(完整版)锂电池英文生产流程

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锂电行业工序中英名称对照

锂电行业工序中英名称对照

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编号
Manufacturing Dept. Engineering Dept. Warehouse Woman's Dressing Rm. Man's Dressing Rm. Air Shower Rm. Anode Slurry Mixing Cathode Slurry Mixing Cathode Slurry Mixing Coating Coating Anode Rolling Cathode Rolling Anode Die Cutting Cathode Die Cutting Electrode Assembling Heat Sealing Electrolyte Injection Aging Room Capacity Grading Battery Formation Capacity Grading Instruments Battery Formation Instruments Pouch Cell Sealing Electrolyte Injection Pouch Cell Packing Warehouse Battery Packing Workshop Electrolyte Storage Rm. Warehouse Equipment Repair Rm. Dehumidification Equipments Gas Source Rm. Rest Room Performance Testing System R&D Rm. 这个牌子给技术部办公楼用
名称 制造部 设备部 综合仓库 女更衣室 男更衣室 风淋室 负极和浆 正极和浆 油系搅拌 油系涂布 涂布 负极辊压 正极辊压 负极制片 正极制片 叠片 热封 注液1 老化 分容 化成 分容机柜 化成机柜 封装 注液2 包装 半成品仓库 Pack间 电解液房 原材料仓库 机修间 空调除湿机房 三气机房 休息室 综合检测 系统研发

圆筒形锂电池生产工艺流程英语

圆筒形锂电池生产工艺流程英语

圆筒形锂电池生产工艺流程英语Cylindrical Lithium-Ion Battery Production Process.Cylindrical lithium-ion batteries are a common type of battery used in various electronic devices, such as laptops, smartphones, and power tools. The production process of cylindrical lithium-ion batteries involves several key steps:1. Raw Material Preparation.The first step in the production process is the preparation of the raw materials. The main raw materials used in the production of cylindrical lithium-ion batteries are lithium, cobalt, nickel, manganese, and aluminum. These materials are obtained from various sources and are processed to meet the required specifications.2. Cathode and Anode Production.The cathode and anode are the two electrodes of a lithium-ion battery. The cathode is typically made of a lithium-metal oxide compound, such as lithium cobalt oxide (LiCoO2) or lithium nickel manganese cobalt oxide (NMC). The anode is typically made of a carbon-based material, such as graphite or silicon.The cathode and anode materials are synthesized through a series of chemical processes. The cathode material is typically synthesized by mixing lithium salts with metal salts and then heating the mixture at high temperatures. The anode material is typically synthesized by mixing carbon precursors with a binder and then heating the mixture at high temperatures.3. Electrode Coating.Once the cathode and anode materials have been synthesized, they are coated onto metal current collectors. The current collectors are typically made of aluminum or copper. The cathode material is coated onto the positive current collector, and the anode material is coated ontothe negative current collector.The electrode coating process is typically carried out using a slurry method. The cathode or anode material is mixed with a solvent and a binder to form a slurry. The slurry is then coated onto the current collector using a doctor blade or a slot die coater.4. Electrode Drying and Calendering.After the electrodes have been coated, they are dried to remove the solvent. The electrodes are then calendered to improve their density and electrical conductivity. Calendering is a process in which the electrodes are passed through a series of rollers under pressure.5. Cell Assembly.The next step in the production process is the cell assembly. The cell assembly process involves stacking the electrodes together with a separator between them. The separator is a porous material that prevents the electrodesfrom making contact with each other and causing a short circuit.The electrodes and separator are typically stacked together in a winding machine. The winding machine rolls the electrodes and separator into a cylindrical shape.6. Cell Formation.Once the cells have been assembled, they are subjected to a formation process. The formation process involves charging and discharging the cells several times under controlled conditions. The formation process helps to stabilize the electrochemical reactions within the cells and improve their performance.7. Cell Testing.After the cells have been formed, they are tested to ensure that they meet the required specifications. The cells are tested for capacity, voltage, and internal resistance. The cells that do not meet the specificationsare rejected.8. Cell Packaging.The final step in the production process is the cell packaging. The cells are typically packaged in a metal can or a plastic pouch. The packaging protects the cells from the environment and prevents them from being damaged.The cylindrical lithium-ion battery production process is a complex and multi-step process. The quality of the batteries depends on the quality of the raw materials, the precision of the manufacturing processes, and the quality control procedures.。

