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磁铁的力量:它们如何影响我们的生活

磁铁的力量虽然看起来很小,但在我们的生活中起着至关重要的作用。它以一种无声而坚定的方式影响着我们的日常生活和工作。

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How does the physical quantity inside the DC motor change during weak magnetic speed regulation?

1. During weak magnetic speed regulation, the physical quantity inside the motor changes as follows: the armature voltage decreases because the armature electromotive force decreases at this time; At this point, if the load remains constant, the current will increase. Because it is necessary to maintain the load torque unchanged.2. For constant excitation DC motor speed regulation, the higher the armature voltage, the higher the motor speed. It is a proportional relationship. For constant torque speed regulation, no further increase is allowed after the armature voltage reaches the rated value. At this point, if you want to increase the speed again, you need to weaken the magnetic field. At this time, it is a constant power speed regulation. Namely, power=speed X torque. As the speed increases, the torque decreases.The relationship between torque, current, and magnetic flux (excitation): Motor torque=armature current X magnetic flux. If the magnetic field is weak and the armature volta

13

2023-09

Introduction to the Function and Material of Magnets in Automotive Gear Position Sensors

A gear sensor, also known as a gear switch sensor, is generally equipped in an automatic transmission and is mainly used to detect gear signals. It is usually assembled from the rotor and housing, and the rotor includes a magnet part. So what role does the magnet play in it? What is the material of the magnet?Magnets mainly serve to provide a magnetic field and are mostly made of injection molded magnetic (plastic magnetic) materials. The sensor is installed on the gearbox housing, and the matched shift shaft drives the magnet to rotate together. The sensor outputs different signals through the magnetic field changes emitted by the magnet, which are fed back to the TCU.The above is an introduction to the functions and materials of magnets in automotive gear sensors. Our company is a professional supplier of motor magnets, providing processing and manufacturing of various sensors and encoder magnets. We can produce multipole magnets with various performance and materials according to cu

13

2023-09

Application of Neodymium Iron Boron Permanent Magnets in New Energy Vehicles

New energy vehicles mainly include hybrid electric vehicles and pure electric vehicles. High performance iron iron boron permanent magnet materials are mainly used in driving motors of new energy vehicles. The driving motors suitable for new energy vehicles mainly include permanent magnet synchronous motors, AC asynchronous motors, and switched reluctance motors. Among them, permanent magnet synchronous motors have become mainstream motors due to their wide speed range, high power density, small size, and high efficiency. Neodymium iron boron permanent magnets have the characteristics of high magnetic energy product, high intrinsic coercivity, and high remanence, effectively improving the power density and torque density of motors, and are widely used in permanent magnet motor rotors.EPS (Electric Power Assisted Steering System) is the component that uses the most permanent magnets besides the driving motor (0.25kg/vehicle). The micro motor used in EPS is a permanent magnet motor, whic

11

2023-09

The demand for high-performance neodymium iron boron magnetic materials in traditional automobiles

The main application of high-performance neodymium iron boron magnetic materials in traditional cars is electric power steering (EPS), which plays a crucial role in vehicle stability, comfort, and safety. Automotive power steering systems can be basically divided into three categories, namely mechanical hydraulic power steering system (HPS), electronic hydraulic power steering system (EHPS), and electric power steering system.The development of EPS steering system in China's automotive industry is slightly later than that of developed countries in Europe and America. In recent years, the penetration rate of EPS in China's passenger car market has rapidly increased, reaching 96.2% by 2020. However, the commercial vehicle steering system is still mainly composed of HPS and EHPS. Although HPS and EHPS have lower costs, they consume a lot of energy and are prone to damage. Therefore, with the increasingly strict requirements for energy conservation and emission redu

11

2023-09

New magnetic materials that can simultaneously replace some neodymium iron boron and ferrite

Significantly reducing production costs, the current price of praseodymium neodymium metal is about 1 million yuan/ton, reaching a maximum of 1.4 million yuan in the first quarter, while the price of cerium metal is only 27000 yuan/ton.The content of cerium in the crust is about 0.0046%, which is the highest abundance among rare earth elements.The new cerium magnet can fill the performance gap between high-performance magnets and ferrite in permanent magnet materials. Its performance is lower than that of neodymium iron boron, but its cost advantage is prominent. Its price is higher than that of ferrite, but its performance advantage is obvious. It can replace some neodymium iron boron and ferrite markets at the same time.We have developed a series of high abundance rare earth magnet brand products, breaking through the limitations of high abundance rare earth magnets concentrated in fields such as magnetic adsorption, magnetic separation, electric bicycles, luggage buckles, door buckl

