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Magnetic Separator Machine

Magnetic Separator Machine

Magnetic Separator Machines are devices that use magnetic forces to separate and remove unwanted materials from a product stream.

Xi'an Grand Harvest Equipment Co., Ltd. : Your Professional Magnetic Separator Machine Manufacturer!

 

BSGH Granulator is a professional waste recycling machine manufacturing company that has been engaged in the field of waste recycling for more than 25 years. Our company not only adopts cutting-edge separation technology, but also has a excellent product system that can solve all your problems in the field of waste recycling.

 

Our company is located in Taizhou, Zhejiang Province, with a factory area of more than 60,000 square meters and more than 500 outstanding employees. It is one of the best waste recycling machine manufacturing companies in China. The machines of our company are very popular in China, occupying 70% of the Chinese market. Moreover, we have customers from all over the world, with a repurchase rate of over 60%.

 

High Quality
Our machine parts are made of high-quality materials during the production process. The blades of the machine's crusher are made of stainless steel blades that are wear-resistant, high toughness, and corrosion-resistant, ensuring that the machine does not need to replace the blades within one year.

 

Advanced Technology
The R&D department of our company has been developing and making breakthroughs in new technologies. Our latest double separation technology is used in various medium and large cable granulator machines. It can separate the copper wire more thoroughly and process your cables more efficiently and quickly.

 

Complete Service
Our company has a perfect service system. Whether it is understanding customer needs before sales, recommending the most suitable cable granulator machine to customers, or explaining installation methods and maintenance knowledge to customers after the machine is delivered, we have professional business personnel to serve you.

 

Market Validation
Our cable granulator machine has been produced and sold in China for more than 20 years. It has become the best-selling cable granulator machine in China, occupying 70% of the market. Our machines are reliable and high-quality machines that have been proven in the market. After purchasing the cable granulator machine, our customers can recover the machine cost and start making a profit in just one year at most.

 

Electrostatic Separators

Electrostatic Separators

Electrostatic separators, critical devices in the recycling industry and mineral processing, harness the power of electric fields to separate materials according to their electrical properties. As material particles pass through these separators, they become electrically charged due to the influence of a high-voltage electric field. The degree of charging varies depending upon the properties of the material. Consequently, this variation in charging is exploited to achieve separation.

Electrostatic Separator Machine

Electrostatic Separator Machine

An Electrostatic Separator Machine is an advanced piece of recycling equipment. It uses the principle of electrostatic charging to divide mixed materials into their individual components. Typical examples include separating mixed plastics or separating minerals from each other. At its core, an Electrostatic Separator Machine works based on the principle of different materials having distinct reactions to electric fields. When a mixture enters the Electrostatic Separator Machine, it's exposed to an electric field. Each material in the mixture responds differently; some will be attracted, some repelled, while others remain unaffected. By harnessing these varying reactions, the separation machine can effectively segregate individual components.

Hydraulic Metal Shear

Hydraulic Metal Shear

A Hydraulic Metal Shear is a specialized piece of equipment designed to cut metal plates with precision. It operates by using a moving upper blade and a fixed lower blade to apply a shearing force to metal plates of varying thicknesses. This process results in the separation of the metal plates into desired sizes, achieved by utilizing an appropriate blade clearance. This machine is widely utilized in various industries due to its precision, efficiency, and ability to handle different thicknesses of metal materials.

Blade Sharpening Machine

Blades Sharpening Machine

Blade Sharpening Machine Feasures
1.Small and beautiful surface.
2.Assemble with our cable granulator recycling plant.
3.Easy operate and high efficiency.

electrostatic separator

Big Electrostatic Separator

Big Electrostatic Separator Features:
1.Big electrostatic separating machine processing capacity is 200-300KG/H.
2.Including dust collection parts, feeding hole, one plastic outlet and one copper outlet,very unique structure.

Feeding Hopper For Cable Granulator

Feeding Hopper For Cable Granulator

BSGH manufacturer is a professional copper recycling machine provider in China, and we provide you with high-quality copper recycling machines and the best services.Feeding hopper machine mainly is assembled with our copper wire granulator machine for easy recycling of copper from scrap wire cables;

ACSR Wire Chopper Recycling

ACSR Wire Chopper Recycling

BSGH is a professional ACSR wire chopper machinery manufacturer, produces all kinds of ACSR cable chopper recycling machines, besides ACSR wire stripper machines, ACSR recycling plant wire chopping, and separating machines.

