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State of the Art and Prospects of Sounding Timber Selection, Targeted Use and Cultivation in the Forests of Russia

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V.I. Fedyukov

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UDС

630*6

DOI:

10.17238/issn0536-1036.2016.5.142

Abstract

A brief excursus of domestic and foreign literature sources concerning the concept of sound-ing wood and the diagnostic methods of its technical properties in the targeted selection of standing trees and assortments is presented. Two concepts, which are used by the instru-ment-making masters in the selection of necessary material are analyzed: evaluation of its quality on the basis of indirect biomorphological indicators of a growing tree and direct measurements of physical and acoustic performance of wood. In the first case, the sufficient information can be obtained by analyzing the following features: the species, timber macro-structure, trunk habit, size, cones color, and most importantly, the form of their seed scales, color and structure of the bark, the type of tree branching. Detection of an acoustic constant on the basis of cross frequency and amplitude characteristics presents more authentic data on sounding properties of wood than the speed of sound passage along-the-grain. This way allows us to perform the early nondestructive diagnostics of resonating characteristics of spruce wood in the stage of undergrowth or young stand stage. The paper gives the infor-mation with a reference to the historical facts about the reserves in the forests of Russia of spruce wood and bird's-eye maple especially valuable for musical instruments manufactur-ing. Despite this fact the system of the rational and targeted use of such wood has not been established in Russia. The paper suggests promising ways of cultivation and preservation of the sounding spruce gene resources in the forests of Russia. The author offers to make some amendments to the Forest Code of the Russian Federation taking into account the present-day market relations in the forest exploitation.

Authors

V.I. Fedyukov, Doctor of Engineering Sciences, Professor

Affiliation

Volga State University of Technology, Lenin sq., 3, Yoshkar-Ola, Mari El Republic, 424000, Russian Federation; е-mail: fiv48@mail.ru

Keywords

sounding timber, sounding spruce biomorphology, dendro-acoustics, nondestruc-tive diagnostics, peculiarities of targeted cultivation.

