Metallic microlattice

A block of metallic microlattice being supported by a dandelion seed head.

A metallic microlattice is a synthetic porous metallic material consisting of an ultra-light metal foam. With a density as low as 0.99 mg/cm3 (0.00561 lb/ft3), it is one of the lightest structural materials known to science.[1] It was developed by a team of scientists from California-based HRL Laboratories, in collaboration with researchers at University of California, Irvine and Caltech, and was first announced in November 2011. The prototype samples were made from a nickel-phosphorus alloy.[2] In 2012, the microlattice prototype was declared one of 10 World-Changing Innovations by Popular Mechanics.[3] Metallic microlattice technology has numerous potential applications in automotive and aeronautical engineering.[4] A detailed comparative review study among other types of metallic lattice structures showed them to be beneficial for light-weighting purposes but expensive to manufacture.[5]

Synthesis

To produce their metallic microlattice, the HRL/UCI/Caltech team first prepared a polymer template using a technique based on self-propagating waveguide formation,[6][7] though it was noted that other methods can be used to fabricate the template.[8] The process passed UV light through a perforated mask into a reservoir of UV-curable resin. Fiber-optic-like "self-trapping" of the light occurred as the resin cured under each hole in the mask, forming a thin polymer fiber along the path of the light. By using multiple light beams, multiple fibers could then interconnect to form a lattice.

The process was similar to photolithography in that it used a two-dimensional mask to define the starting template structure, but differed in the rate of formation: where stereolithography might take hours to make a full structure, the self-forming waveguide process allowed templates to be formed in 10–100 seconds. In this way, the process enables large free-standing 3D lattice materials to be formed quickly and scalably. The template was then coated with a thin layer of metal by electroless nickel plating, and the template is etched away, leaving a free-standing, periodic porous metallic structure. Nickel was used as the microlattice metal in the original report. Owing to the electrodeposition process, 7% of the material consisted of dissolved phosphorus atoms, and it contained no precipitates.[8]

Properties

A metallic microlattice is composed of a network of interconnecting hollow struts. In the least-dense microlattice sample reported, each strut is about 100 micrometres in diameter, with a wall 100 nanometres thick. The completed structure is about 99.99% air by volume,[2] and by convention, the mass of air is excluded when the microlattice density is calculated.[8] Allowing for the mass of the interstitial air, the true density of the structure is approximately 2.1 mg/cm3 (2.1 kg/m3), which is only about 1.76 times the density of air itself at 25 °C. The material is described as being 100 times lighter than Styrofoam.[9] Microlattices can also be 100 times stronger than regular polymers.[10]

Metallic microlattices are characterized by very low densities, with the 2011 record of 0.9 mg/cm3 being among the lowest values of any known solid. The previous record of 1.0 mg/cm3 was held by silica aerogels, and aerographite is claimed to have a density of 0.2 mg/cm3.[11] Mechanically, these microlattices are behaviorally similar to elastomers and almost completely recover their shape after significant compression.[12] This gives them a significant advantage over earlier aerogels, which are brittle, glass-like substances. This elastomeric property in metallic microlattices furthermore results in efficient shock absorption. Their Young's modulus E exhibits different scaling, with the density ρ, E ~ ρ2, compared to E ~ ρ3 in aerogels and carbon nanotube foams.[8]

Applications

Metallic microlattice may find potential applications in thermal and vibration insulators such as shock absorbers, and may also prove useful as battery electrodes and catalyst supports.[8] Additionally, the microlattices' ability to return to their original state after being compressed may make them suitable for use in spring-like energy storage devices.[2] Automotive and aeronautical manufacturers[which?] are using microlattice technology to develop extremely lightweight and efficient structures that combine multiple functions, such as structural reinforcement and heat transfer, into single components for high-performance vehicles.[4]

Similar materials

A similar but denser material, consisting of an electrodeposited nanocrystalline nickel layer over a polymeric rapid-prototyped truss, was created by researchers at the University of Toronto in 2008.[13] In 2012, German researchers created a carbon foam known as aerographite, with an even lower density than a metallic microlattice.[14] In 2013, Chinese scientists developed a carbon-based aerogel which was claimed to be lighter still.[1]

Nanolattices like tube-based nanostructures are similar structures on a smaller scale.