Steel Bar Crushing Machine

Steel Bar Crushing Machine

1. BSGH factory direct sales steel bar crushing recycling machine;
2. Light-weight, high working efficiency, and strong reliability;
3. High degree of automation, reducing labor intensity and saving labor costs;

Electric Hammer

Electric Hammer

1. Industrial quality, all-steel forging, durable, high hardness and high wear resistance;
2. Can be used for recycling and dismantling, high efficiency, saving time and effort;

 

What Is Magnetic Separator Machine?

 

Magnetic Separator Machines are devices that use magnetic forces to separate and remove unwanted materials from a product stream. They are commonly used in industries such as mining, food and beverage, pharmaceuticals, plastics, and recycling. Magnetic Separator Machines work by creating a magnetic field that attracts and separates magnetic materials from non-magnetic materials. The effectiveness of Magnetic Separator Machines depends on the strength of the magnetic field, the distance between the magnetic field source and the materials being separated, and the properties of the materials themselves. Magnetic Separator Machines come in various types, each designed for specific applications and material properties.

 

Advantages of Magnetic Separator Machine
 

Efficient Separation
Magnetic Separator Machines are highly efficient in separating ferrous materials from non-ferrous ones. They can remove even the smallest ferrous particles from a material stream, making them an excellent choice for industries where product purity is critical.

 

Low Maintenance
Magnetic Separator Machines are relatively low maintenance. Once installed, they require minimal upkeep, and their operational costs are minimal.

 

Versatility
Magnetic Separator Machines are versatile and can be used in a variety of applications, including the separation of ferrous materials from liquids, solids, or gases. They can also be used to remove unwanted magnetic particles from products such as pharmaceuticals, chemicals, and foodstuffs.

 

Cost-Effective
Magnetic Separator Machines are cost-effective because they require minimal power to operate and have a long service life. They also eliminate the need for expensive filter media, reducing operational costs.

 

Environmentally Friendly
Magnetic Separator Machines are environmentally friendly because they do not generate any waste or emissions. They are also easy to clean and maintain, reducing the risk of spills and contamination.

 

Factors to Consider When Choosing a Magnetic Separator Machine
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Magnetic Separator Machines play a pivotal role in ensuring the integrity of final products and protecting equipment by effectively removing ferrous contaminants from raw materials. Here are key considerations to keep in mind when selecting the right Magnetic Separator Machine for your manufacturing needs.

 

Application-Specific Requirements
Understanding the unique needs of your manufacturing process is the first step. Different industries and applications require specific types of Magnetic Separator Machines. Whether you are in food processing, mining, recycling, or pharmaceuticals, identifying the contaminants and understanding the material characteristics are crucial in choosing the right solution. Some Magnetic Separator Machines are installed in food products to ensure final product does not have contaminants. Other magnets are installed upstream of other expensive equipment to protect from damage that would be caused by tramp metal.

 

Type of Magnetic Separator Machine
There are various types of Magnetic Separator Machines, each designed for specific applications. Consider whether a drawer magnet, suspended magnet, magnetic pulley, plate magnet, or magnetic drum is the most suitable for your manufacturing setup. Each type comes with its advantages and is tailored to different separation challenges.

 

Magnetic Strength and Configuration
The strength of the magnetic field is a critical factor in the efficiency of a Magnetic Separator Machine. The most common magnetic materials used are Ceramic and Rare Earth Neodymium-Iron-Boron permanent magnets. While Ceramic magnets are more affordable and can capture larger metals such as nuts, bolts and nails they are larger and heavier. Rare Earth magnets are much stronger and can even retain smaller metal shavings, dust sized particles and weakly magnetic metals. Consider the strength required to effectively capture and remove ferrous contaminants from your material. Additionally, understand the configuration of the magnetic field, as it influences the separation efficiency and performance. The closer you can get your product to the magnet surface the more effective the magnet will be.

