Search results

1 – 10 of 776
Per page
102050
Citations:
Loading...
Access Restricted. View access options
Article
Publication date: 1 August 2000

Ray Gibson

Foreign body contamination of food and drink products is the single biggest cause of product recalls in the UK. However, not every foreign body incident need result in a recall…

994

Abstract

Foreign body contamination of food and drink products is the single biggest cause of product recalls in the UK. However, not every foreign body incident need result in a recall, and immediate scientific investigation of the nature and cause of the foreign body can help manufacturers determine the best approach to dealing with a specific incident and in preventing its recurrence.

Details

Nutrition & Food Science, vol. 30 no. 4
Type: Research Article
ISSN: 0034-6659

Keywords

Access Restricted. View access options
Book part
Publication date: 14 December 2023

Simon Friis and Ezra W. Zuckerman Sivan

The purpose of this theoretical chapter is to rework a promising but limited theory of the foundations of reciprocity. Reciprocity is often attributed to an “internalized norm of…

Abstract

Purpose

The purpose of this theoretical chapter is to rework a promising but limited theory of the foundations of reciprocity. Reciprocity is often attributed to an “internalized norm of reciprocity” – a deeply felt moral obligation to help those who have helped us in the past. Leifer's theory of local action develops a radically different and compelling foundation for reciprocity – one in which the impetus for reciprocity is a thinly veiled battle for status. We rework the theory to offer a new one that addresses its limitations. The key idea is that the impetus for reciprocity is the desire to signal that one intends to create joint value rather than to capture it from the counterparty.

Approach

Our analytical approach rests on close examination of a puzzling and underrecognized feature of social exchange: people who initiate social exchange routinely deny giving anything of value (“it was nothing”) while the receiver inflates their indebtedness to the giver (“this is too much!”). We refer to this negotiation strategy as reverse bargaining and use it as a window into the logic of social exchange.

Contribution

We develop a more general theory of how people manage the threat of opportunism in social exchange that subsumes local action theory. The key insight is that people who initiate social exchange and seek reciprocity must balance two competing objectives: to ensure that the person receiving a benefit recognizes a debt she must repay; and to mitigate the receiver's suspicion that the giver's ulterior motive is to capture value from the receiver.

Details

Advances in Group Processes
Type: Book
ISBN: 978-1-83797-477-1

Keywords

Access Restricted. View access options
Article
Publication date: 29 October 2021

Edwin Sallica-Leva, Fernando Henrique da Costa, Cláudio Teodoro Dos Santos, André Luiz Jardini, Jorge Vicente Lopes da Silva and João Batista Fogagnolo

This paper aims to describe the obtainment of Ti-6Al-4V parts with a hierarchical arrangement of pores by additive manufacturing, aiming at designing orthopedic implants.

383

Abstract

Purpose

This paper aims to describe the obtainment of Ti-6Al-4V parts with a hierarchical arrangement of pores by additive manufacturing, aiming at designing orthopedic implants.

Design/methodology/approach

The experimental methodology compares microstructural and mechanical properties of Menger pre-fractal sponges of Ti-6Al-4V alloy, manufactured by laser powder bed fusion (LPBF) and electron beam powder bed fusion (EBPBF), with three different porosity volumes. The pore arrangement followed the formation sequence of the Menger sponge, with hierarchical order from 1 to 3.

Findings

The LPBF parts presented a martensitic microstructure, while the EBPBF parts presented an α + ß microstructure, independently of its wall thickness. The LPBF parts presented higher mechanical resistance and effective stiffness than the EBPBF parts with similar porosity volume. The stiffness values of the Menger pre-fractal sponges of Ti-6Al-4V alloy, between 4 and 29 GPa, are comparable to those of the cortical bone. Furthermore, the deformation behavior presented by the Menger pre-fractal sponges of Ti-6Al-4V alloy did not follow the Gibson and Ashby model's prediction.

Originality/value

To the best of the authors' knowledge, this is the first study to obtain Menger pre-fractal sponges of Ti-6Al-4V alloy by LPBF and EBPBF. The deformation behavior of the obtained porous parts was contrasted with the Gibson and Ashby model's prediction.

Details

Rapid Prototyping Journal, vol. 28 no. 4
Type: Research Article
ISSN: 1355-2546

Keywords

Access Restricted. View access options
Article
Publication date: 14 August 2023

Abhishek Kansal, Akshay Dvivedi and Pradeep Kumar

The purpose of this study to investigate the organized porous network zinc (OPNZ) scaffolds. Their mechanical characteristics, surface roughness and fracture mechanism were…

237

Abstract

Purpose

The purpose of this study to investigate the organized porous network zinc (OPNZ) scaffolds. Their mechanical characteristics, surface roughness and fracture mechanism were assessed in relation to their structural properties. The prospects of fused deposition modeling (FDM) for printing metal scaffolds via rapid tooling have also been studied.

