舷加強板 的英文怎麼說

中文拼音 [xiánjiāqiángbǎn]
舷加強板 英文
clamp strake
  • : 名詞(船的兩側) the side of a ship; board
  • : 強形容詞(強硬不屈;固執) stubborn; unyielding
  • : Ⅰ名詞1 (片狀硬物體) board; plank; plate 2 (專指店鋪的門板) shutter 3 [音樂] (打拍子的樂器) ...
  1. The ship ' s hull is a thin - walled box girder structure composed of stiffened panels. the overall failure of a ship hull girder is normally governed by buckling and plastic collapse of the deck, bottom, or sometimes the side shell stiffened panels. therefore, the analysis of buckling and ultimate strength of ship panels in deck, boltom, and side shells is very important and necessary for the safety assessment of ship structure. in stiffened panels, local buckling and collapse of plating between stiffeners is a basic failure mode, and thus it would also very important to evaluate the buckling and ultimate strength interaction of plate elements under combined loads

    船體梁的總體失效通常取決于甲、船底,有時候是的屈曲和塑性破壞。因此,對于衡量船體結構的安全性而言,對甲、底進行屈曲和極限度分析是十分重要且必須的。對于而言,筋間的格之局部屈曲和失效是最基本的失效模式。
  2. Other features : vessel head high strength and durability of stainless steel d - rings ; paddle with the sliding lock locks connect parade as more flexible ; stern plate has a unique optimal angle, height and installation of aluminum alloy plate ; rope with haste, be lifesaving ; plus side of durable bull fender, the collision can play protective role

    其他特點:船頭部採用高度和耐用的不銹鋼d型環;船槳鎖採用滑鎖連接,操所更靈活;艉具有獨特的最優角度,高度以及安裝有鋁合金墊;裝有急用救生繩;船邊有耐用防撞護,在碰撞時能起到保護作用。
  3. Based on the solving technique of explicit non - linear finite element method and the mechanism in ship - anti - collision equipment collision, this paper develops numerical simulation to collision process of a ship and an anti - collision equipment, then studies the influence of uncertain factors in the collision problems and gives some suggestions to improve the anti - collision equipment

    摘要在研究船橋墩防護裝置碰撞機理的基礎上,結合實例探討了碰撞問題中的諸多因家(如碰撞位置、防護裝置的結構尺寸以及碰撞速度等的變化)對防護裝置抗撞性能的影響,並據此對橋墩防護裝置提出了改進意見:通過模擬計算,改進防護裝置的厚以及上筋的結構尺寸;在防護裝置的內圍壁與橋墩之間放置橡膠吸能元件或在防護裝置的外圍壁安裝橡膠護件,以防護裝置的吸能作用。
  4. Since the overall failure of a ship hull is normally governed by buckling and plastic collapse of the deck, bottom or sometimes the side shell stiffened panels, it is of crucial importance to accurately calculate the ultimate strength of stiffened panels in deck, bottom and side shell for more advanced structural design of ship structures

    由於船體梁的總體破壞通常由甲、底或者的屈曲或塑性破壞控制,因此在船舶結構設計中準確地計算甲、底的極限度就顯得尤為重要。
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