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Magnetic separator is suitable for re-use powder to remove iron in mitochondria, etc.
Applied materials:Magnetite, magnetic pyrite, roasted ore, titanic iron ore, hematite, limonite, siderite, wolframite, tantalum-niobium ore, red mud, quartz, fluorite and feldspar.
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CT Series Wet Magnetic Separators consist of separator drum, magnetic system, separator tank, transmission device and overflow devices for feeding and discharging. They are widely applied in magnetically separating magnetite, de-watering and de-ironing for non-metallic ores. According to different working principles, they are classified into three Kinds: current style(S), counter-current style (N) and Semi-countercurrent style (B)
1. The magnet is made from rare-earth permanent magnetic material--NdFeB; Stainless steel separator drum is covered with rubber to achieve higher separation performance; The wearable ceramic drum is optional.2. Magnetic system adjusting device can adjust magnetic angle to achieve good separation performance.3. CT series wet magnetic separators can be used singly, multiply or parallelly.4. They are suitable for rough or fine separating strong magnetic minerals smaller than 0.2mm
Magnetic separation machine can be used in the removal of the iron in the coal, non-metals and building materials, and magnetic separator is also mainly used in wet separating of the fine minerals with strong ferromagnetism. The magnetic system is made from high-quality ferrite magnetic materials or synthetic materials of rare earth and magnet steel. So it can remove the iron in the coal, non-metal and construction industries. Besides these, to different kinds of mineral ores, the application of magnetic separation machine is quite different
When the magnetic separation machine works, after the slurry is injected into the magnetic field, the strong magnetic mineral is adsorbed on the cylinder surface, the weak magnetic and non-magnetic minerals are successively excluded, the strong magnetic minerals adsorbed on the cylinder was taken out of the magnetic field with the rotation of the cylinder. Magnetic mineral particles to the magnetic system with the edge of the cylinder, under the action of the flushing water into the concentrate tank, a non-magnetic mineral particles and the magnetic particles is weak, the pulp flow in the tank to carry, and then discharge from the tailings port
Models and sizes The range of wet magnetic separators is composed of the series WS1200 with drum diameters of 1200 mm with a magnetically effective drum length up to 3678 mm in increments of 613 mm. The WS1200 series includes concurrent, counter-current and counterrotation tank designs
We have Accelerator Mineral Magnetic Separator,The rare earth magnetic separator range achieves the most effective dry separation of paramagnetic minerals at high throughput rates the range includes rare earth roll rers and rare earth drum reds separators which are available in a range of configurations and
Ball mill is the key machine to grind the crushed materials. Ball mill machine is widely used to process cement, silicate product, building material, refractory material, fertilizer, ceramics and glass, etc
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The rare earth magnetic separator range achieves the most effective dry separation of paramagnetic minerals at high throughput rates the range includes rare earth roll rers and rare earth drum reds separators which are available in a range of configurations and
Disc separators are widely used to ensure an accurate separation of materials that have varied magnetic susceptibilities induced roll separator induced roll magnetic separators are used for the continuous extraction of small magnetic particles from certain minerals to produce mineral purification for a wide range of mineral and ceramic
Magnetic separators can be found in most mineral processing operations especially those processing nonmetallic minerals and magnetic ores this article investigates the use of high intensity magnetic separators and magnetic separation equipment in the minerals sector with a focus on processing dry materials in the 15mm 45 micron size range
Since the development of magnetic separators in the last century, magnetic separation has been regarded as an effective method for mineral recovery. With the continuous development of new machines and the continuous improvement of performance, we can now say with certainty that magnetic separation is highly accurate
The choice of magnetic separator depends on a variety of considerations, the most important of which is the particle size distribution, the magnetic performance distribution of the particles to be separated from each other, and the required machine output.The selected magnetic separator must be suitable for the purpose of use and have sufficient capacity. In order to select the most suitable separator, when inquiring about the separator, conditions like purpose of use, material grain are important to our engineer, as detailed below:●Usage (improving purity, collecting valuable magnetic minerals, etc.)●Type, composition of raw materials●Raw material granularity●Moisture content● bulk density●Type, shape and particle size of mixed magnetic substance●The amount of raw materials processed per hour (kg/h, m3/h)●Other special conditions
Dry low-intensity magnetic separatorThere are two types of dry low-intensity magnetic separator1. Use suspended magnets, magnetic pulleys and plate, and grate magnets to remove iron and strong magnetic impurities2. The magnetic drum is mainly used to concentrate the valuable components of strong magnetism
Wet low-intensity magnetic separatorsDrum magnetic separator is currently the most commonly used wet low-intensity magnetic separator. With the advent of ferrite permanent magnets, the concept of electromagnetic drums has been almost completely replaced by permanent magnet-based components. This type of magnetic separator is mainly used for the recovery of heavy media, such as the recovery of magnetite or ferrosilicon used in the separation of heavy media.Concentration of ferromagnetic ores (such as magnetite) is another application of drum magnetic separators. The availability of rare-earth permanent magnetic materials and their ever-increasing availability further expand the applicability of cylindrical magnetic separators to media and even weak magnetic materials.Dry high-intensity magnetic separatorsThe mineral industry has always had a great demand for beneficiation equipment capable of performing coarse and weak magnetic minerals.The development of permanent magnetic materials and the improvement of their magnetic properties are undoubtedly one of the main driving forces for the progress of dry magnetic separation technology
The magnetic force generated by the magnetic roller separator constructed with the rare earth permanent magnet material exceeds the magnetic force generated by the electromagnetic high-strength magnetic separator.Although the rare earth permanent magnetic field cannot be changed easily, we can optimize the configuration of this type of magnetic roller by reasonably selecting permanent magnetic materials, so as to design a magnetic separator for processing materials of different sizes and different magnetic susceptibility distributions.Wet high-intensity high-gradient magnetic separatorsContinuous wet high-strength high-gradient magnetic separators (WHIMS or HGMS) are designed and manufactured to recover materials that were previously considered to be too fine and too magnetically weak, which greatly expanded the applicability of magnetic separation.Kaolin purification, beneficiation of very weakly magnetic iron ore, titanium oxides, and beach sand are examples of successful applications of high-strength and high-gradient magnetic separators
High gradient magnetic separatorThe high gradient magnetic separator greatly increases the types of optional minerals and widens the upper and lower particle size limits.Handle occasions where the content of magnetic materials is extremely low and the particle size is very thin. The high-gradient magnetic separator effectively improves the separation rate and recovers valuable minerals, which not only saves a lot of water resources, but also improves the concentration of concentrate slurry and simplifies the process flow
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