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disk Product List and Ranking from 48 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

disk Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. 関東化学株式会社 バイオケミカル部 Tokyo//Chemical
  2. ミナギ Osaka//Industrial Machinery
  3. REMBE Kanagawa//Machine elements and parts
  4. 4 ファイク・ジャパン Tokyo//Other manufacturing
  5. 5 竹田商事 大阪本社 Osaka//Machine elements and parts

disk Product ranking

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. Carbapenemase Differentiation Disk Plus 関東化学株式会社 バイオケミカル部
  2. AmpC/ESBL differentiation disk 関東化学株式会社 バイオケミカル部
  3. RINGFEDER products such as shrink rings and shrink discs. 竹田商事 大阪本社
  4. Rapture Disk "Sanitary Disk" ファイク・ジャパン
  5. 4 Bursting disc, rupture disc, manufactured by ZOOK. ジャパンコントロールス 「Japan Controls Co. Ltd.」 東京本社

disk Product List

271~285 item / All 336 items

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0151 Rat Hole Measures - Chemical Material Manufacturer

Easily resolve troubles! We will propose installation examples and operating conditions that match the customer's requirements.

We would like to introduce a case of rat hole prevention at a chemical materials manufacturer. Normally, the powder does not pose significant issues and can be discharged from the hopper, but when it contains 3% moisture, its flowability deteriorates significantly. Traditionally, only vibrators were used, and for materials with high moisture content, in addition to the vibrations from the vibrator, air purging from a quick-connect fitting was employed. However, this did not completely eliminate the rat hole issue, leading to the introduction of our equipment, which easily resolved the challenge. [Overview] ■ Hopper Size: 1500×1500 ■ Installation Position: 2 units installed on each side (total of 8 units) * For details, please feel free to contact us. * For more information, please refer to the PDF materials or feel free to contact us. * Our website features numerous implementation examples, which can be checked via the link below.

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0322 At the fertilizer manufacturing plant

Introducing a case study of the "Brodisk" adopted by a fertilizer manufacturing facility.

We would like to introduce a case that was brought to us by the maintenance representative of a fertilizer manufacturing facility. They are experiencing blockages in the hopper section of their manufacturing plant's dust collector and are troubled by this issue. Although bridging phenomena are occurring in other equipment as well, they have damaged the hopper due to measures such as hammering. Therefore, they requested a solution that would not cause damage to the hopper this time. The equipment is designed to utilize air injection from all around the silicone disk installed on the inner surface of the hopper, along with the effects of the vibration of the silicone disk during air ejection. Since it involves air injection and the vibration of the silicone rubber disk, it will not damage the hopper itself. [Overview] ■ Dust collector hopper dimensions: Approximately 1600×2200 ■ Number of blow disks installed: 12 * This time, 12 disks were installed to reduce the risk of residue remaining in the four corners of the hopper. * For more details, please refer to the PDF document or feel free to contact us. * Our website contains numerous examples of implementations, which can be checked via the link below.

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0331 Target: With carbon black masterbatch

The installation of the Brodisk has solved the problem of discharging powdered materials!

The facility manufacturing masterbatch has adopted the "Brodisk." Due to the hopper's slope being gentler than the material's angle of repose, there were difficulties in discharging the target powder. However, the installation of the Brodisk has resolved this issue. 【Overview of Usage Conditions】 ■Raw Materials - Carbon black - Particle size = under 50μm - Bulk density = approximately 0.15 - Angle of repose = approximately 45° ■Hopper Size - 1200×1200 ■Brodisk Arrangement - 3 units on each side, totaling 12 units installed ■Brodisk Operation - Controlled by a controller with 6 solenoid valves, the Brodisk is sequentially turned ON in groups of 2 at 6 locations. *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous case studies. You can check them out via the link below.

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0348 Shortening the discharge time of corn feed.

For solving problems such as rat hole bridges! Introducing case studies of Brodisk implementation.

There have been instances of rat holes occurring in the feed silo, and we have received inquiries about not being able to discharge within the specified time... We want to do something about it... As usual, we reviewed the silo diagram and proposed the arrangement of the blow disk, which was promptly implemented. After the installation of the equipment, we were able to discharge approximately 4 tons in a stable manner within about 10 minutes. There were constraints on the compressor capacity, but the customer adjusted the air pressure, air ON time, and air OFF time in various ways to find the minimum air consumption conditions. [Overview] ■ Material: Corn (powder + grains approximately 5mm) *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous implementation examples, which can be checked via the link below.

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Elimination of the bridge in elastomer crushed products (powder).

You can set the air ON/OFF time at will! Introducing case studies of Brodisk deliveries!