锂电池生产工艺流程

锂电池生产工艺流程
制造工艺分类
Li离子电芯核心制造工艺分为:
叠片工艺和卷绕工艺
两种工艺的主要区别和工艺名称来源
极片装配方式的区别
Part A:叠片工艺的主要工艺流程介绍
叠片工艺的定义
叠片工艺是将正极、负极切成小片与隔离膜叠合成小电芯单体,然后将 小电芯单体叠放并联起来组成一个大电芯的一种Li离子电芯制造工艺。
正极
预化流程:
0.02C CC 210min to 3.4V; 0.1C CC 420min to 3.95V
叠片工艺的主要工艺流程 --- Forming
Forming(成型)
工序功能:将电芯外型作最后加工
Baking
高温老化
Degassing
释放化成产生的气体
切边
切去气袋和多余的 侧边
折边
将侧边折起,完成 电芯最终外形
冷压 (Cold Lam)
注液 ( Inject)
顶封 ( Top sealing)
卷绕 (Winding)
化成 ( Formation)
成型 ( Forming)
测试
裁片分条 ( Slitting )
焊接 ( Welding)
卷绕工艺的主要工艺流程
---物料形态流程图
卷绕工艺的主要工艺流程 ---Mixing
叠片工艺的主要工艺流程
---Mixing
叠片工艺的主要工艺流程
---Coating
Coating (涂布)
工序功能:将浆料连续、均匀地涂覆在传送集流体的表面,烘干,分别 制成正负极片。
原理:涂辊转动带动浆料,通过调整刮刀
间隙来调节浆料转移量,并利用背辊或涂辊的 转动将浆料转移到基材上,按工艺要求,控制 涂布层的厚度以达到重量要求,同时,通过干 燥加热除去平铺于基材上的浆料中的溶剂,使 固体物质很好地粘结于基材上。

锂电车间工序名称翻译

锂电车间工序名称翻译

锂电车间工序名称翻译锂电生产车间工序名称英文翻译正极搅拌 Cathode mixing负极搅拌 Anode mixing涂布车间 coating workshop正极涂布 Cathode coating负极涂布 Anode Coating辊压车间 Roll workshop正极辊压 Cathode roll负极辊压 anode roll成品仓库 Finished product warehouse 激光点焊室 laser welding room烘烤室 Baking Room化成室 Kasei Room分容室 Sub-capacity Room生产部 Production Department品质部 Quality Department技术研发部 technology room试验室 Laboratory装配车间 Assembly shop注液室 injecting electrolyte room封口室 sealing room培训室 Training room采购部 Purchasing Department设备管理部 equipment department高压危险 High-voltage danger节约用水 economize for water节药用电economize for electricity卫生间 toilet男更衣室change room for men女更衣室change room for women正极点焊 Cathode Welding负极点焊 Anode Welding正极贴胶Cathode Sticking Tape负极压极耳Anode Tab Pressing正极压极耳Cathode Tab Pressing负极压极耳Anode Tab Pressing正极压极耳Cathode Tab Pressing正极折极耳 Cathode Folding负极折极耳 Anode Folding负极刷粉Anode Cleaning正极刷粉 Cathode Cleaning备胶 Preparing Tape卷绕 Winding冷压 Cold Pressing平压测短路 Short T esting分切 Slitting冲压成型Press for Forming剪极耳 Tab Cutting裁极耳 Tab Shearing断切隔膜 Separator Cutting贴PET膜 PET Sticking切边 Side Cutting热压 Hot Pressing检验合格区 Qualified Area断切 Cutting顶侧封 T op--side Sealing极耳测测短路Tap Short Circuit Testing 贴保护膜 Film Sticking 套PET膜 PET-Wrapping扩口 Opening装篮 Installing注液 Injecting Electrolyte静置 Standb真空封装 Vaccum Sealing二次封装 Second Sealing切边 Side Cutting切极耳 Tab Cutting点焊 Welding贴顶侧封胶Sticking Top Tape 折边 Folding烫边 Smothing备料 Material Prepairing压边 Side Pressing极耳放置区 Tab Area拉力测试 Power Testing首件The First Prduct首检 The First Ispection自动切边 Auto Cutting擦边 Sidewipe刮边 Scraping Film贴双面胶 Sticking Double-Tape 检外观 Appearance Inspection 测电阻 Impedance Check测电压 Valtage Check卡厚 Measure Thickness卡宽 Measure Width喷码 Spouting测内阻 Resistance Check撕膜 Separator Tearing卡长 Measure Length包胶 Sticking Tape备胶 Prepairing Tape套热缩管 Tube Setting复检工位 Recheck标准工位 Standard Operate半自动卷绕 Half-auto Winding电芯全检 Full Check压芯 Cell Pressing包底胶Sticking Bottom Tape包上胶Sticking Top Tape上隔圈Separator Ring Installing入壳、测短路 Short Testing点负极盖板Welding Anode Board 点正极盖板Welding Cathode Board 离芯 Cell Disjoining。

