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composite depreciation的中文,翻译,解释,例句

composite depreciation

composite depreciation的基本解释
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[经] 综合折旧

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With this method the copper plating graphite powder was made up in 50% copper content .The silver- copper plating graphite composite was prepared while the silver- copper-graphite composite and the silver-graphite composite were also made up together .The mechanical and electric characteristics of the three kinds of composites were tested and it was found that the copper plating graphite powder can only optimize the properties of the silver matrix composite under the high content of the graphite ,the conductivity and the mechanical property was improved and the material could take higher current in the same carbon content .At 20% carbon content, the resistivity of Ag-graphite composite was 1.67 times as high as that of silver- copper plating graphite composite, the resistivity of Ag-Cu-graphite composite was 3.23 times as high as that of silver- copper plating graphite composite. The bending strength of silver-copper plating graphite composite was 2.17 times as high as that of silver- copper-graphite composite, and the bending strength was 2.11 times as high as that of silver- copper-graphite composite. The wearability of silver- copper plating graphite composite was also enhanced greatly at high carbon content.

利用该方法制备了50%铜含量的镀铜石墨粉,然后进一步制备了一系列相同碳含量的银-石墨复合材料、银-铜-石墨复合材料、银-镀铜石墨复合材料,对三种材料的机械、电气性能进行了综合对比,发现在低碳含量时镀铜石墨粉不能改善复合材料的上述主要性能,而在中高碳含量时则能明显优化复合材料的整体性能,提高了复合材料的电导率,使复合材料在中高碳含量时既具有较高的耐磨性同时也能负载较大的电流,复合材料的机械性能也因镀铜石墨粉的加入而大幅提高,20%碳含量时,银-石墨复合材料的电阻率是银-镀铜石墨复合材料的1.67倍,银-铜-石墨复合材料的电阻率为银-镀铜石墨复合材料的3.23倍,银-镀铜石墨复合材料抗弯强度是银-铜-石墨复合材料的2.17倍,是银-石墨复合材料的2.11倍,同时,在实验给定的条件下,中高碳含量时银-镀铜石墨复合材料的机械磨损耐磨性和通电磨损耐磨性都得以显著提高,银-镀铜石墨复合材料在实验时的接触电压降也更为稳定。

The second part was to test the appearance, ingredient analysis, surface potential, thermal conduction properties, and magnetism of the nano composite fluid prepared from the parameters. The experiment found that unoxidized particles, Ag, Cu, Fe, and Ni appeared round. If combined with oxygen in water as oxides, the nano particles would grow toward certain directions. In copper/iron nano composite fluid, FeO appeared cubic, Cu2O appeared coniferous. In silver/iron nano composite fluid, FeO was polygonal. In dielectric potential detection, the nano composite fluid was likely to aggregate and deposit, except for silver/iron set. In other sets, the pH of silver/cobalt nano composite fluid was 7, surface potential was 21.21mV; the pH for silver/nickel nano composite fluid was 6.5, surface potential was 21.04mV; the pH for copper/iron nano composite fluid was 7, surface potential was -30mV. The fluid particles of the three sets could all maintain suspension of 2 weeks or more. For thermal conduction, the silver/nickel, nano composite fluid showed the best thermal conduction. Under temperature of 30℃ fluid weight conduction of 0.4%, the thermal conduction increase was 26%. For magnetic detection, except for silver/iron nano composite fluid, the nano particles of other three sets were paramagnetic, and all four sets were soft magnetic nano composite materials.

第二部分。将由较佳制备参数所产出的奈米复合流体,进行形貌外观、成分分析、表面电位及热传导性质实验与磁性检测;在奈米颗粒的形貌部分,经实验发现Ag、Cu、Fe、Ni等未氧化的颗粒皆呈现近似圆形,而若与水中的氧结合形成氧化物,奈米颗粒则会朝特定方向成长,在铜/铁奈米复合流体中FeO为四方体结构、Cu2O的颗粒是针叶状,在银/铁奈米复合流体中FeO则为多边形结构;而介面电位检测方面,结果显示经本制程所产出的奈米复合流体除银/铁奈米复合流体这一组较容易聚集沉淀外,其他三组中银/钴奈米复合流体的pH值为7,表面电位为21.21mV,银/镍奈米复合流体的pH值6.5表面电位为21.04mV而铜/铁奈米复合流体的pH值为7时表面电位约在-30mV,且此三组流体颗粒皆能维持悬浮性2周以上,悬浮性较佳;热传导实验部分,四组奈米复合流体中以银/镍奈米复合流体在增进热传上效果最佳,在温度30℃及流体重量浓度0.4﹪条件下热传导系数增进达26﹪;磁检测方面,除了银/铁奈米复合流体外,其他三组奈米颗粒皆属顺磁性,且这四组奈米复合材料都是属软磁性。

On the basis of this, this paper tries to seek the common law of each periodic depreciation amount of all dynamic depreciation models and constructs the common model of dynamic depreciation of all assets in order to provide the common models for enterprises to input the relative initial condition to directly use fixed assets dynamic depreciation according to their real situation to calculate the dynamic depreciation amount of each period of fixed assets.

在此基础上,本文试图去寻找各种动态折旧模型中各期折旧额的共同规律,进而建立起固定资产动态折旧的通用模型,以供企业根据自己的实际情况代入相应初始条件直接套用固定资产动态折旧的通用模型,方便地计算固定资产各期的动态折旧金额。

更多网络解释 与composite depreciation相关的网络解释 [注:此内容来源于网络,仅供参考]

composite depreciation:综合折旧

composite deposit | 复合镀层 | composite depreciation | 综合折旧 | composite design | 合成设计

composite depreciation rate:综合折旧率

产品 40% A B 加权平均单 位贡献毛利=0.40×0.6+0.875×0.4=0.59 元 组合损益 7600 分界点= 0.59 =12 881(件) composite depreciation 综合折旧 指对不同性质和不同使用年限的应计 折旧固定资产,采用合并计算折旧的方法,使用一个单一的综合折旧率.综合折 旧率(composite depreciation rate)是用以个 别折旧率计算的各类资产

composite depreciation method:综合折旧法

composite cost of capital综合资本成本 | composite depreciation method 综合折旧法 | composite depreciation rate综合折旧率

composite depreciation rate of fixed assets:固定资产综合折旧率

Composite 综合的,合成的 | composite depreciation rate of fixed assets 固定资产综合折旧率 | Composition 成分,组成

composite life depreciation method:平均年限折旧法

composite life;平均年限;综合年限;; | composite life depreciation method;平均年限折旧法;; | composite rate;综合率;混合率;;

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