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Viscoelastic web curl due to storage in wound rolls, TAPPI Journal July 2020
ABSTRACT: Winding is often the final operation in a roll-to-roll manufacturing process. Web materials, i.e., materials that are thin compared to their length, are wound into rolls because this form is the only practical means to store them. The resulting bending strains and associated stresses are large for thick webs and laminates. As many webs are viscoelastic on some time scale, bending stresses lead to creep and inhomogeneous changes in length. When the web material is unwound and cut into discrete samples, a residual curvature remains. This curvature, called curl, is the inability for the web to lie flat at no tension. Curl is an undesirable web defect that causes loss of productivity in a subsequent web process. This paper describes the development and implementation of modeling and experimental tools to explore and mitigate curl in homogenous webs. Two theoretical and numerical methods that allow the prediction of curl in a web are developed: a winding software based on bending recovery theory, and the implementation of dynamic simula-tions of winding. One experimental method is developed that directly measures the curl online by taking advantage of the anticlastic bending resulting from the curl. These methods are demonstrated for a low-density polyethylene web.
Journal articles
Magazine articles
Cationic emulsions of maleic anhydride derivatives of oleic and abietic acid for hydrophobic sizing of paper, TAPPI Journal 2020
ABSTRACT: Ordinary rosin sizing agents are mixtures of resin acids that include abietic acid and related compounds obtained from softwoods such as pine. Fatty acids, which are another byproduct of the kraft pulping of soft-wood species, also may have hydrophobic effects, but their use as sizing agents has seldom been considered. In the current study, abietic acid and oleic acid, in the absence of other components, were first modified by reaction with maleic acid anhydride. Then, the maleated derivatives (maleated oleic acid [MOA] and maleated abietic acid [MAA]), which were emulsified with cationic starch at the 1:1 and 3:2 ratio, respectively, were added to fiber furnish containing aluminum sulfate (papermaker’s alum). The prepared sheets were dried with a rotating drum on one side at 100°C at low pressure to cure the sizing agents. The chemical, optical strength, and absorption properties were measured. The presence of the sizing material was confirmed using time of flight secondary ion mass spectrometry (ToF-SIMS), and the retention of the sizing agent on fibers was supported by evidence of hydrocarbons on the paper surface. In addition to achieving sufficient water resistance features with MAA, a lesser hydrophobic character was obtained when using MOA. Compared to commercial applications, relatively large amounts of sizing agent were used to obtain a sufficient sizing degree. The MOA required 5% addition to achieve a similar sizing degree as MAA at the 2% level. The sizing treatments also resulted in substantial increases in tensile index value. Since cationic starch was used in the formulation of the sizing agents, the increase in tensile index may have been due to the influence of cationic starch. Contributions to paper strength from a combination of ionic complexation and mutual association of hydrophobic groups is also proposed. Depending on the amount of sizing agent, the yellowness increased, especially when sizing with MOA.
Journal articles
Magazine articles
SetPoint: Let’s Give ’Em Something to Talk About, Paper360º March/April 2020
SetPoint: Let’s Give ’Em Something to Talk About, Paper360º March/April 2020
Journal articles
Examination of the potential to reduce water application rat
Examination of the potential to reduce water application rates for hardwood pulp logs stored in wet decks, TAPPI JOURNAL August 2016
Journal articles
Alkyl ketene dimer (AKD) sizing of paper under simplified tr
Alkyl ketene dimer (AKD) sizing of paper under simplified treatment conditions, TAPPI JOURNAL August 2016
NONWOVEN STRUCTURAL INSULATED PANELS FOR CONSTRUCTION APPLICATIONS, 2011 Innovative Nonwovens Conference
NONWOVEN STRUCTURAL INSULATED PANELS FOR CONSTRUCTION APPLICATIONS, 2011 Innovative Nonwovens Conference
Multifunctional Cotton Fabric: Antimicrobial and Durable Press Finish, 2011 Innovative Nonwovens Conference
Multifunctional Cotton Fabric: Antimicrobial and Durable Press Finish, 2011 Innovative Nonwovens Conference
Electronic Nonwovens by Atomic Layer Deposition, 2011 Innovative Nonwovens Conference
Electronic Nonwovens by Atomic Layer Deposition, 2011 Innovative Nonwovens Conference
Filtration Efficiency of the Composite Media Prepared by Meltblown & Electrospun Nanofibers, 2011 Innovative Nonwovens Conference
Filtration Efficiency of the Composite Media Prepared by Meltblown & Electrospun Nanofibers, 2011 Innovative Nonwovens Conference
Extremely Water Absorbent Nonwovens Produced with Hydrophilic Water Based Emulsion Polymer, 2011 Innovative Nonwovens Conference
Extremely Water Absorbent Nonwovens Produced with Hydrophilic Water Based Emulsion Polymer, 2011 Innovative Nonwovens Conference