{"paper_id":"49f6f8df-dd9a-4a86-ab96-973128148ab7","body_text":"The Effect of Fiber-Adhesive Composite on Bond Strength of Plastic Plates- Part IV: The Effect of Temperature on the Mechanical Behavior and Mechanical Properties | Research Square window.SnipcartSettings = { analytics: { enabled: false } }; (function() { var accessVector = localStorage.getItem('access_vector') || ''; window.dataLayer = window.dataLayer || []; if (accessVector) { window.dataLayer.push({ user: { profile: { profileInfo: { snid: accessVector } } } }); } })(); (function(w,d,s,l,i){w[l]=w[l]||[];w[l].push({'gtm.start':new Date().getTime(),event:'gtm.js'});var f=d.getElementsByTagName(s)[0],j=d.createElement(s),dl=l!='dataLayer'?'&l='+l:'';j.async=true;j.src='https://www.googletagmanager.com/gtm.js?id='+i+dl;f.parentNode.insertBefore(j,f);})(window,document,'script','dataLayer','GTM-K279D39R'); Browse Preprints In Review Journals COVID-19 Preprints AJE Video Bytes Research Tools Research Promotion AJE Professional Editing AJE Rubriq About Preprint Platform In Review Editorial Policies Our Team Advisory Board Help Center Sign In Submit a Preprint Cite Share Download PDF Research Article The Effect of Fiber-Adhesive Composite on Bond Strength of Plastic Plates- Part IV: The Effect of Temperature on the Mechanical Behavior and Mechanical Properties Abdelaziz Noaman This is a preprint; it has not been peer reviewed by a journal. https://doi.org/ 10.21203/rs.3.rs-3760784/v1 This work is licensed under a CC BY 4.0 License Status: Posted Version 1 posted You are reading this latest preprint version Abstract Composite truss core sandwich structures have the significant advantage in astronautic and aeronautic applications owing to their high specific stiffness and strength. In recent years, different composite sandwich panels have been designed, tested, and analyzed. The mechanical properties of composite materials may suffer when the material is exposed to high temperature, high humidity environments. Glass fiber reinforced plastics composite is extensively used as a structural material for pools, oil pipes and tanks because it has good corrosion resistance properties. In this work, the effect of temperature on PVC/PVC sandwich plates having 0.95 Wt.% glass fiber blended with different types of adhesives (epoxy, polyester, and polyvinyl chloride) is studied. Different temperatures (35 o C, 45 o C, 55 o C, 65 o C and 75 o C) as well as three times of exposure (2 hrs.,4 hrs. and 6 hrs.) is adopted. The mechanical properties such as tensile strength, ultimate strength, modulus of elasticity, energy to fracture, impact energy and adhesion shear at different temperatures are studied. The activation energy of PVC /PVC sandwich plates having glass fiber as reinforced material blended different adhesives was studied It has been found that the mechanical properties of PVC /PVC sandwich plates having 0.95 Wt.% glass fiber blended with different types of adhesives the mechanical properties are affected by temperature. In addition, it has been found that the activation energy of PVC /PVC sandwich plates having glass fiber as a reinforced material blended with polyvinyl acetate is the largest compared with epoxy and polyester. Activation energy glass fiber epoxy polyester polyvinyl acetate temperature PVC Full Text Additional Declarations No competing interests reported. Supplementary Files Graphicalabstract.pptx Cite Share Download PDF Status: Posted Version 1 posted You are reading this latest preprint version Research Square lets you share your work early, gain feedback from the community, and start making changes to your manuscript prior to peer review in a journal. 