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Erschienen in: Wood Science and Technology 4/2018

06.03.2018 | Original

Adhesive properties of laminated veneer lumber poles for use in temporary soil nailing: development and evaluation of a test method for curved structures in a high-alkaline environment

verfasst von: Sebastian Hirschmüller, Johann Pravida, Roman Marte, Michael Flach

Erschienen in: Wood Science and Technology | Ausgabe 4/2018

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Abstract

Innovative circular, hollow, laminated veneer lumber (LVL) beech sections for use as temporary geotechnical soil reinforcement members are currently being developed. Appropriate surface gluing quality between the veneers is fundamental to this subsoil application of the permanently cement-embedded, engineered timber product. The circular cross-section geometry and the permanently high-alkaline environment of the structural member is not covered by presently standardized testing and conditioning methods for examining LVL surface bond line quality. The sample conditioning and tensile shear test method compliant with EN 302-1 (Adhesives for load-bearing timber structures—test methods—part 1: determination of longitudinal tensile shear strength, European Committee for Standardization, Brussels, 2013) was modified to determine bonding parameters for circular, hollow LVL sections. Bond line curvature, groove cutting depth and sample geometry were found to greatly influence stress distribution, percentage of wood failure and tensile shear strength. Short-term alkaline treatment of test samples did not significantly influence the bonding performance, wood failure percentage, tensile shear strength and fracture patterns. To improve tensile shear strength, adhesives with different material rigidities were used and compared. An orthotropic, elastic numerical analysis revealed a greater influence of adherent elasticity than adhesive elasticity on the stress distribution within the bond line. With regard to determining the bond line integrity of curved veneer poles, a sample geometry compliant with EN 302-1 (2013) was developed and numerically evaluated.

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Literatur
Zurück zum Zitat Altunok M, Percin O, Wetzig M, Niemz P (2013) Eigenschaften von Schichtholz (LVL) aus wärmebehandelten Furnieren verschiedener Holzarten (Properties of laminated veneer lumber from heat-treated veneers of various wood species). Holztechnologie 54(4):5–10 Altunok M, Percin O, Wetzig M, Niemz P (2013) Eigenschaften von Schichtholz (LVL) aus wärmebehandelten Furnieren verschiedener Holzarten (Properties of laminated veneer lumber from heat-treated veneers of various wood species). Holztechnologie 54(4):5–10
Zurück zum Zitat Beck C, Taranczsweski R (2013) Einrichtung zur Herstellung eines aus mehreren Lagen von Blättern aus Holz als Furniere bestehenden Rohres und damit hergestelltes Rohr (Equipment for manufacturing a tube consisting of several layers of wood as veneers and the manufactured tube). Patent application DE 10 2013 208 166 A1; Applicant: LignoTUBE technologies GmbH & Co. KG, 01237 Dresden Beck C, Taranczsweski R (2013) Einrichtung zur Herstellung eines aus mehreren Lagen von Blättern aus Holz als Furniere bestehenden Rohres und damit hergestelltes Rohr (Equipment for manufacturing a tube consisting of several layers of wood as veneers and the manufactured tube). Patent application DE 10 2013 208 166 A1; Applicant: LignoTUBE technologies GmbH & Co. KG, 01237 Dresden
