欧美人妻精品一区二区三区99,中文字幕日韩精品内射,精品国产综合成人亚洲区,久久香蕉国产线熟妇人妻

Kszta?t konstrukcyjny cz??ci powinien nie tylko spe?nia? wymagania dotycz?ce wydajno?ci projektu, ale tak?e spe?nia? wymagania procesu przetwarzania. Dlatego konieczne jest zrozumienie wspólnej struktury procesu na cz??ciach.

Process structure of casting parts (including drawing of transition line)

The process structure of casting parts includes mold inclination, casting fillet, casting wall thickness, etc.

1. Formwork lifting slope

   When casting parts, in order to facilitate mold taking, a certain slope is often designed along the mold starting direction on the casting wall, that is, the mold starting slope. For the structure with small inclination, it may not be drawn on the graph, but the value of mold lifting inclination must be explained in words in the technical requirements. As shown in Figure 1.

What is the optimal structure of mechanical part drawing 1

Rycina 1

2. Cast fillet

When casting parts, in order to prevent sand falling from the casting sand mold and avoid cracks or shrinkage cavities during casting cooling (as shown in Fig. 2), the intersection of casting surfaces shall be made into fillet transition, as shown in Fig. 3. Generally, the cast fillet shall be drawn in the drawing. When the radius of each fillet is the same or close, the radius value can be uniformly noted in the technical requirements, such as cast fillet R3 ~ R5, etc.

What is the optimal structure of mechanical part drawing 2

Figure.2

What is the optimal structure of mechanical part drawing 3

Figure.3

Because there are casting fillets at the intersection of casting surfaces, the intersection line of two surfaces becomes less obvious. However, on the part drawing, the theoretical intersection line of the surface must still be drawn, but it is required to leave a blank at both ends or one end of the intersection line, which is usually called the transition line. The drawing method of transition line is basically the same as that of intersection line without fillet. The differences between them are shown in Figure 4.

What is the optimal structure of mechanical part drawing 4

Figure.4

3. Casting wall thickness

  In order to avoid cracks or shrinkage cavities caused by internal stress during casting cooling, the wall thickness of the casting shall be as uniform as possible, and the transition between different wall thicknesses shall also be uniform, as shown in Figure 5.

What is the optimal structure of mechanical part drawing 5

Figure.5

Cutting process structure of metal parts

  The cutting process structure of metal parts includes chamfering and rounding, tool return groove or grinding wheel over travel groove, reasonable structure of drilling, boss and pit, etc.

1. Chamfering and rounding

  In order to facilitate assembly, chamfer is often machined at the shaft end or orifice, as shown in Fig. 6 (a). In order to avoid cracks on the stepped shaft or hole due to stress concentration, fillets are often machined at the turning point of the shoulder, as shown in Fig. 6 (b). The type and size of chamfering and rounding of parts shall be specified in the national standard.

What is the optimal structure of mechanical part drawing 6

Figure.6

2. Undercut or grinding wheel over travel groove

  In order to easily withdraw the tool during cutting and ensure the machining quality, the tool withdrawal groove or grinding wheel over travel groove is often machined at the shoulder of the machining surface, as shown in Fig. 6 (c). The structure and size of the over travel groove of the grinding wheel are specified in the national standard.

3. Bosses or pits

  In order to reduce the amount of machining and ensure good indirect contact of parts during assembly, bosses or pits are often made on the surface of parts.

4. Reasonable drilling structure

  In order to avoid axis deflection and bit breaking during drilling, the axis of the hole shall be perpendicular to the end face of the hole. Therefore, when there is a drilling structure on the inclined surface, a plane, boss or pit perpendicular to the drilling direction shall be designed, as shown in Figure 8.

Cutting process structure of metal parts

  The cutting process structure of metal parts includes chamfering and rounding, tool return groove or grinding wheel over travel groove, reasonable structure of drilling, boss and pit, etc.

1. Chamfering and rounding

  In order to facilitate assembly, chamfer is often machined at the shaft end or orifice, as shown in Fig. 6 (a). In order to avoid cracks on the stepped shaft or hole due to stress concentration, fillets are often machined at the turning point of the shoulder, as shown in Fig. 6 (b). The type and size of chamfering and rounding of parts shall be specified in the national standard.

What is the optimal structure of mechanical part drawing 7

Figure.6

2. Undercut or grinding wheel over travel groove

  In order to easily withdraw the tool during cutting and ensure the machining quality, the tool withdrawal groove or grinding wheel over travel groove is often machined at the shoulder of the machining surface, as shown in Fig. 6 (c). The structure and size of the over travel groove of the grinding wheel are specified in the national standard.

3. Bosses or pits

  In order to reduce the amount of machining and ensure good indirect contact of parts during assembly, bosses or pits are often made on the surface of parts, as shown in Figure 7What is the optimal structure of mechanical part drawing 8

What is the optimal structure of mechanical part drawing 9

Figure.7

4. Reasonable drilling structure

  In order to avoid axis deflection and bit breaking during drilling, the axis of the hole shall be perpendicular to the end face of the hole. Therefore, when there is a drilling structure on the inclined surface, a plane, boss or pit perpendicular to the drilling direction shall be designed, as shown in Figure 8.

What is the optimal structure of mechanical part drawing 10

Dodaj komentarz

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

日本一区二区高清免费不卡| 大吊肏子宫在线观看| 有关日本黄色录像的视频| 国产裸模大尺度私拍视频| 在线无码一区二区三区不卡| 黑丝美女被操到高潮| 日韩亚洲AV无码一区二区不卡| 高颜值情侣鸡巴插插淫叫| 日韩av大片一区二区三区| 国产精品999午夜激情| 日韩久久中文字幕| 加勒比在线不卡一区二区观看| 操世界最美丽的逼片| 黑大吊肏小騷逼噴水| 亚洲狠狠插狠狠搞狠狠摸| 精品久久av免费一区二区三区| 高清无码精品一区二区三区| 亚洲av 又黄又爽十大| 内射白嫩少妇超碰| 欧美日韩一区二区成人在线| 国产免费无码一区二区视频无码| 国产午夜精品美女视频露脸| 非洲人粗大长硬配种视频| 99久久九九爱精品国产| 国产163黄网人看人人爽| 国产午夜福利片无码视频| 嗯嗯嗯啊啊啊好湿好痒好多水视频| 中文字幕乱码一区三区免费| 我最爱操女人的骚逼| 日本熟人妻中文字幕在线| 8050午夜三级的全黄| 色噜噜AV亚洲色一区二区| 大鸡巴抽插小穴色虐视频| 欧美国产日韩a欧美在线| 99热这里只有精品亚洲| 狠狠色伊人亚洲综合成人| 欧美大胆a级视频 一本| 中文字幕乱码一区二区三区麻豆| 欧美高清在线观看一区二区三区| 大屁股真人日逼视频| 差鸡巴没码在线观看|