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Also discoverable on Platform About Our Team In Review Editorial Policies Advisory Board Help Center Resources Author Services Accessibility API Access RSS feed Manage Cookie Preferences © Research Square 2026 | ISSN 2693-5015 (online) Privacy Policy Terms of Service Do Not Sell My Personal Information {\"props\":{\"pageProps\":{\"initialData\":{\"identity\":\"rs-3760784\",\"acceptedTermsAndConditions\":true,\"allowDirectSubmit\":true,\"archivedVersions\":[],\"articleType\":\"Research Article\",\"associatedPublications\":[],\"authors\":[{\"id\":260161872,\"identity\":\"faec5633-bc2b-4654-9538-2e7f7395056d\",\"order_by\":0,\"name\":\"Abdelaziz Noaman\",\"email\":\"data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAZAAAAAyAQMAAABI0h/eAAAABlBMVEX///8AAABVwtN+AAAACXBIWXMAAA7EAAAOxAGVKw4bAAABGklEQVRIiWNgGAWjYDACCQYDhgcMDDxwAX4QARQxwKslAVmLZAMDY0MCEVoQwOAAAS38s5s3PkioqZORb+A9+OBnjl2e8fEe8wcJFTbGDOyHj27AZsmdY8UGCcfYeBgb+JINe7clF5udOWPYkHAmzYyBJy3tBjZrbuSYSSSw8fAwM/CYSfBuY07cdiPHsCGx7bANgwSPGTYt8jdyzH8k/JPgYQNqkfy7rT5x8wwCWgyAtjAkthnw8AC1SPNuO5y4QQKixQyXFkOgXyQS+xJ4JJh5jI1ltx1PnHHmWOEMoF+M2XD4Re5288YPH77V2cu39xg+fLutOrG/vXnDhw8VNob97IePYfU+HDCjC7DhVT4KRsEoGAWjAB8AABqpYktSMB6eAAAAAElFTkSuQmCC\",\"orcid\":\"\",\"institution\":\"Minia University\",\"correspondingAuthor\":true,\"submittingAuthor\":false,\"prefix\":\"\",\"firstName\":\"Abdelaziz\",\"middleName\":\"\",\"lastName\":\"Noaman\",\"suffix\":\"\"}],\"badges\":[],\"createdAt\":\"2023-12-15 21:59:02\",\"currentVersionCode\":1,\"declarations\":\"\",\"doi\":\"10.21203/rs.3.rs-3760784/v1\",\"doiUrl\":\"https://doi.org/10.21203/rs.3.rs-3760784/v1\",\"draftVersion\":[],\"editorialEvents\":[],\"editorialNote\":\"\",\"failedWorkflow\":false,\"files\":[{\"id\":48459657,\"identity\":\"a0d54359-cdae-4a32-812c-44ec7c7d21c8\",\"added_by\":\"auto\",\"created_at\":\"2023-12-19 13:22:45\",\"extension\":\"pdf\",\"order_by\":1,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"manuscript-pdf\",\"size\":1400626,\"visible\":true,\"origin\":\"\",\"legend\":\"\",\"description\":\"\",\"filename\":\"EffectofFiberPartIV.pdf\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-3760784/v1_covered_afa5b257-7761-4c31-a78e-3dd075339bf2.pdf\"},{\"id\":48434453,\"identity\":\"1d301438-8b1a-4f90-8892-ac3588e03193\",\"added_by\":\"auto\",\"created_at\":\"2023-12-19 06:45:16\",\"extension\":\"pptx\",\"order_by\":1,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"supplement\",\"size\":4501100,\"visible\":true,\"origin\":\"\",\"legend\":\"\",\"description\":\"\",\"filename\":\"Graphicalabstract.pptx\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-3760784/v1/24f67c22e08429324d763512.pptx\"}],\"financialInterests\":\"No competing interests reported.\",\"formattedTitle\":\"The Effect of Fiber-Adhesive Composite on Bond Strength of Plastic Plates- Part IV: The Effect of Temperature on the Mechanical Behavior and Mechanical Properties\",\"fulltext\":[],\"fulltextSource\":\"\",\"fullText\":\"\",\"funders\":[],\"hasAdminPriorityOnWorkflow\":false,\"hasManuscriptDocX\":false,\"hasOptedInToPreprint\":true,\"hasPassedJournalQc\":\"\",\"hasAnyPriority\":false,\"hideJournal\":true,\"highlight\":\"\",\"institution\":\"\",\"isAcceptedByJournal\":false,\"isAuthorSuppliedPdf\":true,\"isDeskRejected\":\"\",\"isHiddenFromSearch\":false,\"isInQc\":false,\"isInWorkflow\":false,\"isPdf\":true,\"isPdfUpToDate\":true,\"isWithdrawnOrRetracted\":false,\"journal\":{\"display\":true,\"email\":\"info@researchsquare.com\",\"identity\":\"researchsquare\",\"isNatureJournal\":false,\"hasQc\":true,\"allowDirectSubmit\":true,\"externalIdentity\":\"\",\"sideBox\":\"\",\"snPcode\":\"\",\"submissionUrl\":\"/submission\",\"title\":\"Research Square\",\"twitterHandle\":\"researchsquare\",\"acdcEnabled\":true,\"dfaEnabled\":false,\"editorialSystem\":\"\",\"reportingPortfolio\":\"\",\"inReviewEnabled\":false,\"inReviewRevisionsEnabled\":true},\"keywords\":\"Activation energy, glass fiber, epoxy, polyester, polyvinyl acetate, temperature, PVC\",\"lastPublishedDoi\":\"10.21203/rs.3.rs-3760784/v1\",\"lastPublishedDoiUrl\":\"https://doi.org/10.21203/rs.3.rs-3760784/v1\",\"license\":{\"name\":\"CC BY 4.0\",\"url\":\"https://creativecommons.org/licenses/by/4.0/\"},\"manuscriptAbstract\":\"\\u003cp\\u003eComposite truss core sandwich structures have the significant advantage in astronautic and aeronautic applications owing to their high specific stiffness and strength. In recent years, different composite sandwich panels have been designed, tested, and analyzed. The mechanical properties of composite materials may suffer when the material is exposed to high temperature, high humidity environments.