Zurück zum Zitat Brandmair A, Wetzig M, Aigner N, Haß P, Clauß S, Niemz P (2010) Verfahrenstechnische Optimierung von PUR-basierten Klebstoffen zur Verklebung von Laubholz und Materialkombinationen (Process-related optimisation of PUR based adhesives for hardwood bonding): ETHZ/IfBHP Nr. 55. Forest & Timber project No. 2008.09. Swiss Federal Institute of Technology, Institute for Building Materials, Zürich Brandmair A, Wetzig M, Aigner N, Haß P, Clauß S, Niemz P (2010) Verfahrenstechnische Optimierung von PUR-basierten Klebstoffen zur Verklebung von Laubholz und Materialkombinationen (Process-related optimisation of PUR based adhesives for hardwood bonding): ETHZ/IfBHP Nr. 55. Forest & Timber project No. 2008.09. Swiss Federal Institute of Technology, Institute for Building Materials, Zürich
Zurück zum Zitat Brockmann W, Geiss PL, Klingen J, Schröder B (2012) Klebtechnik; Klebstoffe, Anwendungen und Verfahren (Adhesive technology; adhesives, applications and processes). Wiley-VCH Verlag GmbH & Co. KGaA, Somerset Brockmann W, Geiss PL, Klingen J, Schröder B (2012) Klebtechnik; Klebstoffe, Anwendungen und Verfahren (Adhesive technology; adhesives, applications and processes). Wiley-VCH Verlag GmbH & Co. KGaA, Somerset
Zurück zum Zitat DIN 53255 (2017) Testing of wood adhesives and glued wood joints—mechanical delamination tests by grooving and chopping. German Institute for Standardization, Berlin DIN 53255 (2017) Testing of wood adhesives and glued wood joints—mechanical delamination tests by grooving and chopping. German Institute for Standardization, Berlin
Zurück zum Zitat EN 13986 (2015) Wood-based panels for use in construction—characteristics, evaluation of conformity and marking. European Committee for Standardization, Brussels EN 13986 (2015) Wood-based panels for use in construction—characteristics, evaluation of conformity and marking. European Committee for Standardization, Brussels
Zurück zum Zitat EN 14080 (2013) Timber structures—glued laminated timber and glued solid timber—requirements. European Committee for Standardization, Brussels EN 14080 (2013) Timber structures—glued laminated timber and glued solid timber—requirements. European Committee for Standardization, Brussels
Zurück zum Zitat EN 14279 (2009) Laminated veneer lumber (LVL)—definitions, classification and specifications. European Committee for Standardization, Brussels EN 14279 (2009) Laminated veneer lumber (LVL)—definitions, classification and specifications. European Committee for Standardization, Brussels
Zurück zum Zitat EN 14374 (2004) Timber structures—structural laminated veneer lumber—requirements. European Committee for Standardization, Brussels EN 14374 (2004) Timber structures—structural laminated veneer lumber—requirements. European Committee for Standardization, Brussels
Zurück zum Zitat EN 14490 (2010) Execution of special geotechnical works—soil nailing. European Committee for Standardization, Brussels EN 14490 (2010) Execution of special geotechnical works—soil nailing. European Committee for Standardization, Brussels
Zurück zum Zitat EN 15425 (2017) Adhesives—one component polyurethane (PUR) for load-bearing timber structures—classification and performance requirements. European Committee for Standardization, Brussels EN 15425 (2017) Adhesives—one component polyurethane (PUR) for load-bearing timber structures—classification and performance requirements. European Committee for Standardization, Brussels
Zurück zum Zitat EN 16351 (2015) Timber structures—cross laminated timber—requirements. European Committee for Standardization, Brussels EN 16351 (2015) Timber structures—cross laminated timber—requirements. European Committee for Standardization, Brussels
Zurück zum Zitat EN 302-1 (2013) Adhesives for load-bearing timber structures—test methods—part 1: determination of longitudinal tensile shear strength. European Committee for Standardization, Brussels EN 302-1 (2013) Adhesives for load-bearing timber structures—test methods—part 1: determination of longitudinal tensile shear strength. European Committee for Standardization, Brussels