11

2023-09

All you want to know about cutting ferrite magnets is here

1、 How is a ferrite magnet cut?Ferrite cutting and processingFerrite cutting magnets are made from block shaped rough embryos, mainly made of strontium based (Sr) ferrite (Fe2O3). The forming time is longer, but the density is higher. In theory, the larger the block material rough embryo, the better. However, due to the pressure limitations and yield improvement of the machinery itself, the largest material specification is L220xW150x25.4mmT. The ferrite permanent magnet itself can only be processed for its outer diameter and thickness, but cannot be divided. If it is divided, its original performance will change and weak magnetic phenomenon will occur. The outer diameter and thickness are mostly processed by water grinding, and the appearance will change after processing, but the original shape will not change.2、 What is the minimum size of a ferrite cutting magnet that can be machined into?With the improvement of cutting ability, the minimum size that ferrite cutting magnets can cut

11

2023-09

The induction speed of neodymium iron boron for bidirectional gate magnetic detector magnets is faster

The bidirectional door magnetic detector is suitable for preventing various doors, windows, and cabinets in homes, shops, shopping malls, and other places. It is on 24-hour alert, bringing home to a better state, safe and reassuring.So what kind of magnet is used for the bidirectional gate magnetic detector? What is the main function?Door magnet installationGate magnetic detectors usually use square magnets to generate a constant magnetic field, mainly made of ferrite and neodymium iron boron. The induction speed of strong neodymium iron boron magnets is faster!What are the main specifications of special magnets for door magnetic detectors?There are many specifications for door magnetic detector magnets, and our company can conduct sample testing according to your specific specifications and performance. Common specifications include F7 * 9 * 25, F20 * 6 * 6, F106 * 16 * 16mm, F20 * 10 * 5, F29x13x8, F64x13x13, and so on.

11

2023-09

Epoxy coated shaped magnet

The reason why neodymium iron boron undergoes demagnetization in high-temperature environments is determined by its physical structure. The reason why a general magnet can generate a magnetic field is because the electrons carried by the material itself rotate around the atoms in a certain direction, generating a certain magnetic field force, which in turn affects related affairs around it. However, there are certain temperature restrictions on the rotation of electrons around atoms in a given direction, and different magnetic materials can withstand different temperatures. In cases of excessive high temperature, electrons will deviate from their original orbits, causing chaos. At this time, the local magnetic field of the magnetic material will be disrupted, leading to demagnetization.Generally speaking, the demagnetization temperature of neodymium iron boron depends on its specific composition, magnetic field strength, and heat treatment history. Normally, the demagnetization tempera

07

2023-09

Several effective solutions for high-temperature demagnetization of neodymium iron boron magnets

1、 Do not place neodymium iron boron magnet products at excessively high temperatures, especially pay attention to their critical temperature. The critical temperature of ordinary neodymium iron boron magnets is usually around 80 degrees Celsius (176 degrees Fahrenheit). Adjusting the working environment temperature in a timely manner can minimize demagnetization phenomena.2、 Starting from technology, we aim to improve the performance of products using neodymium iron boron magnets, enabling them to have a more temperature sensitive structure and less susceptible to environmental influences.3、 You can also choose high coercivity materials with the same magnetic energy product. If that's not enough, you can only sacrifice a little magnetic energy product and find materials with higher coercivity that have a lower magnetic energy product. If that's not enough, you can choose to use samarium cobalt. As for reversible demagnetization, you can only choose samarium cobalt.PS: Each mat

07

2023-09

Several Effective Methods to Prevent High Temperature Demagnetization of NdFeB Strong Magnetism

Friends who have some knowledge of magnets know that neodymium iron boron magnets are currently recognized as high-performance and cost-effective magnet products in the magnetic material industry. Many high-tech fields have designated the use of them to make various types of spare parts, such as national defense and military, electronic technology, medical equipment, motor and electrical appliances, and other fields. The more you use, the easier it is to detect problems, and the demagnetization phenomenon of neodymium iron boron strong magnets in high-temperature environments is of great concern.Firstly, we need to know why neodymium iron boron demagnetizes in high-temperature environments?

07

2023-09
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