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GD1146-90型对辊成型机设计【8张图纸】【优秀】

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GD1146-90型对辊成型机设计【8张图纸】【优秀】

PGD114690型对辊成型机设计/PP84页16000字数说明书任务书8张CAD图纸【详情如下】/PPGD114690型对辊成型机设计说明书DOC/PP减速器A1DWG/PP型板A2DWG/PP型辊组件A1DWG/PP大带轮A2DWG/PP总装图A0DWG/PP扉页任务书目录格式DOC/PP摘要DOC/PP辊心A2DWG/PP辊轮轴A3DWG/PP齿轮A3DWG/PPBR//PP目NBSPNBSP录/PP绪论SPANCLASSAPPLETABSPAN/SPAN1/PP1电机选型及传动比计算SPANCLASSAPPLETABSPAN/SPAN2/PP11选择电动机SPANCLASSAPPLETABSPAN/SPAN2/PP111选择电动机的类型和结构形式SPANCLASSAPPLETABSPAN/SPAN2/PP112选择电动机的容量SPANCLASSAPPLETABSPAN/SPAN2/PP12计算传动装置的总传动比并分配各级传动比SPANCLASSAPPLETABSPAN/SPAN3/PP121传动装置的总传动比SPANCLASSAPPLETABSPAN/SPAN3/PP122分配各级传动比SPANCLASSAPPLETABSPAN/SPAN3/PP2V带设计计算SPANCLASSAPPLETABSPAN/SPAN4/PP2.1确定计算功率SPANCLASSAPPLETABSPAN/SPAN4/PP2.2选择带型SPANCLASSAPPLETABSPAN/SPAN4/PP2.3确定带轮基准直径SPANCLASSAPPLETABSPAN/SPAN4/PP2.4验算带的速度SPANCLASSAPPLETABSPAN/SPAN5/PP2.5初定中心距SPANCLASSAPPLETABSPAN/SPAN5/PP2.6确定基准长度SPANCLASSAPPLETABSPAN/SPAN5/PP2.7确定实际轴间距SPANCLASSAPPLETABSPAN/SPAN6/PP2.8验算小带轮包角SPANCLASSAPPLETABSPAN/SPAN6/PP2.9单根V带的基本额定功率SPANCLASSAPPLETABSPAN/SPAN6/PP2.10单根V带的功率增量SPANCLASSAPPLETABSPAN/SPAN6/PP2.11V带的根数SPANCLASSAPPLETABSPAN/SPAN6/PP2.12单根V带的预紧力SPANCLASSAPPLETABSPAN/SPAN7/PP213带轮的结构SPANCLASSAPPLETABSPAN/SPAN7/PP2131小带轮的结构SPANCLASSAPPLETABSPAN/SPAN7/PP3.基本参数计算SPANCLASSAPPLETABSPAN/SPAN8/PP各轴的转速、传递功率、转矩SPANCLASSAPPLETABSPAN/SPAN8/PP4.同步齿轮减速箱齿轮的设计计算SPANCLASSAPPLETABSPAN/SPAN9/PP41I轴齿轮设计计算SPANCLASSAPPLETABSPAN/SPAN9/PP411选择齿轮材料SPANCLASSAPPLETABSPAN/SPAN9/PP412初定齿轮主要参数SPANCLASSAPPLETABSPAN/SPAN9/PP413校核齿面接触疲劳强度SPANCLASSAPPLETABSPAN/SPAN12/PP42Ⅱ轴齿轮设计计算SPANCLASSAPPLETABSPAN/SPAN14/PP421选择齿轮材料SPANCLASSAPPLETABSPAN/SPAN14/PP422初定齿轮主要参数SPANCLASSAPPLETABSPAN/SPAN14/PP423校核齿面接触疲劳强度SPANCLASSAPPLETABSPAN/SPAN17/PP43Ⅲ轴齿轮设计计算SPANCLASSAPPLETABSPAN/SPAN19/PP431选择齿轮材料SPANCLASSAPPLETABSPAN/SPAN19/PP432初定齿轮主要参数SPANCLASSAPPLETABSPAN/SPAN19/PP433校核齿面接触疲劳强度SPANCLASSAPPLETABSPAN/SPAN22/PP44Ⅳ轴齿轮设计计算SPANCLASSAPPLETABSPAN/SPAN24/PP441选择齿轮材料SPANCLASSAPPLETABSPAN/SPAN24/PP5.