锂电池组生产流程

锂电池组生产流程

锂电池组生产流程The production process of lithium battery packs involves several key steps that are essential for ensuring a high quality and reliable product. From the initial design and engineering phase to the final assembly and testing, each step plays a crucial role in the overall performance of the battery pack.锂电池组的生产流程涉及几个关键步骤,这些步骤对确保产品具有高质量和可靠性至关重要。

从最初的设计和工程阶段到最终的组装和测试,每个步骤在整个电池组的性能中发挥着至关重要的作用。

One of the first steps in the production process is the design phase, where engineers work on creating a blueprint for the battery pack. This involves determining the size, shape, and layout of the battery cells, as well as the overall packaging and connection scheme. It is crucial to ensure that the design meets the specifications and requirements of the customer, as well as any safety and performance standards that may apply.生产过程中的第一步是设计阶段,工程师们在这个阶段致力于为电池组创建蓝图。

锂电工艺流程英语

锂电工艺流程英语

锂电工艺流程英语Lithium-ion batteries, commonly referred to as Li-ion batteries, have revolutionized the energy storage industry, powering our portable electronics, electric vehicles, and even grid-scale energy storage systems. The manufacturing process of these batteries involves several complex steps, each requiring precision and expertise. In this comprehensive guide, we'll explore the English terminology and steps involved in the Lithium-ion battery manufacturing process.**1. Material Preparation**The first step in the Lithium-ion battery manufacturing process is the preparation of raw materials. This involves selecting high-quality cathode and anode active materials, as well as suitable electrolytes and separators. The cathode and anode materials are typically composed of lithium compounds and carbon-based materials, respectively. **2. Electrode Fabrication**Once the raw materials are prepared, the next step is to fabricate the electrodes. This involves mixing theactive materials with binders and conductive additives, and then coating them onto a metal current collector. The most common metal current collectors are aluminum for the cathode and copper for the anode.**3. Electrode Drying and Cutting**After coating, the electrodes undergo a drying process to remove any moisture. Once dry, they are cut into the desired shape and size, ready for the next step in the manufacturing process.**4. Cell Assembly**Cell assembly is a crucial step, where the electrodes, electrolyte, and separator are combined to form the battery cell. The separator, typically made of porous polypropylene or polyethylene, is placed between the cathode and anode to prevent direct contact and thus, short-circuiting. The electrolyte, which is a liquid or solid material, is then added to facilitate the movement of ions between the electrodes.**5. Welding and Sealing**After assembly, the cell is sealed and welded to ensure its structural integrity and prevent leakage of the electrolyte. This step is crucial for ensuring the safety and performance of the battery.**6. Formation and Testing**The formed battery cell is then subjected to a formation process, which involves charging and discharging the cell to activate it. Following formation, the cell is tested to ensure its performance meets specifications. This testing may include capacity testing, internal resistance testing, and cycling tests.**7. Packaging and Final Testing**Once the individual cells are tested and approved, they are packaged into the final battery pack. This packaging may include additional safety features such as thermal cut-off devices and fuses. The final battery pack is then tested again to ensure it meets the required performance and safety standards.**8. Quality Control and Shipping**Quality control is an ongoing process throughout the manufacturing process. However, a final inspection is conducted before the batteries are shipped to customers. This inspection ensures that each battery meets therequired specifications and is safe for use.In conclusion, the Lithium-ion battery manufacturing process is a complex and meticulous procedure, requiring precision and expertise. Understanding the terminology and steps involved in this process is crucial for ensuring the safety, performance, and reliability of the final product. As the demand for Lithium-ion batteries continues to grow, so does the importance of understanding and improving their manufacturing processes.**锂电池生产工艺流程详解**锂电池,特别是锂离子电池(Li-ion),已彻底改变了储能行业,为便携式电子设备、电动汽车甚至电网级储能系统提供了动力。

