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Experimental study of the effect of submersion time on the strength development of freeze bonds

机译:浸没时间对冻结键强度发展影响的实验研究

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Freeze bonds have been found to influence the mechanical properties of ice rubble and ridges, and it is therefore important to study the fundamental physical properties affecting these features. The shear strength of freeze bonded ice blocks has been investigated through a series of asymmetric four point bending (AFPB) experiments for different submersion times and initial ice temperatures. Ice blocks were subject to a confinement of 25 kPa and were sheared at an actuator rate of 5 mm/s. Effects of submersion time on shear strength of freeze bonds was investigated by varying the submersion time from 1 min to 14 days, for two initial ice temperatures of -18 degrees C and -10 degrees C. Shear strength values measured are believed to be dominated by two concurrent mechanisms. Thermal bond growth is the first mechanism, where an initial increase in strength with submersion time is observed, reaching a peak after four (4) minutes of submersion time and gradually decreasing to a constant value. Sintering-creep bond development is the second mechanism that significantly influences the bond strength in submersion times longer than 24 h, where the strength increases and eventually asymptotes to the strength of solid ice. An empirical equation which estimates the bond strength as a function of submersion time and initial ice temperature is developed.
机译:已经发现冻结键会影响瓦砾和山脊的机械性能,因此研究影响这些功能的基本物理性能非常重要。通过一系列针对不同浸没时间和初始冰温的非对称四点弯曲(AFPB)实验,研究了冻融冰块的剪切强度。将冰块限制在25 kPa内,并以5 mm / s的执行器速率剪切。在两个初始冰温分别为-18摄氏度和-10摄氏度的情况下,通过将浸没时间从1分钟更改为14天,研究了浸没时间对冷冻结合强度的影响。据信,测得的剪切强度值主要由两种并发机制。热键增长是第一个机理,其中观察到强度随浸入时间而最初增加,在浸入时间四(4)分钟后达到峰值,并逐渐降低至恒定值。烧结-蠕变键的发展是第二种机制,该机制在大于24小时的浸没时间中会显着影响粘合强度,而在浸入时间中,强度会增加,最终会逐渐达到固态冰的强度。建立了一个经验方程式,该方程式估算了结合强度与浸没时间和初始冰温的关系。

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