Dissertation > Excellent graduate degree dissertation topics show

Effect of Preparation Process on the Adhesion Strength of SiO2/PET Composite Packaging Films

Author: SunMin
Tutor: DingZeLiang
School: Hunan University
Course: Mechanical Manufacturing and Automation
Keywords: packaging film PET SiO2 bonding strength preparationprocess
CLC: TB484
Type: Master's thesis
Year: 2013
Downloads: 18
Quote: 0
Read: Download Dissertation

Abstract


SiO2/PET composite packaging film is a new type of flexiblepackaging material, it has intrinsic characteristics, such as: excellentbarrier properties, good transparency, boiling resistance, microwave andenvironmental protection. Because of these advantages, it is widely usedin food, medicine and daily chemical, etc. In this paper, SiO2/PETcomposite packaging film was prepared by depositing SiO2on PETsubstrates through magnetron sputtering technology, the state of SiO2particles and its dispersion properties in PET matrix were characterizedby scanning electron microscopy (SEM), energy dispersive spectroscopy(EDS) and adhesion strength tester. During the process, the effects ofsubstrate cleaning process, sputtering process parameters andintermediate layer on the bonding strength of the coating-substrate systemwere investigated systematically.Firstly,the effects of different cleaning techniques of PET substratesand process parameters of plasma cleaning on the bonding strength of thecoating-substrate system were studied. The results showed that:(1) thebonding strength of coating-substrate system after plasma cleaning wasincreased by7.83%,27.27%and55.56%compared with that of the deepcleaning, general cleaning and no cleaning, respectively;(2) in plasmacleaning process, the bonding strength firstly increased and thendecreased with the increase of cleaning time, radio-frequency power andargon flow. The bonding strength of coating-substrate system was up to amaximum at the argon flow of25mL/min, cleaning power of200W andcleaning time was300s.Secondly, the effects of the radio-frequency power, sputtering time,argon flow and local vacuum on the bonding strength of thecoating-substrate system were studied. The results showed that:(1) thebonding strength firstly increased and then decreased with the increase ofsputtering time, radio-frequency power and argon flow;(2) the bondingstrength of coating-substrate system increased with the increasing localvacuum;(3) in the four process parameters,sputtering time had thegreatest effect on bonding strength, followed by radio-frequency power, local vacuum and argon flow;(4) the optimal process parameters wereobtained: radio-frequency power of200W, sputtering time of90min,argon flow of20mL/min and local vacuum of1.5×10-4Pa.Lastly, the effects of interlayer on the bonding strength of thecoating-substrate system were studied. The results showed that:(1) thebonding strength of coating-substrate system was improved by depositingAl2O3interlayer between SiO2film and PET substrates;(2) the optimalvalue of film thickness existed. The maximum of bonding strength ofcoating-substrate system will not be obtained with a larger or smallerthickness.

Related Dissertations

  1. Fire Retardancy Performance of Poly (Ethylene Terephthalate) Containing Melamine Cyanurate,TB383.1
  2. Study on Properties of Ce、Co、Ni/V-W/TiO2 Modified by Composite Sol for Selective Catalytic Reduction,X701
  3. Preparation and Characterization of Polymer Micro/Nano Fibers by Laser Melt Electrospinning,TQ340.64
  4. Modification for PVA-Based Composite Packaging Material with Nano-SiO2 and Its Influence on Fresh Preservation Effect of Salted Duck Eggs,TS253.46
  5. The Cloing、Expression and Initial Assessment of Immunoprection of Thioredoxin Glutathione Reductase of Schistosomiasis Japonicum,R392
  6. Synthesis of Acridine Fluorescent Probes Based on PET for the Determination of Metal Ions,O657.3
  7. Synthesis of 1,4-Butynediol from HCHO and C2H2 Over CuO-Bi2O3/MgO-SiO2,TQ223.162
  8. The Standard Uptake Value of 18F-FDG PET/CT Imaging in the Application of Diagnosis of Gastric Cancer,R735.2
  9. Surface Modification of Al-alloy for Improving Bonding Strength with Pps and the Corrosion Resistance of Al-alloy,TG174.4
  10. Investigation of Plasma Sprayed NiCr-Cr3C2 Coating on Mould CrZrCu Alloy Plates,TG174.442
  11. Preparation and Characterization of Multifunctional Fe3O4/ZnO/SiIO2 Nanocomposites,TB383.1
  12. Study on Preparation and Dyeing Technology of PANI/PET Composite Fabric,TS193
  13. Study on A Reduction-bonding Process for Manufacturing Stainless Steel Clad Strip,TG335.11
  14. Synthesis of 5,6-member Heterocyclic Compounds Using Multi-component Reactions,O626
  15. Research on Novel and Highly Efficient Modified Hybrid CrOx-B/SiO2 Catalyst for Ethylene Polymerization,TQ325.12
  16. The Rheological and Adhesion Properties of EVA-based Hot Melt Adhesives,TQ436.4
  17. Structure and Performance of Fe-based Amorphous Coatings Prepared by HVAF and HVOF,TG174.4
  18. The Monomer Compoment and Fillers Microstructure Effect on the Properties of Dental Resin Composites,R783.1
  19. Design and Implementation of Data Transmission on Micro-PET,TN919.3
  20. Preparation Process Optimization of Mn-Zn Ferrite from Low-grade Manganese Ore,TM277
  21. PTT / PET composite fibers and fabrics juxtaposed Elasticity,TS156

CLC: > Industrial Technology > General industrial technology > Industrial common technology and equipment > Packaging Engineering > Packaging materials
© 2012 www.DissertationTopic.Net  Mobile