List of Physics and chemistry equipment products

  • classification:Physics and chemistry equipment

1846~1890 item / All 15188 items

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Achieves high collection efficiency through electrostatic methods. Offers a wide range of products from large to small sizes. Also compatible with water-soluble oil mist.

  • small-mistcollector.png
  • air conditioning

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Achieving efficiency and space-saving in mixed reaction facilities - Emulsion mixer

  • Mixer/agitator
  • Other physicochemical equipment

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Improved stirring and degassing power, achieving IoT stirring and degassing processing with a dedicated app using a rotational and orbital mixer. Displayed and demonstrated at the New Functional Mater...

  • Mixer/agitator

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cj-expo_ir.png

【1/28-30 | Tokyo】New Functional Materials Exhibition 2026

Our company will be exhibiting at the "New Functional Materials Exhibition 2026." We sincerely look forward to your visit.

Reduce the possibility of cell death by controlling ice crystal formation and osmotic pressure. If you are having trouble with freezing, storing, transporting, or thawing cells at ultra-low temperatur...

  • Other physicochemical equipment

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It is possible to heat and stir while crushing using a built-in heater with a heating and insulation jacket attached to the mortar.

  • Crusher
  • Emulsifier/Disperser
  • Concentration Equipment

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Performance that surpasses manual work in the same environment as manual work: grinding + stirring + mixing + kneading = synergistic effect through simultaneous operations.

  • Other processing machines
  • Crusher
  • Emulsifier/Disperser

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This single machine handles processes such as grinding/dispersing, stirring, kneading, mixing, dispersing, concentrating, drying, and powdering while heating/cooling powders, slurries, pastes, etc.

  • Concentration Equipment
  • Crusher
  • Emulsifier/Disperser

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0.3 – 25 μm @ 0.1 CFM, long-life internal pump and battery

  • Stainless steel container

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Deaeration of the paste can be easily performed. You can leave the deaeration of heat sinks and other items to us. Testing for deaeration while heating is also possible.

  • Drying Equipment
  • Crusher
  • Concentration Equipment

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Mixing, grinding, blending, kneading. Large machines (compatible with 20ℓ to 100ℓ). Bowl inclination (easy material extraction).

  • Crusher
  • Mixer/agitator
  • Food Processing Equipment

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Ideal for tabletop experiments. It employs a mechanism that forcibly rotates the pestle with a motor, providing higher grinding performance. Suitable for the dispersion, mixing, crushing, and disinteg...

  • Other processing machines
  • Food Processing Equipment
  • Mixer/agitator

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水和物のナノケミカルサムネイル.jpg

Introduction to the paper "Mechanochemical Dehydration of Hydrate Crystals Using AGA"

**Introduction to the Paper** Title: Mechanochemical Reactions of Hydrated Crystals Author: Professor Yasuo Arai Summary: The paper titled "Mechanochemical Reactions of Hydrated Crystals" was published in 1971 and provides valuable research findings related to gypsum and lime. This paper was written by Professor Yasuo Arai. The focus of this paper is on the characteristics and mechanisms of mechanochemical reactions in hydrated crystals. Professor Arai conducted a detailed study of the processes by which hydrated crystals, such as gypsum and lime, change under physical stimuli. As a result, he revealed that changes in crystal structure and recrystallization of materials occur during the mechanochemical reactions of hydrated crystals. The equipment used to apply this "physical stimulus" is our company's AGA. The significance of this paper contributes to understanding how mechanochemical reactions of hydrated crystals affect the applications of gypsum and lime. Furthermore, this research suggests potential applications in fields such as materials science and architectural engineering. References: Arai, Yasuo. "Gypsum and Lime," 1971. "Mechanochemical Reactions of Hydrated Crystals."

Ceramic bowl (mortar) and ceramic pestle (mortar) equipped manufacturing machine, suitable for chemical products and electronic materials! The bowl can be tilted.