References


1. Borovikov A.M., Ugolev B.N. Spravochnik po drevesine [Timber Reference Book]. Мoscow, 1989. 296 p.
2. Vitachek E.F. Ocherki po istorii izgotovleniya smychkovykh instrumentov [Essays on the History of Bow-Instrument Making]. Мoscow, 1964. 341 p.
3. Volynskiy V.N. O vzaimosvyazi prochnosti drevesiny s neskol'kimi ee par-ametrami [On the Interrelations of Wood Strength and Its Several Parameters]. Lesnoy zhur-nal, 1991, no. 4, pp. 60–64. 4. Kuznetsov I.I. Rezonansovyy les i ego deki [Resonance Wood and Its Sound Boards]. Lesnoe khozyaystvo i lesnaya promyshlennost', 1930, no. 2–3, pp. 39–43.
5. Melekhov I.S. Znachenie tipov lesa i lesorastitel'nykh usloviy v izuchenii stroeniya drevesiny i ee fiziko-mekhanicheskikh svoystv [Significance of Forest Types and Sites in the Study of the Wood Structure and Its Physical and Mechanical Properties]. Trudy Insti-tuta lesa AN SSSR [Proceedings of the Forest Institute of the USSR Academy of Sciences], 1949, vol. IV, pp. 11–21.
6. Melekhov I.S. Lesovedenie [Sylviculture]. Мoscow, 1980. 408 p.
7. Melekhov V.I., Babich N.A., Korchagov S.A. Kachestvenne kharakteristiki drevesiny sosny v kul'turakh [Pine Wood Qualitative Characteristics in Cultures]. Arkhan-gelsk, 2005. 116 p.
8. Moiseev N.A. Nauka i praktika upravleniya lesami i ego zakonodatel'nogo obespecheniya [Science and Practice of Forest Management and Its Legislative Support]. Lesnoe khozyaystvo, 2011, no. 2, pp. 13–14.
9. Nesterov N.S. O rezonansnom lesnom materiale dlya strunnykh instrumentov [On Sounding Wood for Stringed Instruments]. Russkoe lesnoe delo, 1892, no. 1, pp. 13–16.
10. Keys V.N., Kozyrev A.B., Kuz V.G., Makar'eva T.A., Fedyukov V.I. Sposob obrabotki rezonansnoy drevesiny [A Method of a Resonant Wood Treating]. Patent RF, no. 2034697, 1992.
11. Fedyukov V.I., Veselov L.N., Veselov V.L. Sposob diagnostiki rezonansnykh svoystv drevesiny i ustroystvo dlya ego osushchestvleniya [The Diagnostic Method of Reso-nance Properties of Wood and the Device for Its Implementation]. Patent RF, no. 2130611, 1997.
12. Fedyukov V.I., Saldaeva E.Yu., Vasenev A.L. Sposob ranney diagnostiki rezonansnykh svoystv drevesiny [The Method of Early Diagnosis of Resonance Properties of Wood]. Patent RF, no. 2439561, 2009.
13. Fedyukov V.I, Saldaeva E.Yu., Vasenev E.A. Ustroystvo dlya fiksatsii obraztsa pri dendroakusticheskikh ispytaniyakh po rannemu vyyavleniyu rezonansnykh svoystv drevesiny na kornyu [The Device for Fixing а Sample at Dendro-Acoustic Tests for the Ear-ly Detection of Resonance Properties of Standing Timber]. Patent RF, no. 2523033, 2012.
14. Pakhar' G.A. O prigodnosti russkoy eli dlya vyrabotki rezonatorov [On the Apti-tude of Russian Spruce for Producing of Soundboards]. Lesopromyshlennik: ezhenedel'nyy zhurnal lesnoy promyshlennosti i torgovli, vol. 1, no. 2, pp. 129–131.
15. Poluboyarinov O.I. Morfologiya dereva kak razdel biologicheskogo drevesinovedeniya [Tree Morphology as a Part of Biological Wood Science]. Sovremenne problemy drevesinoevedeniya [Modern Problems of Wood Science]. Yoshkar-Ola, 1996. pp. 9–10. 16. Rimskiy-Korsakov A.V., D'yakonov N.A. Muzykal'ne instrumenty: Metody issle-dovaniy i raschety [Musical Instruments: Research Methods and Calculations]. Мoscow, 1952. 345 p.
17. Saldaeva E.Yu. Razrabotka metoda ranney nerazrushayushchey diagnostiki re-zonansnykh svoystv drevesiny eli na kornyu: avtoref. dis. ... kand. tekhn. nauk [A Method Development for Early Nondestructive Diagnosing of Resonant Properties of Standing Spruce Wood: Cand. Eng. Sci. Diss. Abs.]. Voronezh, 2015. 16 p.
18. Sanukov N.K. Edinstvennaya v Rossii [The Only in Russia]. Mariy El: vchera, segodnya, zavtra, 1994, no. 5–6, pp. 82–84. 19. Fedyukov V.I., Lebedeva E.P. Tekhnologiya sozdaniya matochno-arkhivnoy plantatsii rezonansnoy eli s unikal'nymi akusticheskimi svoystvami drevesiny: Otchet o NIR [Technology of Creating a Clone Bank of Sounding Spruce with Unique Acoustic Timber Properties: R&D Report]. Yoshkar-Ola, 1995. 28 p.
20. Fedyukov V.I. El' rezonansnaya: otbor na kornyu, vyrashchivanie, sertifikatsiya [Sounding Spruce: Standing Trees Selection, Cultivation, Certification]. Yoshkar-Ola, 1998. 204 p.
21. Fedyukov V.I. Elektronnyy dendrometr dlya otbora rezonansnoy drevesiny [Elec-tronic Dendrometer for the Sounding Wood Selection]. Derevoobrabatyvayushchaya promyshlennost' [Woodworking Industry], 1990, no. 7, pp. 30–31.
22. Fedyukov V.I. Forma semennykh cheshuy eli kak diagnosticheskiy priznak re-zonansnoy eli na kornyu [The Spruce Seed Scale Form as a Diagnostic Property of Standing Sounding Spruce]. Lesnoy zhurnal, 1998, no. 1, pp. 23–30.
23. Fedyukov V.I., Saldaeva E.Yu. Rezonansnaya el' dlya rekonstruktsii Bol'shogo teatra [Sounding Spruce for the Bolshoi Theatre Reconstruction]. Lesnoe khozyaystvo, 2011, no. 2, pp. 13–14.
