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Usability of tabs in semi-rigid packaging.

机译:标签在半刚性包装中的可用性。

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摘要

The ability to easily peel the lid of a container is a critical issue for semi-rigid packages used to protect and deliver a myriad of products including medical devices, foods, and beverages. An in-depth search of the scientific literature revealed very little information and several gaps about the fundamentals of peelable semi-rigid packaging opening. Therefore this research had the following objectives: (i) to perform a thorough literature review on packaging usability with special focus on semi-rigid packaging, (ii) to describe the relationship between peel angle and peel force, (iii) to evaluate peel direction during real package opening, and (iv) to evaluate the relationship between tab size and grip choice. A wide range of research methods were used to achieve these objectives including kinetics (the study of forces), kinematics (the study of motions), anthropometrics, computer simulations, package testing, and observational techniques.;First, a theoretical framework for human-package interactions (H-PIM) was created and used to assess the gaps in the research literature relating to packaging usability studies. Second, an affordance-based design method was created and illustrated with a packaging example with tabs.;Third, experimental peel force measurements for two seal geometries were collected varying peel angle every 15° intervals. Experimental data (force vs. angle) for both conditions followed a U-shaped pattern with minimum values at peel angle 45°. Classical mechanics was then used to derive an equation in which peel force is a function of peel angle. Two approaches were taken to fit the data to this equation: linearization and nonlinear regression.;Fourth, a method was developed to calculate seal strength for a given semi-rigid packaging system and a mathematical algorithm was designed to calculate peel forces. Results show that the proposed mathematical model for peeling semi-rigid packaging can predict experimental values very well.;Fifth, a motion capture system was used to measure peel angles (α) and peel direction angles (β) during an opening task under two experimental setups (i.e., unrestrained and restrained). Mean peel angle measurements fell within the theoretical optimal peel angle range (α=45°±15°). The initial peel direction angle measured during the unrestrained opening condition (βI=48°) approximated the theoretical angle of β=45° confirming that most participants pulled the tab in this direction during the initial stages of the opening task.;Finally, an observational study revealed grip preferences based on tab size. For initial grip of larger tabs, participants tended to use lateral pinch more than pulp pinch or chuck pinch. During pulling, lateral grip was preferred by participants regardless of tab size. Participants' postural preferences were found to be correlated with ways of opening a specific tray design. This research provides theoretical frameworks, mathematical models, methodologies, and findings that help the design and development of more usable peelable semi-rigid packaging. Many of the conclusions and design guidelines also apply to flexible packaging.
机译:对于用于保护和运送包括医疗器械,食品和饮料在内的多种产品的半刚性包装来说,容易剥离容器盖的能力是至关重要的问题。对科学文献的深入搜索显示,关于可剥离的半刚性包装开口的基本原理的信息很少,并且存在一些空白。因此,本研究具有以下目的:(i)对包装的可用性进行全面的文献综述,特别是半刚性包装;(ii)描述剥离角度与剥离力之间的关系;(iii)评估剥离方向在真正的包装打开过程中,以及(iv)评估标签尺寸和握把选择之间的关系。广泛的研究方法用于实现这些目标,包括动力学(对力的研究),运动学(对运动的研究),人体测量学,计算机模拟,包装测试和观察技术。首先,人类的理论框架创建了包装交互作用(H-PIM),并将其用于评估与包装可用性研究有关的研究文献中的空白。其次,创建了一种基于费用的设计方法,并通过带有标签的包装示例进行了说明。第三,每隔15°间隔改变剥离角度,收集两个密封几何形状的实验剥离力测量值。两种条件下的实验数据(力与角度)均遵循U形图案,在剥离角为45°时具有最小值。然后,经典力学用于推导一个方程,其中剥离力是剥离角的函数。采用两种方法使数据适合该方程:线性化和非线性回归。第四,开发了一种方法来计算给定的半刚性包装系统的密封强度,并设计了一种数学算法来计算剥离力。结果表明,所提出的半硬包装剥离数学模型能够很好地预测实验值。第五,在两个实验条件下,采用运动捕捉系统测量打开任务期间的剥离角(α)和剥离方向角(β)。设置(即不受约束和约束)。平均剥离角测量值落在理论最佳剥离角范围内(α= 45°±15°)。在不受限制的开启条件下(βI= 48°)测得的初始剥离方向角接近理论角度β= 45°,这确认了大多数参与者在开启任务的初始阶段都沿该方向拉动了拉环。研究表明,抓地力偏好程度取决于标签的大小。对于较大的标签的初始抓握,参与者倾向于使用横向捏,而不是纸浆捏或卡盘捏。在拉动过程中,无论拉环大小如何,参与者都倾向于侧向抓握。发现参与者的姿势偏好与打开特定托盘设计的方式相关。这项研究提供了理论框架,数学模型,方法论和发现,可帮助设计和开发更实用的可剥离半刚性包装。许多结论和设计准则也适用于软包装。

著录项

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Design and Decorative Arts.;Engineering Packaging.;Biophysics Biomechanics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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