![Copper, Ductile Iron, Carbon Steel, Stainless Steel and Aluminum Piping Materials - Temperature Expansion Copper, Ductile Iron, Carbon Steel, Stainless Steel and Aluminum Piping Materials - Temperature Expansion](https://www.engineeringtoolbox.com/docs/documents/931/piping_material_temperature_expansion_chart_meter_celsius.png)
Copper, Ductile Iron, Carbon Steel, Stainless Steel and Aluminum Piping Materials - Temperature Expansion
![Wells's principles and applications of chemistry; . ot dilateuniformly, but expand in an increasing ratio. Different solids, however, expand very unequally forequal additions of temperature. Fig. 28. Among solids the metals expand Wells's principles and applications of chemistry; . ot dilateuniformly, but expand in an increasing ratio. Different solids, however, expand very unequally forequal additions of temperature. Fig. 28. Among solids the metals expand](https://c8.alamy.com/comp/2AWPGA8/wellss-principles-and-applications-of-chemistry-ot-dilateuniformly-but-expand-in-an-increasing-ratio-different-solids-however-expand-very-unequally-forequal-additions-of-temperature-fig-28-among-solids-the-metals-expand-the-most-but-an-iron-wire-increases-only1-282-in-bulk-when-heated-from-32-of-thethermometer-up-to-212-zinc-is-the-mostexpansible-of-the-metals-and-platinum-themost-uniform-in-its-rate-of-expansion-at-alltemperatures-wood-and-marble-expandbut-slightly-the-expansion-of-solids-by-heat-is-clearlyshown-by-the-following-experiment-fig28-to-represents-a-ring-of-me-2AWPGA8.jpg)
Wells's principles and applications of chemistry; . ot dilateuniformly, but expand in an increasing ratio. Different solids, however, expand very unequally forequal additions of temperature. Fig. 28. Among solids the metals expand
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