  • Food Processing Equipment
  • Mixer/agitator
  • Fine grinding machine

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Ishikawa-type stirring and grinding machine that can stir and crush materials containing molten material while heating.

  • Other processing machines
  • Fine grinding machine
  • Concentration Equipment

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■ Crushing (grinding) is possible while heating in a vacuum. ・Heating temperature can go up to 120℃. ・Can also be used as a rotary evaporator.

  • Other processing machines
  • Mixer/agitator
  • Fine grinding machine

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Can grind even 0.5g of material. Can be used in glove boxes or draft chambers due to its ultra-compact size. Equipped with a timer and speed adjustment function.

  • Fine grinding machine
  • Mixer/agitator
  • Concentration Equipment

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Tiny_plus右斜め電源ON照明ON.jpg

We have started selling the new product Tiny plus (ultra-compact desktop model).

On September 11, 2024, we began selling the new product Tiny Plus. It enhances the existing Tiny product by adding a timer function and a rotation speed adjustment feature. 【Features】 - Maintains the basic performance of the Ishikawa-style stirring and grinding machine while achieving the smallest size. - Processing volume is 0.03 liters. - Ideal automatic mortar for researchers and developers who perform grinding tasks manually with a mortar and pestle. - The pestle tube has a built-in spring, allowing for stirring and grinding while applying pressure. - Equipped with a timer, enabling multitasking while grinding. - Features a rotation speed adjustment function, allowing grinding under various conditions. - Includes LED lighting for easy monitoring of processing status. - Designed for easy mobility and storage with a detachable AC cord. - Improved chemical resistance due to the use of a stainless steel casing, expanding its applications in laboratories and clean rooms. - Standardly equipped with an acrylic cover for splash prevention and safe handling. - Its ultra-compact and tabletop design allows for use within fume hoods or glove boxes, making it possible to grind substances containing organic solvents, provided the cover material is appropriately selected.

Optimal for pre-dispersion! Can mix and grind materials from just a few grams. Reproduces hand grinding【Compact Automatic Mortar】. Fits in a glove box at the smallest size!

  • Other machine tools
  • Mixer/agitator
  • Fine grinding machine

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ゼオライト粒度依存性サムネイル.jpg

Dependence of Zeolite Particle Distribution on Grinding Time

**Summary** To understand the performance of the Ishikawa-type mixing and grinding machine produced at the Ishikawa factory, zeolite was used as the standard material to clarify the relationship between grinding time and particle size distribution through experiments. First, experiments were conducted using the D18S (desktop machine) to examine the relationship between the particle size distribution of zeolite and grinding time. The grinding times were varied at 15 minutes, 30 minutes, 1 hour, 2 hours, and 4 hours, with 2g samples taken at each interval. These samples were then analyzed for particle size distribution using a laser diffraction particle size measurement device. **Conclusion** In the particle size distribution, the peak value (mode) was 0.4μm for grinding times up to 1 hour. After 2 hours of grinding, it was 0.1μm. The standard deviation, which represents the variation in particle size, decreased with longer grinding times. However, beyond 2 hours, it saturated and remained almost constant at 3μm. From this, it can be concluded that within the experimental range, the relationship between the particle size distribution of zeolite and grinding time using the D18S shows that longer grinding times result in smaller particle size (mode) and less variation (standard deviation), but after 2 hours, it becomes constant.

The pestle rotation part rises and falls, making it easier to exchange the mortar and pestle, remove the ground material after grinding, and clean the machine. A tabletop machine for simultaneous stir...