Zurück zum Zitat EN 314-1 (2004) Plywood—bonding quality—part 1: test methods. European Committee for Standardization, Brussels EN 314-1 (2004) Plywood—bonding quality—part 1: test methods. European Committee for Standardization, Brussels
Zurück zum Zitat EN 314-2 (1993) Plywood; bonding quality; part 2: requirements. European Committee for Standardization, Brussels EN 314-2 (1993) Plywood; bonding quality; part 2: requirements. European Committee for Standardization, Brussels
Zurück zum Zitat EN 322 (1993) Wood-based panels—determination of moisture content. European Committee for Standardization, Brussels EN 322 (1993) Wood-based panels—determination of moisture content. European Committee for Standardization, Brussels
Zurück zum Zitat EN 635–2 (1995) Plywood—classification by surface appearance—part 2: hardwood. European Committee for Standardization, Brussels EN 635–2 (1995) Plywood—classification by surface appearance—part 2: hardwood. European Committee for Standardization, Brussels
Zurück zum Zitat Frihart CR (2009) Adhesive groups and how they relate to the durability of bonded wood. J Adhes Sci Technol 23:601–617CrossRef Frihart CR (2009) Adhesive groups and how they relate to the durability of bonded wood. J Adhes Sci Technol 23:601–617CrossRef
Zurück zum Zitat Gilbert BP, Underhill ID, Bailleres H, El Hanandeh A, McGavin RL (2014) Veneer based composite hollow utility poles manufactured from hardwood plantation thinned trees. Constr Build Mater 66:458–466CrossRef Gilbert BP, Underhill ID, Bailleres H, El Hanandeh A, McGavin RL (2014) Veneer based composite hollow utility poles manufactured from hardwood plantation thinned trees. Constr Build Mater 66:458–466CrossRef
Zurück zum Zitat Grabner M, Wolf A, Schwabl E, Schickhofer G (2016) Methods of forming veneer structures. In: Eberhardsteiner J, Winter W, Fadai A, Pöll M (eds) WCTE 2016: proceedings of the world conference on timber engineering. Vienna University of Technology, Vienna Grabner M, Wolf A, Schwabl E, Schickhofer G (2016) Methods of forming veneer structures. In: Eberhardsteiner J, Winter W, Fadai A, Pöll M (eds) WCTE 2016: proceedings of the world conference on timber engineering. Vienna University of Technology, Vienna
Zurück zum Zitat Habenicht G (2009) Adhesive bonding: fundamentals, technologies, applications, 6th edn. VDI-book, Springer, Berlin Habenicht G (2009) Adhesive bonding: fundamentals, technologies, applications, 6th edn. VDI-book, Springer, Berlin
Zurück zum Zitat Hara Y, Kawai S, Sasaki H (1994) Manufacture and mechanical properties of cylindrical laminated veneer lumber. Wood Res 81:28–30 Hara Y, Kawai S, Sasaki H (1994) Manufacture and mechanical properties of cylindrical laminated veneer lumber. Wood Res 81:28–30
Zurück zum Zitat Hashim R, Sarmin SN, Sulaiman O, Yusof LHM (2011) Effects of cold setting adhesives on properties of laminated veneer lumber from oil palm trunks in comparison with rubberwood. Eur J Wood Prod 69:53–61CrossRef Hashim R, Sarmin SN, Sulaiman O, Yusof LHM (2011) Effects of cold setting adhesives on properties of laminated veneer lumber from oil palm trunks in comparison with rubberwood. Eur J Wood Prod 69:53–61CrossRef
Zurück zum Zitat Hata T, Umemura K, Yamauchi H, Nakayama A, Kawai S, Sasaki H (2001) Design and pilot production of a “spiral-winder” for the manufacture of cylindrical laminated veneer lumber. J Wood Sci 47:115–123CrossRef Hata T, Umemura K, Yamauchi H, Nakayama A, Kawai S, Sasaki H (2001) Design and pilot production of a “spiral-winder” for the manufacture of cylindrical laminated veneer lumber. J Wood Sci 47:115–123CrossRef
Zurück zum Zitat Heebink BG (1946) Fluid-pressure molding of plywood. Report, no. R1624. United States Department of Agriculture, Forest Service, Forest Products Laboratory, Madison, Wisconsin Heebink BG (1946) Fluid-pressure molding of plywood. Report, no. R1624. United States Department of Agriculture, Forest Service, Forest Products Laboratory, Madison, Wisconsin
