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Record #93056:

Experimental study on adfreeze bond strength of sea ice to heavy-duty coated steel pipe piles / Fuyuhiko Ohtsuki, Koichi Sato, Kazuyuki Suzuki, Kohki Sasaki, Toshiyuki Ono, Hiroshi Saeki.

Title: Experimental study on adfreeze bond strength of sea ice to heavy-duty coated steel pipe piles / Fuyuhiko Ohtsuki, Koichi Sato, Kazuyuki Suzuki, Kohki Sasaki, Toshiyuki Ono, Hiroshi Saeki.
Author(s): Ohtsuki, Fuyuhiko.
Sato, Koichi.
Suzuki, Kazuyuki.
Sasaki, Kohki.
Ono, Toshiyuki.
Saeki, Hiroshi.
Date: 1988.
Publisher: [Delft]: International Association for Hydraulic Research, Committee on Ice Problems
In: Proceedings, the 9th International Symposium on Ice, 23-27 August 1988, Sapporo, Japan. (1988.), Vol. 1.
Abstract: Found that adfreeze bond strength of these piles can be lower than that of uncoated steel pipe piles and concrete piles, but it increases with decreasing ice temperature. Irregularities on surface have little effect, but properties of coating materials, such as cohesive energy and hardness, do. Such pipe piles seem very suitable for use in Arctic waters.
Notes:

In: Proceedings, the 9th International Symposium on Ice, 23-27 August 1988, Sapporo, Japan. Vol. 1. / Hiroshi Saeki, Ken-ichi Hirayama, eds.

Keywords: 551.32 -- Glaciology.
551.326 -- Floating ice.
539.6 -- Ice, adhesion and friction. Regelation.
624.142 -- Low temperature effects.
624.15 -- Foundations.
E12 -- Glaciology: frozen ground / snow and ice engineering.
SPRI record no.: 93056

MARCXML

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035 ## ‡aSPRI-93056
040 ## ‡aUkCU-P‡beng‡eaacr
245 00 ‡aExperimental study on adfreeze bond strength of sea ice to heavy-duty coated steel pipe piles /‡cFuyuhiko Ohtsuki, Koichi Sato, Kazuyuki Suzuki, Kohki Sasaki, Toshiyuki Ono, Hiroshi Saeki.
260 ## ‡a[Delft] :‡bInternational Association for Hydraulic Research, Committee on Ice Problems,‡c1988.
300 ## ‡ap. 281-293 :‡bdiags., tables.
500 ## ‡aIn: Proceedings, the 9th International Symposium on Ice, 23-27 August 1988, Sapporo, Japan. Vol. 1. / Hiroshi Saeki, Ken-ichi Hirayama, eds.
520 3# ‡aFound that adfreeze bond strength of these piles can be lower than that of uncoated steel pipe piles and concrete piles, but it increases with decreasing ice temperature. Irregularities on surface have little effect, but properties of coating materials, such as cohesive energy and hardness, do. Such pipe piles seem very suitable for use in Arctic waters.
650 07 ‡a551.32 -- Glaciology.‡2udc
650 07 ‡a551.326 -- Floating ice.‡2udc
650 07 ‡a539.6 -- Ice, adhesion and friction. Regelation.‡2udc
650 07 ‡a624.142 -- Low temperature effects.‡2udc
650 07 ‡a624.15 -- Foundations.‡2udc
650 07 ‡aE12 -- Glaciology: frozen ground / snow and ice engineering.‡2local
700 1# ‡aOhtsuki, Fuyuhiko.
700 1# ‡aSato, Koichi.
700 1# ‡aSuzuki, Kazuyuki.
700 1# ‡aSasaki, Kohki.
700 1# ‡aOno, Toshiyuki.
700 1# ‡aSaeki, Hiroshi.
773 0# ‡7nnam ‡aHiroshi Saeki, Ken-ichi Hirayama, eds. ‡tProceedings, the 9th International Symposium on Ice, 23-27 August 1988, Sapporo, Japan. ‡d[Delft] : International Association for Hydraulic Research, Committee on Ice Problems, 1988. ‡gVol. 1. ‡wSPRI-93033
917 ## ‡aUnenhanced record from Muscat, imported 2019
948 3# ‡a20240415