- for ground, for peat - <mrow><msubsup><mi>p</mi><mrow><mi>s</mi><mi>t</mi><mi>r</mi><mo>.</mo><mi>P</mi></mrow><mrow><mi>t</mi><mi>e</mi><mi>n</mi><mi>s</mi></mrow></msubsup><mo>=</mo><mn>2</mn><mi>c</mi><mo>⋅</mo><mi>cos</mi><mi>φ</mi><mo>/</mo><mrow><mo>(</mo><mrow><mn>1</mn><mo>+</mo><mi>sin</mi><mi>φ</mi></mrow><mo>)</mo></mrow><mo>,</mo></mrow> where c=cstr(2-tgφ/tgφstr), φ=arcsin[2sinφstr/(1+sin2φstr)]-φstr, φstr and cstr - angle of shear resistance and specific cohesion of foundation material sample of undamaged structure. Wheels are installed at each board of propulsor in two rows with longitudinal shift of rows for wheel radius.;EFFECT: higher cross-country ability of heavy vehicle wheeled propulsors over loose grounds and peat-bogs.;2 cl, 2 dwg"/> METHOD FOR INCREASED IN COMBAT VEHICLE CROSS-COUNTRY CAPACITY AND COMBAT VEHICLE PROPULSOR
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METHOD FOR INCREASED IN COMBAT VEHICLE CROSS-COUNTRY CAPACITY AND COMBAT VEHICLE PROPULSOR

机译:一种提高战车越野能力和战车生产者的方法

摘要

FIELD: transport.;SUBSTANCE: common bearing surface of wheeled propulsors for heavy military machines moving over loose ground and waterlogged foundations is made convex by sphere with radius of Rsph=Dsph/2=0.5l/sinψ, where Dsph - diameter of spherical surface, l - length of propulsor bearing surface, ψ - angle of propulsor bearing surface half-contact with foundation. Angle ψ=φ, where φ - angle of shear resistance of ground, peat of foundation with damaged structure at maximum in tensile strength pressure <mrow><msubsup><mi>p</mi><mrow><mi>s</mi><mi>t</mi><mi>r</mi><mo>.</mo><mi>G</mi></mrow><mrow><mi>t</mi><mi>e</mi><mi>n</mi><mi>s</mi></mrow></msubsup><mo>=</mo><mn>2</mn><mi>c</mi><mo>⋅</mo><mi>cos</mi><mi>φ</mi><mo>/</mo><mrow><mo>(</mo><mrow><mn>1</mn><mo>+</mo><msup><mrow><mi>sin</mi></mrow><mn>2</mn></msup><mi>φ</mi></mrow><mo>)</mo></mrow></mrow> - for ground, for peat - <mrow><msubsup><mi>p</mi><mrow><mi>s</mi><mi>t</mi><mi>r</mi><mo>.</mo><mi>P</mi></mrow><mrow><mi>t</mi><mi>e</mi><mi>n</mi><mi>s</mi></mrow></msubsup><mo>=</mo><mn>2</mn><mi>c</mi><mo>⋅</mo><mi>cos</mi><mi>φ</mi><mo>/</mo><mrow><mo>(</mo><mrow><mn>1</mn><mo>+</mo><mi>sin</mi><mi>φ</mi></mrow><mo>)</mo></mrow><mo>,</mo></mrow> where c=cstr(2-tgφ/tgφstr), φ=arcsin[2sinφstr/(1+sin2φstr)]-φstr, φstr and cstr - angle of shear resistance and specific cohesion of foundation material sample of undamaged structure. Wheels are installed at each board of propulsor in two rows with longitudinal shift of rows for wheel radius.;EFFECT: higher cross-country ability of heavy vehicle wheeled propulsors over loose grounds and peat-bogs.;2 cl, 2 dwg
机译:领域:运输;实体:重型军事机械的轮式推进器的共用支承面在半径R sph = D sph /2=0.5l/sinψ,其中D sph -球形表面的直径,l-推进器轴承表面的长度,ψ-推进器轴承表面与基础半接触的角度。角度ψ=φ,其中φ-在最大抗拉强度压力 <![CDATA [ p s t r G < mrow> t e n s = 2 c cos φ / 1 + sin 2 φ ]]> <图像文件=“ 00000037。 GIF“ he =” 8“ imgContent =” undefined“ imgFormat =” GIF“ wi =” 55“ /> -用于地面,用于泥炭- <![CDATA [ p s t r P t e n s = 2 c cos φ / 1 + sin φ ]]> <图像文件=“ 00000038.GIF” he =“ 7” imgContent =“ undefined” imgFormat =“ GIF” wi =“ 55” /> 其中c = c str (2-tgφ/tgφ str ),φ= arcsin [2sinφ str /(1 + sin 2 φ str )]-φ str ,φ str 和c str -抗剪角完好无损的基础材料样品的特殊内聚力。车轮安装在推进器的每个板上,每排成两排,纵向移动轮径。效果:重型轮式推进器在越野地面和泥炭沼泽中具有更高的越野能力; 2 cl,2 dwg

著录项

  • 公开/公告号RU2534497C1

    专利类型

  • 公开/公告日2014-11-27

    原文格式PDF

  • 申请/专利权人 KHRUSTALEV EVGENIJ NIKOLAEVICH;

    申请/专利号RU20130131318

  • 发明设计人 KHRUSTALEV EVGENIJ NIKOLAEVICH;

    申请日2013-07-08

  • 分类号B62D61/10;B62D61/00;

  • 国家 RU

  • 入库时间 2022-08-21 14:56:38

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