Creating a One-Piece Flow and Production Cell: Just-in-time Production with Toyota’s Single Piece Flow

Creating a One-Piece Flow and Production Cell: Just-in-time Production with Toyota’s Single Piece Flow
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 116
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Synopsis Creating a One-Piece Flow and Production Cell: Just-in-time Production with Toyota’s Single Piece Flow by : Mohammed Hamed Ahmed Soliman

One-piece flow, also known as continuous flow, is considered the ultimate lean goal. It describes how items are efficiently moved from one stage of the process to the next by designing the workflow around the requirements of the product. To get from point A to point B is the objective. Any waste or halt in production is equivalent to the stones and dams that direct the flow of water. We examine our layouts, devices, procedures, rules, cultures, and knowledge while attempting to implement flow to see what might be causing these flow-blocking factors. Continuous flow aids in waste reduction. Because there is harmony and rhythm between each stage of the process, wastes are eliminated from the system. This enables each team member to provide value rather than produce waste. Processing waste is decreased because there is naturally less rework (or overprocessing), there is only as much work done as the customer is prepared to pay for, and there is only one accepted technique to complete the task (no bad processing).

Toyota Production System Concepts

Toyota Production System Concepts
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 55
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Synopsis Toyota Production System Concepts by : Mohammed Hamed Ahmed Soliman

Many kaizen programs aim to have a continuous flow, which means processes are constantly moving without interruptions. This is also the ultimate goal of lean production. A "cell" is a group of devices that perform tasks in a certain order, but it is not often to find a smooth and uninterrupted process, which is what makes a cell. In an ideal world, the product would flow smoothly from the beginning to the end, reaching the customer through all the stages of its production. But that would be too much to handle all at once. We need a place where we can focus. That place uses a system called a "pacemaker".

Takt Time: A Guide to the Very Basic Lean Calculation

Takt Time: A Guide to the Very Basic Lean Calculation
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 68
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Synopsis Takt Time: A Guide to the Very Basic Lean Calculation by : Mohammed Hamed Ahmed Soliman

Takt time is calculated as the amount of manufacturing time that is available divided by the volume of orders. In the 1930s, the German aviation industry employed Takt for the first time as a production management tool. The idea was widely used within Toyota in the 1950s, and by the late 1960s, it had been adopted by the majority of the Toyota supplier base. Every month, Toyota assesses the takt for a process, with a modifying review occurring every 10 days. Takt time is used to properly balance supply and demand. It gives a lean production system its beating heart.

Manufacturing Wastes Stream: Toyota Production System Lean Principles and Values

Manufacturing Wastes Stream: Toyota Production System Lean Principles and Values
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 94
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Synopsis Manufacturing Wastes Stream: Toyota Production System Lean Principles and Values by : Mohammed Hamed Ahmed Soliman

In order to cut costs during the economic downturn, many businesses are implementing abstinence policies. This could mean laying off workers and cutting some wages. In fact, those actions might only work for a short time.Unless the company implements a culture of continuous improvement and alters its method of operation, the situation may recur and become even worse. This brings us back to the purpose for which the Toyota production system was developed. Waste is anything that uses resources but offers the customer nothing in return. Most activities are waste, or "muda," and can be divided into two categories. Although type one muda does not provide value, it is inescapable given the production assets and technologies available today. An illustration would be checking welds for safety, that type we also call necessary non value-added activity. Type two muda does not add value and can be quickly eliminated. An illustration is a process in a process village with disconnected phases that may be swiftly converted into a cell where unnecessary material moves and inventory are no longer necessary. A very small portion of all value-stream activities truly generate value as perceived by the client. The most effective way to boost business performance is to stop doing the numerous unnecessary things.

Toyota Healthcare: 7+1 Type Of Waste

Toyota Healthcare: 7+1 Type Of Waste
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 58
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Synopsis Toyota Healthcare: 7+1 Type Of Waste by : Mohammed Hamed Ahmed Soliman

Lean healthcare is the practise of applying "lean" concepts to the healthcare industry in order to reduce waste, enhance patient outcomes, and lower costs. All employees of the firm, from clinicians to operations and administrative personnel, continuously work to identify areas of waste and eliminate anything that does not create value for patients using lean concepts in healthcare. In general, lean thinking is a set of concepts, strategies, principles, values and tools used to create and deliver the most value from the customer perspective while consuming the fewest resources and fully utilizing the knowledge and skills of people performing the work. If you visit Toyota assembly plants you can see how Toyota has put all the systems and supports staff in place to ensure that the production team members on the assembly line always have the parts and the necessary tools, they need to do their jobs. Trucks are not as important as patients, but Toyota arguably puts far more effort into supporting their front-line staff than many hospitals do. Toyota allows the team members to focus on their work and the truck in front of them, leading to better results and satisfaction for all.

