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You searched for subject:(microbuckling). Showing records 1 – 4 of 4 total matches.

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Oregon State University

1. Guo, Yizhi. Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending.

Degree: MS, Mechanical Engineering, 2016, Oregon State University

 Prepreg is widely used in composite manufacturing with advanced composites such as carbon and aramid. The material is characterized by a degree of flexibility (drape)… (more)

Subjects/Keywords: Microbuckling; Thermosetting composites  – Mechanical properties

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APA (6th Edition):

Guo, Y. (2016). Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending. (Masters Thesis). Oregon State University. Retrieved from http://hdl.handle.net/1957/60145

Chicago Manual of Style (16th Edition):

Guo, Yizhi. “Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending.” 2016. Masters Thesis, Oregon State University. Accessed December 14, 2019. http://hdl.handle.net/1957/60145.

MLA Handbook (7th Edition):

Guo, Yizhi. “Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending.” 2016. Web. 14 Dec 2019.

Vancouver:

Guo Y. Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending. [Internet] [Masters thesis]. Oregon State University; 2016. [cited 2019 Dec 14]. Available from: http://hdl.handle.net/1957/60145.

Council of Science Editors:

Guo Y. Fibers Microbuckling of Uncured Carbon-Epoxy Prepreg in Bending. [Masters Thesis]. Oregon State University; 2016. Available from: http://hdl.handle.net/1957/60145


University of Colorado

2. Brachthauser Balcells, Savina. Modeling of Fiber Microbuckling in Soft Composites Under Bending.

Degree: MS, 2018, University of Colorado

  Soft ber reinforced composites are very suitable materials for space deployable structures. These materials are characterized by a very compliant matrix that allows the… (more)

Subjects/Keywords: fiber; microbuckling; micromechanical; energy; material; Aerospace Engineering; Engineering

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APA (6th Edition):

Brachthauser Balcells, S. (2018). Modeling of Fiber Microbuckling in Soft Composites Under Bending. (Masters Thesis). University of Colorado. Retrieved from https://scholar.colorado.edu/asen_gradetds/199

Chicago Manual of Style (16th Edition):

Brachthauser Balcells, Savina. “Modeling of Fiber Microbuckling in Soft Composites Under Bending.” 2018. Masters Thesis, University of Colorado. Accessed December 14, 2019. https://scholar.colorado.edu/asen_gradetds/199.

MLA Handbook (7th Edition):

Brachthauser Balcells, Savina. “Modeling of Fiber Microbuckling in Soft Composites Under Bending.” 2018. Web. 14 Dec 2019.

Vancouver:

Brachthauser Balcells S. Modeling of Fiber Microbuckling in Soft Composites Under Bending. [Internet] [Masters thesis]. University of Colorado; 2018. [cited 2019 Dec 14]. Available from: https://scholar.colorado.edu/asen_gradetds/199.

Council of Science Editors:

Brachthauser Balcells S. Modeling of Fiber Microbuckling in Soft Composites Under Bending. [Masters Thesis]. University of Colorado; 2018. Available from: https://scholar.colorado.edu/asen_gradetds/199


Clemson University

3. Thompson, Ronald. Compressive Strength of Continuous Fiber Unidirectional Composites.

Degree: PhD, Mechanical Engineering, 2012, Clemson University

 Dow and Rosen's work in 1965 formed an intellectual framework for compressive strength of unidirectional composites. Compressive strength was explained in terms of micro-buckling, in… (more)

Subjects/Keywords: composite; compressive strength; fiber misalignment; finite element analysis; matrix nonlinearity; microbuckling; Mechanical Engineering

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APA (6th Edition):

Thompson, R. (2012). Compressive Strength of Continuous Fiber Unidirectional Composites. (Doctoral Dissertation). Clemson University. Retrieved from https://tigerprints.clemson.edu/all_dissertations/953

Chicago Manual of Style (16th Edition):

Thompson, Ronald. “Compressive Strength of Continuous Fiber Unidirectional Composites.” 2012. Doctoral Dissertation, Clemson University. Accessed December 14, 2019. https://tigerprints.clemson.edu/all_dissertations/953.

MLA Handbook (7th Edition):

Thompson, Ronald. “Compressive Strength of Continuous Fiber Unidirectional Composites.” 2012. Web. 14 Dec 2019.

Vancouver:

Thompson R. Compressive Strength of Continuous Fiber Unidirectional Composites. [Internet] [Doctoral dissertation]. Clemson University; 2012. [cited 2019 Dec 14]. Available from: https://tigerprints.clemson.edu/all_dissertations/953.

Council of Science Editors:

Thompson R. Compressive Strength of Continuous Fiber Unidirectional Composites. [Doctoral Dissertation]. Clemson University; 2012. Available from: https://tigerprints.clemson.edu/all_dissertations/953


Virginia Tech

4. Mahieux, Celine Agnès. Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures.

Degree: MS, Materials Science and Engineering, 1996, Virginia Tech

  A new method for stress-rupture experiments in bending has been developed and used to characterize unidirectional polymer matrix composites. The method. which makes use… (more)

Subjects/Keywords: bending; stress rupture; composite materials; microbuckling; LD5655.V855 1996.M345

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APA (6th Edition):

Mahieux, C. A. (1996). Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/45398

Chicago Manual of Style (16th Edition):

Mahieux, Celine Agnès. “Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures.” 1996. Masters Thesis, Virginia Tech. Accessed December 14, 2019. http://hdl.handle.net/10919/45398.

MLA Handbook (7th Edition):

Mahieux, Celine Agnès. “Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures.” 1996. Web. 14 Dec 2019.

Vancouver:

Mahieux CA. Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures. [Internet] [Masters thesis]. Virginia Tech; 1996. [cited 2019 Dec 14]. Available from: http://hdl.handle.net/10919/45398.

Council of Science Editors:

Mahieux CA. Stress rupture of unidirectional polymer matrix composites in bending at elevated temperatures. [Masters Thesis]. Virginia Tech; 1996. Available from: http://hdl.handle.net/10919/45398

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