
Steelyard Balance
说明
Find the law of the lever yourself
Find the law of the lever yourself
Establish the rule before building anything that relies on it.
- Balance a rigid bar on a central pivot.
- Hang a known mass at a measured distance on one side.
- Balance it with a different mass on the other and record both distances.
此步骤所需材料:
Mild Steel Bar1 bar
Digital Kitchen Scale1 个
Steel Ruler1 个Move the pivot off centre
Move the pivot off centre
Now break the symmetry deliberately.
- Re-hang the beam so the pivot sits near one end.
- Hang the load from the SHORT arm.
- Slide a single counterweight along the LONG arm until it balances.
此步骤所需材料:
Cotton Twine (for bundling)1 卷Graduate the beam
Graduate the beam
Turn the balance point into a reading.
- Hang a known mass and mark where the counterweight balances.
- Repeat for several known masses.
- Check the spacing between your marks.
Add a second pivot for a second range
Add a second pivot for a second range
Roman steelyards commonly have two or three suspension hooks. Build the second.
- Fit another pivot point closer to the load end.
- Hang from that one and re-graduate.
- Compare the two scales.
History and context
History and context
The steelyard is Roman in its familiar form — the Latin is statera — and hundreds survive from across the empire, in bronze, often with decorated counterweights cast as busts. Similar unequal-arm balances appear independently in China as the gancheng, and the type is old enough that a single origin is not worth asserting.
Its weakness is exactly its strength. Because the reading depends on a DISTANCE rather than on comparing two weights directly, a steelyard can be falsified in ways an equal-arm balance cannot: shave the beam, shift the pivot, use a counterweight that is slightly light, or file the graduations. Medieval market regulation is full of provisions about checking and stamping steelyards, and the equal-arm balance kept its reputation for honesty for that reason — with two equal arms, any tampering shows up when you swap the pans.
The name has nothing to do with steel. It is generally traced to the Steelyard, the London trading base of the Hanseatic League on the Thames, where such balances were in daily use. The etymology is contested, and it is worth flagging as a folk explanation rather than a settled fact.
Still in service. Doctors' beam scales work this way — a sliding poise along a graduated arm — and so do many mechanical crane and lorry scales. The moment principle also underlies the crane's load chart and the counterweight on a tower crane, which is a steelyard the size of a building.
材料
4- 1 bar占位符
- 占位符
- 1 个占位符
CC0 公共领域
此蓝图以 CC0 协议发布。你可以自由复制、修改、分发和使用此作品,无需征得许可。
通过购买蓝图中的产品支持创客,他们将获得 创客佣金 (由供应商设定),或创建此蓝图的新版本并将其作为连接包含在你自己的蓝图中以分享收入。
