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松下蓄电池LC-XC1238电瓶铅酸免维护储能电池12V38AH

更新时间:2019-12-21 06:53:01 信息编号:s82f75bhh12926
松下蓄电池LC-XC1238电瓶铅酸免维护储能电池12V38AH
10≥ 1千克
  • 10.00 元

  • Panasonic/松下

  • 松下蓄电池,松下LC-XC1238,松下12V38AH,铅酸蓄电池

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详情介绍

商品别名
松下12V38AH,铅酸蓄电池,松下LC-XC1238,松下蓄电池
面向地区
品牌
Panasonic/松下
加工定制
工作电压
220V
电压
12
产品重量
4.6公斤
工作电流
100A
工作温度
4~45℃
转化效率
65%
额定容量
38AH
输出功率
70w
外观尺寸
7英寸
售后服务
保修一年

松下蓄电池LC-XC1238电瓶铅酸免维护储能电池12V38AH

松下蓄电池LC-XC1238电瓶铅酸免维护储能电池12V38AH北京现货
☆☆★选择我们的理由★☆☆
感谢您选择了北京旗益盛商贸有限公司.为让您在使用本公司产品时无后顾之忧,针对在中国大陆销售的阀控式铅酸蓄电池, 我们承诺如下:
1、诚实守法经营, 不搞假冒伪劣;
2、所有产品全检合格后发货, 并附有我公司产品质量合格证;
3、按照约定的交货方式为您把产品安全地运抵目的地;
4、对于您给我们的反馈:
(1)无论是建议还是抱怨,我方在24小时内做出回复。
(2)对确定为厂家质保范围内的电池,我公司将在规定的时限内完成更换,一般情况下,时限为省内48小时,省外7日(不包括产品的生产时间)。
5、我方对用户电源维护及管理免费提供必要的蓄电池方面技术培训,培训内容包括:
(1)铅蓄电池工作原理和性能;
(2) 铅蓄电池安装测试中的注意事项;
(3)铅蓄电池使用维护的基本要求。
6、产品质量范围
(1)自电池壳上烙印的出厂日期计算起,到双方合同约定期限止,在此期限内,由于厂家设计或制造控制不力而产生的不良的电池均在质保范围之列。
(2)由于以下事项引起的故障不属于质量的范围:
①电池没有按厂家发行的《阀控式密封铅蓄电池使用维护说明书》的规定使用时。
②电池已经过用户方的加工或修理。
③电池的使用温度超过40℃。
(3)在故障原因不明时,我公司有权调查使用故障电池的设备状况。
7、对质保范围内的不良电池,我公司实行包换或包修,更换或修理所造成的费用(包括电池运费)由我公司承担。
8、三包期
各系列产品质保期限:
25AH(含)以下 国内、外客户均为12个月
25AH--40AH 国内外客户均为18个月
40AH(含)以上 国外18个月,国内36个月


Matsushita LC-XC1238 Battery Lead-acid Maintenance-free Energy Storage Battery 12V38AH
Reasons for Choosing UsBeijing spot

Thank you for choosing Beijing Qiyisheng Trading Co., Ltd. In order to let you have no worries when using our products, we promise the following for VRLA batteries sold in mainland China:

1. Be honest and law-abiding, and do not engage in counterfeiting or shoddy business;

2. All products shall be delivered after passing the full inspection, and attached with our company's product quality certificate;

3. Delivery to your destination safely in accordance with the agreed mode of delivery;

4. Regarding your feedback to us:

(1) We will reply within 24 hours to our suggestions and complaints.

(2) For batteries determined to be within the manufacturer's quality guarantee range, our company will complete the replacement within the prescribed time limit. Generally speaking, the time limit is 48 hours in the province and 7 days out of the province (excluding the production time of the products).

5. We provide free technical training in battery maintenance and management for users. The training includes:

(1) The working principle and performance of lead-acid batteries;

(2) matters needing attention in installation and testing of lead-acid batteries;

(3) Basic requirements for the use and maintenance of lead-acid batteries.

6. Scope of Product Quality Assurance

(1) From the date of manufacture when the battery shell is branded, to the deadline stipulated in the contract between the two parties, the bad batteries caused by the poor design or manufacturing control of the manufacturer are all included in the quality assurance scope.

(2) Failures caused by the following items do not fall within the scope of quality assurance:

(1) Batteries are not used in accordance with the provisions of the "Operation and Maintenance Instructions for Valve-Regulated Sealed Lead Batteries" issued by the manufacturer.

(2) Batteries have been processed or repaired by the user.

(3) The service temperature of the battery is over 40 C.

(3) When the cause of the failure is unknown, our company has the right to investigate the condition of the equipment using the failure battery.

7. For bad batteries within the scope of quality assurance, our company carries out replacement or repair. The cost of replacement or repair (including battery freight) is borne by our company.

8. Three-Guarantee Period

Quality guarantee period of each series:

Domestic and foreign customers below 25AH are 12 months

25AH-40AH domestic and foreign customers are 18 months

40 AH (including) more than 18 months abroad and 36 months in China

松下蓄电池LC-XC1238电瓶铅酸免维护储能电池12V38AH北京现货
关于松下蓄电池的使用
松下蓄电池大家都不陌生,很多人也在生活中使用过松下蓄电池,但是大家的使用方法真的是正确的吗?要知道正确的使用方法能够很好地延长松下蓄电池的使用,那么今天就让松下蓄电池厂家为大家总结一些松下蓄电池的使用吧!

