Citation:
Heras, E. S., Rubio, H., Bustos, A., & García Prada, J. C. (2020). Automatic Expanding Mandrel with Air Sensing Device: Design and Analysis. Applied Sciences, 10(7), 2551
In precision machining, expanding mandrels are used for jobs with close tolerances.
An expanding mandrel consists of a tapered arbor or shaft, with a thin-slotted clamping sleeve or
collet made of hardened steel. The internal tapered and external cylindricalIn precision machining, expanding mandrels are used for jobs with close tolerances.
An expanding mandrel consists of a tapered arbor or shaft, with a thin-slotted clamping sleeve or
collet made of hardened steel. The internal tapered and external cylindrical surfaces are ground
to a high degree of accuracy, and the mandrel expands to fit the internal bore of the workpiece.
Expanding mandrels are, essentially, wedge mechanisms. This paper proposes an automatic expanding
mandrel with a novel force transmission system for high stiffness within a novel air sensing system,
which allows detection of the correct part position before starting machining. A computational
model for determining the dynamic clamping force of the proposed mechanism is developed and
implemented using MATLAB. This model considers the influence of the sti ness behaviors of the
collet, force transmission structure and workpiece. Additionally, this paper presents the finite element
method analyses which were conducted to check the proposed computational model. The amount of
clamping force transmitted by a collet chuck holder depends strongly on: clearances, wedge angle,
stiffness of the collet chuck holder and workpiece stiffness.[+][-]