The Diff Between Boxer 4 Engine(水平对置) & Inline 4 Engin(垂直)

来源: 萨克斯风 2020-04-30 12:03:24 [] [旧帖] [给我悄悄话] 本文已被阅读: 次 (2827 bytes)
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On the boxer engine, you’ll notice the pairs of pistons move in and out together. This means that the primary forces when the piston reaches the top of the cylinder, as well as when they reach the bottom of the cylinder, are canceled out. On the inline 4 cylinder engine, it’s the same story, the primary forces cancel out as the pairs of pistons reach the top and bottom at the same time.

 

When we get into secondary forces, however, the engines begin to differ. Secondary forces are created due to the piston traveling faster at the top half of the piston than at the bottom half, something I’ll include a link to in the description for a video that breaks it down in great detail. What you need to know though, is that when the piston reaches the very top of the cylinder, or the very bottom, the secondary force points up or out from the piston. Now with the boxer engine, since the pistons point opposite each other, these forces are balanced out, resulting in a very smooth running engine. For the inline four, all of the forces point in the same direction, and thus do not cancel each other out, causing the engine to vibrate unless balancing shafts are used.

 

The boxer engine isn’t perfect, however, because the pistons do not perfectly align with each other, it creates a rocking moment which makes the engine want to rotate back and forth along the vertical axis. What’s fascinating, however, is that if you add two cylinders to either of these designs, whether it’s a boxer six or an inline six, you can perfectly eliminate all first and second order forces and moments. You might think the boxer six would have a rocking motion from the cylinder banks of three, but each bank of three cylinders cancels out the rocking motion of the other, unlike in a V6 configuration. 

 

The other biggest advantage of the boxer engine is the low profile, which keeps the center of gravity low and thus reduces the amount of load transfer you have in the car during braking, cornering, or accelerating, which improves grip. With a lower center of gravity, you can also reduce body roll and choose to use softer springs. Additionally, in the event of a collision, it’s easier to position the engine so that it goes underneath the passenger compartment, rather than into the passenger compartment, for improved safety. 

所有跟帖: 

公知: 活塞重力一直在一个方向压在气缸壁上,磨损一段时间后还圆不圆? -coolwin- 给 coolwin 发送悄悄话 coolwin 的博客首页 (0 bytes) () 04/30/2020 postreply 14:57:33

会变得不圆的。 -萨克斯风- 给 萨克斯风 发送悄悄话 (212 bytes) () 04/30/2020 postreply 16:34:34

对置发动机以前是有这个问题,现在工艺进步已经好很多了。 -二胡一刀- 给 二胡一刀 发送悄悄话 二胡一刀 的博客首页 (0 bytes) () 04/30/2020 postreply 18:21:11

所以答案是50年以后(@^@) -萨克斯风- 给 萨克斯风 发送悄悄话 (0 bytes) () 04/30/2020 postreply 20:21:18

竖置式虽然没有重力造成单边磨损, 但较强的震动也会造成不规则磨损。 -odamae- 给 odamae 发送悄悄话 (0 bytes) () 04/30/2020 postreply 17:26:24

横置纵置都会磨成椭圆 -biglow- 给 biglow 发送悄悄话 biglow 的博客首页 (62 bytes) () 05/02/2020 postreply 06:42:25

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