同步齿轮减速箱轴的设计计算SPANCLASSAPPLETABSPAN/SPAN29/PP51Ⅰ轴的设计计算SPANCLASSAPPLETABSPAN/SPAN29/PP511选择轴的材料SPANCLASSAPPLETABSPAN/SPAN29/PP512初步估算轴的的直径SPANCLASSAPPLETABSPAN/SPAN29/PP513轴上零部件的选择和轴的结构设计SPANCLASSAPPLETABSPAN/SPAN29/PP514轴的受力分析SPANCLASSAPPLETABSPAN/SPAN30/PP515轴的强度计算SPANCLASSAPPLETABSPAN/SPAN32/PP52Ⅱ轴的设计计算SPANCLASSAPPLETABSPAN/SPAN33/PP521选择轴的材料SPANCLASSAPPLETABSPAN/SPAN33/PP522初步估算轴的的直径SPANCLASSAPPLETABSPAN/SPAN33/PP523轴上零部件的选择和轴的结构设计SPANCLASSAPPLETABSPAN/SPAN33/PP524轴的受力分析SPANCLASSAPPLETABSPAN/SPAN34/PP525轴的强度计算SPANCLASSAPPLETABSPAN/SPAN37/PP53Ⅲ轴的设计计算SPANCLASSAPPLETABSPAN/SPAN38/PP531选择轴的材料SPANCLASSAPPLETABSPAN/SPAN38/PP532初步估算轴的的直径SPANCLASSAPPLETABSPAN/SPAN38/PP533轴上零部件的选择和轴的结构设计SPANCLASSAPPLETABSPAN/SPAN39/PP534轴的受力分析SPANCLASSAPPLETABSPAN/SPAN39/PP535轴的强度计算SPANCLASSAPPLETABSPAN/SPAN44/PP54Ⅳ轴的设计计算SPANCLASSAPPLETABSPAN/SPAN44/PP541选择轴的材料SPANCLASSAPPLETABSPAN/SPAN44/PP542初步估算轴的的直径SPANCLASSAPPLETABSPAN/SPAN44/PP543轴上零部件的选择和轴的结构设计SPANCLASSAPPLETABSPAN/SPAN45/PP544轴的受力分析SPANCLASSAPPLETABSPAN/SPAN45/PP555轴的强度计算SPANCLASSAPPLETABSPAN/SPAN53/PP6同步齿轮减速箱轴承的校核SPANCLASSAPPLETABSPAN/SPAN54/PP61I轴轴承的校核SPANCLASSAPPLETABSPAN/SPAN54/PP611计算轴承支反力SPANCLASSAPPLETABSPAN/SPAN54/PP612轴承的派生轴向力SPANCLASSAPPLETABSPAN/SPAN54/PP613轴承所受的轴向载荷SPANCLASSAPPLETABSPAN/SPAN54/PP614轴承的当量动载荷SPANCLASSAPPLETABSPAN/SPAN55/PP615轴承寿命SPANCLASSAPPLETABSPAN/SPAN55/PP62II轴轴承的校核SPANCLASSAPPLETABSPAN/SPAN55/PP621计算轴承支反力SPANCLASSAPPLETABSPAN/SPAN56/PP622轴承的派生轴向力SPANCLASSAPPLETABSPAN/SPAN56/PP623轴承所受的轴向载荷SPANCLASSAPPLETABSPAN/SPAN56/PP624轴承的当量动载荷SPANCLASSAPPLETABSPAN/SPAN56/PP625轴承寿命SPANCLASSAPPLETABSPAN/SPAN57/PP63III轴轴承的校核SPANCLASSAPPLETABSPAN/SPAN57/PP631计算轴承支反力SPANCLASSAPPLETABSPAN/SPAN57/PP632轴承的派生轴向力SPANCLASSAPPLETABSPAN/SPAN57/PP633轴承所受的轴向载荷SPANCLASSAPPLETABSPAN/SPAN57/PP634轴承的当量动载荷SPANCLASSAPPLETABSPAN/SPAN58/PP635轴承寿命SPANCLASSAPPLETABSPAN/SPAN58/PP64IV轴轴承的校核