首页> 外文期刊>木材学会誌 >Physical Properties of the Reed (Phragmites australis) Used for the Vibrating Plate of the Japanese Oboe (Hichiriki) I Density variation in the culm and compressive strength in the transverse direction
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Physical Properties of the Reed (Phragmites australis) Used for the Vibrating Plate of the Japanese Oboe (Hichiriki) I Density variation in the culm and compressive strength in the transverse direction

机译:用于日本双簧管(Hichiriki)振动板的芦苇(Phragmites australis)的物理特性I横纹方向的密度变化和抗压强度

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摘要

Hichiriki is a traditional Japanese oboe used for Japanese ancient court music (Gagaku). The vibrating plate (Rozetsu) of the hichiriki is made from a reed (Phragmites australis), and the best reed is believed to be harvested in the Udono area along the Yodogawa river. In this study, we observed the anatomical structure of reeds selected by experts, and measured their density and transverse compressive strength to clarify the basic requirements for quality instruments. Within an internode, the upper part was always thinner and denser than the lower part, depending on the thickness of the low-density parenchyma layer beneath the cortex. Selected reed was slightly thicker and denser than unselected reed, but those differences were not significant. On the other hand, the transverse compressive strength of selected reed was significantly greater than that of unselected reed, and the upper part showed the highest strength. It is considered that sufficient transverse strength is required while the thinner, i.e. deformable upper part is preferred, because an end of the reed culm is compressed to form the closed end of the double-reed. With respect to shape, density and compressive strength, the Mukaijima area along the Uji river is a potential field to harvest reeds for hichiriki.
机译:Hichiriki是用于日本古代宫廷音乐(Gagaku)的​​传统日本双簧管。 Hichiriki的振动板(Rozetsu)由芦苇(Phragmites australis)制成,据信最好的芦苇是在淀川河沿岸的Udono地区收获的。在这项研究中,我们观察了专家选择的芦苇的解剖结构,并测量了它们的密度和横向抗压强度,以阐明对优质乐器的基本要求。在节间中,上部始终比下部更薄且更密实,这取决于皮质下的低密度薄壁组织层的厚度。选择的芦苇比未选择的芦苇稍厚和密集,但这些差异并不明显。另一方面,所选芦苇的横向抗压强度明显大于未选芦苇的横向抗压强度,并且上部显示出最高的强度。认为需要足够的横向强度,而较薄的即可变形的上部是优选的,因为芦苇杆的一端被压缩以形成双芦苇的封闭端。在形状,密度和抗压强度方面,宇治河沿岸的Mukaijima地区是收获芦苇的必填之地。

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