Design/methodology/approach

Zn scaffolds with different pore and strut sizes were manufactured via the rapid tooling method. This method is a multistep process that begins with the 3D printing of a polymer template. Later, a paraffin template was obtained from the prepared polymer template. Finally, this paraffin template was used to fabricate the Zn scaffold using microwave sintering. The characterization of prepared Zn samples involved structural characterization, microstructural study, surface roughness testing and compression testing. Moreover, based on the Gibson–Ashby model analysis, the model equations’ constant values were evaluated, which can help in predicting the mechanical properties of Zn scaffolds.

Findings

The scanning electron microscopy study confirmed that the fabricated sample pores were open and interconnected. The X-ray diffraction analysis revealed that the Zn scaffold contained hexagonal closed-packed Zn peaks related to the a-Zn phase, validating that scaffolds were free from contamination and impurity. The range for ultimate compressive strength, compressive modulus and plateau stresses for Zn samples were found to be 6.75–39 MPa, 0.14–3.51 GPa and 1.85–12.6 MPa by adjusting their porosity, which are comparable with the cancellous bones. The average roughness value for the Zn scaffolds was found to be 1.86 µm.

Originality/value

This research work can widen the scope for extrusion-based FDM printers for fabricating biocompatible and biodegradable metal Zn scaffolds. This study also revealed the effects of scaffold structural properties like porosity, pore and strut size effect on their mechanical characteristics in view of tissue engineering applications.

Details

Rapid Prototyping Journal, vol. 29 no. 9
Type: Research Article
ISSN: 1355-2546

Keywords

Access Restricted. View access options
Article
Publication date: 11 August 2023

Kevin Moj, Robert Owsiński, Grzegorz Robak and Munish Kumar Gupta

Additive manufacturing (AM), a rapidly evolving paradigm, has shown significant advantages over traditional subtractive processing routines by allowing for the custom creation of…

166

Abstract

Purpose

Additive manufacturing (AM), a rapidly evolving paradigm, has shown significant advantages over traditional subtractive processing routines by allowing for the custom creation of structural components with enhanced performance. Numerous studies have shown that the technical qualities of AM components are profoundly affected by the discovery of novel metastable substructures in diverse alloys. Therefore, the purpose of this study is to determine the effect of cell structure parameters on its mechanical response.

Design/methodology/approach

Initially, a methodology was suggested for testing porous materials, focusing on static tensile testing. For a qualitative evaluation of the cellular structures produced, computed tomography (CT) was used. Then, the CT scanner was used to analyze a sample and determine its actual relative density, as well as perform a detailed geometric analysis.

Findings

The experimental research demonstrates that the mechanical properties of a cell’s structure are significantly influenced by its shape during formation. It was also determined that using selective laser melting to produce cell structures with a minimum single-cell size of approximately 2 mm would be the most appropriate method.

Research limitations/implications

Further studies of cellular structures for testing their static tensile strength are planned for the future. The study will be carried out for a larger number of samples, taking into account a wider range of cellular structure parameters. An important step will also be the verification of the results of the static tensile test using numerical analysis for the model obtained by CT scanning.

Originality/value

The fabrication of metallic parts with different cellular structures is very important with a selective laser melted machine. However, the determination of cell size and structure with mechanical properties is quiet novel in this current investigation.

Details

Rapid Prototyping Journal, vol. 29 no. 10
Type: Research Article
ISSN: 1355-2546

Keywords

Access Restricted. View access options
Article
Publication date: 6 April 2021

Sonika Sahu, Piyush D. Ukey, Narendra Kumar, Ravi Pratap Singh and Mohd. Zahid Ansari

This study aims to generate different three-dimensional (3D) foam models using computer tomography (CT) scan and solid continuum techniques. The generated foam models were used to…

283

Abstract

Purpose

This study aims to generate different three-dimensional (3D) foam models using computer tomography (CT) scan and solid continuum techniques. The generated foam models were used to study deformation mechanism and the elastic-plastic behaviour with the existing experimental foam behaviour.

Design/methodology/approach

CT scan model was generated by combing 2D images of foam in MIMICS software. Afterwards, it was imported in ABAQUS/CAE software. However, solid continuum model was generated in ABAQUS/CAE software by using crushable foam properties. Then, the generated foam models were sets boundary conditions for a compression test.

Findings

CT scans capture the actual morphology of foam sample which may directly an image based finite element foam model. The sectional views of both the models were used to observe deformation mechanism on compression. The real compressive behaviour of foam was visualised in CT-Scan foam model. It was observed that CT-scan model was the more accurate modelling method than crushable foam model.

