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電工鋼硅鋼片Intro of iron core of automobile driving motor。At present, the motor technology of high-speed punching of stator and rotor iron core at home and abroad has developed rapidly. With the development of stamping equipment, new equipment with high quality, high efficiency and high precision has been provided for the production of motor punching pieces of high-speed punching of stator and rotor iron core at home and abroad, which has brought the motor punching process technology. Therefore, the design technology of new technology and equipment suitable for it has become a new research topic. The simultaneous separation of stator punching groove and stator punching groove of motor high-speed punching stator rotor iron core the simultaneous cutting of air gap between rotor punching and rotor punching groove is a new technological scheme applied to high-speed punching machine. This scheme has been widely used in foreign countries and has just begun research and application in domestic motor industry. Therefore, some discussions are made to realize the design technology of this technology according to the required technological equipment.The influence of motor high-speed punching of stator and rotor iron core: the influence of motor punching process technology of motor high-speed punching of stator and rotor iron core in new product development the traditional process of motor punching in our country is two categories: double punching and single punching, which are analyzed as follows:1) the process scheme of double punching groove: this scheme has good groove shape and uniformity, few processes and few tooling, but the tooling is complex and requires high precision, good equipment conditions, long tooling manufacturing cycle and Cheng Bengao, which is only suitable for mass production and is not conducive to new product development and small batch trial production.2) single-type punching process scheme: this scheme has poor groove shape, many processes, many tooling, many equipments, simple tooling, unstable quality, long production cycle and Cheng Bengao, and is only suitable for medium and small batch production.Requirements for high-speed punching of stator and rotor iron core of motor: 1. Positioning accuracy requirements. In this technological scheme, the two composite processes of punching groove separation and punching groove cutting air gap require the same positioning Benchmark, ensuring that the concentricity of the groove shape of the stator and rotor, the outer circular dove tail groove and shaft hole is not more than 0.02mm, the positioning of the center hole meets the technical requirements of concentricity, and the joint positioning of the small side hole and the center hole meets the requirements of circumferential orientation. 2. Precision requirements of composite process. Punching and groove separation compound process: This process has Groove-shaped convex mold and incision convex mold to complete the progressive blanking process. This process first punches and then cuts to separate the fixed and rotor punching pieces. The Two convex molds act synchronously on the same center track, and the central included angle between the two convex molds is one and a half times the central included angle of the groove. This process equipment is applied to high-speed punching machines, the groove-shaped indexing accuracy is guaranteed by the CAM stepping mechanism on the equipment;Electric vehicle is an economical and clean green vehicle based on electric drive,Environment and other aspects have * competitiveness, and can