• 多层复合镀层具有良好结合强度

    Multilayer composite coatings have good connective strength.

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  • 碱性镀层结合强度优越酸性镀层。

    The adhesive strength of the acid film was stronger than that of the alkali film.

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  • 镁合金;化学结合强度

    Mg alloy; electroless plating; bond strength.

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  • 研究了氮化处理结合强度影响

    The effect of the nitriding treatment on the titanium porcelain bonding was investigated.

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  • 挤压温度过高导致界面结合强度降低

    The bonding strength of the composite interface is reduced when too low or too high extrusion temperatures are employed.

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  • 接合强度接合面积原子结合强度有关。

    Joint strength relates to joint area and atomic binding strength.

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  • 采用试验测试种植体-界面的结合强度

    The push out test was used to measure the implant bone integrate strength.

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  • 网状结构纳米级结构增加结合强度

    Reticular conformation and nanometer hole structure increase the combination intensity with the bone.

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  • 测试了喷涂结合强度硬度以及抗热震性能。

    Adhesive strength, hardness and the thermal shock resistance of spraying coating were tested.

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  • 涂层骨组织之间结合强度推出实验进行测量。

    The bond strength between bone and titanium coatings was also measured by push-out test.

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  • 涂层的抗结合强度耐磨性之间存在着正比关系。

    The wear resistance was directly proportional to the tensile strength of the coating.

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  • 采用技术提高管材的层间结合强度

    It adopts outer pipe co - extrude technology, improving the joint stress among layers.

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  • 采用技术提高管材的结合强度

    It adopts outer pipe co-extrude technology, improving the joint stress among layers.

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  • 喷涂层与基体结合强度衡量涂层质量重要指标。

    The bond strength of thermal sprayed coating is an important part for evaluating the quality of coating.

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  • 通过制备梯度涂层可以提高涂层基体之间结合强度

    The bond strength between the coating and substrate can be enhanced through producing functionally graded coating.

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  • 提出一种新的电镀金刚石工具镀层基体结合强度测试方法

    A new method for measuring bonding strength between electroplated layer and substrate of diamond tool is proposed.

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  • 结果表明镁合金基体镀前处理对镀层结合强度至关重要。

    Results show the pretreatment of basal body of magnesium alloy is important to the bond strength.

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  • 并且针对扩散涂层结合强度组织影响分别进行了论述

    The effect of the hot diffusion on the bonding strength and the microstructure of the coating was individual discussed.

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  • 考察接头界面复合特征,界面上元素扩散接头结合强度

    The composite features, the elements diffusion and the binding strength in interface of the adaptor have been reviewed.

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  • 由于纳米基体界面结合强度,使复合材料抗弯强度下降。

    Because the low interface strength of carbon nanotube and metal matrix, carbon nanotube do not act as enhancements to bending.

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  • 通过梯度液相烧结反应烧结处理热喷涂层具有很高结合强度

    The coating with high bond strength was synthesized by means of treatment of the gradient liquid phase sintering or medium temperature reactive sintering.

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  • 方法所得涂层结合强度高,耐蚀耐磨性好具有广阔应用前景

    The coating made by this method exhibits good coherence, excellent corrosion resistance, wear resistance and has wide application in future.

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  • 介质阻挡放电(DBD)处理聚合物表面有效提高亲水性结合强度

    Dielectric barrier discharge (DBD) can be applied to modify polymer surface to improve its wettability and adhesive strength.

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  • 试验范围,喷距粉末熔化状态涂层结合强度均无明显影响。

    The melting state of powder and bonding strength of coating did not vary much within spraying distance in the experiment.

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  • 结果表明方法既可保持涂层原有性能,又可增加涂层-基体间结合强度

    The results show that the methods maintain the original properties and increase coating-substrates bond strength.

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  • 元素界面两侧扩散影响材料显微组织表观硬度界面结合强度关键

    The interfacial diffusion of alloying element is an important factor to microstructure, apparent hardness and interfacial bond strength.

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  • 相同氧化时间的条件下,金-瓷结合强度随除气时间延长也呈递减趋势

    When the time of preoxidation was same, the combining intensity of alloy-porcelain decreased with the time prolonging of degassing.

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  • 结果表明,轧制变形程度加热温度都是影响复合板结合强度主要因素。

    The results prove that the initial bonding strength mostly depends on total reduction and heating temperature of al.

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  • 研究表明,增加变形程度选择合适的轧制温度提高复合板的界面初结合强度

    The results indicated that increasing the deformation and a proper rolling temperature may improve obviously the bonding strength.

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  • 研究表明,增加变形程度选择合适的轧制温度提高复合板的界面初结合强度

    The results indicated that increasing the deformation and a proper rolling temperature may improve obviously the bonding strength.

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