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Can I read Characteristics Analysis of Plasticized Polyvinyl Chloride Gel-Based Microlens at Different Temperatures on EtoBox?
Characteristics Analysis of Plasticized Polyvinyl Chloride Gel-Based Microlens at Different Temperatures by Xudong Li; Min Lin; Imdad Ali; Ahmed Ali; Muhammad Irfan; Toufique A. Soomro; Seung Ho Choi; Weimin Yang; Haoyi Li; Saifur Rahman; Salim Nasar Faraj Mursal; Abdulnour Ali Jazem Ghanim; Othman Alyahyawy; Morooj A. Al thagafi is a Engineering article available to read on EtoBox.
What is Characteristics Analysis of Plasticized Polyvinyl Chloride Gel-Based Microlens at Different Temperatures about?
Temperature plays a crucial role in the preparation of polyvinyl chloride (PVC) gels for optical applications. Incorrect temperature selection can lead to various issues such as poor surface roughness, inadequate light transmission, and insufficient solution for optical devices. To address this challenge, this study focuses on the preparation of PVC gel samples by combining PVC powder (__n__ = 3000), eco-friendly dibutyl adipate, and tetrahydrofuran at different stirring temperatures ranging from 40 to 70 °C. The PVC gel preparation process is categorized into four groups (__T__40, __T__50, __T__60, and __T__70) based on the mixing temperatures, employing a controlled test method with specific temperature conditions. The prepared PVC gel samples are then subjected to analysis to evaluate various properties including surface morphology, tensile strength, light transmittance, and electrical response time. Among the samples, the PVC gel prepared at 60 °C (referred to as T60) exhibits excellent optical properties, with a transmittance of 91.2% and a tensile strength of 2.07 MPa. These results indicate that 60 °C is an optimal reaction temperature. Notably, the PVC gel microlenses produ
Who reads Characteristics Analysis of Plasticized Polyvinyl Chloride Gel-Based Microlens at Different Temperatures?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Xudong Li; Min Lin; Imdad Ali; Ahmed Ali; Muhammad Irfan; Toufique A. Soomro; Seung Ho Choi; Weimin Yang; Haoyi Li; Saifur Rahman; Salim Nasar Faraj Mursal; Abdulnour Ali Jazem Ghanim; Othman Alyahyawy; Morooj A. Al thagafi
- Publisher
- American Chemical Society (ACS)
- Published
- 2023
- Language
- EN
- Field
- Engineering (Physical Sciences)