3D Printing, HYDROGEN VEHICLE TURNING

Hydrogen cars that convert hydrogen into electrical energy are considered next-generation eco-friendly cars because they do not emit carbon, but they are having difficulty popularizing them due to their high prices. Above all, lowering the price of “fuel cell (stack)” which accounts for 40% of the cost of electric vehicles is the key.

▲ Chromium aluminum coating and separation plate prototype engraved with flow path.
Accordingly, domestic researchers have developed a “3D printing technology” that can drastically lower the cost of a “fuel cell separator” and succeeded in transferring the technology.

The Korea Atomic Energy Research Institute announced on the 11th that it has signed a technology implementation contract to transfer ‘3D printing technology for stacking internal food materials’ to The Sentech Co., Ltd. It is a condition to receive 2% of sales as current technology fees.

The Centech Co., Ltd. is a research start-up company established in November 2021 and is developing materials for extreme environmental industries based on 3D printing technology. The Centech plans to expand its scope of use to defense and space industries other than hydrogen vehicles by using the technology it received.

A fuel cell is a space where a chemical reaction between hydrogen and oxygen occurs to create electricity and water, and the separator surrounding the fuel cell should be a material that is resistant to corrosion. Therefore, existing fuel cell separators use rare metals such as platinum.

This is why gold is chemically very stable and hardly reacts with other materials, and separators on the market are mainly coated with gold and platinum on the surface of aluminum, stainless steel, and titanium alloys. The problem is that a considerable cost is needed.

▲ 3D printers manufacture metal separators for fuel cells.
Accordingly, the technology, developed by Dr. Kim Hyun-gil of the Korea Atomic Energy Research Institute, chose a new material that is inexpensive and highly resistant to corrosion. The doctor’s team used 3D printing technology to block the possibility of coating materials peeling off.

The researchers coated the surface of the stainless alloy with a chromium aluminum (CrAl) alloy with high corrosion resistance instead of gold. Even considering the manufacturing cost, chromium aluminum is 1/2000 cheaper than gold.

The 3D printing technology used in this study is a directed energy deposition (DED) method in which metal materials are stacked using high-power lasers, and different metal materials are melted and combined to prevent separate coatings.

The institute also succeeded in manufacturing a prototype of ‘metal separator for hydrogen fuel cells’ with its own 3D printer.
It is not only a simple coating, but also a concave flow path is engraved at once to increase manufacturing efficiency.

The flow path is an embossed protrusion arranged on the surface of the separator. It increases the reaction efficiency between hydrogen and oxygen in the fuel cell.

This achievement was made as part of the Ministry of Science and ICT’s nuclear fusion technology development project, and it completed patent registration in Korea in January this year.

Starting with “powder supply nozzle and device technology for 3D laser printing” in 2017, the Korea Atomic Energy Research Institute has transferred 3D printing-related technologies a total of four times so far.

Kim Hyun-gil, head of the Nuclear Fuel Safety Research Department, said, “This achievement shows that the 3D printing technology owned by the Nuclear Research Institute can be used in the non-nuclear field. We hope that spin-off with other industries will be actively carried out in the future.”

The oil and gas 3D printing market will see tremendous growth and Covid-19 analysis by 2028.

The 3D printing market report in the oil and gas sector includes demand-side strategic analysis and uses technology to triangulate supply-side analysis. This report not only provides forecasts and forecasts, but also provides a clear evaluation of these statistics in terms of market change. For business owners, authorities and investors, these insights combine data-based research approaches with qualitative sessions. Information and data will also help customers neutralize their concerns. Various visions of 3D printing market reports in the oil and gas sectors are based on the broad cycle of primary and secondary studies conducted by analysts throughout the research process. Predictors and professional consultants can be trusted by running global statistical customer analysis tools and market forecasting procedures to achieve results. The 3D printing market report survey in the oil and gas sector provides a detailed survey of the numerous customer journeys applicable to the market and its sub-sector. It provides a variety of customer perspectives on products and services.

Fast prototyping, reduced delivery lead times, significant downtime, and cost-effective benefits of 3D printing are key factors driving the growth of 3D printing in the oil and gas markets.

3D printing is the process of constructing physical objects in a digital framework using a printer. The advantages of 3D printing, such as rapid prototyping and small batch production, have boosted the demand for 3D printing in the oil and gas industries.