  • Emulsifier/Disperser
  • Fine grinding machine
  • Mixer/agitator

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ゼオライト粒度依存性サムネイル.jpg

Dependence of Zeolite Particle Distribution on Grinding Time

**Summary** To understand the performance of the Ishikawa-type mixing and grinding machine produced at the Ishikawa factory, zeolite was used as the standard material to clarify the relationship between grinding time and particle size distribution through experiments. First, experiments were conducted using the D18S (desktop machine) to examine the relationship between the particle size distribution of zeolite and grinding time. The grinding times were varied at 15 minutes, 30 minutes, 1 hour, 2 hours, and 4 hours, with 2g samples taken at each interval. These samples were then analyzed for particle size distribution using a laser diffraction particle size measurement device. **Conclusion** In the particle size distribution, the peak value (mode) was 0.4μm for grinding times up to 1 hour. After 2 hours of grinding, it was 0.1μm. The standard deviation, which represents the variation in particle size, decreased with longer grinding times. However, beyond 2 hours, it saturated and remained almost constant at 3μm. From this, it can be concluded that within the experimental range, the relationship between the particle size distribution of zeolite and grinding time using the D18S shows that longer grinding times result in smaller particle size (mode) and less variation (standard deviation), but after 2 hours, it becomes constant.

Automation of porcelain mortar (mortar) and porcelain pestle (pestle). Ideal for a wide range of applications in food, pharmaceuticals, chemicals, and electronic materials, including stirring, grindin...

  • Fine grinding machine
  • Mixer/agitator
  • Other processing machines

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ゼオライト粒度依存性サムネイル.jpg

Dependence of Zeolite Particle Distribution on Grinding Time

**Summary** To understand the performance of the Ishikawa-type mixing and grinding machine produced at the Ishikawa factory, zeolite was used as the standard material to clarify the relationship between grinding time and particle size distribution through experiments. First, experiments were conducted using the D18S (desktop machine) to examine the relationship between the particle size distribution of zeolite and grinding time. The grinding times were varied at 15 minutes, 30 minutes, 1 hour, 2 hours, and 4 hours, with 2g samples taken at each interval. These samples were then analyzed for particle size distribution using a laser diffraction particle size measurement device. **Conclusion** In the particle size distribution, the peak value (mode) was 0.4μm for grinding times up to 1 hour. After 2 hours of grinding, it was 0.1μm. The standard deviation, which represents the variation in particle size, decreased with longer grinding times. However, beyond 2 hours, it saturated and remained almost constant at 3μm. From this, it can be concluded that within the experimental range, the relationship between the particle size distribution of zeolite and grinding time using the D18S shows that longer grinding times result in smaller particle size (mode) and less variation (standard deviation), but after 2 hours, it becomes constant.

Mechanochemical dehydration of water and material crystals.

  • Fine grinding machine
  • Emulsifier/Disperser
  • Crusher/Mill

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Soba No. 2 - A renowned machine for water management in soba (buckwheat noodles).

  • Kneading Machine
  • Bean jam making machine
  • Mixer/agitator

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Also for the pre-dispersion of electrode materials for all-solid-state batteries! A single machine can stir, grind, disperse, and knead! Reproducing hand grinding [Automatic mortar and pestle].

  • Fine grinding machine
  • Mixer/agitator
  • Emulsifier/Disperser

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Concentrate while grinding with the Ishikawa-style automatic mortar and pestle. Concentration is possible even with a small amount or slurry!

  • Concentration Equipment
  • Evaporator
  • Other Concentration/Evaporation Equipment

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Simultaneous processing of dispersion, kneading, concentration, drying, and grinding of slurry/paste/powder with a single machine! Slurry grinding rotary evaporator.

  • Other powder equipment
  • Emulsifier/Disperser
  • Concentration Equipment

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Equipped with ceramic bowls (mortar) and double boilers (jacket) for heating/cooling. Simultaneous processing of grinding (crushing, disintegration), dispersion, kneading, concentration, and drying op...

  • Fine grinding machine
  • Emulsifier/Disperser
  • Mixer/agitator

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This is the Ishikawa-type mixing and grinding machine, which is widely used not only for the mixing, blending, and kneading of ointments but also for the grinding, stirring, and dispersing of medicina...

