色呦呦网址在线观看,久久久久久久久福利精品,国产欧美1区2区3区,国产日韩av一区二区在线

The fatigue strength of metal materials is very sensitive to various external and internal factors. External factors include the shape and size of the part, surface finish and service conditions, while internal factors include the composition of the material itself, organizational state, purity and residual stress. Subtle changes of these factors will cause fluctuations or even large changes in the fatigue properties of materials.

The influence of various factors on fatigue strength is an important aspect of fatigue research. This research will provide a basis for the reasonable structural design of parts, the correct selection of materials and the rational formulation of various cold and hot machining processes, so as to ensure the high fatigue performance of parts.

effect on fatigue of stress concentration

The conventional fatigue strength is measured by carefully machined smooth specimens. However, the actual mechanical parts inevitably have different forms of notches, such as steps, keyways, threads and oil holes. The existence of these notches causes stress concentration, so that the maximum actual stress at the root of the notch is much greater than the nominal stress borne by the part, and the fatigue failure of the part often starts from here.

7 czynników wp?ywaj?cych na zm?czenie materia?ów metalowych 2

Influence of size factor

Due to the inhomogeneity of the material structure and the existence of internal defects, the increase of the size will increase the failure probability of the material, thus reducing the fatigue limit of the material. The existence of size effect is an important problem in applying the fatigue data measured by small samples in the laboratory to large-scale actual parts. Because it is impossible to reproduce the stress concentration and stress gradient on the actual size parts on the small samples, the laboratory results are disconnected from the fatigue failure of some specific parts.

Influence on fatigue of surface processing state

There are always uneven machining marks on the machined surface, which are equivalent to tiny notches, causing stress concentration on the material surface, thus reducing the fatigue strength of the material. The test shows that for steel and aluminum alloy, the fatigue limit of rough machining (rough turning) is reduced by 10% – 20% or more than that of longitudinal fine polishing. The higher the strength of the material, the more sensitive it is to the surface finish.

Effect of chemical composition

There is a close relationship between the fatigue strength and tensile strength of materials under certain conditions. Therefore, under certain conditions, any alloy element that can improve the tensile strength can improve the fatigue strength of materials. Comparatively speaking, carbon is the most important factor affecting the strength of materials. However, some impurity elements which form inclusions in steel have adverse effects on fatigue strength.

Effect on fatigue of heat treatment and microstructure

Different heat treatment conditions will result in different microstructures. Therefore, the effect of heat treatment on fatigue strength is essentially the effect of microstructure. Although the same static strength can be obtained for materials with the same composition due to different heat treatment, the fatigue strength can vary in a considerable range due to different structures.

At the same strength level, the fatigue strength of flake pearlite is obviously lower than that of granular pearlite. The finer the cementite particles, the higher the fatigue strength.

7 czynników wp?ywaj?cych na zm?czenie materia?ów metalowych 3

Effect of inclusions

The inclusion itself or the holes generated by it are equivalent to tiny notches, which will produce stress concentration and strain concentration under the action of alternating load, and become the crack source of fatigue fracture, causing adverse effects on the fatigue properties of materials. The influence of inclusions on fatigue strength depends not only on the type, nature, shape, size, quantity and distribution of inclusions, but also on the strength level of materials, the level and state of applied stress.

Different types of inclusions have different mechanical and physical properties, different properties from base metal, and different effects on fatigue properties. Generally speaking, plastic inclusions (such as sulfides) that are easy to deform have little effect on the fatigue properties of steel, while brittle inclusions (such as oxides, silicates, etc.) do great harm.

Inclusions with larger expansion coefficient than the matrix (such as sulfide) have less influence due to compressive stress in the matrix, while inclusions with smaller expansion coefficient than the matrix (such as alumina) have greater influence due to tensile stress in the matrix.

