Understanding deformation mechanisms in silicon is critical for reliable design of miniaturized devices operating at high temperatures. Bulk silicon is brittle, but it becomes ductile at about 540 °C. It creeps (deforms plastically with time) at high temperatures (∼800 °C). However, the effect of small size on ductility and creep of silicon remains elusive. Here, we report that silicon at small scales may deform plastically with time at lower temperatures (400 °C) above a threshold stress. We achieve this stress by bending single-crystal silicon microbeams using an in situ thermomechanical testing stage. Small size, together with bending, localize high stress near the surface of the beam close to the anchor. This localization offers flaw to...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
Silicon is brittle at ambient temperature and pressure, but using micro-scale samples fabricated by ...
The brittle-to-ductile transition (BDT) in silicon has been studied extensively over the last two de...
The brittle-to-ductile transition (BDT) in silicon has been studied extensively over the last two de...
The experiments described in this paper investigate the fundamental processes involved in the brittl...
The experiments described in this paper investigate the fundamental processes involved in the brittl...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
Silicon is brittle at ambient temperature and pressure, but using micro-scale samples fabricated by ...
The brittle-to-ductile transition (BDT) in silicon has been studied extensively over the last two de...
The brittle-to-ductile transition (BDT) in silicon has been studied extensively over the last two de...
The experiments described in this paper investigate the fundamental processes involved in the brittl...
The experiments described in this paper investigate the fundamental processes involved in the brittl...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
International audienceThe mechanical properties of materials usually depend on the size of the consi...