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陵水縣B35AH230價(jià)格直銷價(jià)格

鹿程國(guó)際貿(mào)易(阿里市分公司)

鹿程國(guó)際貿(mào)易(阿里市分公司)的誠(chéng)信、實(shí)力和 沖壓用鋼產(chǎn)品質(zhì)量獲得業(yè)界的認(rèn)可。歡迎各界朋友蒞臨參觀、指導(dǎo)和業(yè)務(wù)洽談。



電工鋼硅鋼片硅鋼是一種硅鐵合金。用硅鋼軋制的片材是電工領(lǐng)域中應(yīng)用廣的軟磁材料,因而硅鋼片又稱電工鋼片。硅鋼片廣泛用于電動(dòng)機(jī)、發(fā)電機(jī)、變壓器、扼流圈、電磁機(jī)構(gòu)、繼電器及測(cè)量?jī)x表中電機(jī)工業(yè)大量使用厚度為0.35~0.50mm的硅鋼片,用于:中型旋轉(zhuǎn)機(jī),壓縮電機(jī),通用馬達(dá),小型精密電機(jī),電動(dòng)汽車,壓縮機(jī),通用電機(jī),電源變壓器,精密變壓器,節(jié)能電機(jī),焊機(jī)變壓器,穩(wěn)壓器,磁性密封器,加速器用電磁鐵,汽車電機(jī)等;在電信高頻技術(shù)中常用0.05~0.20mm的薄帶鋼片,以便更有效地降低渦流損耗。熱軋硅鋼片厚度為0.35~0.50mm,密度為7.55~7.70g/cm3,多用于大、中、小型交、直流電動(dòng)機(jī);冷軋無(wú)取向硅鋼片厚度為0.35~0.50mm,密度為7.65~7.75g/cm3,多用于大型交流發(fā)電機(jī)、電動(dòng)機(jī),大、中、小型交、直流電動(dòng)機(jī);冷軋取向硅鋼片厚度為0.23mm 0.27mm 0.3mm 0.35mm,密度為7.65g/cm3,多用于電力變壓器、油浸式變壓器,干式變壓器,電抗器、磁放大器等;冷軋取向薄帶厚度為0.05~0.20mm,多用于無(wú)線電高頻變壓器。




電工鋼硅鋼片:絕緣涂層狀態(tài)產(chǎn)品通常以兩面涂敷絕緣涂層狀態(tài)交貨,涂層種類見表 2。絕緣涂層應(yīng)可耐受絕緣漆、西藏陵水縣本地變壓器油、西藏陵水縣本地機(jī)械油等介質(zhì)的侵蝕。本文件規(guī)定的絕緣涂層與國(guó)內(nèi)外相關(guān)技術(shù)規(guī)范規(guī)定絕緣涂層的近似對(duì)照可參見附錄 A(資料性附錄),絕緣涂層的特性見附錄 B(資料性附錄)。絕緣涂層的厚度、西藏陵水縣本地自粘接涂層的剝離強(qiáng)度等技術(shù)要求如有特殊要求應(yīng)在訂貨時(shí)協(xié)商,并在合同中注明。7.3.2 絕緣涂層附著性根據(jù)附錄 C(無(wú)取向電工鋼絕緣涂層附著性檢測(cè)和評(píng)級(jí)方法),產(chǎn)品的絕緣涂層的附著性按照由高至低分為 A、西藏陵水縣本地B、西藏陵水縣本地C、西藏陵水縣本地D 四個(gè)級(jí)別。供貨時(shí),產(chǎn)品涂層的附著性級(jí)別 應(yīng)達(dá)到 C 級(jí)。在剪切過(guò)程和供方規(guī)定的熱處理?xiàng)l件下進(jìn)行熱處理時(shí),涂層不得有大面積脫落,但是在剪切邊緣位置,涂層的輕微碎裂則允許存在。7.3.3 涂層絕緣電阻涂層絕緣電阻分為表面絕緣電阻和層間電阻,表面絕緣電阻單位為Ω·cm2/面,層間電阻單位為Ω·cm2/片,理論上,層間電阻是表面絕緣電阻的 2 倍。根據(jù)需方要求,經(jīng)供需雙方協(xié)商,可進(jìn)行涂層絕緣電阻的檢測(cè),并在合同中注明涂層表面絕緣電阻或?qū)娱g電阻的小值。




電工鋼硅鋼片Electrical steel, also known as silicon steel sheet, is an indispensable metal material in the power, electronics, and military industries, and is also the largest functional material in production. It is mainly used as the iron core for various motors, generators, and transformers. Specific total loss (iron loss) is the total power consumed per unit mass of material when the magnetic polarization waveform remains sinusoidal, with a specific peak and frequency. The specific total loss is represented by the symbol P (Jm/f), in W/kg. Example: P1.5/50 represents the specific total loss at a maximum magnetic polarization intensity of 1.5T and a frequency of 50Hz. 3.2 Magnetic Polarization Q/BQB 480-20212 Magnetic polarization intensity refers to the peak magnetic polarization intensity of a specific magnetic field intensity when a sample is subjected to alternating magnetization. Its symbol is J (H), and the unit is T (Tesla). Example: J5000 represents the peak magnetic polarization intensity corresponding to a magnetic field intensity peak of 5000A/m. The material grades in this document are classified based on the nominal maximum specific total loss P1.5/50 (W/kg) at a magnetic polarization strength of 1.5T and a frequency of 50Hz, as well as the nominal thickness of the material. They are further divided into three categories based on product characteristics: ordinary type, stress relief annealing type, and high-efficiency type. Example 1: B35A210 represents a common non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific total loss value P1.5/50 is 2.10W/kg; Example 2: B35AR300 represents a stress relieved annealed non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific total loss value P1.5/50 is 3.00W/kg; Example 3: B35AH230 represents an efficient non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.30W/kg. Example 4: 35WW210 represents a normal type WW non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.10W/kg. Example 5: 35WH230 represents an efficient WH non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.30W/kg. The classification and code of insulation coatings shall comply with the provisions of Table 2. Table 2 Classification and Code of Insulation Coatings Type Code Characteristics of Insulation Coatings Semi organic Thin Coating A Improves Punching Performance and Has Good Weldability Semi organic Thick Coating H has Good Punching Performance and High Interlayer Resistance Semi organic Chromium Free Thin Coating K does not contain chromium and has good weldability Semi organic Chromium Free Thick Coating M does not contain chromium and has good insulation performance Semi organic Chromium Free Extreme Thick Coating J does not contain chromium and has excellent insulation performance Semi organic Chromium Free Ultra Thick Coating L does not contain chromium and has extremely high insulation performance Self adhesive Coating


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