Zurück zum Zitat Hering S (2011) Charakterisierung und Modellierung der Materialeigenschaften von Rotbuchenholz zur Simulation von Holzverklebungen (Characterisation and modelling of the material properties of copper beech for simulating wood adhesion). Dissertation, Eidgenössische Technische Hochschule Zürich Hering S (2011) Charakterisierung und Modellierung der Materialeigenschaften von Rotbuchenholz zur Simulation von Holzverklebungen (Characterisation and modelling of the material properties of copper beech for simulating wood adhesion). Dissertation, Eidgenössische Technische Hochschule Zürich
Zurück zum Zitat Hirschmüller S, Marte R, Pravida J (2016) Laminated veneer lumber poles for temporary soil nailing-Investigation of material properties. In: Eberhardsteiner J, Winter W, Fadai A, Pöll M (eds) WCTE 2016: proceedings of the world conference on timber engineering. Vienna University of Technology, Vienna Hirschmüller S, Marte R, Pravida J (2016) Laminated veneer lumber poles for temporary soil nailing-Investigation of material properties. In: Eberhardsteiner J, Winter W, Fadai A, Pöll M (eds) WCTE 2016: proceedings of the world conference on timber engineering. Vienna University of Technology, Vienna
Zurück zum Zitat Horioka K, Gamoh M (1973) The mechanism and durability of adhesion in wood-glue bonds. In: IUFRO. Devision 5 Forest Products (ed) IUFRO-5 meeting: proceedings. IUFRO, pp 508–527 Horioka K, Gamoh M (1973) The mechanism and durability of adhesion in wood-glue bonds. In: IUFRO. Devision 5 Forest Products (ed) IUFRO-5 meeting: proceedings. IUFRO, pp 508–527
Zurück zum Zitat Kläusler O, Hass P, Amen C, Schlegel S, Niemz P (2014) Improvement of tensile shear strength and wood failure percentage of 1C PUR bonded wooden joints at wet stage by means of DMF priming. Eur J Wood Prod 72:343–354CrossRef Kläusler O, Hass P, Amen C, Schlegel S, Niemz P (2014) Improvement of tensile shear strength and wood failure percentage of 1C PUR bonded wooden joints at wet stage by means of DMF priming. Eur J Wood Prod 72:343–354CrossRef
Zurück zum Zitat Klein B (2009) Leichtbau—Konstruktion; Berechnungsgrundlagen und Gestaltung (Lightweight construction—calculation basis and design), 8th revised and extended edition. Vieweg + Teubner Verlag, Wiesbaden Klein B (2009) Leichtbau—Konstruktion; Berechnungsgrundlagen und Gestaltung (Lightweight construction—calculation basis and design), 8th revised and extended edition. Vieweg + Teubner Verlag, Wiesbaden
Zurück zum Zitat Kollmann F (1951) Technologie des Holzes und der Holzwerkstoffe (Technology of wood and wood-based materials): 1. Bd.: Anatomie und Pathologie, Chemie, Physik, Elastizität und Festigkeit (Volume 1: Anatomy and pathology, chemistry, physics, elasticity and strength), 2nd revised and extended edition. Technology of wood and wood-based materials/Franz Kollmann. Springer Berlin Heidelberg Kollmann F (1951) Technologie des Holzes und der Holzwerkstoffe (Technology of wood and wood-based materials): 1. Bd.: Anatomie und Pathologie, Chemie, Physik, Elastizität und Festigkeit (Volume 1: Anatomy and pathology, chemistry, physics, elasticity and strength), 2nd revised and extended edition. Technology of wood and wood-based materials/Franz Kollmann. Springer Berlin Heidelberg
Zurück zum Zitat Kollmann F (1955) Technologie des Holzes und der Holzwerkstoffe (Technology of wood and wood-based materials): 2. Bd.: Holzschutz, Oberflächenbehandlung, Trocknung und Dämpfen, Veredelung, Holzwerkstoffe, Spanabhebende und Spanlose Holzbearbeitung Holzverbindungen (Volume 2: wood protection, surface treatment, drying and steaming), 2nd revised and extended edition. Technology of wood and wood-based materials/Franz Kollmann. Springer Berlin Heidelberg Kollmann F (1955) Technologie des Holzes und der Holzwerkstoffe (Technology of wood and wood-based materials): 2. Bd.: Holzschutz, Oberflächenbehandlung, Trocknung und Dämpfen, Veredelung, Holzwerkstoffe, Spanabhebende und Spanlose Holzbearbeitung Holzverbindungen (Volume 2: wood protection, surface treatment, drying and steaming), 2nd revised and extended edition. Technology of wood and wood-based materials/Franz Kollmann. Springer Berlin Heidelberg