 

Material Flow and Conveyor Speed
The speed at which material moves through the Magnetic Separator Machine and the configuration of your conveyor system are vital considerations. The material flow rate and conveyor speed impact the effectiveness of the magnetic separation process. The longer the product is in the magnetic field the better chance you have of efficiently capturing any metal. Ensure that the Magnetic Separator Machine is optimized for your specific production rates and conveyor design.

 

Ease of Cleaning and Maintenance
Efficient maintenance is crucial for uninterrupted manufacturing processes. Consider the ease of cleaning and maintenance when choosing a Magnetic Separator Machine. Once the magnet has extracted the metal, it will need to be periodically cleaned. Manual cleaning may be sufficient for your operation, or automatically self-cleaning may be desired to reduce the amount of operator intervention required, which can reduce downtime, ensure operator safety and make cleaning easier. In order to ensure proper function, the magnet must be regularly cleaned. To clean most magnets the product flow typically has to be terminated. For continuous operations, a Rotating Drum Magnet, Suspended Magnet or Head Pulley Magnet should be considered as they are continuously automatically self-cleaning.

 

Material Characteristics
Different materials have different flow characteristics. Ensure that the Magnetic Separator Machine you choose is compatible with the materials in your manufacturing process. Factors such as particle size, moisture content, and material density can influence the performance of the Magnetic Separator Machine. This is why it will be imperative to supply the correct material properties when designing the Magnetic Separator Machine.

 

Magnet Location
The location of a magnet in the process is a critical factor. Magnets can be located essentially anywhere in the facility to serve different purposes. Many people use a magnet at the first inlet to remove tramp metal. This is a great way to protect your equipment from unforeseen costs of tramp metal damage. Magnets are located in the middle of the process flow as well, potentially directly upstream of a key piece of equipment for extra protection. Magnets are also located at the end of the process flow to provide a final layer of protection on final products.

 

Budget and Total Cost of Ownership
While the initial cost of a Magnetic Separator Machine is a consideration, it's essential to evaluate the total cost of ownership including the savings from preventing an unseen metal problems. Consider factors such as maintenance costs, and the impact on overall production efficiency. A well-informed investment may result in long-term cost savings and improved operational performance. A major return on investment for a magnet is the damage that it prevents from happening. Keeping downstream equipment safe from tramp metal can save on repairs and downtime. Magnetic separation equipment also serves as an insurance to protect you from rejects and recalls due to metal contamination in the final product.

 

 
Frequently Asked Questions

 

Q: What is Magnetic Separator Machine?

A: Magnetic Separator Machines are essential tools designed to isolate and remove metallic impurities from a diverse range of substances in the expansive field of material handling and processing. These devices harness the power of magnetic force to extract metal contamination from products and where applicable, prolong the processing equipment's lifespan as well. The fundamental principle behind magnetic separation is straightforward, yet its implications for industries such as recycling, mining, pharmaceuticals, and food production are profound. The efficiency and effectiveness of Magnetic Separator Machines depend mainly on selecting the appropriate type and configuration for the specific application.

Q: How do Magnetic Separator Machines work?

A: Different industries utilize different types of magnetic separation equipment. Because of the variables between types, there is no one set way for how all they all operate. For example, pulley magnets are installed under a conveyor belt and retain the tramp metal contaminants until the belt reaches a point where the metal is no longer retained by the magnetic field, and so it drops off. Suspension or overbelt magnets are installed above product lines and extract the metal pieces from the product on the conveyor below. Grate and other inline magnets have direct contact with the product as it flows past, and retain the metal on the magnets until cleaned by an operator. Some magnets sit stationary and others move continuously. Some magnets require manual cleaning by an operator, others have a self-cleaning operation.

Q: How is a Magnetic Separator Machine used?

A: A Magnetic Separator Machine consists of a powerful magnet that is placed or suspended from a ceiling or device. Materials can be passed over a table top Magnetic Separator Machine, while suspended Magnetic Separator Machines often hang over a material to remove its impurities. Magnetic Separator Machines can also be cylinders through which objects pass. The material that purifies a Magnetic Separator Machine can be in the form of parts, a finished product or even a liquid metal. With this, a Magnetic Separator Machine is characterized by:
To be an excellent machine to separate magnetic materials from concentrates.
Removes natural magnetic minerals such as magnetite, as well as steel filings from metal processing material and iron particles.
Remove magnetic like gold concentrates, because it allows gold to recover much more easily.

