Saturday, August 29, 2020

Asian countries & the race for COVID-19 Vaccine

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Charvi Trivedi

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Asian countries & the race for COVID-19 Vaccine

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Global Views 360

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August 29, 2020

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Representative image of Vaccine

Representative image of Vaccine | Source: Dimitri Houtteman via Unsplash

Our relationship with the new strain of coronavirus is almost 8 months strong now. Countries like the US, Russia, UK, China, India, and many more have already set their brainy scientists in the task of developing a vaccine, turning it into a race which desperately needs a winner, since no one wants this deadly relationship to endure. Several attempts have proved to be successful, especially in countries like Russia, USA, India, and China.

China was the first to start scouring for a vaccine the day WHO declared that the new strain of SARS-CoV, originating in Wuhan-China, has resulted in a pandemic. It is a fierce competitor, especially to the US, as almost 8 of the 24 promising vaccines approved for clinical trials are from China. It used the technology of ‘inactivated vaccine’ which basically means killing the actual virus and using that to create a vaccine. This method is quite useful in treating measles and influenza, thus, increasing the chances of success in the case of COVID-19 as well.

“It’s a tried and true strategy”, Paul Offit, director of the Vaccine Education Center at Children’s Hospital of Philadelphia, said  about the inactivated vaccine. One potential vaccine from China-based Sinopharm is already in the phase 3 of trials whereas Sinovac will enter the third phase this month. Moreover, China has permitted Sinovac and Sinopharm to dilute phase 1 and 2 of vaccine trials on humans to hasten the process.

The head of the Chinese Center for Disease Control and Prevention, Gao Fu, had also been injected with a potential vaccine on July 28, 2020. “I’m going to reveal something undercover: I am injected with one of the vaccines'' Gao Fu said in a webinar hosted by Alibaba Health, an arm of the Chinese e-commerce giant, and Cell Press, an American publisher of scientific journals. However, he did not reveal any more details about how and when exactly he administered himself with the vaccine and ‘hopes’ that the vaccine works.

Vladimir Putin, President of Russia | Source: Wikimedia

Elsewhere in Russia, on August 11, 2020, President Vladimir Putin proudly announced that Russia was the first country to grant regulatory approval to their vaccine after carrying out human trials for less than 2 months by the Gamalei Institute in Moscow. Regulatory approval permits vaccination of the masses. Although it has not undergone phase 3 of trials, Russia expects to initiate mass production of the vaccine by the end of this year. Kirill Dmitriev, head of Russia's sovereign wealth fund states that the vaccine will be called ‘Sputnik V’, named after Sputnik 1, the first satellite launched by Soveit Union which was a euphoric moment for Russia. More recently, China and Russia have joined hands in proceeding with the clinical trials of their vaccines.

These two instances seem to bring a new hope for the future, yet raise alarms and invite scepticism from the experts in the field of public health. One major concern is that without prolonged trials, vaccines should not be authorized for public use. Anthony Fauci, an infectious disease expert based in the US said “I do hope the Chinese and the Russians are actually testing the vaccines before they are administering the vaccine to anyone. Because claims of having a vaccine ready to distribute before you do testing is problematic at the very least”. Hence, some people are still in doubt regarding the safety of the product. Putin, however, rubbished such concerns and said "I know that it works quite effectively, forms strong immunity, and I repeat, it has passed all the needed checks".

An Indian biotechnological company, Bharat Biotech developed ‘Covaxin’ in collaboration with Indian Council for Medical Research (ICMR), using the mechanism of inactivated vaccine. It was successful in getting approval for human trials which were scheduled to begin in July, 2020. Initial reports stated that it would be ready for mass use by August 15, 2020, which also marked the 73rd Independence Day of India. However, Bharat biotech was clear in letting the public know that phase 1 of the trials are still on-going. ICMR cleared the confusion by stating that it would prepare the results of the phase 1 trials by August 15, 2020, not the actual vaccine for use. Phase 2 of the trials are awaited in September, 2020.

So far, the results of phase 1 trials have been positive as no serious side-effects are observed in the vaccine candidates. “The vaccine has been safe. No adverse effect has been reported. Even the point of injection pain, which is normal in vaccines, has been very mild” said Dr Kushwaha of Prakhar Hospital.

Meanwhile, the South Korean government stated on August 21, 2020, that it will secure adequate vaccine supply to its citizens by cooperating with international bodies and promoting local drug development. Three South Korean companies have started the process of making a vaccine and all are in the clinical trial phase. Bill Gates asserts that the South Korean pharmaceutical company, SK Bioscience, will have around 200 million vaccine doses ready by June 2021.

Japan is jointly collaborating with the UK, France and other European countries to establish a $20 billion fund to buy coronavirus vaccines, with Japan pledging a contribution of $800 million. It’s vaccine program aims to focus on giving primary attention to its medical workers and the elderly people of the country when the first doses of the vaccine are made. The state-funded vaccination program is believed to be officially adopted by Japan in September this year with negotiations with the UK and US based drug makers already in place.

With the race to bring COVID-19 vaccine seemingly coming to a close and it will hopefully be ready by the end of 2020 or early 2021. Till then, the entire world is watching this race with bated breath.

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July 19, 2021 11:59 AM

3D Printing: The direction to go for the Indian Defense and Aerospace Industries

3D printing is the next big game-changer on the technological front, almost a revolution if you will. 3D printing, also known as additive manufacturing, is a process of creating three-dimensional objects by layering two-dimensional cross sections on top of one another. The two-dimensional cross sections are computer-designed and rendered, which makes it all the more advanced. From Aerospace to Defense and Medical to Automotive, products manufactured via 3D printing are spreading their reach in the markets quite swiftly. This article will take a look at how 3D printing is beneficial and how the technology can transform the Indian and Defense and Aerospace sectors once utilized to its full potential.