Sample copy of 3D printing market report in oil and gas sector:

In addition, the 3D printing market analysis report in the oil and gas sector focuses on explaining appropriate corporate measurement items such as market size, expected opportunities, and prospects. It will help you grow your brand and understand the characteristics of your customers’ purchases. It is the best tool for making sound business decisions and serves as a perfect guide for business players to strengthen their presence in the market and expand their product portfolio. The 3D printing market report in the oil and gas sector continues to discuss market-related concepts such as sales patterns, market development, market share and price structure. It will also further improve the product delivery. It consists of tips on how to track sales growth and follow several promotional techniques and objectives. Priority is given to the entire market environment and organized data is captured here. 석유 관련 주식

The major companies in the global oil and gas 3D printing market are:

Government focuses on creating a safe 3D printing environment

In order to create a safe working and usage environment for 3D printing, the government has decided to conduct regular surveys on utilization institutions every year.

The government jointly prepared measures to strengthen the safety of 3D printing and announced them on the 8th. This measure is designed to create a working environment in which 3D printing users use equipment and materials with low emission of harmful substances in a safe way.

According to the government, 3D printing poses health risks if fine particles and volatile organic compounds (VOC) are released during the process of applying high heat to materials (filaments), and 3D printing is carried out without sufficient safety measures.

In fact, according to a number of domestic and foreign literature, there are a total of 90 types of VODs, including styrene (ABS), lactated (PLA), and caprolactam (nylon), etc.

Considering this situation, the government has been pushing for safety measures such as mandatory ▲ 3D printing safety education ▲ actual investigation and work environment improvement consulting ▲ safety technology R&D ▲ mandatory display of precautions on public procurement 3D printing equipment.

However, there are still many areas where safety management at 3D printing sites will be improved, so it plans to establish strengthened safety measures this time to systematically implement and manage them. The following summarizes the main contents of the government’s measures to strengthen safety.

◇ Safety inspection every year through a fact-finding survey…Recommendation to refrain from using insufficient institutions
First of all, the government decided to conduct an annual survey so that 3D printing safety work and usage culture can be settled on the site. It plans to conduct safety inspections on institutions using 3D printing, and institutions with insufficient safety refrain from using it.

For example, in the case of schools, if insufficient is detected in the 3D printing laboratory, the safety environment will be improved, and apps that collect and manage 3D printing usage information will also be developed and distributed to check the safety usage status of teachers in charge.

The safety guidelines for 3D printing will also be revised. The guidelines plan to provide harmful substances that can be released during 3D printing and information on their human body effects.

In addition, a 3D printing safety center is installed at the Information and Communication Industry Promotion Agency to provide stable information and safety consulting to users. The 3D Printing Support Center (Mapo 3D-FAB) will be used as an exemplary model for the safety environment.

◇ Expansion of materials and equipment that emit less harmful substances
It will also revise procurement standards for 3D printing materials. The purpose is to allow materials that have passed the test and verification of harmful substances released during 3D printing work to be used in schools and public institutions.

In particular, it is difficult to make the certification system mandatory as the causal relationship between 3D printing and certain diseases has not been proven yet, so it plans to induce similar effects by strengthening procurement standards and using materials registered by public institutions.

In addition, the government will provide guidelines for creating a safe 3D printing working environment, while revising the “Three-Dimensional Printing Industry Promotion Act” to strengthen the responsibilities of operators and others.

In addition, it plans to ensure a safe working environment when participating in R&D tasks and demonstration projects using 3D printing.

A government official said, “We will implement and inspect the plan so that there is no disruption by operating a joint public-private 3D printing safety response team with related ministries and safety experts to secure the safety of 3D printing users.”

Source: Safety Journal (http://www.anjunj.com)

3D printing safety enhancement measures announced by ministries

Strengthen the overall safety of using 3D printing, such as working environment, equipment, materials, and usage methods –

 The government is an equipment that produces fewer harmful substances by 3D printing users.In order to create a working environment that uses materials in a safe way, related ministries jointly prepared 3D printing safety reinforcement measures and announced on March 8.

In 3D printing, fine particles and volatile organic compounds are released during the process of applying high heat to the material (filament), and there is a risk of health if 3D printing is performed without sufficient safety measures.

