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Ò»¹²Èý¸öÉó¸åÈ˵ÄÒâ¼û£¬±à¼ËµÈç¹û3#Éó¸åÈË»¹²»ÂúÒâ¾ÍûϷÁË¡£¡£¡£Ò»¶¨Òª°´ÕÕÏàÓ¦µÄÒâ¼û¸Äô£¿ÎÒÕâÊÇÅ·ÀÁºµÄ¼ÙÉèΪʲôһ¶¨ÒªÓÃÌúľÐÁ¿ÂÀíÂÛÀ´Ñé֤Ĩ¡£¡£¡£ÒѾÓÐʵÑéÁËÒ²²»ÐÐô£¿ÏÖÔÚÕâÖÖÇé¿öÓжà´óµÄ»úÂʼÓÃÄØ£¿ Reviewers and editors commented on your above paper, and indicated that it is not acceptable for publication in its present form. If you feel that you can suitably address the comments below, I invite you to revise and resubmit your manuscript within 30 days from today. Comments: Editorial: - criticisms by reviewer #3 should be particularly paid attention to. The manuscript will not be considered any further should there be still concerns from this reviewer. - please revise all highlights and graphical abstract to describe the findings (not the tasks). Please see further recommendations in the Editorial Note (https://www.sciencedirect.com/science/article/pii/S0264127515005031). Reviewer #1: The paper concerns with a very interesting and important problem. Taking into account presented results the proposed models offers a good consistency with results of FEM analysis and experiment. Results of only one experiment are presented. It would be worth to verify results also for other dimensions and types of piezoelectric materials as well as the mechanical subsystem (actuator and substrate). It would be necessary for validation of the proposed model. The font size of descriptions in the enclosed drawings should be bigger, which would improve their readability. Reviewer #3: The paper discuss the deformation of a three layer isotropic beam, however, author claims that the work is on bending deformation of active composite beams. 1. In the past two decades, various theories have been developed to predict the static and dynamic response of laminated composite beams, like, CLPT, FSDT and layerwise. 2. Most of the laminated theories particularly, layerwsie theory developed by J.M. Reddy has widely been used to determine the static and dynamic response of beams integrated with piezoelectric sensors and actuators. 3. 3. The present work assumes that the active layers are mounted at the outer surfaces, while there are a lot of works in which the active layers are located inside the laminates. 4. Therefore, using the present proposal to predict the deformation of laminated composite beams is not really new idea. 5. If the author insists to work on isotropic materials, it is recommended to use higher-order beam theories to improve the accuracy of the model like Timoshenko beam and 3D model. 6. Validating a close form solution with commercial software is not recommended. 7. The present work can be improved by at least providing a comparison with available theories like Timoshenko. Reviewer #4: The paper is original end contributes to scientific knowledge. The title and the summary are adequate to the contents presented in the article. The authors present A modified pin force model for beams with active material bonded. General and particular remarks: - Any sentences are too long. - Presented paper must be reviewed by translator. - It also needs checking according to: grammatical errors and sentences correction. |
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