  • Food Processing Equipment
  • Fine grinding machine
  • Mixer/agitator

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Please leave the 'Ishikawa-style stirring and grinding machine' for 'stirring', 'crushing', 'mixing', and 'kneading' to Ishikawa Factory Co., Ltd.

  • Mixer/agitator
  • Fine grinding machine
  • Emulsifier/Disperser

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水和物のナノケミカルサムネイル.jpg

Introduction to the paper "Mechanochemical Dehydration of Hydrate Crystals Using AGA"

**Introduction to the Paper** Title: Mechanochemical Reactions of Hydrated Crystals Author: Professor Yasuo Arai Summary: The paper titled "Mechanochemical Reactions of Hydrated Crystals" was published in 1971 and provides valuable research findings related to gypsum and lime. This paper was written by Professor Yasuo Arai. The focus of this paper is on the characteristics and mechanisms of mechanochemical reactions in hydrated crystals. Professor Arai conducted a detailed study of the processes by which hydrated crystals, such as gypsum and lime, change under physical stimuli. As a result, he revealed that changes in crystal structure and recrystallization of materials occur during the mechanochemical reactions of hydrated crystals. The equipment used to apply this "physical stimulus" is our company's AGA. The significance of this paper contributes to understanding how mechanochemical reactions of hydrated crystals affect the applications of gypsum and lime. Furthermore, this research suggests potential applications in fields such as materials science and architectural engineering. References: Arai, Yasuo. "Gypsum and Lime," 1971. "Mechanochemical Reactions of Hydrated Crystals."

- The use of stainless steel bowls enhances thermal responsiveness, allowing for rapid heating and processing. - By thermal spraying zirconia onto stainless steel, processing performance equivalent ...

  • Other processing machines
  • Concentration Equipment
  • Fine grinding machine

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Ceramic mortar (mortar bowl) and ceramic pestle (pestle) manufacturing machine, suitable for chemical products and electronic materials! The bowl can be tilted.

  • Food Processing Equipment
  • Mixer/agitator
  • Fine grinding machine

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It is possible to grind while heating (maximum temperature: 180°C) and cooling (minimum temperature: -20°C) in a vacuum.

  • Other processing machines
  • Crusher
  • Concentration Equipment

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Powerful processing of stirring, grinding, crushing, disintegration, kneading, mixing, and dispersion of liquids, slurries, pastes, colloids, and powders - Ishikawa-type stirring and grinding machine,...

  • Crusher
  • Emulsifier/Disperser
  • Fine grinding machine

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- The root model of the Ishikawa-style mixing and grinding machine - Leave the "mixing," "grinding," "blending," and "kneading" to the Ishikawa-style mixing and grinding machine.

  • Mixer/agitator
  • Crusher
  • Fine grinding machine

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From conceptual design to electrical, plumbing, and civil engineering, we provide comprehensive in-house support. By using 3D modeling, we minimize rework on-site and achieve efficient plant design!

  • incubator
  • Analytical Equipment
  • Plant Design

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Synthesis of new polymers in a flexible and easy way.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Develop new synthetic pathways in a flexible and simple manner to achieve efficiency.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Accelerating the purification process with flexible synthesis.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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You can synthesize new fragrance compounds in a flexible and easy way.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Developing a synthesis route for new compounds that is flexible and simple.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Achieving highly reproducible research in a flexible and simple manner.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Develop synthetic pathways in food analysis flexibly and easily.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Synthesize new compounds in a flexible and easy way, and develop cosmetic formulations.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Developing new synthetic pathways in a flexible and simple manner.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Synthesize new compounds in a flexible and easy way to accelerate material development.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Synthesize new compounds in a flexible and easy way to improve research efficiency.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Develop new synthetic pathways and synthesize compounds using a flexible and simple method.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Efficiently streamline energy-related research and development with accurate measurements.

  • Scale
  • Other physicochemical equipment

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