The compactness of inclusion and base metal also affects the fatigue strength. Sulfide is easy to deform and closely bond with the base metal, while oxide is easy to separate from the base metal, resulting in stress concentration. Therefore, from the type of inclusions, sulfide has little effect, while oxides, nitrides and silicates are more harmful.

Effect of surface property change and residual stress

In addition to the surface finish mentioned above, the influence of surface state also includes the change of surface mechanical properties and the influence of residual stress on fatigue strength. The change of surface mechanical properties can be caused by the difference of surface chemical composition and structure, or by deformation strengthening.

Surface heat treatment such as carburizing, nitriding and carbonitriding can not only increase the wear resistance of parts, but also improve the fatigue strength of parts, especially an effective means to improve the corrosion fatigue and biting corrosion resistance.

The influence of surface chemical heat treatment on fatigue strength mainly depends on loading mode, carbon and nitrogen concentration in the carburized layer, surface hardness and gradient, the ratio of surface hardness to core hardness, layer depth, and the size and distribution of residual compressive stress formed by surface treatment. A large number of tests show that as long as the notch is machined first and then treated by chemical heat treatment, generally speaking, the sharper the notch is, the more the fatigue strength will be improved.

The effect of surface treatment on fatigue performance is different under different loading modes. Under axial loading, the stress in the surface layer is the same as that under the layer because there is no uneven distribution of stress along the layer depth. In this case, the surface treatment can only improve the fatigue performance of the surface layer. Because the core material is not strengthened, the improvement of fatigue strength is limited. Under bending and torsion conditions, the stress distribution is concentrated in the surface layer. The residual stress formed by surface treatment and this additional stress are superimposed to reduce the actual stress on the surface. At the same time, due to the strengthening of surface materials, the fatigue strength under bending and torsion conditions can be effectively improved.

Dodaj komentarz

Twój adres email nie zostanie opublikowany. Pola, których wype?nienie jest wymagane, s? oznaczone symbolem *

