Design for Assembly Factors for Large and Heavy Parts

1994 ◽  
Vol 116 (2) ◽  
pp. 508-510 ◽  
Author(s):  
J. H. Wong ◽  
R. H. Sturges

Traditional Design for Assembly methods are limited to part sizes between a few millimeters to a few tens of centimeters in overall size and to part weights under a few kilograms. Parts in the range of a meter in overall size and weighing a few tens of kilograms are examined in this paper. An experimental plan separates weight, mass, and inertia and correlates these properties with assembly difficulty and time. When windage, part flexibility, and operator fatigue are absent, a set of three parameters serve to model these effects on human assembly performance. Adaptation of this result is made to extend a Design for Assembly methodology.

Author(s):  
John W. Wong ◽  
Robert H. Sturges

Abstract Traditional Design for Assembly methods are limited to part sizes between a few millimeters to a few tens of centimeters in overall size and to part weights under a few kilograms. Parts in the range of a meter in overall size and weighing a few tens of kilograms are examined in this paper. An experimental plan separates weight, mass and inertia and correlates these properties with assembly difficulty and time. When windage, part flexibility and operator fatigue are absent, a set of three parameters serve to model these effects on human assembly performance. Adaptation of this result is made to extend a Design for Assembly methodology.


The paper describes the main trends in the development of BIM technologies in the field of restoration and reconstruction of historical and cultural heritage buildings. The practical part of the paper presents the experience in using information modeling technologies when restoring the building, where the VI Congress of the Chinese Communist Party in Moscow took place. The use of laser scanning technologies made it possible to reproduce with high accuracy in the information model the original appearance of the building using Autodesk RevitR software. It is shown, how the use of information modeling technologies affects the duration of restoration process, taking into account the calculation of the structural scheme and bearing structures of the building, ensuring the identity of the decoration and the effective organization of electromechanical installation. Operating in a single BIM information environment makes it possible to continuously obtain reliable information on the project, which provides more effective information interaction and communication of participants compared to using traditional design methods.


Author(s):  
Peter Miksza ◽  
Kenneth Elpus

This book is an introduction to quantitative research design and data analysis presented in the context of music education scholarship. The book aims for readers to come away with a familiarity of prototypical research design possibilities as well as a fundamental understanding of data analysis techniques necessary for carrying out scientific inquiry. The book includes examples that demonstrate how the methodological and statistical concepts presented throughout can be applied to pertinent issues in music education. For the majority of Part I, the strategy is to present traditional design categories side by side with explanations of general analytical approaches for dealing with data yielded from each respective design type. Part II consists of chapters devoted to methodological and analytical approaches that have become common in related fields (e.g., psychology, sociology, general education research, educational policy) but are as yet not frequently exploited by music education researchers. Ultimately, this work is motivated by a desire to help scholars acquire the means to actualize their research curiosities and to contribute to the advancement of rigor in music education research throughout the profession at large.


2020 ◽  
Author(s):  
Francieli de Lima Tartaglia ◽  
Alessandro Dal'Col Lúcio ◽  
Maria Inês Diel ◽  
André Luís Tischler ◽  
Dionatan Ketzer Krysczun ◽  
...  
Keyword(s):  

2020 ◽  
Vol 4 (Supplement_1) ◽  
pp. 861-861
Author(s):  
Patricia Heyn

Abstract Individuals with disabilities usually have difficulty in finding and maintaining employment prospects and thus, they are extremely underrepresented in the workforce. These challenges are even greater when the person has both cognitive and physical disabilities. While there is evidence supporting the benefits of employing individuals with disabilities in the workforce, employers are usually unprepared to hire individuals with disabilities. They are also concerned that the work productivity may be impacted by the employee with a disability. Thus, technology can play an important role in helping a person with cognitive and /or physical impairment work on tasks that require memorization and assembly performance. We will present a mobile technology system that was planned and piloted with working adults with physical and cognitive impairments. Founded on our pilot study, mobile technologies hold the potential to help people with disabilities to perform jobs that require memorization as well as systematic assembly tasks.


2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Jingdong Cheng ◽  
Otto Berninghausen ◽  
Roland Beckmann

AbstractAssembly of the mitoribosome is largely enigmatic and involves numerous assembly factors. Little is known about their function and the architectural transitions of the pre-ribosomal intermediates. Here, we solve cryo-EM structures of the human 39S large subunit pre-ribosomes, representing five distinct late states. Besides the MALSU1 complex used as bait for affinity purification, we identify several assembly factors, including the DDX28 helicase, MRM3, GTPBP10 and the NSUN4-mTERF4 complex, all of which keep the 16S rRNA in immature conformations. The late transitions mainly involve rRNA domains IV and V, which form the central protuberance, the intersubunit side and the peptidyltransferase center of the 39S subunit. Unexpectedly, we find deacylated tRNA in the ribosomal E-site, suggesting a role in 39S assembly. Taken together, our study provides an architectural inventory of the distinct late assembly phase of the human 39S mitoribosome.


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