锂离子电池组pack得生产工艺流程

锂离子电池组pack得生产工艺流程

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【精选文档】锂电池生产工艺流程及参考设备PPT

【精选文档】锂电池生产工艺流程及参考设备PPT

▪ 3. 辊压机:涂布后的极片进一步压实, 提高电池的能量密度。
4. 极片分切设备
5. 全自动超声焊接导电柄设备
▪ 6. 卷绕机:将制造好的极片卷绕成电池
全自动卷绕机
7. 手套箱:保证在低湿度环境下将电 解液与卷芯封装在一起
8. 注液机:保证高精度的流水化将电解液真空 注入电池包装材料内
电池放电时向外电路输送电子的电极,此时电极发生氧化反应。通常是 电位低的电极,锂离子电池中石墨电极。
负极集流体:镍带(约厚)
负极基体:铜箔(约厚)
负极物质:石墨+CMC+SBR
锂离子电池结构——隔膜
隔膜﹝separation film﹞——是放置于两极之间,作为隔 离电极的装置,藉以避免两极上的活性物质直接接触 而造成电池内部的短路。但隔膜仍需能让带电离子通 过,以形成通路。
12. 真空干燥箱:
电导率(2▪5℃)全自动10真. 空烤箱
电池是指通过正负极之间的电化反应将化学能转化为电能的装置。 用途:搅拌后的浆料均匀涂膜在金属箔片 上。 放电时则相反。 辊压机:涂布后的极片进一步压实,提高电池的能量密度。 通常是电位低的电极,锂离子电池中石墨电极。 锂离子电池生产用的主要设备 三层一般为~ 活性物质(石墨、MCMB、CMS) 锂离子电池之流程及设备 放电时则相反。 负极基体:铜箔(约厚) 正极基体:铝箔(约厚) 锂离子电池结构——隔膜 水分(卡尔费休法) ≤20ppm 放电时则相反。 无色透明液体,具有较强吸湿性。 无色透明液体,具有较强吸湿性。
自动转盘真空注液机
方形全自动注液机
锂离子电池结构——电解液 ▪ 性质: 无色透明液体,具有较强吸湿性。
▪ 应用:
主要用于可充电锂离子电池的电解液,只能
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Mixing(配料)Mix solvent and bound separately with positive and negative active materials. Make into positive and negative pasty materials after stirring at high speed till uniformity.Coating(涂布)Now, we are in coating line. We use back reverse coating. This is the slurry-mixing tank. The anode(Cathode)slurry is introduced to the coating header by pneumaticity from the mixing tank. The slurry is coated uniformly on the copper foil, then the solvent is evaporated in this oven. (下面的依据情况而定)There are four temperature zones, they are independently controlled. Zone one sets at 55 degree C, zone two sets at 65 degree C, zone three sets at 80 degree C, zone four sets at 60 degree C. The speed of coating is 4 meters per minute.You see the slurry is dried. The electrode is wound to be a big roll and put into the oven. The time is more than 2 hours and temperature is set at 60 degree C.Throughout the coating, we use micrometer to measure the electrode thickness per about 15 minutes. We do this in order to keep the best consistency of the electrode.Vocabulary:coating line 涂布车间back reverse coating 辊涂coating header 涂布机头Al/copper foil 铝/铜箔degree C 摄氏度temperature zones 温区wind to be a(big)roll 收卷evenly/uniformly 均匀oven 烘箱evaporate 蒸发electrode 极片CuttingCut a roll of positive and negative sheet into smaller sheets according to battery specification and punching request.PressingPress the above positive and negative sheets till they become flat.PunchingPunching sheets into electrodes according to battery specification,ElectrodeAfter coating we compress the electrode with this cylindering machine at about 7meters per minute. Before compress we clean the electrode with vacuum and brush to eliminate any particles. Then the compressed electrode is wound to a big roll. We use micrometer to measure the compressed electrode thickness every 10 minutes. After compressing we cut the web into large pieces. We tape the cathode edge to prevent any possible internal short. The large electrode with edge taped is slit into smaller pieces. This is ultrasonic process that aluminum tabs are welded onto cathodes using ultrasonic weld machine. We tape the weld section to prevent any possible internal short. And finally, we clean the finished electrodes with vacuum and brush.Vocabulary:cylindering 柱形辊压vacuum 真空particle 颗粒wound 旋紧卷绕micrometer 千分尺internal short 内部短路slit 分切ultrasonic 超声波weld 焊接Anode makingIn anode making process, we cut the