夹件磁屏蔽
公司主要产品:互感器铁芯、变压器叠铁芯、磁屏蔽、互感器线圈等产品。已通过ISO9001质量管理体系认证、ISO14001环境管理体系认证、OHSAS18001职业健康管理体系认证。

Product Description 产品简介:
采用0.27mm、0.3mm低铁损高导磁的冷轧取向优质硅钢材料。主要用于变压器内部,特别是夹件(如铁芯夹件、绕组支撑件等)区域,以减少漏磁通对变压器结构和周围部件的干扰,延长设备寿命。通过在高磁场区域安装导磁材料,夹件屏蔽能够有效引导和分散磁场,降低局部过热和电磁损耗,提高变压器效率。
Made of high‑quality cold‑rolled grain‑oriented silicon steel with low core loss and high magnetic permeability in thicknesses of 0.27 mm and 0.3 mm. Mainly used inside transformers, especially in clamping areas (e.g. core clamps, winding supports), to mitigate leakage flux interference with transformer structures and adjacent components and extend service life. Installed in high‑magnetic‑field regions, these magnetic clamps guide and disperse magnetic fields effectively, reducing local overheating and electromagnetic loss and improving transformer efficiency.
联系人: 姚总 +86-13584935499
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Product Description 产品简介:
采用0.27mm、0.3mm低铁损高导磁的冷轧取向优质硅钢材料。主要用于变压器内部,特别是夹件(如铁芯夹件、绕组支撑件等)区域,以减少漏磁通对变压器结构和周围部件的干扰,延长设备寿命。通过在高磁场区域安装导磁材料,夹件屏蔽能够有效引导和分散磁场,降低局部过热和电磁损耗,提高变压器效率。
Made of high‑quality cold‑rolled grain‑oriented silicon steel with low core loss and high magnetic permeability in thicknesses of 0.27 mm and 0.3 mm. Mainly used inside transformers, especially in clamping areas (e.g. core clamps, winding supports), to mitigate leakage flux interference with transformer structures and adjacent components and extend service life. Installed in high‑magnetic‑field regions, these magnetic clamps guide and disperse magnetic fields effectively, reducing local overheating and electromagnetic loss and improving transformer efficiency.
公司主要产品:互感器铁芯、变压器叠铁芯、磁屏蔽、互感器线圈等产品。已通过ISO9001质量管理体系认证、ISO14001环境管理体系认证、OHSAS18001职业健康管理体系认证。
夹件磁屏蔽
公司主要产品:互感器铁芯、变压器叠铁芯、磁屏蔽、互感器线圈等产品。已通过ISO9001质量管理体系认证、ISO14001环境管理体系认证、OHSAS18001职业健康管理体系认证。

Product Description 产品简介:
采用0.27mm、0.3mm低铁损高导磁的冷轧取向优质硅钢材料。主要用于变压器内部,特别是夹件(如铁芯夹件、绕组支撑件等)区域,以减少漏磁通对变压器结构和周围部件的干扰,延长设备寿命。通过在高磁场区域安装导磁材料,夹件屏蔽能够有效引导和分散磁场,降低局部过热和电磁损耗,提高变压器效率。
Made of high‑quality cold‑rolled grain‑oriented silicon steel with low core loss and high magnetic permeability in thicknesses of 0.27 mm and 0.3 mm. Mainly used inside transformers, especially in clamping areas (e.g. core clamps, winding supports), to mitigate leakage flux interference with transformer structures and adjacent components and extend service life. Installed in high‑magnetic‑field regions, these magnetic clamps guide and disperse magnetic fields effectively, reducing local overheating and electromagnetic loss and improving transformer efficiency.
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