Price:
1/5/10pcs 30x15x5 30X15X8 30X15X10 30X15X8mm 30X15X10mm Rectangle Neodymium Bar Block Strong Magnets Rare Earth MagnetsSearch Magnetic
Products Description
Dr.magnet is an established supplier of premium quality magnets that are used in some of the most demanding and critical applications such as aviation, automation, and manufacturing systems that help shape the world around you. Because we strive to only supply the highest quality magnets, our magnets are all produced in state of the art facilities that ensure a high standard of both quality and performance are met. Besides neodymium magnets which are renowned for their strength and versatility, we also carry many different kinds of magnets that are all suited for different needs. From ultra high temperature resistant Samarium-Cobalt magnets to cost-effective and ubiquitous ceramic magnets, Dr.magnet is a trusted and reliable supplier of ultra high performance magnets in an assortment of all shapes and sizes.
Material
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Neodymium (NdFeB)
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Coating
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Nickel-Copper-Nickel (Ni-Cu-Ni)
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Included Components
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Material Handling,Pulling & Lifting Equipment,industrial-rare-earth-magnets
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Max Operating Temperature
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176 F
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Product Display
Neodymium Bar Magnets
Rare earth magnets are the strongest type of permanent magnet currently made. They are amazingly powerful for their size and have innumerable uses. They are magnetized through the thickness. They are composed of neodymium iron boron magnetic material and are plated in nickel-copper-nickel for a shiny corrosion resistant finish. Maximum working temperature is 176 F (80 C).
Multi purpose
These Neodymium thin rectangular magnets provide an astonishing pull of 33lb and every magnet has a triple coating of nickel, copper and nickel again to prevent against corrosion. Our Neodymium magnets are commonly used in creative applications such as model making, theatre design, furniture making, exhibition displays and packaging. They also have many uses in engineering and manufacturing where small size and maximum strength are required. What’s more, because of their resistance to demagnetisation they are ideal for creating a shock-absorbing or damping effect when used to repel other magnets.
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