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A Deep Dive into Remanence, Coercivity, Intrinsic Coercivity and Maximum Energy Product through Hysteresis Loop

Understanding the properties of permanent magnetic materials like Neodymium Iron Boron (NdFeB) is critical to their use in a variety of applications. These properties are typically quantified by four key parameters: remanence (Br), coercivity (Hcb), intrinsic coercivity (Hcj), and maximum energy product (BH(max)). To truly grasp these indicators, we need to understand the demagnetization curve – a tool that effectively reflects the overall performance of a magnet. Understanding the properties of permanent magnetic materials like Neodymium Iron Boron (NdFeB) is

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Comprehensive Guide to Neodymium Magnet Grades: Power, Versatility, and Applications

Neodymium magnets, also known as NdFeB magnets, are a powerful and versatile class of permanent magnets. They have become an essential component in a myriad of industries, from consumer electronics to renewable energy. In this article, we’ll explore the different Neodymium magnet grades, their unique properties, and how to choose the right grade for your application. We’ll also discuss the impact of temperature on their performance, ensuring you have the knowledge to make informed decisions about your magnetic needs. The

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Preventing Corrosion: The Essential Guide to Neodymium Magnet Coating/Plating

Neodymium Iron Boron (NdFeB) magnets necessitate the use of a protective layer or surface treatment to guard against potential damage from corrosion. Exposure to atmospheric moisture alone can lead to signs of corrosion in an uncoated NdFeB magnet. Moreover, these magnets are exceptionally susceptible to corrosion in marine environments. Corrosion in these magnets, akin to rusting, results in an irreversible alteration of their structure. This leads to a gradual decline in their magnetic capabilities, causing the magnet to weaken over

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Neodymium Magnet Safety and Handling Tips

Neodymium magnets are the strongest permanent magnets we sell and the surprisingly strong force between them may cause serious personal injuries, as well as to the magnets themselves. Reviewing this checklist to help customers handle these magnets properly is strongly recommended. Powerful attraction forces can cause serious injury. Never put your fingers or any other body parts between two magnets. Neodymium magnets will slam together from several inches to feet apart, the huge impact may cause the body to pinch,

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