Accordingly, the government has been pushing for safety measures such as mandatory 3D printing safety education, 실 consulting on actual condition investigation and work environment improvement, 안전 safety technology R&D, and 공공 mandatory display of precautions on public procurement 3D printing equipment.
However, since safety management at sites using 3D printing is still to be improved, the government has decided to systematically implement and manage stronger safety measures than before.

The main contents are as follows.
First, it provides guidelines for safe use of 3D printing and establishes a support system.
First of all, the “3D Printing Safety Guidelines” are completely revised to clearly guide how to safely use 3D printing.
In addition, it plans to provide safety information and safety consulting to users by installing a 3D printing safety center at the National Information and Communication Industry Promotion Agency (NIPA).

Second, measures are taken to ensure that the safe use of 3D printing is brought to the site.
To this end, it plans to conduct an annual survey to check the safety of institutions using 3D printing, and recommend institutions with insufficient safety to refrain from using it.
In the case of schools that have confirmed that 3D printing safety is insufficient through a survey, the safety environment of 3D printing laboratories will be improved.
In addition, 3D printing usage information was collected to check the safety usage status of teachers in charge of 3D printing.It plans to develop and distribute apps that it manages.

Third, it will expand the distribution of 3D printing materials and equipment with low emission of harmful substances.
In addition, harmful substances are tested during 3D printing.The school revised the 3D printing material procurement specifications so that materials that have passed the verification can be procured.Public institutions will take measures to use procured goods.

Fourth, improve the system for strengthening 3D printing safety and expand publicity.
The 3D Printing Industry Promotion Act is revised to provide safe working environment guidelines to 3D printing businesses and to give them the obligation to create them.
In addition, in order to participate in R&D tasks and demonstration projects using 3D printing in the future, a safe working environment must be established.

The above measures are promoted through channels mainly used by 3D printing users such as purchasing routes (Nara Marketplace, etc.) and video platforms.We plan to push ahead with the plan.

The government plans to operate a joint public-private “3D Printing Safety Response Team” with related ministries and safety experts to ensure the safety of 3D printing users and further promote the 3D printing industry based on safety.

[Source] South Korea Policy Briefing (www.Korea).kr)

3D bioprinting technology implements “long-term chip platform”

Edmic Bio (CEO Ha Dong-heon) is a company that develops a “long-term chip platform” used to develop new drugs and prescribe patient-specific drugs with 3D bioprinting technology.

Admic Bio is a company that develops long-term chips based on 3D bio-printing, bio-ink, and micro-current technology. The photo shows Ha Dong-hun, CEO of Edmic Bio. Edmic Bio is provided
Admic Bio is a company that develops long-term chips based on 3D bio-printing, bio-ink, and micro-current technology. The photo shows Ha Dong-hun, CEO of Edmic Bio. Edmic Bio is provided
Organ chips are platforms that implement organs in the body outside the body and conduct various experiments. In order to develop new drugs, non-clinical trials such as cells and animals are conducted, but non-clinical trials are different from the actual human environment, so there is a problem that the accuracy falls below 8%.

Organ chips are implemented similarly to actual organs, and three factors are essential to increase accuracy: “long-term physical environment,” “long-term biochemical environment,” and “long-term flow environment.”

Edmic Bio is a company with all the essential elements ▲ More than 15 years of 3D bioprinting research experience ▲ The world’s first organization and long-term bio-ink capable of 3D printing and has technology to create an environment close to the actual long-term.

Edmic Bio implements long-term chips based on 3D bio-printing ▲ bio-ink extracted directly from tissues and organs that simulate the physical environment of ▲ organs and micro-fluidic technologies that help efficient experiments with the flow environment.

Through this, animal testing can be replaced in the process of developing new drugs, and several anticancer drugs can be tested with cancer chips using patients’ cancer cells, and the results can be provided to patients to expect better prognosis.

Edmic Bio aims to implement a “patient-tailored drug prescription platform.” After cancer cells in cancer patients are made into organ chips, effective combinations of various drugs are found to enable more accurate prescription and treatment.

Edmic Bio has also secured a technological foundation comparable to a global organ chip company by receiving DNA transplants from Pohang University of Science and Technology.

Global biomaterials for 3D printing market growth strategy, import and export analysis, and prediction between 2022 and 2028

Global Global 3D Printing Biomaterial Market Data includes company profiles, product images and specifications, capacity, production, price, cost, revenue and contact information. Upstream raw materials and equipment, and downstream demand evaluation are also provided.