①当负极活物质添加炭以5s脉冲充/放电及1s间隙时间循环时,松下蓄电池在这种情况下发生的主要过程是电极表面上形成的双电层的电容性充/放电。

②以30s或50s脉冲[即3%或5%(DOD)放电深度],充/放脉冲间隙60s循环,在这种情况下发生的主要过程要取决于电池的特性参数,可以是铅氧化的电化学反应(放电时)或PbS04的还原反应(充电时)或PbS04的形成与溶解的化学反应。所完成的循环数在一个循环组内因几个因素的影响就能结束。可和负极电容性充电/放电的电池循环稳定性相比。

③两个并联的能量系统在负极上形成:一个是电容性炭系统,它具有小的容量(Ah)但可进行高率放电;另一个是电化学铅系统,它具有高的容量但能低率工作。这两个系统之间应有一个合适的比例,才能确保负极的。

④炭添加在负极活物质内,通过负极活物质的结构和不同的途径来影响电池的循环性能。添加TDA活性炭粒子能进人负极活物质的骨架结构以及扩展至极板形成电容性充电/放电。从而改善了电池的循环性能。而AC3细炭黑粉末粒子能被吸附在铅粒子的表面而改变负极活物质结构,以此来改善电池性能。

⑤炭添加进入负极活物质能改变它的孑L隙体系,其孔的平均孔径小于lptm,负极活物质的骨架结构作为半透膜能阻挡SO:—接近负极活物质中的孑L。pb2+在孔内形成,孔内溶液带正电荷,要恢复电中性,H’就从孑L内溶液迁移到整个电液中。此时孔内溶液呈碱性。在这种情况下,tet—PbO<a-PbO)在孔内形成,严重阻碍铅的氧化反应。根据文献资料证明:负极活物质中添加AC3炭黑,在循环后的负极活物质上形成了膜状孔与tet—PbO(。—PbO)。

⑥上述这些基本反应都是在HRPSoC工况下循环的负极上发生的过程:松下蓄电池包括双电层的电容性充/放电、铅氧化的化学与电化学反应、PbS04的还原反应和PBS()+的重结晶过程,同时还有负极在溶液中的盐酸盐化反应。这些基本过程都同样重要。这些反应的反应速率因电池的不同用途而发生变化,同时,还要求负极板制造工艺的修正以适合电池的各种用途。



Matsushita LC-XC1238 Battery Lead-acid Maintenance-free Energy Storage Battery 12V38AH
Reasons for Choosing UsBeijing spot
On the Use of Panasonic Batteries

Panasonic batteries are not unfamiliar to everyone, and many people have used Panasonic batteries in their lives, but are they really right? To know that the correct use of Panasonic batteries can be well extended, let Panasonic battery manufacturers summarize some Panasonic batteries for you today. Now!



(1) When carbon is added to the negative active material to charge/discharge with 5 s pulse and 1 s gap time cycle, the main process of Panasonic battery in this case is the capacitive charge/discharge of the double layer formed on the surface of the electrode.



(2) The main process of charging/discharging 60 s cycle with 30s or 50s pulse [i.e. 3% or 5% (DOD) discharge depth], in which case, depends on the characteristic parameters of the battery, such as the electrochemical reaction of lead oxidation (discharging time) or the reduction reaction of lead S04 (charging time) or the chemical reaction of formation and dissolution of lead S04. The number of cycles completed in a cycle group can be terminated by several factors. It can be compared with the cycle stability of negative capacitive charging/discharging batteries.



(3) Two parallel energy systems are formed on the negative pole: one is a capacitive carbon system, which has a small capacity (Ah) but can discharge at a high rate; the other is an electrochemical lead system, which has a high capacity but can work at a low rate. In order to ensure the high performance of the negative pole, there should be an optimum proportion between the two systems.



(4) Carbon is added to the active material of the negative pole, which affects the cycle performance of the battery through the structure of the active material of the negative pole and different ways. The addition of TDA activated carbon particles can enter the skeleton structure of human negative active material and extend to the plate to form capacitive charging/discharging. The cycle performance of the battery was improved. AC3 fine carbon black powder particles can be adsorbed on the surface of lead particles to change the structure of the negative active material, so as to improve the performance of the battery.



_The addition of carbon into the negative active material can change its L-gap system. The average pore size of the negative active material is less than lptm. The skeleton structure of the negative active material as a semi-permeable membrane can block SO:- close to the L in the negative active material. Pb2 + is formed in the pore and the solution in the pore is positively charged. In order to restore the electrical neutrality, H'migrates from the solution in Ll to the whole electrolyte. At this time, the solution in the pore is alkaline. In this case, tet-PbO < a-PbO) is formed in the pore, which seriously hinders the oxidation of lead. According to the literature, AC3 carbon black was added to the negative active material, and membrane pore and tet-PbO () were formed on the negative active material after circulation. - PbO).



These basic reactions are all on the negative electrodes of HRPSoC cycle: Panasonic batteries include capacitive charge/discharge of double layers, chemical and electrochemical reactions of lead oxidation, reduction reaction of lead S04 and recrystallization of PBS()+ and hydrochlorination of the negative electrodes in solution. These basic processes are equally important. The reaction rate of these reactions varies with the different uses of the battery. At the same time, the modification of the manufacturing process of the negative plate is required to suit the various uses of the battery.

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