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

As more and more metal parts manufacturers understand the advantages of powder metallurgy, they begin to look for new and improved methods to use this process. At the same time, they are familiar with and familiar with the current forging process.

But what if you can combine these two technologies to produce forged metal parts with better performance than traditional powder metal (PM)? This is actually possible. In fact, it has a name: powder metal forging.

Let’s understand the use of powder metallurgy forging and traditional powder metallurgy and traditional forging. As a reward, we will show a new alternative that is even more efficient than PM forging…

What Is Powder Metal Forging?

Powder metal forging is the combination of powder metallurgy and forging. Also known as powder forging, this metal forging uses powder materials because they have advantages in the following aspects:

1 forming capacity

2 reduce the number of process steps to produce final components with some potential unique advantages, such as fracture and cracking of connecting rod end cap

3 minimum waste

The rest is forged to produce high-strength parts that will be more durable than traditional powder metal components.

The process of forging powder metal begins when the raw powder is compacted and then sintered. After sintering, but when the part is still at high temperature (above 1800 ° f), the manipulator immediately grabs the part and transfers it to the forging die.

If real estate is related to “l(fā)ocation”, then the powder metal forging process is related to “density”. The purpose is to make PM parts as close to full density as possible. This will provide you with higher performance and higher mechanical properties. If operated properly, the porosity of parts can be eliminated by more than 99%.

?? ??? ?? ??? ??? ? ????? 2

Traditional powder metal forged parts VS sintering parts

Determining whether to use powder forging requires understanding which metals can be forged and which quality is most important for the project. Powder metallurgy can even produce complex parts at a higher productivity than forging.

Powder metal materials can be subject to conventional sintering treatment to improve tensile strength and bending fatigue strength. Due to the inherent net forming ability of powder metallurgy, forming is easier than stamping and processing.

Nevertheless, when strength is absolutely necessary and PM is not enough, metal forging process may be a better choice. Through powder forging, the shape complexity is good, but powder metallurgy is still much better.

However, there are still many examples of powder metallurgy forging and impressive results have been achieved. Take the connecting rod as an example. It has a unique shape. The pin end enters the interior of the piston, and the crank end is a large hole at the bottom, which is molded on the high shaft. With powder metallurgy forging, you can actually make these holes during the forging operation, thus reducing material waste and not requiring too much “flash” to fill the blockage or precision forging indentation.

You can use the traditional forging method to forge 1.2 pounds of raw materials, but with the powder metallurgy forging method, there may be only 1.02 pounds of low-cost iron copper carbon powder. This means reducing secondary processing – giving you a lead in the game.

?? ??? ?? ??? ??? ? ????? ?

It’s even better: ultra high temperature as an alternative to powder forging

Combining powder metallurgy with forging sounds like a win-win, right? This is absolutely true.. If your budget is not a problem.

In order to manufacture forged metal products, manufacturers need to:

1A compactor

2A specially designed sintering furnace

3A forging press

4 other equipment

Making all these machines work is very expensive, and the cost will fall directly on your lap.

Traditional powder metallurgy may not provide the level of performance you want, but traditional forging may be very expensive. So what can we do for people in between and on the edge?

Ultra high temperature sintering can improve the strength and other properties of powder metal parts, making you close to the position of powder metallurgy forging. We define ultra-high temperature sintering as heating iron powder at a temperature close to 2500 ° F.

This is a compromise that may actually give you more than the sum of the parts. Traditional powder metallurgy can provide 50-70% performance of powder metallurgy forging. Ultra high temperature sintering can provide 80-90% of powder metallurgy forging.

By using ultra-high temperature sintering, you can retain the more inherent dimensional accuracy provided by metal powder, but you can also provide mechanical properties close to the forging capacity of powder metallurgy.

One always popular side effect is that using a strict PM process may make material use more efficient. When forging connecting rods, the manufacturer must remove the resulting “flash”. Ultra high temperature sintering can produce a connecting rod to make your strength requirements without manual finishing, which will make it ready for field action.

?? ???

???? ???? ????. ?? ???? * ? ???? ????

女人被躁到高潮嗷嗷叫小| 尤物性生活午夜在线视频| 极品美女销魂一区二区三区| 啊服慢一点插入逼逼| 欧美伦禁片在线播放| 精品一区二区三区成人免费视频| 亚洲综合青青草原在线| 99视频在线看免费视频| 国产一区曰韩二区欧美三区| 少妇精品久久久一区二区免费| 日本成人在线一区中文字幕| 久久久五月性色视频| 国产熟女露脸普通话对白| 啊啊啊别操了视频| 国产精品日韩精品欧美精品| 女人被大鸡吧操逼| 黑人插中国女人逼| 欲色福利网免费在线播放| 神马我不卡手机在线观看| 精品一区二区久久久久无码| 欧美性做爰片免费视频看| 3色w九九久久男人皇宫宕| 国产老妇伦国产熟女91| 亚洲人成在线不卡网| 大屌把女生逼逼操肿国产| 精品的极品美女一区二区三区| 国产午夜高清无码一级片| 五月天国产成人av在线| 蜜臀AV无码国产精品尤物| 中文无码av动作片| —级v免费大片欧美| 人人超级碰青青精品| 国产熟女露脸普通话对白| 女生小穴色色视频| 一区二区三区 日韩在线| 乱伦美女小骚货视频| 日本最新免费不卡一区二区三区| 亚洲国产精品一区亚洲国产| 韩国无玛黄片毛片| 看小伙草白女人比的黄片| 哈啊慢点不要了视频|