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Broad Disc Product List

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0196 Prevention of bridging in secondary battery materials

Applying a Brody disk to prevent bridging in the hopper of secondary battery material powder!

To prevent bridging of the powder in the hopper for secondary battery materials, a Brodie disk has been applied. This time, based on the user's specifications, the following materials and specifications have been changed: - Change of shaft material for the Brodie disk - Specification of the type of built-in solenoid valve in the controller (compatible with secondary batteries) - All piping joints within the controller to be made of SUS or resin 【Key Points of This Equipment】 ■ The elastic disk (silicone) is very important in terms of strength and durability, especially considering the risk of foreign material contamination. The silicone disk in this equipment is exceptionally strong and durable. We believe you will understand this once you use it! ■ Control (how to aerate?) is crucial! We provide guidance on what should be done. A dedicated controller is also available. For more details, please contact us. *We have published numerous examples on our company website. You can check them via the link below.

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0198 Stabilization of emissions equivalent to granular activated carbon.

Clear the issues with the combined effects of wall aeration and vibration!

We have adopted a Brodie disk to promote and stabilize the discharge of granular products in the silo of the water treatment plant. A total of 16 units are installed in three tiers near the discharge area: 4 in the lower tier, 4 in the middle tier, and 8 in the upper tier. The aeration (operation of the Brodie disks) is effectively carried out by dividing the 16 disks into 4 locations: 1. 4 in the lower tier, 2. 4 in the middle tier, 3. 4 out of the 8 in the upper tier, and 4. the remaining 4 in the upper tier, controlled by a timer panel and 4 external solenoid valves. 【Tank Overview】 Diameter: 3000φ Discharge diameter: 500φ 【Key Points of Our Equipment】 ■ The elastic disk (silicone) is very important in terms of the risk of foreign matter contamination, as strength and durability are crucial. Our silicone disks are exceptionally strong and durable. You will understand this once you use them! ■ 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 contact us or download the catalog to view it. *Our website features numerous implementation examples.

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0223 Prevention of Carbon Black Bridging

Easily solve powder bridges that cannot be resolved with knockers or vibrators!

We received an inquiry from a dust collector manufacturer. In planning new equipment, the user requested "as many measures as possible," and they considered the use of a Brodisk. It has now been adopted and is in operation, and we have received feedback that it has been running without any issues. We can provide clear guidance on the selection of Brodisk models, installation locations, and operating methods according to the customer's conditions. [Overview] ■ Material Name: Carbon Black (Product Name: Niteron) ■ Hopper Diameter: 1800φ ■ Hopper Discharge Diameter: 250φ * For more details, please refer to the catalog. Feel free to contact us with any inquiries. * Our website features numerous case studies, which you can check via the link below.

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0245 Installation to the hopper of the metal powder screw feeder.

Introducing a case of installation in a hopper of a screw feeder for metal powder.

In the metal powder hopper, we installed a conical shape inside to reduce the powder pressure to prevent bridging, but it did not improve. We received an inquiry about trying a Brodie disk. The customer expressed a desire to borrow it, stating, "I would like to avoid installing it suddenly (as it requires drilling a hole in the hopper), and first, I want to check the actual item." Therefore, we attached the Brodie disk to a resin plate that simulated the hopper wall and sent it. The customer connected the air and confirmed the air discharge. After embedding it in the powder inside the hopper and confirming the air discharge in that state, they decided to adopt it. Since then, they have evaluated that it is operating stably. 【Overview】 ■ Material: Metal powder (particle size: unknown) ■ Bulk density: Approximately 2.5 ■ Hopper size: 1300×2000 * For more details, please refer to the catalog or feel free to contact us. * Our website features numerous examples of implementations. You can check them from the link below.

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Example of installation in a resin powder storage bunker.

Introducing examples of continued adoption by resin material manufacturing companies.

At the resin raw material manufacturing company, to promote discharge from the bunker, a "blow disk" was adopted near the discharge outlet located at the bottom of the silo (conical part, midway). This time, we were consulted about installing this equipment in the area opposite the discharge outlet, as the powder there was not moving and was piling up like a mountain, in order to effectively utilize the bunker’s volume. We communicated that completely eliminating the pile was difficult and presented a proposal for installation. It was later decided to implement the solution, and the results have improved to a level acceptable to the customer. [Overview] ■ Material: Resin powder (prone to clumping) ■ Bunker capacity: 200m3 * 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 via the link below.

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Adopted for equipment for pharmaceutical manufacturers.

Case of Brody Disk Adopted for Solving Very Poor Fluidity Powder Bridge Issues

This is an order received from a business that manufactures hoppers and transport equipment, as specified by the end user (pharmaceutical manufacturer). The business was concerned about bridging during the hopper design due to the very poor flowability of the material (which resembles potato starch and has strong adhesion). Upon consulting with the user, it was decided to install this equipment effectively, as the user had already had experience using a BroaDisk. 【Overview of Usage Conditions】 ■ Hopper dimensions: 400×700 ■ BroaDisk arrangement: 2 BroaDisk Minis on the lower level, 2 BroaDisks on the upper level ■ Operating method (sequence): 1) Turn on both BroaDisk Minis on the lower level simultaneously 2) Turn on one BroaDisk on the upper level 3) Turn on the remaining BroaDisk on the upper level * For more details, please refer to the PDF document or feel free to contact us. * Our website features numerous case studies, which can be accessed via the link below.

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0099 Measures to prevent clogging of wet powder from the centrifuge

Case study of a blow disk adopted as a countermeasure for wet powder clogging from a centrifuge.

We introduce an example of a Brody disk that solved the clogging of dewatered cake in a vertical chute connecting a decanter-type continuous centrifuge and a subsequent dryer. The Brody disk is primarily used to address blockages and bridge rat hole phenomena in powdery materials (dry), but there are cases where it has completely resolved user issues by being used with wet powder (cake) as in this instance. Of course, not all issues are resolved, but there are cases where problems can be easily solved depending on the conditions. 【Chute Overview】 <Clogging Section> ■ Shape: Square/Round Chute ■ Dimensions: Upper 400×500, Lower 300φ, Height 300 *For more details, please refer to the PDF document or feel free to contact us. We have published numerous examples on our company website. You can check them out via the link below.

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0116 Elimination of fine powder retention in toner manufacturing equipment and dust collector hopper.

A case where the fine powder retention in the dust collector hopper of toner manufacturing equipment was resolved using a blow disc.

Jet milling - Elimination of toner fine powder residue in the dust collector hopper section of the toner manufacturing plant through air classification. Due to the very fine dust generated by fine milling and fine classification, the air knocker was not effectively preventing retention. Although it is a large hopper, eight blow discs were installed relatively close to the discharge section, and it is operating smoothly. The blow discs solve the rat hole and bridging phenomena in various powders and bulk silos and hoppers. They are easy to install and economical. 【Key Points of This Equipment】 ■ The elastic disc (silicone) is very important in terms of strength and durability, especially considering the risk of foreign matter contamination. The silicone discs of this equipment are exceptionally strong and durable. You will understand once you use it! ■ Control (how to aerate?) is crucial! We provide guidance on what should be done. A dedicated controller is also 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 through 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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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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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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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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