Here is an introduction to a case study on bridge prevention using a relatively small hopper. The material is said to be an elastomer powder, and from what I saw of the sample, it contained a significant amount of powder. Since a test was requested, we lent the necessary quantity of our equipment for the experiment. The results were as expected, and the bridge was resolved immediately. In this case, we installed one Brodie disk (BD-15) on each of the three inclined surfaces, for a total of three. The three disks are turned ON and OFF simultaneously using the controller (C-SV1). [Hopper Conditions] ■ Size: 200×500 ■ Shape: Three inclined surfaces, one vertical ■ Discharge: 40φ from the lower end of the vertical surface *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous case studies. You can check them out via the link below.

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Delivery to concrete secondary product manufacturer.

We also provide advice on installation locations! Here are some case studies of Bro-Disc implementation.

This is a project delivered to a concrete secondary product manufacturer. During the equipment update, a Brody disk was introduced in the newly constructed silo. Previously, they were using a metal filter for aeration, but due to experiences with discharge issues such as bridging, they decided to adopt this solution. It has been a considerable time since the implementation of this system, and there have been no problems at all, leading to customer satisfaction. [Overview] ■ Target powder: Cement ■ Silo diameter: φ2800 ■ Discharge diameter: φ350 * For more details, please refer to the PDF materials or feel free to contact us. * Our website features numerous case studies. You can check them out via the link below.

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Elimination of the bridge caused by the repurposing of the feed tank.

Introducing a case study on the implementation of a Brody disk for silo bridge prevention.

This is a case study on bridge issues in feed silos. We received an inquiry stating that a silo for crushed feed rice had started to experience bridging when repurposed for other feed types. The details of the new material are unclear, but previously, discharge was facilitated by vibrating plates. Based on related information, we provided guidance on the placement of our equipment, which was subsequently adopted. After the installation of our equipment, it has been evaluated that bridging no longer occurs. [Overview] ■ Silo diameter: 2500φ ■ Discharge diameter: 500φ (further narrowed below this) ■ Hopper section slope: 45° *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous case studies. You can check them out via the link below.

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0370 Promotion of the outflow of titanium dioxide mixture

An example of installing a larger number of broad disks/broad disk minis to mitigate risks.

This is a consultation request from an engineering company. Due to the discharge diameter being 3S and relatively small, we installed two Bro-Disk Minis at different heights in this area, and four Bro-Disks on the circumference above, for a total of eight units. A key point this time is that the Bro-Disk Minis installed below have a lower air flow compared to the Bro-Disks, so we have conducted two consecutive air ON operations. After delivery, we received feedback stating, "The Bro-Disk Minis installed near the discharge area were absolutely necessary." [Overview] ■ Hopper diameter: 600φ ■ Discharge diameter: 3S *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous implementation examples, which can be checked through the link below.

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0365 Delivered to the feed factory.

Introduction of a case where 12 Brodisk standard types were installed.

We have delivered BroaDisk to a feed factory for pig farming. In the case of a silo with a capacity of about 50 tons, there were concerns about bridging, and measures against bridging were implemented using foreign-made equipment. However, it seems there were many failures and troubles, which led to the adoption of our equipment. Since then, it has been operating well, and we have received numerous repeat orders. In this case, we installed 12 standard BroaDisks (BD-15) and used a controller with 6 built-in solenoid valves to sequentially turn on air to 6 locations, with 2 BroaDisks at each location. 【Product Specifications】 ■ BroaDisk: BD-15S-W 12 units ■ Controller: C-SV6 1 unit * For more details, please refer to the PDF document or feel free to contact us. * Our website features numerous case studies. You can check them out via the link below.

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0376 Prevention of clogging in powdered activated carbon

Introducing a case where a blow disk was installed in the powder activated carbon feeding hopper with two lines.

This is a case adopted by a facility primarily producing functional resin products. There are two lines with hoppers, and one line has a significantly small discharge diameter from the hopper, which increased the risk of bridging. After hearing the details, we provided a countermeasure proposal, which was immediately implemented. Since the installation of this equipment, we have received feedback that bridging and blockages have not occurred. 【Overview of Bro-Disk Arrangement】 ■ Line 1 - Four Bro-Disks arranged on the circumference 200-300mm above the discharge section ■ Line 2 - Four Bro-Disks arranged on the circumference 200-300mm above the discharge section - Four Mini Bro-Disks arranged on the circumference 100-200mm above the discharge section *For more details, please refer to the PDF document or feel free to contact us. *Our website features numerous implementation examples, which can be accessed via the link below.

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At the intermediate processing plant for industrial waste

An example of installing a blow disk to solve the problem of not being able to discharge from the raw material hopper.

