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رسائل ماجيستير الانجليزية 2022 005678e4-ece0-4a4c-99ee-7120dec064f3

3D Printing of IPMC Actuators Based on the Direct Assembly Method

Barbar Akle, Serge Sarkis

مدرسة الهندسة-الجامعة اللبنانية الأميركية · لبنان

الموضوعات

علوم تطبيقية وتكنولوجية

الملخص

Ionic polymer metal composites are a type of electroactive polymers, they are composed of an ionomer membrane sandwiched between two conducting high surface area electrodes. They act as an actuator under the application of a relatively small applied electric voltage in the order of 1 to 4V, producing large strains compared to other actuators. The middle membrane acts as an eclectic insulator that allows ions to move from one electrode to the other. The negatively charged high surface area electrode attracts the positively charged mobile cations resulting in actuation. IPMCs also operate in sensing mode by generating electricity when subject to mechanical deformations. This versatility in operation makes them good candidates for a number of complex applications including biomimetics, micro-robotics, and medical catheters. These different application demand complex geometries and high level of performance. The electrode morphology has been proven to play a critical role in the performance of IPMCs. In this thesis, the process of 3D printing the IPMC along with the electrodes using FDM 3D printing is investigated. Our method will enable the 3D printing of both: the Nafion insulating center layer, and a Ruthenium Dioxide-Nafion mixture composing the high surface area electrode. The electrodes performance will be evaluated against the traditional impregnation reduction method for electrode plating applied to a 3D printed membrane. Also, the performance of a membrane made by hot-pressing Nafion pellets, a traditional Nafion membrane fabrication method, will be used to validate the 3D printing process. The 3D printed electrodes achieved a strain of 3.71E-4 which was lower than the strain of impregnation reduction method at 1.14 E-3. This was attributed to excessive flaking and poor mixing of the Ruthenium Dioxide particles in the polymer matrix.

التعريف والنوع

رقم الوثيقة
005678e4-ece0-4a4c-99ee-7120dec064f3
رقم العقد
0
نوع الوسائط
Crawler
نوع المحتوى
الرسائل العلمية
صيغة المصدر
رسائل ماجيستير
نوع الملف
pdf text
أسماء الملفات
841541_1.pdf

بيانات النشر

ألقاب المؤلفين
[{"name_ar":"Barbar Akle","title_ar":"اشراف","title_en":"Supervision"},{"name_ar":"Serge Sarkis","title_ar":"اعداد","title_en":"Preparation"}]
اللغة
English

المصدر والدورية

اسم المصدر
3D Printing of IPMC Actuators Based on the Direct Assembly Method

المحتوى والصفحات

عدد الصفحات
0
كلمات الباحثين
IPMCs FDM 3D printing Impregnation/reduction electrode morphology Nafion Polymer metal mixture

إشراف وإعداد

الإشراف
Barbar Akle
الإعداد
Serge Sarkis

الاقتباسات الببليوغرافية

APA

Barbar Akle و Serge Sarkis. (2022). 3D Printing of IPMC Actuators Based on the Direct Assembly Method. أطروحة(رسائل ماجيستير). مدرسة الهندسة-الجامعة اللبنانية الأميركية. لبنان.

MLA

Barbar Akle و Serge Sarkis. 3D Printing of IPMC Actuators Based on the Direct Assembly Method. 2022. مدرسة الهندسة-الجامعة اللبنانية الأميركية، رسائل ماجيستير.