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Growing Science » Tags cloud » Subcontracting

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Sort articles by: 📖 Volume | 📅 Date | ⭐ Most Rates | 👁️ Most Views | 🚀 Rising Stars | 🔗 Citations (Scopus) | 🔥 Hot Papers
1.

The collective impact of breakdowns, quality-surety actions, and adjustable-rate on a hybrid producer–retailer coordinated system Pages 627-644 Right click to download the paper Download PDF

Authors: Yuan-Shyi P. Chiu, Victoria Chiu, Singa Wang Chiu, Fan-Yun Pai, Tiffany Chi

doi 10.5267/j.ijiec.2026.2.006

🔑 Keywords: Producer–retailer coordination, Hybrid manufacturing system, Quality-surety, Breakdowns, Multi-delivery, Subcontracting, Adjustable-rate

Abstract:
Minimizing the internal supply chains’ operating expenses is a crucial management goal in current transnational enterprises, where manufacturing and retailing often operate independently. Still, managers must periodically evaluate the consolidated operating expenses and performance. The operational goals in the manufacturing units consist of lowering quality- and reliability-relevant costs, avoiding manufacturing delays due to random breakdowns, and meeting order due dates through expediting strategies, such as partial subcontracting and accelerating the fabrication plan. Inspired by efforts to optimize batch runtime for the mentioned intra-supply chains, this study investigates the combined impact of quality-surety actions (including defect removal and rework), correction of breakdowns, multi-delivery, adjustable-rate, and outsourcing on a coordinated producer–retailer system. This study presents a research scheme comprising: (1) model development for the mentioned internal supply-chain features; and (2) optimization approaches for determining the cycle time decision that minimizes the overall system operating expenses. To conclude our work, we validate the research scheme, procedure, and results through numerical demonstration and show that it can effectively support management’s decision-making with various exploratory and crucial information.
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Journal: IJIEC | Year: 2026 | Volume: 17 | Issue: 2 | Views: 195

 
2.

Optimization of a hybrid multi-item fabricating-shipping integrated system considering scrap, adjustable-rate, and postponement Pages 89-104 Right click to download the paper Download PDF

Authors: Yuan-Shyi P. Chiu, Ya-Lei Lo, Fan-Yun Pai, Victoria Chiu, Singa Wang Chiu

doi 10.5267/j.ijiec.2023.11.002

🔑 Keywords: Fabricating-shipping system, Hybrid multi-item batch system, Adjustable rate, Postponement, Scrap, Multiple shipments, Subcontracting

Abstract:
This study aims to optimize a hybrid multi-item fabricating-shipping integrated system incorporating scrap, adjustable rate, and postponement. In present-day competitive market environments, there is a clear client demand trend for various goods, shorter lead time, and expected quality. To satisfy the client’s needs, the management of manufacturing firms requires an effective and efficient plan to fabricate various high-quality goods in an expedited period, under limited capacity, and with minimal operating expenses. Inspired by facilitating production management to determine the best fabricating scheme/plan to achieve their operational goals, this work proposes an exploratory postponement model with quality assurance and uptime reduction strategies for their decision-making. By employing a two-phase making scheme, the required standard components are first made in the 1st phase, and multiple finished merchandise is fabricated in the 2nd phase. The study suggests strategies of contracting out a part of the common parts’ batch and adopting an adjusted/expedited making rate in the 2nd phase to considerably reduce both phases’ production uptimes. During both fabricating processes, the screening tasks identify/remove scrapped/faulty goods to ensure each finished batch’s quality. Equal-amount multiple shipments of end merchandise are transported to the clients in fixed time-interval. Optimization methodology and mathematical analyses support us in deriving the model’s expected annual operating cost and deciding the optimal production-transportation policy. A numerical illustration helps verify our model’s applicability and reveals important managerial insights into the studied problem to facilitate management in decision-making.
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Journal: IJIEC | Year: 2024 | Volume: 15 | Issue: 1 | Views: 1082

 
3.

The joint influence of quality assurance and postponement on a hybrid multi-item manufacturing-delivery decision-making Pages 821-836 Right click to download the paper Download PDF

Authors: Yuan-Shyi P. Chiu, Hung-Yi Chen, Victoria Chiu, Singa Wang Chiu, Hsiao-Chun Wu

doi 10.5267/j.ijiec.2023.6.002

🔑 Keywords: Multi-item manufacturing-delivery, Postponement, Subcontracting, Quality assurance, Supply-chain, Multiple deliveries

Abstract:
The present research explores the collective influence of quality assurance and postponement on a hybrid multiproduct replenishing-delivery decision-making. Assume the required multiproduct has a standard (common) component, and our replenishing-delivery model has incorporated a two-phase postponement strategy. The first phase makes all standard components and hires an external supplier to partially provide the required parts to cut short the needed uptime. In contrast, the second phase fabricates the finished multiproduct in sequence. To ensure the desired merchandise quality, we apply a quality-assurance action to the in-house processes to screen and remove scrap items and rework the repairable defects in both stages. Upon completing each merchandise, these products are transported to the customer in n fixed-quantity shipment in fixed-time intervals. We employ math modeling and formulating approaches to gain the overall supply-chain operating expenses comprising subcontracting, fabricating, stock holding, transportation, and customer holding costs. By minimizing system operating expenses, this research determines the optimal replenishing-delivery policy. Lastly, we give a numerical example to demonstrate our study’s applicability and usefulness/capability for facilitating managerial decision-making.
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Journal: IJIEC | Year: 2023 | Volume: 14 | Issue: 4 | Views: 1091

 
4.

Replenishment-shipment decision for a multiproduct producer-client coordinated FPR model with postponement, rework and subcontracting Pages 213-226 Right click to download the paper Download PDF

Authors: Yuan-Shyi Peter Chiu, Ting-Fang Yan, Yunsen Wang, Hui-Chi Wang

doi 10.5267/j.uscm.2022.10.005

🔑 Keywords: Postponement, Multiproduct system, Replenishment-shipment, Finite production rate, Rework, Subcontracting

Abstract:
This research constructs a mathematical scheme to explore replenishment-shipment decisions for a multiproduct producer-client coordinated finite production rate (FPR) model with the postponement, rework, and subcontracting plan. The considered multiple goods have a common component, and a batch FPR fabrication with postponement is planned to meet the annual multiproduct requirements. The first fabricating phase makes only the standard components needed for a batch and subcontracts a proportion of them (with additional cost) to expedite the process. In contrast, the second fabricating phase produces the finished multiple merchandise in sequence. The in-house rework processes with extra expense help retain the desirable quality. Each merchandise’s finished batch is transported to the clients in equal-sized numerous shipments. This study derives the optimal batch cycle length and transporting frequency by minimizing the overall fabricating-shipment expenses (including clients’ holding costs). This work offers a numerical example demonstrating various crucial system features influenced by the factors of subcontracting, postponement, rework, and transportation policies to facilitate managerial decision making in industries.
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Journal: USCM | Year: 2023 | Volume: 11 | Issue: 1 | Views: 895

 

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