Mechanical motion
Motion can be described through position, velocity and the constraints of the mechanism.
| Record | Category | Normalized value | Role |
|---|---|---|---|
| R-001 | Geometry | 22 | Reference |
| R-002 | Surface | 47 | Comparison |
| R-003 | Assembly | 23 | Control |
| R-004 | Geometry | 54 | Reference |
| R-005 | Surface | 24 | Comparison |
| R-006 | Assembly | 58 | Control |
| R-007 | Geometry | 74 | Reference |
| R-008 | Surface | 57 | Comparison |
| R-009 | Assembly | 56 | Control |
| R-010 | Geometry | 37 | Reference |
| R-011 | Surface | 38 | Comparison |
| R-012 | Assembly | 69 | Control |
Reading the matrix
01 / Definition
Velocity describes change in position over time.
02 / Method
Friction converts mechanical energy into heat.
03 / Observation
Clearance and preload describe different assembly conditions.
04 / Interpretation
A reference frame must be defined before comparing motion.
Illustrative reference data, not live measurements.
Motion can be described through position, velocity and the constraints of the mechanism. Friction converts mechanical energy into heat.