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Bending Strength and Stiffness of Glulam Beams Made of Thermally Modified Beech Timber

机译:由热改进的山毛榉木材制成的胶水束弯曲强度和刚度

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The paper describes tests carried out on structural glued laminated timber (glulam) beams and finger-jointed boards made out of thermally modified hardwood (beech, fagus sylvatica) in the following named as TMTB. The finger joints were bonded with a two-component PRF adhesive and the lamellas were edge-bonded using a two-component MUF adhesive. The finger jointed lamellas were tested in tension, flatwise- and edgewise bending. While automatically produced finger joints mostly showed unsatisfactory strengths, it was possible with manually produced finger joints to achieve higher strength values. Fifty glulam TMTB beams were produced to evaluate their load carrying behaviour. The beams were tested in 4-point bending and the integrity of the glue lines was verified by means of delamination tests and shear tests. Usually it is expected that combining lamellas of a certain strength class to a glulam beam will enhance certain characteristic mechanical properties of the final product compared to the properties of single boards. The results of the tests could not confirm this behaviour for the TMTB glulam beams even if the bond lines proved to be of a satisfactory quality. Hence, a structural use of TMTB glulam seems to be restricted to a limited range of applications.
机译:本文描述了在下面命名为TMTB的下面的热改性硬木(Beech,Fagus Sylvatica)上制成的结构胶合层压木材(Glulam)梁和指连接板上进行的测试。用双组分PRF粘合剂键合手指接头,使用双组分MUF粘合剂进行边缘粘合。用张力,平移和边缘弯曲测试手指接合薄片。虽然自动产生的手指接头大多显示不令人满意的优点,但可以手动产生的手指接头实现更高的强度值。生产五十令吉的TMTB梁以评估其承载行为。在4点弯曲中测试光束,通过分层测试和剪切测试验证胶水线的完整性。通常预期,与单板的性质相比,将一定强度类的LAMELLAS与GLULAM梁的一定强度类的薄片相比将提高最终产品的某些特征力学性能。即使债券线被证明是令人满意的质量,测试的结果也无法确认TMTB Glulam光束的这种行为。因此,TMTB Glulam的结构使用似乎仅限于有限的应用范围。

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