Design Review Based on Failure Mode

Design Review Based on Failure Mode
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Publisher : personal-lean.org
Total Pages : 76
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Synopsis Design Review Based on Failure Mode by : Mohammed Hamed Ahmed Soliman

Toyota doesn't just make high-quality products; they also have a process for making sure everything they do is high-quality. Next time you want to say Toyota isn't that great, think about how their way of doing things could help you make better quality products. Reliability is about having a product or service that can be trusted is really important for making customers happy. This means that the product will work the way the customer wants it to, and it will keep working well for a long time. Quality experts are basically saying that it is very important to focus on improving quality in all aspects of a business. They believe that businesses should prioritize quality in order to be successful. The more complicated the product is, the harder this task gets. Before World War II, the military, aerospace, and aircraft industries used the failure mode and effect analysis (FMEA) approach. Toyota then invented its production system after the war. FMEA has been around since the middle of the 20th century, especially in the aerospace and military industries. FMEA was made in the 1940s and used by the U.S The military works to find and fix problems in production before they happen. The method worked well, so NASA used it for different projects like Apollo and Voyager in the 1960s. Nowadays Six Sigma's project team use FMEA in the Analyze stage of DMAIC because extraordinary quality is not only designed into the product, it is designed into the development process itself. The DRBFM methodology was created by Tatsuhiko Yoshimura, who is an expert in quality and a professor at Kyushu University in Japan. Yoshimura understood that making changes without the right documents can cause design problems. He used the idea of preventing problems before they happen to come up with his own way of thinking called DRBFM.

Industrial Power Transformers

Industrial Power Transformers
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 112
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Synopsis Industrial Power Transformers by : Mohammed Hamed Ahmed Soliman

This book aims to explain the best ways to do work that is usually done to avoid issues with transformers. This book covers everything about choosing and storing transformers. It also talks about advanced methods for checking transformers using predictive maintenance or condition monitoring. It also includes a real example of using FMEA to make power transformers more reliable in a system or production process. The techniques in this book are not for making big changes to repair a transformer. However, many things are done as part of regular procedures. Maintenance and big transformer repair could be the same. We can do the tasks to take care of the transformer if it's not too broken. The advice in this book is similar to the suggestions that companies give for their products. If you need to know how to do something, the person in charge should check the instruction book from the company that made the product. Regularly check and fix small problems to keep transformers in good condition. Also follow special care instructions. Also, if the machine is set up and used the right way, it will keep working for a long time without any issues.

Industrial Electric Motors

Industrial Electric Motors
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 214
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Synopsis Industrial Electric Motors by : Mohammed Hamed Ahmed Soliman

Taking care of electrical equipment needs a lot of thinking ahead and checking regularly. You can only find problems early if you regularly check things. A careful team of workers can find machine problems by using their senses. They can smell burning insulation, feel excessive heat in bearings, hear strange sounds or vibrations, and see mechanical issues and sparks. Different methods can be used to check how electric motors are working. Taking care of equipment is not only about repairing it when it stops working. It's important to work hard to keep it running smoothly all the time. This means that even when the machines are working well, people who take care of them are still trying to make them better so they stay working well. This book wants to show the best ways to do work that is usually done to avoid problems with motors. This book has everything you need to know about putting in, using, and taking care of motors. It also discusses better ways to check motors using predictive maintenance or condition monitoring. It also shows how FMEA can be used to improve the reliability of electric motors in a system or production process. This book is for everyone, including technical, engineers, managers, leaders, and quality professionals.

Machinery Oil Analysis & Condition Monitoring : A Practical Guide to Sampling and Analyzing Oil to Improve Equipment Reliability

Machinery Oil Analysis & Condition Monitoring : A Practical Guide to Sampling and Analyzing Oil to Improve Equipment Reliability
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 75
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Synopsis Machinery Oil Analysis & Condition Monitoring : A Practical Guide to Sampling and Analyzing Oil to Improve Equipment Reliability by : Mohammed Hamed Ahmed Soliman

The laboratory examination of a lubricant's characteristics, suspended impurities, and wear debris is known as oil analysis (OA). OA is carried out as part of regular predictive maintenance to deliver precise and useful data on lubricant and machine condition. Trends can be found by following the findings of oil analysis samples over the course of a certain machine. These trends can help avoid expensive repairs. Tribology is the study of wear in machinery. Tribologists frequently perform or interpret results from oil analyses. Oil analysis is a long-term program that, where relevant, can eventually be more predictive than any of the other technologies. It can take years for a plant's oil program to reach this level of sophistication and effectiveness. This book includes what all practitioners need to know to build an oil analysis program for their machine inspection. This book includes three real case studies and numerous industrial examples to improve machine reliability and enhance the condition monitoring program.

Lean Healthcare: Enhancing the Patient Care Process while Eliminating Waste and Lowering Costs

Lean Healthcare: Enhancing the Patient Care Process while Eliminating Waste and Lowering Costs
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Publisher : Mohammed Hamed Ahmed Soliman
Total Pages : 94
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Synopsis Lean Healthcare: Enhancing the Patient Care Process while Eliminating Waste and Lowering Costs by : Mohammed Hamed Ahmed Soliman

By minimizing waste and waiting times, the lean operational concepts and techniques serve to maximize value for patients. It places a strong emphasis on staff involvement, ongoing improvement, and consideration of the demands of the consumer.. All employees of the firm, from clinicians to operations and administrative personnel, continuously work to identify areas of waste and eliminate anything that does not create value for patients using lean concepts in healthcare. To make sure that the production team members on the assembly line always have the parts and tools they need to complete their tasks, Toyota has put all the systems and support personnel in place. If you visit one of their assembly factories, you can see this for yourself. Although patients are more essential, it can be argued that Toyota invests significantly more in its front-line staff than many hospitals do. Toyota enables team members to concentrate on their tasks and the truck in front of them, resulting in greater outcomes and overall happiness.