Additive manufacturing has the power to unlock a wide range of opportunities. It uses a 3D printer to create a layer-by-layer “addition” of material which is digitally constructed. Different types of materials which are currently being used for the same are metals, ceramics, special plastics, synthetic resins, and etc. 3D printing not only reduces the cost of production of various components but also gives the power to manufacture locally with design flexibility. The technology significantly speeds the process of designing; this is mainly because there is no requirement of tools. Traditional manufacturing usually takes months to either acquire necessary tools and further produce parts and components or import components from various places. However, once 3D printers are acquired, which they might be costly in themselves, they would ensure a smoother production process. Hence, due to the combination of localized manufacturing and no tools, tailor-made designs can be produced to match the necessities of various industries.  

https://upload.wikimedia.org/wikipedia/commons/thumb/7/75/MakerBot_ThingOMatic_Bre_Pettis.jpg/220px-MakerBot_ThingOMatic_Bre_Pettis.jpg
Figure 2: A typical 3D printer. Source: Bre Pettis via Flickr

India is gradually growing with respect to its utilization of 3D printing technology. In 2014, the 3D printers market was at an early stage with just 200-500 combined workforce of engineers, designers and sales representatives. Currently, start-ups are springing up in places like Bangalore, Chennai, Mumbai, Visakhapatnam, etc and they are producing essential parts for sectors like the Indian Navy, Air Force, ISRO and the HAL.  India’s 3D printing market is projected to reach $79 million by the end of 2021, while the global market is at around $15.8 billion, which suggests that India has a lot of catching up to do.

Applications in the Aerospace and Defense Industry

The Aerospace and Defense Industries are keen to pursue additive manufacturing, mainly because of benefits such as weight reduction, cost cutting and to meet their highly specific requirements. The additive process uses less material to manufacture components and also ensures minimal waste of material. Overall reduced weightage means that less fuel would be used in aircrafts and hence result in better environmental compatibility. Let’s examine a few instances in India where 3D printing startups have assisted and provided the defense and aerospace sectors with unique solutions.

Recently, in 2020, the Centre-run defense company Hindustan Aeronautics Limited (HAL) had signed a MoU (Memorandum of Understanding) with Wipro 3D, the metal additive manufacturing branch of Wipro Infrastructure Engineering. The initiative would primarily focus on the design, development, testing, manufacturing, and repairing of aerospace components using metal additive technology. HAL is using 3D printing to manufacture engine components, although it also provides support to helicopter and rotary wing products. HAL also provides products to the Indian Army, Air Force, Navy, and Coast Guard. Speaking about this collaboration, Shekhar Shrivastava, CEO of the Bangalore division of HAL, said, “This initiative between HAL and Wipro 3D will create a unique synergy of capabilities that can accelerate the adoption of metal additive manufacturing in aerospace in India. Qualification of parts for aerospace is challenging as it would require prove out and extensive testing followed by certification by regulatory authorities which may also include flight testing."

Down south, Karnataka, which produces more than 65 percent of India’s aerospace-related components and exports, has taken a number of initiatives to promote additive manufacturing by setting up 3D printing clusters and sponsoring 3D printing startups. For example, through its flagship programme ‘Start Up Karnataka’, the State has given grants to ‘Deltasys E-Forming’, a Belgaum based start-up, to develop hybrid composite 3D printers. These initiatives are quite appropriate since two-thirds of India’s aircraft and helicopter manufacturing for the defense takes place in Karnataka, and 3D printing would revolutionize these processes quite rapidly.

On the other coast, Chennai-based 3D printing startup, Fabheads Automation, was established in 2015 by an ISRO engineer turned entrepreneur Dhinesh Kanagaraj. The deep tech startup designs and develops high-end carbon fibre helicopter blades for the Indian Air Force. Traditionally, carbon fibre parts are fabricated by laborious manual processes with a lot of fabrication time and money spent. Dhinesh also observed a lot of material wastage when he worked on carbon fibres at ISRO.  Based on this, Fabheads has designed an automated 3D printer series to eliminate material waste and also improve efficiency of production of carbon fibre. Sectors like the DRDO are currently approaching the company given these innovative methods of production.

3D Printing Saves the Day for the Indian Navy

Further, the Indian Navy has partnered with ‘think3D’, a Hyderabad-based 3D printing start-up, to produce spare components via additive manufacturing for both on and off-shore set-ups. The Indian Navy uses a lot of machinery on its ships which are imported from other countries and are quite old.  Whenever a component gets damaged, it is hard to replace it either because there is no availability of the part or because there is significant delay before a part is received. This often proved to be costly for the Navy since the machines would have to be kept idle before a spare part was replaced along with the fact that procurement of the parts was no less expensive.

This is where think3D had stepped in and supplied 3D printed parts to the Indian Navy, which were successfully tested and incorporated into its machinery. An example of such a 3D printed part, which proved to be of crucial help, is that of a centrifugal pump impeller- a key component for a ship’s operation.

https://3dprintingindustry.com/wp-content/uploads/2020/04/4.jpg
Figure 3: An original impeller (left) vs. a 3D printed impeller (right). Image source: think3D

The impeller is a rotating component and it is very important for a ship as it transfers energy from the motor to a fluid that needs to be pumped by accelerating the fluid outwards from the centre of rotation.  On ships, this component is used to import seawater into various parts of the ship for regular use of the crew. These impellers are required to rotate at high speeds for long durations and need to be very carefully designed. 3D printing was the best solution to replace these parts, given the speed of production and lower expenses.

Given all the benefits of 3D printing, it is high time for the Indian market to expand its 3D printing industry and utilize it to its full potential. There are many other instances like the one of the impeller in the Aerospace and Defense industries which can easily be solved using 3D printing.

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