References

  1. ^ a b "In pictures: Ultra-light material". BBC. 9 April 2013. Retrieved 1 July 2013.
  2. ^ a b c "Metallic microlattice 'lightest structure ever'". Chemistry World. 17 November 2011. Archived from the original on 26 January 2012. Retrieved 21 November 2011.
  3. ^ Sterling, Robert (29 October 2012). "The world's lightest material". Boeing. Archived from the original on 2 November 2012. Retrieved 2 November 2012.
  4. ^ a b "MICROLATTICE: HOW REVOLUTIONARY METALLIC STRUCTURES ARE BENEFITING GLOBAL MANUFACTURERS". Institution of Mechanical Engineers. 28 February 2013. Archived from the original on 25 February 2015. Retrieved 25 February 2015.
  5. ^ Rashed, M.G.; Ashraf, Mahmud; Mines, R.A.W.; Hazell, Paul J. (2016). "Metallic microlattice materials: A current state of the art on manufacturing, mechanical properties and applications". Materials & Design. 95: 518–533. doi:10.1016/j.matdes.2016.01.146.
  6. ^ Jacobsen, A.J.; Barvosa-Carter, W.B.; Nutt, S. (2007). "Micro-scale Truss Structures formed from Self-Propagating Photopolymer Waveguides". Advanced Materials. 19 (22): 3892–3896. Bibcode:2007AdM....19.3892J. doi:10.1002/adma.200700797. S2CID 137188553.
  7. ^ US patent 7382959, Alan J. Jacobsen, "Optically oriented three-dimensional polymer microstructures", assigned to HRL Laboratories, LLC. 
  8. ^ a b c d e Schaedler, T. A.; Jacobsen, A. J.; Torrents, A.; Sorensen, A. E.; Lian, J.; Greer, J. R.; Valdevit, L.; Carter, W. B. (12 October 2011). "Ultralight Metallic Microlattices". Science. 334 (6058): 962–5. Bibcode:2011Sci...334..962S. doi:10.1126/science.1211649. PMID 22096194. S2CID 23893516.
  9. ^ "World's 'lightest material' unveiled by US engineers". BBC News. 18 November 2011. Retrieved 25 November 2011.
  10. ^ University of Hong Kong (September 8, 2022). "Newly developed 'microlattices' are lighter and 100 times stronger than regular polymers". Interesting Engineering. doi:10.1016/j.matt.2022.08.010. S2CID 252031036. {{cite journal}}: Cite journal requires |journal= (help)
  11. ^ "New carbon nanotube struructure aerographite is lightest material champ". Phys.org. 13 July 2012. Retrieved 14 July 2012.
  12. ^ Stephen Shankland (18 November 2011). "Breakthrough material is barely more than air". CNET. Retrieved 26 April 2013.
  13. ^ Gordon, L.M.; Bouwhuis, B.A.; Suralvo, M.; McCrea, J.L.; Palumbo, G.; Hibbard, G.D. (2009). "Micro-truss nanocrystalline Ni hybrids". Acta Materialia. 57 (3): 932–939. Bibcode:2009AcMat..57..932G. doi:10.1016/j.actamat.2008.10.038.
  14. ^ "Aerographit: Forscher entwickeln leichtestes Leichtgewicht". Der Spiegel (in German). 11 July 2012. Retrieved 1 July 2013.

Read other articles:

Midnight The Boatyard Jean-Charles Cazin (25 Mei 1840 – 17 Maret 1901) adalah seorang pelukis lansekap, kurator museum, dan ahli keramik berkebangsaan Prancis. Biografi Putra seorang dokter terkenal, FJ Cazin (1788–1864), ia lahir di Samer, Pas-de-Calais.[1] Setelah belajar di Prancis, ia pergi ke Inggris, di mana ia sangat dipengaruhi oleh gerakan pra-Raphael. Gambar-gambar utamanya sebelumnya memiliki minat keagamaan, ditunjukkan dalam contoh-contoh seperti Penerba...

 

Artikel ini perlu diterjemahkan dari bahasa Inggris ke bahasa Indonesia. Artikel ini ditulis atau diterjemahkan secara buruk dari Wikipedia bahasa Inggris. Jika halaman ini ditujukan untuk komunitas bahasa Inggris, halaman itu harus dikontribusikan ke Wikipedia bahasa Inggris. Lihat daftar bahasa Wikipedia. Artikel yang tidak diterjemahkan dapat dihapus secara cepat sesuai kriteria A2. Jika Anda ingin memeriksa artikel ini, Anda boleh menggunakan mesin penerjemah. Namun ingat, mohon tidak men...

 

artikel ini tidak memiliki pranala ke artikel lain. Tidak ada alasan yang diberikan. Bantu kami untuk mengembangkannya dengan memberikan pranala ke artikel lain secukupnya. (Pelajari cara dan kapan saatnya untuk menghapus pesan templat ini) Ulan-Ude Aviation Plant (UUAZ, Russian: Улан-Удэнский авиационный завод) adalah perusahaan saham gabungan Rusia yang mengkhususkan diri dalam pembuatan pesawat. Ulan-Ude Aviation Plant ini terletak di Ulan-Ude, Buryatia. Perusah...

