trial load

简明释义

试验负载

英英释义

Trial load refers to the initial or test load applied to a structure or system during a trial period to assess its performance and behavior under specific conditions.

试验载荷是指在试验期间施加于结构或系统的初始或测试载荷,以评估其在特定条件下的性能和行为。

例句

1.The software team ran a trial load 试验载荷 simulation to identify potential bottlenecks.

软件团队进行了试验载荷模拟以识别潜在的瓶颈。

2.During the trial load 试验载荷 phase, we discovered several weaknesses in the design.

试验载荷阶段,我们发现设计中有几个弱点。

3.Before launching the product, we need to conduct a trial load 试验载荷 test to ensure it can handle user demands.

在产品发布之前,我们需要进行一次试验载荷测试,以确保它能够满足用户需求。

4.The engineer decided to apply a trial load 试验载荷 to test the structure's durability.

工程师决定施加一个试验载荷来测试结构的耐久性。

5.The construction company performed a trial load 试验载荷 test on the new bridge before opening it to traffic.

建筑公司在新桥开放通行之前进行了试验载荷测试。

作文

In the realm of scientific research and engineering, the term trial load refers to a specific amount of weight or stress applied to a structure or material during testing. This concept is crucial for understanding how materials behave under various conditions and ensures that they can withstand real-world applications. By applying a trial load, researchers can observe the performance of materials and structures, identifying any potential weaknesses before they are put into practical use.For instance, when testing a bridge, engineers will apply a trial load that simulates the weight of vehicles that will eventually cross it. This allows them to assess the structural integrity of the bridge and make necessary modifications to enhance its safety and durability. The process of applying a trial load is not only limited to bridges; it is also applicable in various fields such as aerospace, automotive, and civil engineering.Moreover, the results obtained from trial load testing can lead to significant advancements in technology and safety standards. For example, after conducting numerous tests with different trial loads, engineers can develop better materials that can endure higher stresses without failing. This is particularly important in industries where safety is paramount, such as aviation and construction.In addition to its practical applications, the concept of trial load also serves as a metaphor in personal development. Just as engineers test materials under pressure, individuals often face their own trial loads in life. These challenges can take the form of academic pressures, career demands, or personal struggles. How one responds to these trial loads can determine their resilience and ability to grow.For instance, a student who faces a heavy academic workload may feel overwhelmed at first. However, by learning to manage their time effectively and seeking help when needed, they can turn this trial load into an opportunity for growth. Similarly, professionals who encounter demanding projects can develop new skills and strengthen their work ethic through perseverance.In conclusion, the term trial load encompasses both a technical aspect in engineering and a metaphorical significance in personal growth. Understanding and mastering this concept can lead to improved safety in engineering applications and foster resilience in individuals facing life's challenges. Just as engineers rely on trial loads to ensure the reliability of their designs, we too can embrace our own trial loads as opportunities for development and improvement.

在科学研究和工程领域,术语试验载荷指的是在测试过程中施加于结构或材料的特定重量或压力。这一概念对于理解材料在各种条件下的行为至关重要,并确保它们能够承受实际应用。通过施加试验载荷,研究人员可以观察材料和结构的性能,识别出任何潜在的弱点,以便在实际使用之前进行改进。例如,在测试桥梁时,工程师会施加一个模拟将要经过的车辆重量的试验载荷。这使他们能够评估桥梁的结构完整性,并进行必要的修改以增强其安全性和耐久性。施加试验载荷的过程不仅限于桥梁;它还适用于航空航天、汽车和土木工程等各个领域。此外,从试验载荷测试中获得的结果可以带来技术和安全标准的重大进步。例如,在进行多次不同试验载荷的测试后,工程师可以开发出更好的材料,这些材料能够承受更高的压力而不发生故障。这在安全至关重要的行业(如航空和建筑)中尤为重要。除了其实际应用外,试验载荷的概念在个人发展中也可以作为一种隐喻。正如工程师在压力下测试材料一样,个人在生活中也常常面临自己的试验载荷。这些挑战可能表现为学业压力、职业要求或个人斗争。一个人如何应对这些试验载荷,可以决定他们的韧性和成长能力。例如,一个面对沉重学业负担的学生起初可能会感到不知所措。然而,通过学习有效管理时间并在需要时寻求帮助,他们可以将这一试验载荷转变为成长的机会。同样,遇到繁重项目的专业人士也可以通过坚持不懈地发展新技能和增强工作道德。总之,术语试验载荷既涵盖了工程中的技术方面,也具有个人成长的隐喻意义。理解和掌握这一概念可以在工程应用中提高安全性,并促进面对生活挑战的个人韧性。正如工程师依赖试验载荷来确保其设计的可靠性一样,我们也可以将自己的试验载荷视为发展和改进的机会。