Global 3D printing biomaterial market growth patterns and marketing channels are investigated. Finally, evaluate the feasibility of the most recent investment proposal and provide overall analysis results.

Download the free sample report: https://www.marketquest.biz/sample-request/66932

The study focuses on the most recent skilled aspects of 3D printing, such as analysis of bio-material industry production networks, product launch events, growth and risk factors worldwide. It includes production methods, quantities, product standards, major sourcing, major suppliers, customers, organizational structure, and global location research.

Type segments include:

ceramic
polymer
composite material
Applications include:

hospital
clinic
Research Institute
Guitar
Areas covered in the report:

North America (USA, Canada and Mexico)
Europe (Germany, France, Britain, Russia, Italy and other Europe)
Asia-Pacific (China, Japan, Korea, India, Southeast Asia and Australia)
South America (Brazil, Argentina, Colombia and other South America)
Middle East and Africa (Saudi Arabia, UAE, Egypt, South Africa, Middle East and the rest of Africa)
Based on a five-year record, the study includes the size and growth of the current 3D printing biomaterial market, as well as an overview of major players/manufacturers.

EnvisionTEC
Biobots
RegenHU
Cellink
Organovo
3Dynamic System
Poetis
Full Report Access: https://www.marketquest.biz/report/66932/global-biomaterials-for-3d-printing-market-2021-by-manufacturers-regions-type-and-application-forecast-to-2026

Collection and analysis of market data information using primary and secondary sources. The primary sources include demand and supply experts, while the secondary sources include annual reports, presentations, press releases, journals and paid databases. Primary and secondary sources are used to verify the global market size. The primary sources include demand and supply experts, while the secondary sources include annual reports, presentations, press releases, journals and paid databases.

Customizing the report:

This report can be customized to meet your needs. Our sales team to receive reports that meet your needs.

중고차 사이트 정리

중고차 사이트 수출액이 2조원을 넘어서면서 중고차 수출시장이 활황을 보이고 있다. 차량용 반도체의 세계적인 수급으로 보관에 시간이 걸리는 신차 대신 중고차 수요가 늘었기 때문이다. 유럽차보다 가성비(가격 대비 성능)가 뛰어난 점도 한국차의 인기 요인이다.

2일 한국무역협회와 중고차업체 유카에 따르면 지난해 중고차 수출액은 2조3,853억원으로 2조3,853억원(약 2조3,853억원)에 달했다. 수출은 전년(38만7537대)보다 20.5% 증가했고, 수출액은 전년(1조5047억원)보다 58.5% 증가했다. 사상 최대치였던 2019년 수출 46만9876대를 다소 밑돌았지만 수출 면에서는 역대 최대 규모다. 비싼 차를 대량으로 수출했다는 뜻이다.

중고차 시장 호황은 우선 코로나19에 따른 반사 효과 때문으로 분석된다. 중고차 수출대수는 코로나19 직전인 2019년 46만9876대로 2015년 21만1944대에 비해 정점을 찍었다. 다만 코로나19로 소비심리가 위축돼 공급 물량 이동이 어려워지자 2020년에는 38만7637대로 줄었다. 다만 세계적으로 반도체 수급이 어려워지면서 중고차 수출이 빠르게 증가세로 돌아섰다. 인기 있는 새 차를 사려면 반년에서 1년을 기다려야 하는 것은 전 세계의 공통된 현상이다.

국내 중고차는 주로 리비아 칠레 요르단 터키 이집트 등 아프리카와 중남미로 수출되고 있다. 이들 국가에서는 소형 디젤차가 인기를 끌면서 유럽차보다 국산 중고차 가격이 상대적으로 싼 것도 영향을 미친 것으로 보인다.

친환경차 수요도 꾸준히 늘고 있다. 중고 하이브리드차 수출대수는 2018년 176대에서 지난해 1018대로 3년 만에 약 6배 증가했다. 같은 기간 전기차 수출 대수는 25대에서 1678대로 급증했다. 차량 수만으로도 여전히 미미한 수준이지만 증가율만으로도 상승세다.

중고차 사이트 수출 시장이 커지면서 사업자들도 속속 뛰어들고 있다. 현대글로비스는 지난해 컨퍼런스콜에서 중고 수출차 사업인 자동차 사업을 처음 설명했다. 일본의 중고차 수출 플랫폼 비포워드도 지난해 한국지사를 설립했다.

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