List of Manufacturing and processing machinery products

  • classification:Manufacturing and processing machinery

3151~3180 item / All 98349 items

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Presentation of explanatory materials on JIS and ISO standards. We propose suitable safety barriers from a rich product series! Free rental of demo kits.

  • Satech - AdaptaGuard_Ipros_2023_JP_1.jpg
  • Satech - BlueGuard_Ipros_2023_JP_1.jpg
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  • Satech - FastGuard_Ipros_2023_JP_2.jpg
  • Satech - ImpactGuard_Ipros_2023_JP_1.jpg
  • Satech - EasyGuard_Ipros_2023_JP_Media-gallery_1.jpg
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  • Satech - AdaptaGuard_Ipros_2023_JP_Media-gallery_1.jpg
  • Satech - BlueGuard_Ipros_2023_JP_Media-gallery_2.jpg
  • Other safety and hygiene products

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Amino acid-derived natural cationic polymer that can be used in food preservatives, hygiene materials, and daily necessities. It is a safe material as it is a fermentation product produced by natural ...

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  • Shelf life enhancer

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Introduction of the preservative polylysine / fermented polyamino acids that contribute to food poisoning prevention.

We provide easy-to-understand materials explaining the natural preservative polylysine, which prevents food poisoning. ε-Polylysine (hereafter referred to as polylysine) is an amino acid-derived preservative widely used as a food preservative. By adding polylysine, the growth of microorganisms that cause food poisoning can be prevented. Every year, food poisoning caused by microorganisms is a significant issue and is frequently reported in the news. Even foods that do not appear to be spoiled can rapidly proliferate microorganisms if the growth environment is suitable, so caution is necessary. Even if something looks clean, contamination by bacteria can progress, posing a risk of food poisoning. By ensuring hygiene management during the manufacturing process, proper storage at appropriate temperatures, and the appropriate use of the preservative polylysine, food safety can be more effectively protected. 【Features】 ■ A safe material produced through fermentation by natural microorganisms (not genetically modified organisms) ■ Provides a good image as a natural fermented product ■ Listed in the existing additive registry as a food preservative ■ A safe domestic product *Please feel free to contact us.

Durable marking on metal tools. High-performance fiber laser marker.

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  • 図面.JPG
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  • 加工サンプル.JPG
  • Laser marker
  • Resin processing machine

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Ideal for jewelry engraving! A fiber laser marker that achieves high-precision marking.

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  • オプション.JPG
  • 図面.JPG
  • 曲面加工.JPG
  • 加工サンプル.JPG
  • Laser marker
  • Resin processing machine

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Stable operation with airless electric power. Ensures automation of the circuit board marking process and improves traceability without disrupting line takt.

  • Laser marker

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For tracking aerospace components. A fiber laser marker that achieves high-precision marking.

  • IPROS6297141776340420986_550x550.JPG
  • オプション.JPG
  • 図面.JPG
  • 曲面加工.JPG
  • 加工サンプル.JPG
  • Laser marker
  • Resin processing machine

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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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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.

Small type top seal machine

  • Food Packaging Machinery
  • Other packaging machines
  • Sealing machine

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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.

Automation of mortar and pestle. Proven results in stirring, grinding, dispersing, kneading, and mixing for all-solid batteries, fine ceramics, carbon nanotubes, and conductive pastes.

  • 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.

Utilizing the horizontal machining centers we currently possess! We are always meeting our customers' needs.

  • Processing Contract

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We offer a diverse lineup of products, including various cardboard products and packaging materials, to meet our customers' needs!

  • Contract manufacturing
  • Processing Contract
  • Other packaging materials

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By using our services, you can reduce costs as there are no expenses for wooden molds!

  • Contract manufacturing
  • Processing Contract
  • Other packaging materials

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The use of second-hand equipment promotes the effective utilization of resources and contributes to the development of sustainable manufacturing!

  • Other services
  • Other processing machines

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Significant cost cuts will not only contribute to further growth of your business but also lead to more room for employee benefits and enjoying life.

  • Other services
  • Other machine tools
  • Other processing machines

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Ishikawa-style Soba No. 2 is used by many long-established famous shops and achieves the ideal kneading process where small soba flour balls gradually become larger soba balls.

