PurposeDrawing on self-determination theory, this study explored how leader humility affected employees' proactive behavior through satisfying their psychological needs for autonomy, competence and relatedness. Furthermore, based on a contingency view, this paper suggested Chinese traditionality as a significant boundary condition for the effects of leader humility.Design/methodology/approachData were collected from 465 employees and 111 direct supervisors in China using a three-wave, two-source design. Hierarchical regression analyses and Hayes' PROCESS macro were applied to test the hypotheses.FindingsThe results indicated that leader humility positively affected employee proactive behavior through the mediating mechanisms of psychological need satisfaction (i.e. autonomy, competence and relatedness). Furthermore, these positive effects were stronger among employees with lower Chinese traditionality beliefs.Originality/valueAlthough prior research has examined the relationship between leadership and proactive behavior, most extant studies have focused on “top-down” leadership approaches, ignoring the effect of leader humility. Drawing on self-determination theory, the present study makes contributions to both the leader humility research and proactivity literature by identifying psychological need satisfaction as the mechanism and Chinese traditionality as the moderator.
In the triangular meshes obtained in additive repair, it is a challenge to find one single hole-filling method to close all holes and make the filling patches assort with surrounding meshes well with low time complexity, which is mainly caused by the shape complexity and size difference of the various holes, especially in the fields of intelligent manufacturing, 3D measurement, and reverse engineering. Therefore, it is reasonable to adopt different algorithms to fill different types of holes. In this research, a fast hole-filling method for triangular mesh is proposed based on the hole size. First, a group of basic concepts is defined to make them uniform throughout the whole text, followed by the descriptions of hole detection and boundary cleaning. Second, three different algorithms are developed to fill the small-sized, middle-sized, and large-sized holes classified by hole size respectively, which can fill all the detected holes in a fast and proper manner. Finally, two experiments are carried out to verify the efficiency, robustness, and ability to recover the shape of our method. Compared to two state-of-the-art hole-filling methods in the first experiment, the quantitative evaluation results demonstrate that our proposed method is much faster than them with the ability to guarantee the regularity of most filling triangles. The second experiment proves that our method can produce satisfactory filling results by making the filling patches be compatible with surrounding meshes well.
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