24. Fedyukov V.I., Saldaeva E.Yu., Tsvetkova E.M. Rannyaya diagnostika tekhnich-eskogo kachestva podrosta kak vazhnyy element intensifikatsii lesopol'zovaniya v Rossii [Early Diagnosis of the Undergrowth Technical Quality as an Important Element of the For-est Management Intensification in Russia]. Lesnoy zhurnal, 2012, no. 6, pp. 16–23.
25. Fedyukov V.I., Saldaeva E.Yu., Tsvetkova E.M. Standartizatsiya rezonansnoy drevesiny: neobkhodimo sovershenstvovanie [Sounding Wood Standardization: the Im-provement is Urgent]. Standarty i kachestvo, 2014, no. 4, pp. 54–57.
26. Aoki Tsutomu, Yamada Tadashi. The Viscoelastic Properties of Wood Used for Musical Instruments. Presented Partly on the 21st Meeting of the Japan Wood Research Society. Nagoya, 1971, p. 42.
27. Bl"skova G., Trichkov N., B"rdarov N. Izsledvane na akustichnite pri nadl"zhni i naprechni v"lni na sm"rchova d"rvesina. Sb. nauchni dokladi “50 godini lesotekhnicheski universt”. Sektsiya d"rvoobrabotvane i proizvodstvo na mebeli. Sofia, 2003. pp. 51–54.
28. Bucur V. Determination du module d'Young du bois par une methode dynamique sur carottes de sondage. Annales des sciences forestieres, 1981, vol. 38(2), pp. 283–298.
29. Bucur V. An Ultrasonic Method for Measuring the Elastic Constants of Wood Increment Cores Bored from Living Trees. Ultrasonic, 1983, vol. 21, no. 1, pp. 116–126. 30. Bucur V. Acoustics of Wood. Springer Series in Wood Science. Berlin, 2006, p. 345.
31. Culik M. Drevo a jeho vyuzitie vo vyrobe hudobnych nastrojov. Zvolen, 2013. 93 p.
32. Danihelova A. Relevant Physical Acoustics of Spruce Wood as a Material for Musical Instruments. Proc. of the 8th World Conf. on Timber Engineering. Finland, Lahti, 2004, pp. 491–494.
33. Danihelova A., Culik M. Netradicne vyuzitie jarabiny vtacej na vyrobu kon-strukcnych sucasti violy. Noise and Vibration in Practice: Proc. of the 18th Int. Acoustic Conf. Bratislava, 2013, pp. 27–30.
34. Devide Z. Biljke kayo gradevni material za music instrument. Vijestijazu, 1984, no. 9–10, pp. 36–37. 35. Devide Z. Rezonantno drevo gudackin instrumenata. Tonovi Strucni i prijevodi, 1989, no. 8, pp. 10–18.
36. Droste Hans-Joachin. Impact of Timber Certification on Sustainable Test Man-agement. Part 1. Hamburg, 1996. 52 p.
37. Halachan P., Spisiak D. Vybran? modifik?cie povrchu dreva a ich vplyv na fyzik?lno-akustick?. Proc. 5th Int. Symp. of Regional Coordination Council on Wood Sci. “The Structure, Quality, Properties of Wood-2014”, 22–25 September 2014. Мoscow, 2015, pp. 182–189.
38. Holz D. Zum alterungsverhalten des Werkstoffes Holz-einige Ansichten, Unter-suchungen, Ergebnisse. Holztechnologie, 1981, no. 2, pp. 80–85.
39. Hsu Linda C.-Y., Chauhan Shakti S., King N. Modulus of Elasticity of Stemwood vs Branchwood in 7-Year-Old Pinus Radiata Families. N. Z. J. Forest. Sci., 2003, no. 33(1), pp. 35–46.
40. Huber F. Definition de caracteristiques simples decrivant les arbres et le bois de I'epicea commun (Picea excelsa Link) et pouvant etre prises en flite pour 1'evaluation de la ressourse en bois de resonance (station de iherches sur la gualite des bois). INRA. Centre de recherches forestiers, 1989. 38 p.
41. Ille R. Osetreni a vlastnosti rezonancniho drevo smrku pro mistrovske lisle. Drevo, 1978, no. 33, pp. 133–138.
42. Ille R. Rezonancni drevo smrku pro mistrovske housle. Drevo, 1979, no. 34, pp. 303–304.
43. Kollman F. Holz und Schall-Theorie und Nutzanwendung. Holz-Zentralblatt, 1983, no. 14, pp. 18–35.
44. Lindstrom H., Harris P., Nakada R. Methods for Measuring Stiffness of Young Trees. Holz als Roh- und Werkstoff, 2002, no. 60, pp. 165–167.
45. Lindstrom H., Nakada R., Ralston J. Cell Wall Structure and Wood Properties Determined by Acoustics – a Selective Review. Holz als Roh- und Werkstoff, 2003, vol. 61, no. 5, pp. 321–335.
46. Mandy C., Rosenberg P., Bastion J.C. Non-Destructive Assessment Modulus of Elasticity in Genetic Field Tests in France: 20 IUERO World Congr., Tampere, 7–11 Au-gust, 1995. IAWA Journal, 1995, no. 1, p. 16.
47. Nakamura N. Development of Measuring Young’s Modulus of Planting Stock. Journal of the Japanese Forestry Society, 1997, no. 79(1), pp. 43–48.
48. Nemecek V. K zajisteni proukce rezonancniho dreva. Lesnicka prace, 1979, no. 58(3), pp. 105–109. 49. Parlovcs G., Dolacis J., Antons A., Cirule D. Relationship Between the Anatomi-cal Structure Elements and Physical Properties in the Trunk Transverse and Longitudinal Direction for Wood of Norway Spruce Grooving in Latvia. Ann. Warsaw Univ. Life Sci. Forest. and Wood Technol., 2010, no. 72, pp. 124–128.
50. Rajcan E. Die physikalisch-akustischen Charakteristiken von Holz als Material fur die Production von Streichinstrumenten. Latest Achievements in Research of Wood Structure and Physics. Zvolen, 1990, p. 56.
51. Yoshihara H. Off-Axis Young’s Modulus and Off-Axis Shear Modulus of Wood Measured by Flexural Vibration Tests. Holzforchung, 2012, no. 66(2), pp. 207–213.
Received on January 17, 2016

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