Q: What are advantages of a Magnetic Separator Machine?

A: Magnetic Separator Machines are powerful, portable and can be adjusted to remove various types of magnetic materials from a liquid or solid. They are most effective when used in a liquid, although it is also possible to remove solid impurities. Magnetic Separator Machines are very versatile and incredibly simple in design. In fact, a basic Magnetic Separator Machine can be built at any time, using only a powerful magnet such as neodymium magnets and a clamp to hold the material down.

Q: What are the limitations of Magnetic Separator Machine?

A: The main limitation of a Magnetic Separator Machine is that it must be constantly maintained. The Magnetic Separator Machine should be washed or cleaned to remove accumulated magnetic materials, while oil should be added to moving parts. In the case of an electromagnetic separator, the electromagnets must be able to be switched off at any time in case of emergency.

Q: What are principles of Magnetic Separation?

A: Materials can be classified into three categories based on their magnetic properties: Paramagnetic, diamagnetic, and ferromagnetic. Paramagnetic materials are attracted to a magnetic field, while diamagnetic materials are repelled. Ferromagnetic materials, on the other hand, exhibit strong magnetic properties and can be easily separated using Magnetic Separator Machines.

Q: What are applications of Magnetic Separator Machine?

A: Mining and Mineral Processing: Magnetic Separator Machines are essential for the efficient extraction of valuable minerals from ores.
Recycling: Magnetic separation is used to remove ferrous materials from mixed waste streams, improving the quality of recycled products.
Food Processing: Magnetic Separator Machines help ensure the purity and safety of food products by removing ferromagnetic contaminants.
Pharmaceutical and Chemical Industries: Magnetic separation is used to remove impurities and contaminants from raw materials, enhancing product quality and safety.

Q: What are types of Magnetic Separator Machines?

A: Overband Magnetic Separator Machines: Commonly used in recycling plants, these separator machines use a magnetic field to extract ferromagnetic materials from a conveyor belt.
Drum Magnetic Separator Machines: Used in mining and mineral processing, drum separator machines consist of a rotating drum with a fixed magnet inside. Ferromagnetic materials are attracted to the magnet and separated from non-magnetic materials.
Plate Magnetic Separator Machines: Installed in chutes or ducts, plate magnets are used to remove ferromagnetic materials from free-flowing materials such as grains or liquids.
Eddy Current Magnetic Separator Machines: Primarily used for recycling, eddy current separators generate a rapidly changing magnetic field that separates non-ferrous metals from other materials.

Q: What are factors to consider when selecting Magnetic Separator Machines?

A: Several factors influence the selection of Magnetic Separator Machines. The key considerations include the nature of the material to be processed, the degree of magnetic susceptibility of the contaminants, the operating environment, and the desired level of purity post-separation. Evaluating these factors will help to choose the most effective Magnetic Separator Machine for any specific application.

Q: What are challenges in using Magnetic Separator Machines?

A: Despite their numerous benefits, using Magnetic Separator Machines can pose some challenges. For instance, while these devices are highly effective in removing ferrous contaminants, they may not be as efficient in separating non-ferrous metals or paramagnetic materials. This limitation can be addressed by combining Magnetic Separator Machines with other separation technologies. Additionally, the initial cost of purchasing and installing these separators can be high, but these costs are often offset by the long-term benefits of improved product quality and reduced machinery damage.

Q: What substances do Magnetic Separator Machines typically protect?

A: Magnetic Separator Machines are effective in any sector which has risk of ferrous particle ingress. Safety critical processes such as food, pharmaceuticals and chemicals use both primary and secondary separators to protect powders, granulates and liquids.

Q: Where can Magnetic Separator Machines be installed?

A: Magnetic Separator Machines are ideal for many different installation points on gravity, free-fall, pneumatic, pumped or conveyor feed processing lines. Either at raw materials intake to check incoming ingredients, mid-production at HACCP points or protecting finished product at the end of the process on bulk discharge. Typical installation points include gravity-fed chutes, pre and post sifting, bulk tanker discharge, ingredient sieving, pre and post mixers, vacuum or pneumatically lines, grain tips, sack rip and tip stations, above or below transfer conveyors or vibratory feeders.

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