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For transporting liquid metal, should one choose a self-priming magnetic pump or an electric pump?

2022-08-17View Original

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According to technological information, the development skills of self-priming magnetic pumps have advanced by leaps and bounds in recent years. These pumps are renowned for their excellent sealing performance and stable operational structure. Here is a brief explanation and analysis regarding whether a self-priming magnetic pump or an electric pump should be chosen for transporting liquid metals: 1. An electromagnetic transfer pump is more suitable for transporting liquid metals. Although both self-priming magnetic pumps and electric pumps are types of pumps, there are significant differences between them in terms of material transportation and operational characteristics. Because electric pumps are mainly used to transport liquids or increase their pressure ; A self-priming magnetic pump is a type of chemical flow pump that utilizes permanent magnets to achieve contactless transmission; therefore, for transporting liquid metals, an electromagnetic transfer pump is a more suitable choice. 2. Adjusting the magnetic field strength can change the conveying capacity of liquid metals. Feedback from numerous manufacturers indicates that self-priming magnetic pumps can generate different magnetic field strengths by utilizing the principle that the direction of direct current is perpendicular to the direction of the magnetic field. It generates electromagnetic forces in accordance with the left-hand rule to drive the flow of the metal solution; meanwhile, the conveying strength of the liquid metal can be adjusted by changing the magnetic field strength. However, electric pumps are only suitable for applying mechanical pressure to liquids. 3. Changing the magnetic field or electrodes can alter the flow direction of the liquid metal. Through years of practical experience, Richter demonstrated that self-priming magnetic pumps are more suitable for transporting liquid metal because they can change the flow direction of the liquid metal by adjusting the magnetic field or electrodes. If the flow direction of the liquid metal deviates from the intended path, the user can directly change its flow direction by adjusting the direction of the magnetic field of the self-priming magnetic pump. According to surveys and statistics, in recent years self-priming magnetic pumps have played an increasingly important role in transporting liquid metals, which has led to more and more metal processing enterprises frequently consulting service providers for such pumps. The reason why self-priming magnetic pumps should be given priority for transporting liquid metal is that they can adjust the intensity of liquid metal transport by modifying the magnetic field strength, and can also change the direction of liquid metal flow by altering the magnetic field or electrodes. Ricite Richter

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