SPANCLASSAPPLETABSPAN/SPAN58/PP641计算轴承支反力SPANCLASSAPPLETABSPAN/SPAN59/PP642轴承的派生轴向力SPANCLASSAPPLETABSPAN/SPAN59/PP643轴承所受的轴向载荷SPANCLASSAPPLETABSPAN/SPAN59/PP644轴承的当量动载荷SPANCLASSAPPLETABSPAN/SPAN59/PP645轴承寿命SPANCLASSAPPLETABSPAN/SPAN60/PP65V轴轴承的校核SPANCLASSAPPLETABSPAN/SPAN60/PP651计算轴承支反力SPANCLASSAPPLETABSPAN/SPAN60/PP652轴承的派生轴向力SPANCLASSAPPLETABSPAN/SPAN60/PP653轴承所受的轴向载荷SPANCLASSAPPLETABSPAN/SPAN60/PP654轴承的当量动载荷SPANCLASSAPPLETABSPAN/SPAN61/PP655轴承寿命SPANCLASSAPPLETABSPAN/SPAN61/PP7同步齿轮减速箱键的校核SPANCLASSAPPLETABSPAN/SPAN61/PP71I轴键的校核SPANCLASSAPPLETABSPAN/SPAN61/PP72II轴健的校核SPANCLASSAPPLETABSPAN/SPAN62/PP73III轴健的校核SPANCLASSAPPLETABSPAN/SPAN62/PP74IV轴健的校核SPANCLASSAPPLETABSPAN/SPAN62/PP75V轴键的校核SPANCLASSAPPLETABSPAN/SPAN63/PP8同步齿轮减速箱箱体及附件设计计算SPANCLASSAPPLETABSPAN/SPAN63/PP81箱体设计SPANCLASSAPPLETABSPAN/SPAN63/PP811箱体结构设计SPANCLASSAPPLETABSPAN/SPAN63/PP82减速器附件SPANCLASSAPPLETABSPAN/SPAN63/PP821检查孔及其盖板SPANCLASSAPPLETABSPAN/SPAN63/PP822通气器SPANCLASSAPPLETABSPAN/SPAN63/PP823轴承盖和密封装置SPANCLASSAPPLETABSPAN/SPAN63/PP824定位销SPANCLASSAPPLETABSPAN/SPAN64/PP825油面指示器SPANCLASSAPPLETABSPAN/SPAN64/PP826放油开关SPANCLASSAPPLETABSPAN/SPAN64/PP827起吊装置SPANCLASSAPPLETABSPAN/SPAN64/PP9机架及成型装置的设计计算SPANCLASSAPPLETABSPAN/SPAN64/PP91型辊轴的设计SPANCLASSAPPLETABSPAN/SPAN64/PP911选择轴的材料SPANCLASSAPPLETABSPAN/SPAN64/PP912初步估算轴的的直径SPANCLASSAPPLETABSPAN/SPAN64/PP913轴上零部件的选择和轴的结构设计SPANCLASSAPPLETABSPAN/SPAN64/PP92辊心的设计SPANCLASSAPPLETABSPAN/SPAN65/PP921选择辊心的材料SPANCLASSAPPLETABSPAN/SPAN65/PP922辊心结构设计SPANCLASSAPPLETABSPAN/SPAN65/PP93型板的设计SPANCLASSAPPLETABSPAN/SPAN66/PP10液压加载装置的选型SPANCLASSAPPLETABSPAN/SPAN66/PP结论SPANCLASSAPPLETABSPAN/SPAN67/PP参考文献SPANCLASSAPPLETABSPAN/SPAN68/PP致谢SPANCLASSAPPLETABSPAN/SPAN79/PPBR//PP摘要/PP本设计是对现有的蜂窝煤成型机结构的设计,用冲头机构完成蜂窝煤的成型脱模,槽轮机构结构简单,工作可靠等特性,因此定位分度准确本机结构简单,使用维修方便,生产的煤品质量好,成本低,能一机多用。目前国内生产蜂窝煤成型机的厂家不少,但是现有的蜂窝煤成型机的冲压成型,均有连杆机构带动在横梁的弹簧式冲头冲压成型,由于冲孔后抜冲针的需要在冲头上装有圆柱弹簧,弹簧在间歇往复应力作用下高速工作,极易产生疲劳,弹簧较弱,影响拔针,出现夹煤重冲故障,同时由于弹簧配件制造质量很不稳定,常常断裂,从而增加生产成本。