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2019 | OriginalPaper | Buchkapitel

Investigation of Soil Destruction by Trench Chain Excavator Cutting Element Process

verfasst von : I. A. Teterina, P. A. Korchagin, A. B. Letopolsky

Erschienen in: Proceedings of the 4th International Conference on Industrial Engineering

Verlag: Springer International Publishing

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Abstract

The article is devoted to the interaction of the cutting face of a scraper with a destructible medium during the development of a trench. Reducing the arising forces in the process of soil destruction can be achieved by various technical solutions. The simplest and least costly method is the method of the cutting elements design improving. The forces arising during the contact of the cutting element with the ground are considered. The interaction of the cutting element and the ground process is considered taking into account the stressed soil state before the cutting edge and the cutting angle digging and the cutting edge shape resistance effect. The calculated dependencies determining the scraper middle part width rational values and the scraper middle part boom rational parameters are obtained.

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Literatur
1.
Zurück zum Zitat Baladinsky VL, Fomin AV (1996) Basics of creating high-performance mobile earth moving machinery. Constr Road Mach 4:7–8 Baladinsky VL, Fomin AV (1996) Basics of creating high-performance mobile earth moving machinery. Constr Road Mach 4:7–8
2.
Zurück zum Zitat Balovnev VI (1993) Intensification of soil development in road construction: a scientific publication Balovnev VI (1993) Intensification of soil development in road construction: a scientific publication
3.
Zurück zum Zitat Kuznetsova VN, Savinkin VV (2015) Ensuring efficiency of development of the ground for account of optimization of angles of positioning of working equipment of the excavator. Constr Road Mach 3:44–47 Kuznetsova VN, Savinkin VV (2015) Ensuring efficiency of development of the ground for account of optimization of angles of positioning of working equipment of the excavator. Constr Road Mach 3:44–47
5.
Zurück zum Zitat Bondarenko VP (1990) Unified rotary cutters for earth-moving machines. Constr Road Mach 8:21–22 Bondarenko VP (1990) Unified rotary cutters for earth-moving machines. Constr Road Mach 8:21–22
6.
Zurück zum Zitat Vartanov SKh (1991) Perspective directions of development of technology of earth-moving works and trench excavators construction. Mech Constr 9:2–5 Vartanov SKh (1991) Perspective directions of development of technology of earth-moving works and trench excavators construction. Mech Constr 9:2–5
7.
Zurück zum Zitat Garberg M, Wong J (1981) Analytical method for predicting ground pressure distribution. J Terramech 1:1–23CrossRef Garberg M, Wong J (1981) Analytical method for predicting ground pressure distribution. J Terramech 1:1–23CrossRef
8.
Zurück zum Zitat Peter B, Martin O (2003) Multi-domain simulation: mechanics and hydraulics of an excavator. In: Proceedings of the 3rd international modelica conference, Linkong, 2003 Peter B, Martin O (2003) Multi-domain simulation: mechanics and hydraulics of an excavator. In: Proceedings of the 3rd international modelica conference, Linkong, 2003
9.
Zurück zum Zitat Demidenko AI, Letopolsky AB (2010) Working bodies of chain trench excavators. Mech Constr 5:7–11 Demidenko AI, Letopolsky AB (2010) Working bodies of chain trench excavators. Mech Constr 5:7–11
10.
Zurück zum Zitat Gorodilov LV, Labutin VN (2016) Bucket of active action to building excavators. Mach Sci 2(4):45–53 Gorodilov LV, Labutin VN (2016) Bucket of active action to building excavators. Mach Sci 2(4):45–53
11.
Zurück zum Zitat Turgunbaev M (2016) Technical performance of the excavator while developing soils with chilled inclusions. News High Educ Inst Kyrg 11(1):52–54 Turgunbaev M (2016) Technical performance of the excavator while developing soils with chilled inclusions. News High Educ Inst Kyrg 11(1):52–54
12.
Zurück zum Zitat Demidenko АI, Letopilsky AB (2009) Scraper working body of trench chain excavator. Patent RF 86202, 27 Aug 2009 Demidenko АI, Letopilsky AB (2009) Scraper working body of trench chain excavator. Patent RF 86202, 27 Aug 2009
13.
Zurück zum Zitat Kogan BI (2010) Technological supply of quality of remont of bucket excavators. Bull Kuzbass State Tech Univ 2:27–31 Kogan BI (2010) Technological supply of quality of remont of bucket excavators. Bull Kuzbass State Tech Univ 2:27–31
14.
Zurück zum Zitat Fedorov DI (1989) Working bodies of digging machines. Mechanical Engineering, Moscow Fedorov DI (1989) Working bodies of digging machines. Mechanical Engineering, Moscow
15.
Zurück zum Zitat Сharles W, James K (1988) Teeth on a tooth. US patent 4776114, 11 Oct 1988 Сharles W, James K (1988) Teeth on a tooth. US patent 4776114, 11 Oct 1988
16.
Zurück zum Zitat Charles W (1984) Digging tooth and holder assembly. US patent 4476642, 16 Oct 1984 Charles W (1984) Digging tooth and holder assembly. US patent 4476642, 16 Oct 1984
17.
Zurück zum Zitat Leischer DA (1986) Notched ditcher chain tooth. US patent 4571859, 25 Feb 1986 Leischer DA (1986) Notched ditcher chain tooth. US patent 4571859, 25 Feb 1986
18.
Zurück zum Zitat Friedrich J (1950) Schmidt Trench digger blade construction. US patent 2519076, 15 Aug 1950 Friedrich J (1950) Schmidt Trench digger blade construction. US patent 2519076, 15 Aug 1950
19.
Zurück zum Zitat Muravsky AK (2016) About determining the speed and angle of cutting the tooth of the bucket of the hydraulic excavator with the working equipment the returning shovel. Min Equip Electromech 9(127):42–45 Muravsky AK (2016) About determining the speed and angle of cutting the tooth of the bucket of the hydraulic excavator with the working equipment the returning shovel. Min Equip Electromech 9(127):42–45
20.
Zurück zum Zitat Makeev VN, Pleshkov DD (2011) Hydraulic excavator with a universal working equipment. Logging J 4:89–92 Makeev VN, Pleshkov DD (2011) Hydraulic excavator with a universal working equipment. Logging J 4:89–92
Metadaten
Titel
Investigation of Soil Destruction by Trench Chain Excavator Cutting Element Process
verfasst von
I. A. Teterina
P. A. Korchagin
A. B. Letopolsky
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-95630-5_229

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