Contact Electrification and Adhesion Between Dissimilar Materials
Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5...
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Published in | Science (American Association for the Advancement of Science) Vol. 256; no. 5055; pp. 362 - 364 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Washington, DC
American Society for the Advancement of Science
17.04.1992
American Association for the Advancement of Science The American Association for the Advancement of Science |
Subjects | |
Online Access | Get full text |
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Abstract | Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general. |
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AbstractList | Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smoothe insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general. Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general. (Author) |
Audience | Academic |
Author | Smith, Douglas T. Horn, Roger G. |
Author_xml | – sequence: 1 givenname: Roger G. surname: Horn fullname: Horn, Roger G. – sequence: 2 givenname: Douglas T. surname: Smith fullname: Smith, Douglas T. |
BackLink | http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=5289771$$DView record in Pascal Francis https://www.ncbi.nlm.nih.gov/pubmed/17743112$$D View this record in MEDLINE/PubMed |
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ContentType | Journal Article |
Copyright | Copyright 1992 American Association for the Advancement of Science 1992 INIST-CNRS COPYRIGHT 1992 American Association for the Advancement of Science COPYRIGHT 1992 American Association for the Advancement of Science Copyright American Association for the Advancement of Science Apr 17, 1992 |
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Keywords | Attraction interaction Mean free path Dielectric materials Solid solid interface Spontaneous Elastic deformation Experimental study Adhesion Inorganic compound Charge density Energy gap Silicon Oxides Electrostatic electrification Charge transfer Mica |
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References | (e_1_2_1_9_1) 1987; 36 (e_1_2_1_7_1) 1987; 115 (e_1_2_1_18_1) 1990; 5 (e_1_2_1_13_1) 1971; 325 (e_1_2_1_16_1) 1990; 170 (e_1_2_1_10_1) 1989; 23 (e_1_2_1_5_1) 1991; 30 (e_1_2_1_3_1) 1976; 9 e_1_2_1_12_1 (e_1_2_1_1_1) 1978; 358 (e_1_2_1_17_1) 1988; 53 e_1_2_1_2_1 (e_1_2_1_6_1) 1989; 162 e_1_2_1_11_1 (e_1_2_1_19_1) 1969; 52 (e_1_2_1_4_1) 1985; 16 (e_1_2_1_14_1) 1980; 29 (e_1_2_1_8_1) 1978; 74 (e_1_2_1_15_1) 1991; 26 (e_1_2_1_20_1) 1991; 70 |
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Snippet | Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one... |
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SubjectTerms | Adhesion Adhesion (Surface chemistry) Charge density Chemistry Condensed matter: electronic structure, electrical, magnetic, and optical properties Electricity Electrification Electrodes Electrometers Electronic structure and electrical properties of surfaces, interfaces, thin films and low-dimensional structures Electronic transport in interface structures Electrostatics Exact sciences and technology Mica Micrometers Nitrogen Physics Reprography Silver |
Title | Contact Electrification and Adhesion Between Dissimilar Materials |
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