此外还有往的许多制造煤块的机构存在着许多避之不及的缺陷,即有些机构制造出的煤块不够敦实,放干后有一些裂纹;有些机构造出的煤块经常出现孔内坍塌现象;有些机构在工作是会出现许多不能及时清理的煤屑,造成工作环境的相对恶劣,很大程度上造成了环境污染及能源的浪费。/PPBR//PP关键词机构;成型机;蜂窝煤/PPBR//PPABSTRACT/PPTHEDESIGNOFTHEEXISTINGHONEYCOMBMOLDINGMACHINESTRUCTUREDESIGN,WITHPUNCHMECHANISMCOMPLETESTHEHONEYCOMBMOLDINGANDDEMOLDING,GROOVEDPULLEYMECHANISMHASTHEADVANTAGESOFSIMPLESTRUCTURE,RELIABLEWORKANDOTHERCHARACTERISTICS,THUSPOSITIONINGACCURATEINDEXINGWITHTHEMACHINEHASTHEADVANTAGESOFSIMPLESTRUCTURE,CONVENIENTREPAIRANDUSE,PRODUCTIONOFCOALPRODUCTSOFGOODQUALITY,LOWCOST,CANUSEAMACHINETHECURRENTDOMESTICPRODUCTIONOFBRIQUETTEMACHINEMANUFACTURERSALOT,BUTEXISTINGBRIQUETTEMACHINESTAMPINGMOLDING,WITHCONNECTINGRODMECHANISMTODRIVETHECROSSBAROFTHESPRINGLOADEDPUNCHSTAMPINGMOLDING,BECAUSEAFTERPIERCINGFORPUNCHINGNEEDLENEEDSINTHEPUNCHISPROVIDEDWITHCYLINDRICALSPRING,ASPRINGINTHEINTERMITTENTRECIPROCATINGSTRESSUNDERTHEACTIONOFHIGHSPEED,EASYTOPRODUCEFATIGUE,SPRINGISWEAKER,EFFECTSOFNEEDLE,APPEAREDWITHCOALHEAVYPUNCHINGFAILURE,ATTHESAMETIMEASTHESPRINGACCESSORIESMANUFACTURINGQUALITYISNOTSTABLE,OFTENBREAKING,THEREBYINCREASINGTHEPRODUCTIONCOSTINADDITIONTOTHEMANYMANUFACTURINGCOALINSTITUTIONSEXISTMANYAVOIDDEFECTS,IESOMEINSTITUTIONSPRODUCECOALISSTOCKY,PLACEDAFTERDOINGSOMECRACKSOMEINSTITUTIONSTOBUILDCOALHOLECOLLAPSEPHENOMENONOFTENAPPEARSINSOMEINSTITUTIONSTHEREWILLBEALOTOFWORKISNOTCLEAREDUPTHESLACK,RESULTINGINTHEWORKENVIRONMENTTHERELATIVELYPOOR,LARGELYCAUSEDBYTHEENVIRONMENTALPOLLUTIONANDENERGYWASTE/PPBR//PPBR//PPKEYWORDSNBSPMECHANISM;NBSPMOLDINGMACHINE;NBSPHONEYCOMB/PPIMGSRC/UEDITOR/NET/UPLOAD/20140416/B5018CB823E747F3AF51490CEAB601F9GIFSTYLEFLOATNONETITLEGD114690型对辊成型机设计GIF//PPIMGSRC/UEDITOR/NET/UPLOAD/20140416/AAE52840BC6640DD9F724CEE6FAD70D0GIFSTYLEFLOATNONETITLEQQ截图20130801104650GIF//PPIMGSRC/UEDITOR/NET/UPLOAD/20140416/104C7F8E08504B0C9E0A28B276C5BD0CGIFSTYLEFLOATNONETITLEQQ截图20130801104705GIF//PPBR//P

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