material into certain length strips. At the mean time, we put a small piece of insulation tape to the tab in order to prevent any possible internal short. Then the prepared nickel tab is riveted on anode and pat plain. We also tape the rivet section to prevent any possible internal short. And finally, we clean the finished electrodes with vacuum and brush.Jelly rollThis is Jelly roll, a manual winding process. In the course of Jelly roll, firstly, we place the separator in between central pins, press the foot switch to turn central pins about 120 degrees. Secondly, place the anode to the edge of central pins, and turn central pins about 180 degrees. Lastly, place the cathode to the edge of central pins. During the winding process, we apply tension by pressing the electrodes and the separator. We put the termination tape at the end.After Jelly roll, we check the short circuit, then form the Jelly roll by pressing, so that it is easier to insert the Jelly roll into the can.Control points:1. When winding to the end of the anode, covering the anode completely by the separator.2. In the whole process, it is the most important points to ensure the best alignment among the cathode, the anode and the separator for the Jelly roll. The separator has to cover the anode and the cathode, and the anode has to cover the cathode completely. These points are mainly checked before short checking.Vocabulary:Jelly roll 卷绕Manual 手工的Separator 隔膜纸central pin 卷针foot switch 脚踏开关anode 负极片cathode 正极片termination tape 尾端胶纸short circuit 短路alignment 整齐Taping & insertingPut the tape on the two side of J/R, To prevent J/R being hurt in the insertion process.Put a piece of tape between cathode tab and J/R .Because anode electrode is wider than cathode electrode.Put the bottom tape.Insert the finished J/R into the can manually and then short circuit check by multi-meter.Spot welding Ni tab to cap.Ultrasonic welding the Al tab to cap using ultrasonic weld.We have the second spot welding to ensure the best contact between the tab and cap.Apply top insulator, to prevent Ni tab contacting with can.Final J/R insertion by the centrifuge.Cap positioning by hand. Then check the cap in the suitable position, or the defects is put into red bin ,Finally , short circuit check again to ensure that there be no internal short J/R flowing to next line.Vocabulary:J/R 极芯tape 胶纸electrode 极片multi-meter 万用表Spot welding 点焊Ni tab 极耳Ultrasonic weld 超焊Insulator 隔圈centrifuge machine 甩壳机defect 次品red bin 红盒Laser weldingThis is the Laser welding room! The first process is welding for the aluminum cap, specially connect the rivet with the weld plate to prevent the cell impedance excursion.The second process is the Laser seam welding. In the process, it must ensure the intensity and airproof characters of the weld.After the cell is welded, we would perform the leak checking, the short circuit checking and the weighing checking.Vocabulary:Laser welding room 激光焊接车间Cap 盖板Rivet 铆钉Plate 镍片impedance excursion 内阻漂移intensity 强度leak checking 检漏short circuit checking 测短路weighing checking 称重Oven drying electrolyte filling and storingThis is the process of cells oven drying at 80℃ for more than 12 hours under vacuum. After oven drying, the cells are transferred to the process of electrolyte filling through this channel. The electrolyte filling performs in dry room. The