Zurück zum Zitat Konnerth J, Gindl W, Müller U (2007) Elastic properties of adhesive polymers. I. Polymer films by means of electronic speckle pattern interferometry. J Appl Polym Sci 103(6):3936–3939CrossRef Konnerth J, Gindl W, Müller U (2007) Elastic properties of adhesive polymers. I. Polymer films by means of electronic speckle pattern interferometry. J Appl Polym Sci 103(6):3936–3939CrossRef
Zurück zum Zitat Krackler V, Keunecke D, Niemz P (2010) Verarbeitung und Verwendungsmöglichkeiten von Laubholz und Laubholzresten (Processing and application possibilities of hardwood and hardwood waste). IfB project study. Swiss Federal Institute of Technology, Institute for Building Materials, Zurich Krackler V, Keunecke D, Niemz P (2010) Verarbeitung und Verwendungsmöglichkeiten von Laubholz und Laubholzresten (Processing and application possibilities of hardwood and hardwood waste). IfB project study. Swiss Federal Institute of Technology, Institute for Building Materials, Zurich
Zurück zum Zitat Kufner M (1978) Elastizitätsmodul und Zugfestigkeit von Holz verschiedener Rohdichte in Abhängigkeit vom Feuchtigkeitsgehalt (Elasticity module and tensile strength of wood of various raw densities, depending on moisture content). Holz Roh- Werkst 36(11):435–439CrossRef Kufner M (1978) Elastizitätsmodul und Zugfestigkeit von Holz verschiedener Rohdichte in Abhängigkeit vom Feuchtigkeitsgehalt (Elasticity module and tensile strength of wood of various raw densities, depending on moisture content). Holz Roh- Werkst 36(11):435–439CrossRef
Zurück zum Zitat Künniger T (2007) Automatische Bestimmung des prozentualen Faserbruchanteils bei der industriellen Klebfestigkeitsprüfung (Automatic determination of the wood failure percentage in industrial bond strength testing): final report. FFWH project ID 2006.05. Swiss Federal Laboratories for Materials Science and Technology, Dübendorf Künniger T (2007) Automatische Bestimmung des prozentualen Faserbruchanteils bei der industriellen Klebfestigkeitsprüfung (Automatic determination of the wood failure percentage in industrial bond strength testing): final report. FFWH project ID 2006.05. Swiss Federal Laboratories for Materials Science and Technology, Dübendorf
Zurück zum Zitat Ozyhar T, Hering S, Sanabria SJ, Niemz P (2013) Determining moisture-dependent elastic characteristics of beech wood by means of ultrasonic waves. Wood Sci Technol 47:329–341CrossRef Ozyhar T, Hering S, Sanabria SJ, Niemz P (2013) Determining moisture-dependent elastic characteristics of beech wood by means of ultrasonic waves. Wood Sci Technol 47:329–341CrossRef
Zurück zum Zitat Paulitsch M (1986) Methoden der Spanplattenuntersuchung: Grundlagen, Ausführungen, Anwendungen (Methods of investigating chipboard panels: fundamentals, design, applications). Springer, Berlin Paulitsch M (1986) Methoden der Spanplattenuntersuchung: Grundlagen, Ausführungen, Anwendungen (Methods of investigating chipboard panels: fundamentals, design, applications). Springer, Berlin
Zurück zum Zitat prEN 14374 (2016) Timber structures—laminated veneer lumber (LVL)—requirements. European Committee for Standardization, Brussels prEN 14374 (2016) Timber structures—laminated veneer lumber (LVL)—requirements. European Committee for Standardization, Brussels