This is an example of adoption by an intermediate waste processing contractor. First of all, since there was a request to try it out urgently (to be installed on the actual machine), we listened to the various conditions and decided to send (loan) the best-suited model in the necessary quantity. The results of the actual machine test were good, and later we received an order for the controller, and it is being used smoothly. 【Overview】 ■ Target material: Soil (approximately 5% moisture) ■ Hopper diameter: 1300φ ■ Discharge section: 200φ 【Key Points of Our Equipment】 ■ The elastic disk (silicone) is very important in terms of strength and durability due to the risk of foreign matter contamination. The silicone disk of our equipment excels in strength and durability. Once you use it, you will understand! ■ Control (how to aerate?) is important! We provide guidance on what should be done. We also have a dedicated controller available. * For more details, please refer to the PDF materials or feel free to contact us. * Our website features numerous implementation examples. You can check them via the link below.

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0385 Prevention of bridge formation in carbon micro powder

An example of using a blow disk for bridge prevention in the storage hopper located above the drum filling machine.

The fluidity of the target material does not seem to be particularly bad, but it is a case that was installed because "when the residence time is long, it tends to clog near the hopper discharge area." We often receive inquiries regarding bridging solutions for materials with very poor fluidity, so there are cases where eight standard Brody disks are installed. However, in this case, good results have been achieved with the installation of four disks. 【Overview】 ■ Hopper diameter: 1500φ ■ Hopper capacity: 2m3 ■ Target material: Carbon powder (average particle diameter 15μm) 【Key Points of This Equipment】 ■ The elastic disk (silicone) is very important in terms of foreign matter contamination risk, as strength and durability are crucial. The silicone disks of this equipment are exceptionally strong and durable. Once you use it, you will understand! ■ Control (how to aerate?) is important! We provide guidance on what should be done. We also have a dedicated controller available. *For more details, please refer to the PDF materials or feel free to contact us. *Our website features numerous implementation examples. You can check them via the link below.

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0393 Cement silo discharge section

A case where this Brody disk was introduced due to concerns about blockages in the discharge section of the cement silo.

This is a project that was adopted through the introduction of a consulting company specializing in environmental-related systems. Concerns were raised about potential blockages at the discharge section of a newly constructed cement silo, leading to the introduction of our Brody Disk. As there were significant concerns from the user regarding the new plant installation, we lent them a sample of our equipment. After the plant began operation, they reported that the initial concerns were completely unfounded and provided high praise for its performance. 【Overview】 ■ Silo Diameter: 2500φ ■ Discharge Section: 250φ×2 Ports 【Key Points of Our Equipment】 ■ The elastic disk (silicone) is crucial in terms of the risk of foreign matter contamination, so strength and durability are very important. Our silicone disk is exceptionally strong and durable. Once you use it, you will understand! ■ Control (how to aerate?) is important! We provide guidance on what should be done. We also have a dedicated controller available. *For more details, please refer to the PDF materials or feel free to contact us. *Our website features numerous case studies. You can check them out via the link below.

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Resolving the bridge of resin powder (water-added)

An example of installing a Brody disk to solve the problem of the bridge phenomenon occurring when water is added to resin powder.

This is an example we received from a manufacturer of labor-saving machinery. We were consulted because "the customer (in the chemical industry) started adding water to resin powder, and a bridging phenomenon that had not occurred before began to happen in the delivered equipment." The key point this time is that while the flowability of the resin powder before water addition is relatively good, the angle of repose increases due to the addition of water, and there is a possibility of increasing the amount of water added in the future. In this case, considering that the discharge diameter of the hopper is somewhat small at 100A and the worsening of the angle of repose due to increased water addition, we added four mini blow discs (BD-08) just above the 100A discharge section in addition to the four previously mentioned blow discs. After implementation, we followed up and there have been no troubles; it is operating smoothly. 【Overview】 ■ Product Name: Resin Powder ■ Particle Size: 10 to 1000 μm ■ Hopper Shape: Cone 1000φ ■ Discharge Diameter: 100A *For more details, please refer to the PDF materials or feel free to contact us. *Our website features many examples of implementations. You can check them from the link below.

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0397 Prevention of bridge formation of dust containing glass fibers

Prevention of dust containing glass fibers! An example of applying a blow disk to the hopper section of a dust collector.

This is a case where a blow disk was adopted for application to new equipment. The application location is the dust collector hopper section. Since the blow disk injects air along the inner surface of the hopper, it is generally the case that the effectiveness does not change significantly even if the installation position is slightly off. The key point this time is that due to the properties of the target material, the air pressure used is high, the air ON time is short, and air aeration is performed in a pulsed manner. [Overview] ■ Hopper approximate dimensions: 2000×2000 (discharge section 200×200) ■ Blow disk arrangement - 3 units per 4 sides, with 1 unit on the lower level and 2 units on the upper level per side (However, only 2 units are installed on one side due to the inspection port) - Both lower and upper levels are positioned quite low, near the discharge port * For more details, please refer to the PDF document or feel free to contact us. * Our website features numerous implementation examples. You can check them from the link below.

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