Detail publikace

Vliv plastického maziva s lithným mýdlem na formovaní mazacího filmu mezi hladkými a dentovanými povrchy

SAKAI, K. KOŠŤÁL, D. SHITARA, Y. KANETA, M. KŘUPKA, I. HARTL, M.

Český název

Vliv plastického maziva s lithným mýdlem na formovaní mazacího filmu mezi hladkými a dentovanými povrchy

Anglický název

Influence of Li Grease Thickener Types on Film Thicknesses Formed between Smooth and Dented Surfaces

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

en

Originální abstrakt

The lubricant film thickness behaviors of lithium (Li) thickener type greases and their base oil were investigated for the contact between a glass disk and a smooth/dented steel ball using an optical interferometry. The main focus is to understand grease film behaviors including high speed history and contact surface conditions. A Li stearate thickened grease showed similar behaviors to the base oil itself and the thickener particles were not observed on the contact. Thickener particle entrainments were observed in greases with Li 12-hydroxy stearate and Li complex thickeners. Track patterns formed in the downstream of the contacts correlated with the thickener particle entrainments to the contacts. The Li stearate thickened grease showed quick starvation phenomenon without a scoop which maintains fully flooded conditions. The particle entrainments of Li 12-hydroxy stearate and Li complex thickened greases were less observed after measurements at high speeds. On the dented surfaces, the particle entrainments of the Li 12-hydroxy stearate grease were more frequent than those of Li complex grease. These results suggest that thickener chemical structures have influence on the grease film formation. The thickener with higher polarity could promote the entrainment of greases into contact.

Český abstrakt

Cílem této práce je popis chování plastických maziv s lithným mýdlem a jejich základové oleje v elastohydrodynamickém kontaktu, který je formován mezi hladkým skleněným diskem a hladkou, případně dentovanou ocelovou koulí...

Anglický abstrakt

The lubricant film thickness behaviors of lithium (Li) thickener type greases and their base oil were investigated for the contact between a glass disk and a smooth/dented steel ball using an optical interferometry. The main focus is to understand grease film behaviors including high speed history and contact surface conditions. A Li stearate thickened grease showed similar behaviors to the base oil itself and the thickener particles were not observed on the contact. Thickener particle entrainments were observed in greases with Li 12-hydroxy stearate and Li complex thickeners. Track patterns formed in the downstream of the contacts correlated with the thickener particle entrainments to the contacts. The Li stearate thickened grease showed quick starvation phenomenon without a scoop which maintains fully flooded conditions. The particle entrainments of Li 12-hydroxy stearate and Li complex thickened greases were less observed after measurements at high speeds. On the dented surfaces, the particle entrainments of the Li 12-hydroxy stearate grease were more frequent than those of Li complex grease. These results suggest that thickener chemical structures have influence on the grease film formation. The thickener with higher polarity could promote the entrainment of greases into contact.

Klíčová slova česky

plastické mazivo, EHL, tloušťka mazacího filmu, maziva, stopa v mazivu

Klíčová slova anglicky

grease, EHL, film thickness, lubricants, track pattern

Vydáno

31.12.2017

Nakladatel

Japanese Society of Tribologist

Místo

JAPAN

ISSN

1881-2198

Ročník

12

Číslo

5

Strany od–do

262–273

Počet stran

12

BIBTEX


@article{BUT142910,
  author="Kazumi {Sakai} and David {Košťál} and Motohiro {Kaneta} and Ivan {Křupka} and Martin {Hartl},
  title="Influence of Li Grease Thickener Types on Film Thicknesses Formed between Smooth and Dented Surfaces ",
  year="2017",
  volume="12",
  number="5",
  month="December",
  pages="262--273",
  publisher="Japanese Society of Tribologist",
  address="JAPAN",
  issn="1881-2198"
}