conveniently use modern control technology to realize its electromechanical integration, with broad development prospects.The motor drive system of the iron core of the automobile drive motor is the power source of the electric vehicle, and is the main body and internal basis for determining various performance indexes of the automobile operation. At present, electric vehicle motors mainly include DC motors, induction motors, permanent magnet brushless motors and switched reluctance motors.Automobile drive motor iron core permanent magnet brushless motor can be divided into two categories: one is permanent magnet synchronous motor with sine wave current,The other is the BLDC motor with rectangular pulse wave current.Two kinds of motors, the rotor is magnet, the motor rotor does not need brush and excitation winding, through stator winding commutation to generate rotating torque. Because the rotor has no excitation winding, no copper consumption, small magnetic flux and very small iron consumption at low load, therefore, the permanent magnet brushless motor has a high "Power/mass" ratio and can run at high speed. At the same time, it is easy to cool down because there is no abrasion of the rotor and the stator winding is the main heat source.The characteristics of the iron core of the automobile driving motor; The permanent magnet brushless motor of the iron core of the automobile driving motor has high reliability and high output power. Compared with other motors with the same rotating speed, it has the characteristics of small volume, light weight, easy maintenance, high efficiency, high power factor, etc. The rotor has small electromagnetic time constant and good dynamic characteristics of the motor. Through adjustment and conduction angle, constant power operation can be realized, and the efficiency of the motor can also be optimized by optimizing control angle, thus obtaining wider constant power operation area and higher efficiency.Overview of motor high speed punching stator and rotor iron core
電工鋼硅鋼片:絕緣涂層狀態產品通常以兩面涂敷絕緣涂層狀態交貨,涂層種類見表 2。絕緣涂層應可耐受絕緣漆、華爾網本地變壓器油、華爾網本地機械油等介質的侵蝕。本文件規定的絕緣涂層與國內外相關技術規范規定絕緣涂層的近似對照可參見附錄 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、華爾網本地自粘接涂層的剝離強度等技術要求如有特殊要求應在訂貨時協商,并在合同中注明。7.3.2 絕緣涂層附著性根據附錄 C(無取向電工鋼絕緣涂層附著性檢測和評級方法),產品的絕緣涂層的附著性按照由高至低分為 A、華爾網本地B、華爾網本地C、華爾網本地D 四個級別。供貨時,產品涂層的附著性級別 應達到 C 級。在剪切過程和供方規定的熱處理條件下進行熱處理時,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。根據需方要求,經供需雙方協商,可進行涂層絕緣電阻的檢測,并在合同中注明涂層表面絕緣電阻或層間電阻的小值。
電工鋼硅鋼片:磁性能7.1.1 在 6.3 條件下提供的冷軋取向電工鋼的特性應符合表 3、華爾網表 4、華爾網表 5、華爾網表 6、華爾網表 7、華爾網表 8 和表 9的規定,時效試樣也應滿足這些特性。對帶有涂層的產品,絕緣涂層的質量應被計算在內。7.1.2 表 3、華爾網表 4 和表 6 中的普通型、華爾網高磁極化強度型、華爾網耐熱刻痕磁疇細化型產品的磁性能應該按 GB/T3655 測試,在測試前,試樣應在制造方提供的條件下進行應力退火(通常應力退火溫度的范圍為 800℃±20℃,退火時間為 2h,退火后隨爐冷卻);但表 5 中的非耐熱磁疇細化法(如激光刻痕)生產的產品磁性能應按照 GB/T 13789 測試,試樣在測試前不需要進行應力退火。經供需雙方協商,表 3、華爾網表 4 和表 6 中產品的磁性能也可按照 GB/T 13789 測試。7.1.3 表 7、華爾網表 8 和表 9 中各系列產品的磁性能檢測方法,按產品類型對照本文件第 7.1.2 條款的規定執行。7.1.4 在磁場強度 H = 800 A/m 條件下測試所得的磁極化強度 J800應符合表 3、華爾網表 4、華爾網表 5、華爾網表 6、華爾網表 7、華爾網表 8 和表 9 的規定,其中,同一產品按 GB/T 13789 方法所測得的磁極化強度值 J800比 GB/T 3655 方法所測得的磁極化強度值偏低。7.1.5 同一產品在磁極化強度 1.7T、華爾網同城頻率 50Hz 或 60Hz 條件下,按 GB/T 13789 方法所測得的 50Hz 和60Hz 條件下比總損耗值,參照 IEC 6040-8-7 Edition 5.0 2020-09 中規定的轉換系數 Fc=0.925 進行轉換,轉換后的 P1.7/50和 P1.7/60應符合表 3、華爾網同城表 4、華爾網同城表 5、華爾網同城表 6、華爾網同城表 7、華爾網同城表 8 和表 9 的規定
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電工鋼硅鋼片 優異的電磁性能
的設備、華爾網同城先進的制造工藝以及嚴格的管理確保了寶鋼取
向電工鋼電磁性能的優良、華爾網同城穩定。
出色的加工性能
高精度尺寸與優異的力學性能便于用戶分條、華爾網同城剪切與疊片。
卓越的尺寸精度
寶鋼先進的設備和制造技術,確保取向電工鋼良好的板形,表
面平滑、華爾網同城厚度均勻、華爾網同城同板差小、華爾網同城疊片系數高。
優良的表面涂層性能
寶鋼取向電工鋼具有均勻的表面涂層,良好的附著性,防止
加工時的涂層脫落;層間絕緣性能良好。
更多的寬度選擇
寶鋼取向電工鋼的板寬900-1200mm,用戶可以從中選擇,提
高材料的利用率。