日本舶用機関学会誌
Online ISSN : 1884-4758
Print ISSN : 0388-3051
ISSN-L : 0388-3051
6 巻, 1 号
選択された号の論文の5件中1~5を表示しています
  • 一色 尚次
    1971 年 6 巻 1 号 p. 4-11
    発行日: 1971年
    公開日: 2010/05/31
    ジャーナル フリー
  • 小泉 磐夫
    1971 年 6 巻 1 号 p. 12-32
    発行日: 1971年
    公開日: 2010/05/31
    ジャーナル フリー
  • H. M. Hiersig
    1971 年 6 巻 1 号 p. 33-45
    発行日: 1971年
    公開日: 2010/05/31
    ジャーナル フリー
    In marine application the medium speed diesel engine requires gears to adapt its operational speed to the speed with which the propeller performs highest efficiency. There are many configurations of marine gears. They depend on kind and number of engines as well as on the engine room installation. Reverse reduction gears of very different design, single input reduction gears, vertical or horizontal offset or coaxial, twin or multiple input form the main groups of this section of gear designing. The single stage gear unit of today shows very compact design and a high load carrying capacity. This is due to the surface treatment of the tooth flanks by hardening processes. Outstanding experience has been collected with carburised teeth, which have been ground for accuracy achievement. Effective profile modification for the purpose of high bending resistance, protuberance milling to keep the roots of the teeth untouched by the grinding wheel result in utmost resistance against wear and rupture. So the specific loading agreed to by the classification societies are fully justified.
    The required accuracy of those gears even at their low circumferential velocity is to compare with the precision of turbine gears manufactured according to BSS 1807. Important are full contact areas between the teeth, this requires careful observation of shaft deflection, bearing clearance, thermal distortions and rigidity of housing, thrust block and foundation in the hull. Another important condition to be observed satisfactory performance of marine gears is the absence of major torsional vibrations producing overload torque or even torque reversal. With diesel engines as power sources excitations of torsional vibrations are very likely to interfere with one or another of the natural ferquencies of the propulsion system. The fundamental connections required to calculate torsional vibration and the rise of torques caused by them are well known. With increasing familiarization of computer technique the calculation procedure has been refined to handle even manifold systems easily and practically reliable.
    The necessary over-all-elasticity of the torsional vibrating system thus can be calculated and realised. More and more there are used torsionally elastic couplings to dislocate the natural frequencies to the region of low speed. Good performance showed rubber couplings with metal bonded contact surfaces of special design, which allows a prestressing of the bonded surfaces. Their high torsional elasticity and damping property assures an overcritical operation. At the same time they allow for misalignment without any maintenance trouble. In some cases where it is advisable to avoid the turbulence zone at low speed at all, there are torsional elastic clutches available. They consist of the same elastic rubber elements combined with a clutching device with friction cones and pneumatically operated ring cylinder. Thus, it is possible to engage the whole propulsion system only after having reached the engine service speed. With disengaging and re-engaging the clutch great advantage is obtained during “crashstop”-manouvre, because the time for propeller reversal is much reduced. In any case torsionally elastic clutches are required for twin or multiple engine installations, where they have been applied originally and have proven an ample reputation of reliability. Nowadays, the tedency to install unmanned engine rooms leads to immediate measuring of engine torque : this is relatively easy with highly elastic couplings of linear characteristic, the torsional angles of which are large enough to furnish significant values for the purpose of measurement.
    The lecture points out the recent development which has been achieved on the side of Gearing and Couplings adequate to the development of the medium speed diesel engines.
  • 1971 年 6 巻 1 号 p. 46-65
    発行日: 1971年
    公開日: 2010/05/31
    ジャーナル フリー
  • 伊丹 潔, 木村 軍司, 川口 尚宏
    1971 年 6 巻 1 号 p. S1-S14
    発行日: 1971年
    公開日: 2010/05/31
    ジャーナル フリー
    最近, 電磁カップリングは, 回転機の速度制御装置や舶用機器のねじり振動緩和装置など各方面で大いに使用されるようになってきた.電磁カップリングの構造的設計法については, E.J.Davies氏による一般式がかなりよく当てはまることが知られているが, 一方, その電気―機械系の諸特性に関する物理的内容を十分理解できるような等価回路については, まだ, 検討し尽くされていない.また, 電磁カップリングを用いた速度制御系においては, 従来, 励磁電流と出力トルクとの関係を表わす伝達関数は定Kτで時間遅れはないものとして取り扱われてきた.本論文で, 著者は塊状回転電機子形電磁カップリングの動作特性をは握できるきわめて簡単な電気的等価回路を考案し, これに基づいてその動作特性を解析している.さらに, 励磁電流と出力トルクとの関係を周波数応答法により実測して, その伝達関数を検討した結果, 遅れ要素とみなすべきであるという結論が得られた.さらに, この結果に基づいて, 効率, 速応性および形状寸法などの点ですぐれた特徴をもつサイリスタチョッパを励磁電流制御装置として用いた速度制御などを考案した.
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