Tape measure with variable preformed stressed spiral spring retraction system
A tool, such as a tape measure, including a spring-based retraction system is shown. The spring-based retraction system is driven by a spiral spring, that has a variable preformed stress profile along the length of the spring.
1. A method of forming a variably stressed spring for a tape measure comprising:
providing a metal sheet of spring material to a smoothing station;
moving the metal sheet of spring material through the smoothing station;
moving the metal sheet of spring material through a stressing station, wherein the stressing station deforms the metal sheet of spring material such that varying levels of stress are formed along the length of the metal sheet of spring material; and
following the stressing station, winding the metal sheet of spring material around an arbor within a storage device.
2. The method of claim 1 , further comprising:
deforming the metal sheet of spring material, wherein a first portion of the metal sheet of spring material is deformed via engagement with a bar configured to induce a first bend radius into the first portion of the metal sheet of spring material as the metal sheet of spring material moves around the bar.
3. The method of claim 2 , further comprising:
moving the bar a distance away from the metal sheet of spring material such that engagement between the bar and a second portion of the metal sheet of spring material induces a second bend radius different than the first bend radius.
4. The method of claim 3 , wherein the first portion of the metal sheet of spring material has a first level of preformed stress and the second portion of the metal sheet of spring material has a second level of preformed stress;
wherein the second level of preformed stress is different from the first level of preformed stress and varies along the length of the second portion; and
wherein the first level of preformed stress is measured by a first free coil diameter and the second level of preformed stress is measured by a second free coil diameter, wherein the first free coil diameter is less than the second free coil diameter.
5. The method of claim 1 , wherein the smoothing station includes a pair of calendaring rollers.
6. The method of claim 1 , further comprising:
heating the metal sheet of spring material following the smoothing station.
7. The method of claim 1 , further comprising:
forming a tabbed end on the metal sheet of spring material at a stamping station.
8. The method of claim 7 , further comprising:
passing the metal sheet of spring material around a roller following the stamping station.