the stationary fluid mixing device "Lamond Nano Mixer," the stirring device "Lamond Stirrer," the ultra-fine bubble (nano bubble) generation device "Nano Fresser," the research and development device "Nano Quick," and the ultra-fine bubble (nano bubble) seawater treatment machine "Shinsen Tamotsu-kun." ◆ The RS050A can be attached to a φ8mm shaft that comes with a standard stirring motor. It stirs without disturbing the liquid surface and does so in half the time of a regular stirring blade. Even when there are many materials with poor compatibility, it can stir instantly. It achieves uniformity in liquid diameter. It is optimal for fine processing, mixing, disintegration, and pre-dispersion of liquid-liquid, gas-liquid, and powder-liquid. ◆ There are numerous delivery records with customers in the stirring and mixing industry.

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  • Mixer/agitator
  • Homogenizer
  • Other cleaning machines

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Ultra Micro Turbine Rotor Blade

Can be applied as a small power supply or small power source!

We have successfully developed ultra-micro turbine blades that maximize the advantages of the Actet PIM. They can be used in various applications such as gas turbines for ultra-compact generators and ultra-compact jet engines. 【Specifications】 ■ Size: Outer diameter Φ10mm ■ Thin-walled: Blade tip thickness, thinnest 0.14mm ■ Material: Various metals and ceramics *For more details, please download the PDF or feel free to contact us.

  • Other electronic parts
  • Other machine elements

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Stirring Wing "COMBIJET"

Powerful centrifugal and axial flow provide excellent gas dispersion and bulk mixing performance!

COMBIJET" is a high-efficiency stirring blade suitable for fermentation tanks and gas-liquid reaction processes. The special blade shape creates strong centrifugal and axial flow, enabling good gas dispersion and concentrated bulk mixing of fluids. At the same time, the formation of gas vortices behind the blade is prevented, ensuring stable performance across a wide range of operating conditions. 【Features】 ■ High-efficiency stirring blade suitable for fermentation tanks and gas-liquid reaction processes ■ Excellent gas dispersion and bulk mixing performance ■ No significant decrease in absorption capacity during gasification operation *You can download the English version of the catalog. For more details, please refer to the related links or feel free to contact us.

  • Mixer/agitator

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Glass lining stirring blade MOLEPAW

High-performance stirring blades that can be used for multiple purposes.

In recent years, in the fine chemical fields such as pharmaceuticals and electronic materials, processes involving changes in liquid volume and small-scale production of multiple varieties for various purposes have been conducted. To meet these demands, we have developed a glass-lined stirring blade, 'MOLEPAW,' as a replacement for the conventional three-blade backward wing.

  • Mixer/agitator

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Stirring Wing "Mallpo"

A new type of stirring wing to replace the GL3 three-blade backward wing! We will meet our customers' new needs!

The "Mallpole" is a next-generation stirring blade that has 1.5 to 2 times the mixing performance compared to three-blade backward wings in medium and low viscosity regions. It can mix with a small liquid volume of about 3% of the stirring tank capacity. Additionally, it can achieve uniform suspension of particles and dispersion of droplets with 50 to 80% of the power used by three-blade backward wings. It is easy to manufacture, making it low-cost. Its simple shape allows for good cleanability and easy maintenance. 【Features】 ■ Low cost ■ Easy maintenance ■ Capable of mixing with small liquid volumes ■ Ideal for retrofitting existing stirring blades *For more details, please contact us or download the catalog.

  • Mixer/Stirrer

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Successful commercialization of turbine moving blades using Inconel 713C.

Successfully commercialized turbine rotor blades using Inconel 713C (nickel-based superalloy) by applying automotive technology!

We would like to introduce a case study on the use of PIM by Atect Co., Ltd. Our company has successfully applied the technology of PIM methods for automotive turbo engine parts to develop turbine blades that are fingertip-sized (outer diameter 10mm, tip thickness 0.16mm) made from Inconel 713C, capable of withstanding operating temperatures close to 1000°C. This technology is expected to be applied in the development of "compact, lightweight, high-output power sources" such as micro gas turbines and ultra-micro gas turbines. In the future, we will propose sintered bodies of ultra-micro turbine blades made from various ceramic materials we possess, achieving significant weight reduction and durability at temperatures exceeding 1000°C. [Challenges Addressed] - Practical application of fingertip-sized turbine blades - Product development using Inconel 713C that can withstand temperatures close to 1000°C *For more details, please refer to the PDF document or feel free to contact us.

  • Other machine elements
  • Contract manufacturing

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