electrolyte is injected in two times so that it can be filled easily and sufficiently. When filling, vacuum first, then inject electrolyte. After that, we repeat vacuum and vent to room pressure several times. Finally the cell is put off at room pressure, then weigh the cell in order to check the amount of electrolyte. After weighing, we seal with tape onto the filling port to prevent the cells absorbing water during storing.We store the filled cells for 24 hours at room temperature so that the electrolyte can be saturated sufficiently by the anodes and cathodes.Vocabulary:oven drying 烘烤vacuum 真空electrolyte filling 注液electrolyte 电解液room pressure 大气压filling port 注液孔storing 陈化saturated 浸润anode 正极cathode 负极Pre-charge and ball sealAt first, we place a piece of absorb cotton above the filling port to absorb the excess electrolyte. This is the first process.The second process is performing a pre-charge at 0.1C rate for 390 minutes.After the pre-charge, we take a voltage checking to the cell at once. If the voltage is lower than the standard, it needs to be re-charged.The fourth process is the ball seal. we must complete this process in 15 minutes.First, put the steel ball in the right place. Then, give pressure to it so that the steel ball can fill the filling port.In the whole process, we must make sure that the temperature and humidity are in the regular range.Finally, the process is cleaning to eliminate the electrolyte on the cell surface with acetone solvent.Vocabulary:filling port 注液孔electrolyte 电解液pre-charge 预先充电ball seal 封口voltage checking 量电压regular range 合格范围eliminate 消除acetone solvent 丙酮溶剂Aging and FormationThis is the aging room. We age cells at 35~40 Degree C for 7 days. The temperature is controlled by two heating instruments which are set at 38 Degree C. Then we transfer cells to the testing workshop. First, we check the voltage of cells with multi-meters. According to voltage, we divide the cells into acceptables and defects. Formation is done at 1.0 Capacity rate for 140 minutes to 4.2 Voltage. After that, check thickness and impedance. At last, we transfer the acceptables to the storehouse.Vocabulary:aging room 老化房heating instrument 加热器testing workshop 检测车间acceptables 良品defects 次品formation 化成thickness 尺寸,厚度impedance 内阻storehouse 仓库标识牌内容(中文) 英文1 正极球磨Cathode Ball Mill Mixing2 负极球磨Anode Ball Mill Mixing3 正极混浆Cathode Slurry Mixing4 负极混浆Anode Slurry Mixing5 正极涂布Cathode Coating6 负极涂布Anode Coating7 极片烘烤Electrode Drying 8 正极压片Cathode Compress9 负极压片Anode Compress 10 正极分大片Cathode Cutting11 正极分小片Cathode Slitting 12 负极分大片Anode Cutting13 负极分小片Anode Slitting 14 切镍带Anode Tab Cutting15 极耳铆接Anode Riveting 16 极耳贴胶纸Anode Tab Taping17 大片贴胶纸Cathode Edge Taping 18 刷片Electrode Brushing19 极耳超焊#1 Cathode Tab Welding #1装配车间英语极片烘烤Electrode Drying Area裁隔膜纸Separator Cutting壳体贴膜Out-film Apply超焊铝镍带Cathode Tab Welding贴内壁胶纸Inner Insulation Taping卷绕Jelly Roll Winding检验#1 Checking Station#1整形Jelly Roll Forming贴侧面胶纸J/R Side Taping贴上端胶纸J/R Top Taping贴底部胶纸J/R Bottom Taping装壳Jelly Roll Insertion点焊负极Anode Tab Welding剪正极耳Cathode Tab Cutting 超焊正极耳#2 Cathode Tab Welding #2二次点焊Spot Welding套隔圈Insulator Insertion甩壳Final J/R Insertion卡盖板Cap Installation检验#2 Checking Station #2点焊盖板Cap Pre—Welding激光焊接Laser Seam welding 整形Forming检验漏气Leak Checking短路测试Hi—pot称重分档Weighing Sorting。

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