开心五月这里只有精品-欧美日韩国产亚洲中文高-玩弄漂亮邻居少妇高潮-av资源中文在线天堂| 人日本中文字幕免费精品-日本口爆吞精在线视频-玖玖玖玖视频在线观看-国产精品内射在线播放| 午夜亚洲国产色av天堂-色天天综合色天天久久191-国产精品久色婷婷不卡-日韩欧美中文字幕在线韩| 精品国产成人亚洲午夜福利-午夜福利一区二区91-亚洲中文字幕女优最新网址-亚洲av成人国产精品| 大屁股丰满肥臀国产在线-亚洲国产一区二区精品在线观看-久久黄色精品内射胖女人-日韩精品国产综合一区二区| 亚洲性生活免费播放av-成人深夜在线免费观看-久久国产精品亚洲精品-黄色大片亚洲黄色大片| 五月激情综合网俺也去-美欧日韩一区二区三区视频-午夜看片福利在线观看-色老板在线免费观看视频日麻批| 九九热在线免费视频精品-偷拍日本美女厕所尿尿-深夜老司机福利在线观看-偷拍精品视频日本久久| 少妇人妻偷人偷人精品-国产精品黄色在线播放-亚洲熟伦熟女新五十路熟妇亚洲-国产综合91精品百人斩| 国产精品中文字幕久久-国产精品一区二区在线免费-韩国午夜三级一区二区-亚洲国产成人精品一区刚刚| 加勒比大香蕉优优久久-国产av精品国语对白国产-亚洲一区二区免费日韩-国产一级内射无挡观看| 精国产精品亚洲二区在线观看-日韩人妻少妇一区二区三区-久久视频这里只要精品-亚洲精品欧洲综合在线观看| 中文字幕久久精品一区二区三区-99国产麻豆精品人人爱-91麻豆精品福利视频-国产精品亚洲一区中文字幕| 国产精品大片中文字幕-国产丝袜av一区二区免费-亚洲av巨作一级精品-国产成人综合亚洲欧美天堂| 国产精彩自拍视频在线-岛国视频免费在线播放-91久久精品国产综合另类专区-午夜福利欧美激情福利| 日韩毛片精品毛片一区到三区-四虎国产精品久久免费观看-国产网站在线观看91-亚洲熟妇av不卡一区二区三区| 日本av自拍偷拍视频-日韩精品人妻一区二区三区-看片福利国产午夜三级看片-在线观看视频最新信息好幫手| 国产免费无套精品视频-日本特色特黄aaa大片免费-日本精品免费一区二区三区-九九热精品视频在线免费| 久色视频精品在线观看-在线看片免费人成视久网国产-亚洲精品人妻中文字幕-国产一区二区午夜福利在线观看| 国产亚洲精品第18页-久久精品理论午夜福利-99久久91热久久精品免费看-国产成人精品国产成人亚洲| 亚洲情综合五月天中文字幕-日韩在线精品视频播放-日韩午夜午码高清福利片-99久久无色码中文字幕免费| 日韩成av在线免费观看-中文字幕亚洲第一精品-亚洲欧美日韩国产在线-国产精品国精品国产免费| 在线播放中文字幕国产精品-亚洲av成人免费在线观看-国产男女激情视频免费观看-亚洲av黄片一区二区三区| 日韩亚洲分类视频在线-熟妇人妻久久中文字幕电-久久麻传媒亚洲av国产-精品丰满熟妇高潮一区| 亚洲香蕉久久一区二区三区四区-国产夫妻内射一级一片-成人午夜福利片免费观看-一区二区三区四区黄色网| 在线免费观看四虎黄色av-亚洲成人av高清在线-成人性生交大片免费在线-四虎成人精品在线观看| 国产精品一区二区蜜桃视频-四十路五十路熟女丰满av-成人av天堂中文在线-亚洲精品成人国产在线| 四虎永久在线高清国产精品-一区二区三区日本精品视频-国产午夜福利精品久久不卡-一区二区三区国产亚洲自拍| 成人av亚洲男人色丁香-色丁香婷婷综合缴情综-国产男女视频免费观看-日韩有码中文字幕一区八戒| 精品人伦一区二区三区蜜桃-中文字幕久久人妻熟人妻-中文字幕av乱码在线看-久久精品国产亚洲妇女av| 天堂av日韩在线播放-中文字幕久久精品亚洲-国产精品沟厕在线播放-在线观看亚洲精品在线av| 精品人伦一区二区三区蜜桃-中文字幕久久人妻熟人妻-中文字幕av乱码在线看-久久精品国产亚洲妇女av| 91亚洲精品免费在线观看-加勒比国产精品综合久久-91九色精品丝袜久久人妻-正常人的性生活一个月几次| 国产黑色丝袜在线观看网站-成人a免费大片在线看-熟妇人妻精品一区二区三区视频-日韩av高清不卡一区二区三区| 你懂的视频网站亚洲视频-欧美色欧美亚洲另类搞逼-国产三级精品三级精品在一区-亚洲国产午夜精品在线| 亚洲毛片在线观看视频网站-午夜高清福利在线观看-性生活视频在线免费观看-女人吞精口爆在线视频| 国产高清三级自拍视频-最近日本免费播放视频午夜-日本女优一级片中文字幕-在线播放深夜精品三级| 蜜臀一区二区在线观看视频-亚洲一区二区国产精品视频-国内精品国产三级国产a久久-婷婷久久亚洲中文字幕| 久热这里只有精品视频66-国产资源精品中文字幕-亚洲免费视频一区二区三区四区-亚洲国产特一特二区精品分布| 欧美日韩精品啪啪91-成年人免费在线观看大片-国产精品麻豆一区二区三区v视界-av中文在线中文亚洲| 中文字幕一区二区三区日韩精品-久久老熟女一区二区三区福利-久久精品国产自产对白一区-午夜欧美牲交激情网站|