\\u003c/p\\u003e \\u003cp\\u003eGlass fiber reinforced plastics composite is extensively used as a structural material for pools, oil pipes and tanks because it has good corrosion resistance properties.\\u003c/p\\u003e \\u003cp\\u003eIn this work, the effect of temperature on PVC/PVC sandwich plates having 0.95 Wt.% glass fiber blended with different types of adhesives (epoxy, polyester, and polyvinyl chloride) is studied. Different temperatures (35 \\u003csup\\u003eo\\u003c/sup\\u003eC, 45 \\u003csup\\u003eo\\u003c/sup\\u003eC, 55 \\u003csup\\u003eo\\u003c/sup\\u003eC, 65 \\u003csup\\u003eo\\u003c/sup\\u003eC and 75 \\u003csup\\u003eo\\u003c/sup\\u003eC) as well as three times of exposure (2 hrs.,4 hrs. and 6 hrs.) is adopted. The mechanical properties such as tensile strength, ultimate strength, modulus of elasticity, energy to fracture, impact energy and adhesion shear at different temperatures are studied. The activation energy of PVC /PVC sandwich plates having glass fiber as reinforced material blended different adhesives was studied\\u003c/p\\u003e \\u003cp\\u003eIt has been found that the mechanical properties of PVC /PVC sandwich plates having 0.95 Wt.% glass fiber blended with different types of adhesives the mechanical properties are affected by temperature. In addition, it has been found that the activation energy of PVC /PVC sandwich plates having glass fiber as a reinforced material blended with polyvinyl acetate is the largest compared with epoxy and polyester.\\u003c/p\\u003e\",\"manuscriptTitle\":\"The Effect of Fiber-Adhesive Composite on Bond Strength of Plastic Plates- Part IV: The Effect of Temperature on the Mechanical Behavior and Mechanical Properties\",\"msid\":\"\",\"msnumber\":\"\",\"nonDraftVersions\":[{\"code\":1,\"date\":\"2023-12-19 06:45:11\",\"doi\":\"10.21203/rs.3.rs-3760784/v1\",\"editorialEvents\":[{\"type\":\"communityComments\",\"content\":0}],\"status\":\"published\",\"journal\":{\"display\":true,\"email\":\"info@researchsquare.com\",\"identity\":\"researchsquare\",\"isNatureJournal\":false,\"hasQc\":true,\"allowDirectSubmit\":true,\"externalIdentity\":\"\",\"sideBox\":\"\",\"snPcode\":\"\",\"submissionUrl\":\"/submission\",\"title\":\"Research Square\",\"twitterHandle\":\"researchsquare\",\"acdcEnabled\":true,\"dfaEnabled\":false,\"editorialSystem\":\"\",\"reportingPortfolio\":\"\",\"inReviewEnabled\":false,\"inReviewRevisionsEnabled\":true}}],\"origin\":\"\",\"ownerIdentity\":\"c0473cb7-021f-42d8-9bde-852e5d34403a\",\"owner\":[],\"postedDate\":\"December 19th, 2023\",\"published\":true,\"recentEditorialEvents\":[],\"rejectedJournal\":[],\"revision\":\"\",\"amendment\":\"\",\"status\":\"posted\",\"subjectAreas\":[],\"tags\":[],\"updatedAt\":\"2023-12-19T13:14:31+00:00\",\"versionOfRecord\":[],\"versionCreatedAt\":\"2023-12-19 06:45:11\",\"video\":\"\",\"vorDoi\":\"\",\"vorDoiUrl\":\"\",\"workflowStages\":[]},\"version\":\"v1\",\"identity\":\"rs-3760784\",\"journalConfig\":\"researchsquare\"},\"__N_SSP\":true},\"page\":\"/article/[identity]/[[...version]]\",\"query\":{\"redirect\":\"/article/rs-3760784\",\"identity\":\"rs-3760784\",\"version\":[\"v1\"]},\"buildId\":\"7rjqhiLT3MXkJMwkYKINL\",\"isFallback\":false,\"isExperimentalCompile\":false,\"dynamicIds\":[84888],\"gssp\":true,\"scriptLoader\":[]}","source_license":"CC-BY-4.0","license_restricted":false}