Method for evaluating performance of AgSnO2 contact material
A technology of contact materials and evaluation methods, which is applied in the field of determining the optimal performance of AgSnO2 contact materials, and can solve problems such as no relevant description of performance.
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Embodiment 1
[0109] exist figure 1 On the basis of the hierarchical structure of each evaluation element shown, the required test data is selected as the original data, and the AgSnO 2 / La 2 o 3 The test data of the contact materials are used as the raw data of each evaluation index, and are summarized and sorted out. The results are shown in Table 2.
[0110] Table 2 AgSnO 2 / La 2 o 3 Raw data of each evaluation index of contact material
[0111]
[0112] to AgSnO 2 / La 2 o 3 The raw data of contact materials are processed to obtain a standardized decision matrix X:
[0113]
[0114] Normalize the original data to get the Y matrix:
[0115]
[0116] The calculated entropy value E of each evaluation index is:
[0117] E=[0.894 0.866 0.875 0.872 0.831]
[0118] The entropy weight W of each evaluation index is calculated as:
[0119] W=[0.160 0.202 0.189 0.193 0.255]
[0120] Each column of the standardized decision matrix X is associated with the corresponding weight ...
Embodiment 2
[0138] The difference lies in the types of additives, and the rest are the same.
[0139] Select the required experimental data as the original data, for AgSnO 2 / Bi 2 o 3 The test data of the contact material are used as the raw data of each evaluation index, and are summarized and sorted out. The results are shown in Table 3.
[0140] Table 3 AgSnO 2 / Bi 2 o 3 Raw data of each evaluation index of contact material
[0141]
[0142] to AgSnO 2 / Bi 2 o 3 The raw data of the contact material can be processed to obtain a standardized decision matrix X:
[0143]
[0144] Normalize the original data to get the Y matrix:
[0145]
[0146] The calculated entropy value E of each evaluation index is:
[0147] E=[0.871 0.768 0.720 0.893 0.809]
[0148] The entropy weight W of each evaluation index is calculated as:
[0149] W=[0.137 0.247 0.298 0.114 0.203]
[0150] Each column of the standardized decision matrix X is associated with the corresponding weight w j ...
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