gripper
简明释义
n. 夹子,钳子;抓器,抓爪
n. (Gripper)人名;(英)格里珀
英英释义
A device or tool that is designed to grasp or hold objects firmly. | 一种旨在牢固抓握或保持物体的装置或工具。 |
A part of a machine or mechanism that grips or holds something in place. | 机器或机制的一部分,用于抓住或固定某物。 |
单词用法
橡胶抓握器 | |
手部抓握器 | |
抓握垫 | |
夹持机制 | |
抓握器设计 | |
抓握力 |
同义词
握持器 | 这个握持器可以将物体牢牢固定在适当的位置。 | ||
夹具 | 这个夹具用于有效地夹紧和释放物品。 | ||
抓取器 | The grabber helps people with limited mobility pick up objects. | 这个抓取器帮助行动不便的人捡起物品。 |
反义词
滑动器 | 这个滑动器的设计允许在没有抓握的情况下轻松移动。 | ||
松弛者 | 衣服的松弛合身带来了更放松的感觉。 |
例句
1.We bend ourselves to seek the optimization solution for rope gripper, speed governor and high-powered safety gear.
公司自始创以来,集中于夹绳器、限速器和高性能安全钳的优化解决方案。
2.The robot has 7-axis arms, each with a servo gripper for small-part handling.
该款机器人具有7轴手臂,每一个手臂都有一个用于操作细小部件的伺服爪。
3.The AG series angular gripper utilizes a double acting piston with a dual pivot system.
该公司系列角手爪采用了双轴系统活塞双作用。
4.Air pressure opens the gripper and a spring is used to close the gripper.
气压打开夹持器,弹簧关闭夹持器。
5.Tsubaki can also supply the gripper attachment within a Lambda chain.
椿也可以供应爪附着在一个波长链。
6.Upon application of a vacuum, gripper hardens and holds the object.
经过真空作用,手爪变硬,然后抓住物体。
7.Appearance of the gripper for the control bars?
该酒吧的控制手爪的外观?
8.The results show that the design of the mechanical gripper is feasible.
结果表明,所设计的机械手爪是可行的。
9.I need to buy a new gripper for my kitchen utensils.
我需要为我的厨房用具买一个新的抓握器。
10.The child used a gripper to pick up the slippery toy.
那个孩子用抓握器捡起了滑溜的玩具。
11.This gripper is perfect for opening jars.
这个抓握器非常适合打开罐子。
12.He designed a special gripper for robotic arms.
他为机器人手臂设计了一个特殊的抓握器。
13.My grandmother uses a gripper to help her hold onto things.
我奶奶用抓握器来帮助她抓住东西。
作文
In today's fast-paced world, technology has become an integral part of our daily lives. One of the most fascinating innovations is the development of robotic systems that can assist humans in various tasks. Among these advancements, the use of a gripper (抓手) has proven to be essential in enhancing the efficiency and precision of robotic operations. A gripper is a device that allows robots to grasp and manipulate objects, mimicking the function of a human hand. This technology is not only pivotal in industrial settings but also plays a significant role in fields such as healthcare, agriculture, and even space exploration. The design of a gripper can vary widely depending on its intended application. For instance, in manufacturing, a gripper may be designed to handle heavy components with a strong grip, ensuring that the items are securely held during assembly or transportation. On the other hand, in delicate tasks such as surgical procedures, a gripper must be engineered to perform with precision, allowing for the careful manipulation of instruments without causing harm to the patient. One of the most exciting developments in gripper technology is the advent of soft robotics. Soft grippers are made from flexible materials that can conform to the shape of the object they are handling. This adaptability allows them to pick up a wider variety of items, from fragile fruits to oddly shaped components, without damaging them. The ability of these grippers