  • Food Processing Equipment
  • Stone Processing Machinery
  • Other food machinery

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How to make delicious handmade soba noodles

Using our "Soba Machine No. 2," we will introduce how to make delicious handmade soba. ■ How to make delicious handmade soba 1. Mix soba flour and the binder (for 100% soba, use only soba flour). 2. Put the soba flour and binder into Soba Machine No. 2. 3. Start the Soba Machine No. 2. 4. Slowly add the specified amount of water while sprinkling it for about 1 minute (use the amount typically used in traditional hand-making). 5. Knead for about 3 minutes in that state. 6. Stop the machine when the soba has not completely formed into one mass, but has come together in about 5 pieces. 7. Remove the soba dough from the machine. 8. Use a bowl to gather it into one piece. 9. Transfer it from the bowl to a board and sprinkle with flour. 10. Using the palm of your hand (near the wrist), change the angle to stretch it out from the center to the outside to make it round. 11. Sprinkle with flour and roll it out with a stick. 12. Once stretched into a square, fold it. 13. Cut using a small cutting board and a soba knife. 14. Boil in a large pot, and the soba is complete.

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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Flexible configuration available upon request for methods such as deposition, sputtering, and EB. Adopts a tall chamber with a height of 570mm, contributing to improved uniformity during deposition.

  • Evaporation Equipment
  • Sputtering Equipment
  • Etching Equipment

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4-Yen Multi-Sputtering Device 【MiniLab-S060】

4 cathodes with Φ2 inch configuration Simultaneous film deposition: 3-component simultaneous deposition (RF 500W or DC 850W) + HiPIMS (PulseDC 5KW) x 1 Power distribution and configuration settings for 4 cathodes can be freely changed via the HMI screen using the plasma relay switch 3 MFC systems (Ar, O2, N2) for reactive sputtering RIE etching stage RF 300W (main chamber) + <30W soft etching (LL chamber) Substrate heating: Max 500℃, 800℃, or 1000℃ (C/C or SiC coating) Substrate rotation and vertical movement (automatically controlled by stepping motor) APC automatic control: Upstream (MFC flow adjustment) or downstream (automatic valve opening adjustment on the exhaust side) Dimensions: 1,120(W) x 800(D) ● Mixed specifications for resistance heating deposition, organic material deposition, EB deposition, PECVD, etc. are also possible.

- 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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■Excellent accuracy with integrated pump and filling machine ■Minimized influence from previous processes ■Reduced foaming during filling ■Easy switching between bottles and one-gallon cans ■Settings ...

  • Filling and bottling machines

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By using a Nakakin rotary pump, it is possible to fill high-viscosity liquids at high speed and with high precision.

  • Filling and bottling machines

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A filling machine that accommodates a wide range of containers and liquid qualities, achieving excellent quantification and precision.

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  • Filling and bottling machines

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■Supply conveyor ■Container washing machine ■Capper ■Labeler, etc., consistently producing an automated line that includes both upstream and downstream processes in addition to the filling machine.

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  • WF-92CPS(SU-1880)01.jpg
  • Filling and bottling machines

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Mixed precision has dramatically improved! Stable mixing ratios are achieved through feedback from the flow meter!

  • Beverage Production Equipment
  • Food Conveyor Equipment

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In addition to 4-way filling, one side of the 2-way filling can be cleaned while in operation! We propose a product that can operate while being cleaned!

  • Filling and bottling machines

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Large containers, compatible with a wide range of liquid types. A filling machine that achieves excellent quantification and precision.

  • WF-1MD(SU-1599)01.jpg
  • Filling and bottling machines

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Large containers, compatible with a wide range of liquid types. A filling line that achieves excellent quantification and precision.

  • 供給.jpg
  • アンキャップ.jpg
  • 充填.jpg
  • キャップ.jpg
  • ラベリング.jpg
  • Filling and bottling machines

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Bottle containers compatible with a wide range of liquid types. A filling line that achieves excellent quantification and precision.

  • WF-92CPS(SU-1880)02.jpg
  • WF-92CPS(SU-1880)01.jpg
  • Filling and bottling machines

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