Originality/value

The internal structure of foam is very complex and difficult to analyse. Therefore, CT-scanning may be the accurate method for capturing the macro-level detailing of foam structure. A CT-scan foam model can be used for multiple times for mechanical analysis using a simulation software, which may reduce the manufacturing and the experimental cost and time.

Details

World Journal of Engineering, vol. 19 no. 3
Type: Research Article
ISSN: 1708-5284

Keywords

Access Restricted. View access options
Article
Publication date: 31 October 2023

M. Candace Christensen, María Verónica Elías, Érica Alcocer and Shannyn Vicente

This study aims to illustrate how white supremacy culture can be produced within nonprofit organizations with a mandate to serve marginalized communities and provide practical…

220

Abstract

Purpose

This study aims to illustrate how white supremacy culture can be produced within nonprofit organizations with a mandate to serve marginalized communities and provide practical suggestions for preventing oppression.

Design/methodology/approach

The site of inquiry was a nonprofit organization in south central Texas that provides social support to queer and trans youth. Through critical ethnography, the researchers evaluated the organization's processes and structure (including hierarchy, decision-making, fundraising and interactions between leaders, partners and affected groups) to explore how the organization perpetuated attributes of white supremacy culture.

Findings

Data reveal that the organization alienates the youth, volunteers and employees through defensiveness, fear of open conflict, paternalism, perfectionism and power-hoarding.

Originality/value

A dearth of research focuses on how white supremacy culture manifests in organizations serving marginalized communities. This paper addresses this gap by focusing on a nonprofit organization in central Texas that supports queer and trans youth. The authors offer recommendations for addressing white supremacy culture in organizations and suggest future research opportunities.

Details

Qualitative Research in Organizations and Management: An International Journal, vol. 18 no. 4
Type: Research Article
ISSN: 1746-5648

Keywords

Access Restricted. View access options
Book part
Publication date: 11 May 2020

Benjamin Ross

Abstract

Details

The Philosophy of Transhumanism
Type: Book
ISBN: 978-1-83982-625-2

Access Restricted. View access options
Article
Publication date: 1 July 1989

Brian Block

The physical sciences, particularly wave motion and optics areexamined in order to develop a set of analogies which can be applied toorganisational theory and practice. Such…

35

Abstract

The physical sciences, particularly wave motion and optics are examined in order to develop a set of analogies which can be applied to organisational theory and practice. Such concepts as diffraction and focus exhibit remarkable parallels in both form and content with many aspects of mainstream organisational and managerial theory. Furthermore, the pervasiveness of wave motion in the physical sciences is not dissimilar from the pervasiveness of organisations in the social sciences. A series of concepts is introduced and, with the aid of diagrams, placed in a managerial context.

Details

Industrial Management & Data Systems, vol. 89 no. 7
Type: Research Article
ISSN: 0263-5577

Keywords

Access Restricted. View access options
Article
Publication date: 20 October 2014

Yujie Quan, Philipp Drescher, Faming Zhang, Eberhard Burkel and Hermann Seitz

The purpose of this paper is to fabricate cellular Ti6Al4V with carbon nanotube (CNT)-like structures by selective electron beam melting and study the resultant mechanical…

440

Abstract

Purpose

The purpose of this paper is to fabricate cellular Ti6Al4V with carbon nanotube (CNT)-like structures by selective electron beam melting and study the resultant mechanical properties based on each respective geometry to provide fundamental information for optimizing molecular architectures and predicting the mechanical properties of cellular solids.

Design/methodology/approach

Cellular Ti6Al4V with CNT-like zigzag and armchair structures are fabricated by selected electron beam melting. The microstructures and mechanical properties of these samples are evaluated utilizing scanning electron microscopy, synchrotron radiation X-ray and compressive tests.

Findings

The mechanical properties of the cellular solids depend on the geometry of strut architectures. The armchair-structured Ti6Al4V samples exhibit Young’s modulus from 501.10 to 707.60 MPa and compressive strength from 8.73 to 13.45 MPa. The zigzag structured samples demonstrate Young’s modulus from 548.19 to 829.58 MPa and compressive strength from 9.32 to 16.21 MPa. The results suggest that the zigzag structure of the Ti6Al4V cellular solids can achieve improved mechanical properties and the mechanism for the enhanced mechanical properties in the zigzag structures was revealed.

Originality/value

The results provide an innovative example for modulating the mechanical properties of cellular titanium by adjusting the unit cell geometry. The Ti6Al4V cellular solids with single-walled CNT-like structures could be used as light-weight construction components or filters in industries. The Ti6Al4V with multiwalled CNT-like structures could be used as new scaffolds for biomedical applications.

Details

Rapid Prototyping Journal, vol. 20 no. 6
Type: Research Article
ISSN: 1355-2546

Keywords

1 – 10 of 776
Per page
102050