to gently hold and release objects has opened new doors in industries such as food processing and logistics, where traditional rigid grippers might fail. Moreover, the integration of artificial intelligence in the control of grippers has significantly improved their functionality. AI algorithms enable grippers to learn from their experiences, allowing them to refine their grasping techniques over time. For example, a robotic arm equipped with an AI-driven gripper can analyze the weight and texture of an object and adjust its grip accordingly, reducing the risk of dropping or damaging items. In healthcare, grippers are being utilized in surgical robots, assisting surgeons in performing intricate procedures with enhanced accuracy. These robots, equipped with advanced grippers, can reach areas that are difficult for human hands to access, providing a level of precision that is crucial in complex surgeries. The use of grippers in medical technology not only improves outcomes but also reduces recovery times for patients. Furthermore, the agricultural sector has also benefited from advancements in gripper technology. Robots equipped with specialized grippers are now used for harvesting crops, which increases efficiency and reduces labor costs. These robots can work around the clock, ensuring that crops are harvested at the optimal time, leading to better yields and less waste. As we look to the future, the potential applications for gripper technology seem limitless. From autonomous vehicles that require advanced grippers to handle packages to robots designed for disaster relief that can navigate rubble and debris, the versatility of grippers will continue to propel innovation across various industries. In conclusion, the humble gripper (抓手) has become a cornerstone of modern robotics, enabling machines to interact with the world in ways that were once thought impossible. As technology continues to evolve, we can expect to see even more sophisticated grippers that will enhance our capabilities and improve our quality of life.
在当今快节奏的世界中,技术已成为我们日常生活的重要组成部分。其中最令人着迷的创新之一是开发能够协助人类完成各种任务的机器人系统。在这些进步中,使用gripper(抓手)被证明在提高机器人操作的效率和精确性方面至关重要。gripper是一种允许机器人抓取和操纵物体的装置,模仿人手的功能。这项技术不仅在工业环境中至关重要,而且在医疗保健、农业甚至太空探索等领域也发挥着重要作用。 gripper的设计因其预期应用而异。例如,在制造业中,gripper可能被设计成能够处理重型组件,确保在组装或运输过程中物品牢固地保持。而在外科手术等精细任务中,gripper必须经过精心设计,以便以精确的方式执行,允许小心操控仪器而不对患者造成伤害。 在gripper技术中,最令人兴奋的发展之一是软机器人技术的出现。软gripper由柔性材料制成,可以适应它们所处理物体的形状。这种适应性使它们能够拾取更广泛的物品,从易碎的水果到形状奇特的组件,而不会损坏它们。这些grippers能够轻柔地握住和释放物体,为食品加工和物流等行业打开了新的大门,而传统的刚性grippers可能会失效。 此外,人工智能在grippers控制中的集成显著提高了它们的功能性。人工智能算法使grippers能够从经验中学习,从而随着时间的推移改进其抓握技术。例如,配备AI驱动的gripper的机器人手臂可以分析物体的重量和纹理,并相应地调整其抓握,减少掉落或损坏物品的风险。 在医疗保健领域,grippers被用于外科机器人,帮助外科医生以增强的准确性进行复杂的手术。这些配备先进grippers的机器人可以到达人手难以接触的区域,提供在复杂手术中至关重要的精确度。grippers在医疗技术中的使用不仅改善了结果,还缩短了患者的恢复时间。 此外,农业部门也受益于gripper技术的进步。配备专用grippers的机器人现在被用于收获农作物,这提高了效率并降低了劳动力成本。这些机器人可以全天候工作,确保在最佳时机收获农作物,从而提高产量并减少浪费。 展望未来,gripper技术的潜在应用似乎无穷无尽。从需要先进grippers来处理包裹的自动驾驶汽车,到旨在灾后救援的机器人能够穿越瓦砾和废墟,grippers的多功能性将继续推动各行各业的创新。总之,谦逊的gripper(抓手)已成为现代机器人技术的基石,使机器能够以前所未有的方式与世界互动。随着技术的不断发展,我们可以期待看到更复杂的grippers,这将增强我们的能力并改善我们的生活质量。
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