Zurück zum Zitat Rug W, Lißner A (2011) Untersuchungen zur Festigkeit und Tragfähigkeit von Holz unter dem Einfluss chemisch-aggressiver Medien (Investigations on the strength and load-bearing capacity of wood under the influence of chemically aggressive media). Bautechnik 88:177–188CrossRef Rug W, Lißner A (2011) Untersuchungen zur Festigkeit und Tragfähigkeit von Holz unter dem Einfluss chemisch-aggressiver Medien (Investigations on the strength and load-bearing capacity of wood under the influence of chemically aggressive media). Bautechnik 88:177–188CrossRef
Zurück zum Zitat Sasaki H, Kawai S (1994) Recent research and development work on wood composites in Japan. Wood Sci Technol 28(4):241–248CrossRef Sasaki H, Kawai S (1994) Recent research and development work on wood composites in Japan. Wood Sci Technol 28(4):241–248CrossRef
Zurück zum Zitat Schmidt M (2014) Die Verklebung von Buchenholz für tragende Holzbauteile unter besonderer Berücksichtigung der Farbverkernung (Bonding beech wood for load-bearing timber structures with particular consideration of coloured cores). Dissertation, Technische Universität München Schmidt M (2014) Die Verklebung von Buchenholz für tragende Holzbauteile unter besonderer Berücksichtigung der Farbverkernung (Bonding beech wood for load-bearing timber structures with particular consideration of coloured cores). Dissertation, Technische Universität München
Zurück zum Zitat Shukla SR, Kamdem DP (2009) Properties of laboratory made yellow poplar (Liriodendron tulipifera) laminated veneer lumber: effect of the adhesives. Eur J Wood Prod 67:397–405CrossRef Shukla SR, Kamdem DP (2009) Properties of laboratory made yellow poplar (Liriodendron tulipifera) laminated veneer lumber: effect of the adhesives. Eur J Wood Prod 67:397–405CrossRef
Zurück zum Zitat Srinivasan N, Jayaraman K, Bhattacharyya D (2008) Profile production in multi-veneer sheets by continuous roll forming. Holzforschung 62:453–460CrossRef Srinivasan N, Jayaraman K, Bhattacharyya D (2008) Profile production in multi-veneer sheets by continuous roll forming. Holzforschung 62:453–460CrossRef
Zurück zum Zitat Stundl K (1955) Effects of phenolic sewages on receiving water and groundwater. Pathobiology 18:1012–1017CrossRef Stundl K (1955) Effects of phenolic sewages on receiving water and groundwater. Pathobiology 18:1012–1017CrossRef
Zurück zum Zitat Tamburini U (1970) Alkaline degradation of wood: effects on Young’s modulus. Wood Sci Technol 4:284–291CrossRef Tamburini U (1970) Alkaline degradation of wood: effects on Young’s modulus. Wood Sci Technol 4:284–291CrossRef
Zurück zum Zitat Wittkowsky C (1896) Wooden vessel consisting of veneers. Patent application US 565655A; Applicant: Carl Wittkowsky, Berlin, Germany Wittkowsky C (1896) Wooden vessel consisting of veneers. Patent application US 565655A; Applicant: Carl Wittkowsky, Berlin, Germany
Zurück zum Zitat Z-9.1-837 (2013) Brettschichtholz aus Buchen-Furnierschichtholz (Laminated timber made of beech laminated veneer lumber). German Institute for Structural Engineering, Berlin Z-9.1-837 (2013) Brettschichtholz aus Buchen-Furnierschichtholz (Laminated timber made of beech laminated veneer lumber). German Institute for Structural Engineering, Berlin
Zurück zum Zitat Z-9.1-842 (2015) Laminated veneer lumber “STEICOLVL R”, “STEICOLVL RS”, STEICOLVL X”. German Institute for Structural Engineering Z-9.1-842 (2015) Laminated veneer lumber “STEICOLVL R”, “STEICOLVL RS”, STEICOLVL X”. German Institute for Structural Engineering
Metadaten
Titel
Adhesive properties of laminated veneer lumber poles for use in temporary soil nailing: development and evaluation of a test method for curved structures in a high-alkaline environment
verfasst von
Sebastian Hirschmüller
Johann Pravida
Roman Marte
Michael Flach
Publikationsdatum
06.03.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Wood Science and Technology / Ausgabe 4/2018
Print ISSN: 0043-7719
Elektronische ISSN: 1432-5225
DOI
https://doi.org/10.1007/s00226-018-0997-y

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