Veenendaal, adalah sebuah gemeente Belanda yang terletak di provinsi Utrecht. Pada tahun 2021 daerah ini memiliki penduduk sebesar 67.000 jiwa. Lihat pula Daftar munisipalitas Belanda lbsMunisipalitas di provinsi Utrecht Amersfoort Baarn Bunnik Bunschoten De Bilt De Ronde Venen Eemnes Houten IJsselstein Leusden Lopik Montfoort Nieuwegein Oudewater Renswoude Rhenen Soest Stichtse Vecht Utrecht Utrechtse Heuvelrug Veenendaal Vijfheerenlanden Wijk bij Duurstede Woerden Woudenberg Zeist Artikel ...

 

Raffaele Alberto Ciasca Senatore della Repubblica ItalianaLegislaturaI, II GruppoparlamentareGruppo Democratico Cristiano CoalizioneDemocrazia Cristiana CircoscrizioneBasilicata Dati generaliPartito politicoDemocrazia Cristiana Titolo di studioLaurea in giurisprudenza ProfessioneStorico Raffaele Alberto Ciasca (Rionero in Vulture, 26 maggio 1888 – Roma, 18 luglio 1975) è stato uno storico e politico italiano. Indice 1 Biografia 1.1 Attività politica 2 Onorificenze 3 Opere 4...

 

Milutin MilankovićMilanković sebagai seorang murid dengan jam saku.Lahir(1879-05-28)28 Mei 1879Dalj, Austria-Hungaria (sekarang Kroasia)Meninggal12 Desember 1958(1958-12-12) (umur 79)Belgrade, Republik Rakyat Federal YugoslaviaKebangsaanSerbiaAlmamaterUniversitas Teknologi WinaDikenal atasInsolasi, Siklus MilankovitchKarier ilmiahBidangMatematika, astronomi, geofisikaDisertasiBeitrag zur Theorie der Druck-kurven (1904) Milutin Milanković (bahasa Serbia: Милутин Мил...

California-based reality television series in the United States Laguna Beach: The Real Orange CountyGenreReality televisionCreated byLiz GateleyStarring Lauren Conrad Kristin Cavallari Stephen Colletti Trey Phillips Christina Schuller Morgan Olsen Talan Torriero Lo Bosworth Jessica Smith Alex Murrel Jason Wahler Taylor Cole Tessa Keller Chase Johnson Raquel Donatelli Cameron Brinkman Kyndra Mayo Lexie Contursi Cami Edwards Kelan Hurley Breanna Conrad Narrated by Lauren Conrad Kristin Cavallar...

 

Genus of tyrannosaur dinosaur For the fictional monster, see Gorosaurus. GorgosaurusTemporal range: Late Cretaceous (Campanian), ~76.6–75.1 Ma PreꞒ Ꞓ O S D C P T J K Pg N ↓ Skeletal mount, Royal Tyrrell Museum of Palaeontology Scientific classification Domain: Eukaryota Kingdom: Animalia Phylum: Chordata Clade: Dinosauria Clade: Saurischia Clade: Theropoda Clade: †Eutyrannosauria Family: †Tyrannosauridae Subfamily: †Albertosaurinae Genus: †GorgosaurusLambe, 1914 Type ...

 

Election for the lieutenant governorship of Nebraska 1958 Nebraska lieutenant gubernatorial election ← 1956 November 4, 1958 1960 →   Nominee Dwight W. Burney Frank Sorrell Party Republican Democratic Popular vote 202,295 197,849 Percentage 50.6% 49.4% County resultsBurney:      50-60%      60-70% Sorrell:      50-60%      60-70% Lieutenant Governor before electi...

Australopithecus anamensisRentang fosil: Pliosen Tulang Australopithecus anamensis yang disimpan di Universitas Zurich. Klasifikasi ilmiah Kerajaan: Animalia Filum: Chordata Kelas: Mammalia Ordo: Primates Famili: Hominidae Subfamili: Homininae Genus: Australopithecus Spesies: A. anamensis Nama binomial Australopithecus anamensisLeakey et al., 1995 Australopithecus anamensis adalah spesies dari Australopithecus. Fosil pertama spesies ini, meskipun tidak dikenali pada saat itu, adalah sat...

 

American baseball player (1925-1995) Baseball player Nippy JonesFirst basemanBorn: (1925-06-29)June 29, 1925Los Angeles, California, U.S.Died: October 3, 1995(1995-10-03) (aged 70)Sacramento, California, U.S.Batted: RightThrew: RightMLB debutJune 8, 1946, for the St. Louis CardinalsLast MLB appearanceSeptember 29, 1957, for the Milwaukee BravesMLB statisticsBatting average.267Home runs25Runs batted in209 Teams St. Louis Cardinals (1946–1951) Philadelphia P...

 

22

  「二十二」重定向至此。關於名为“二十二”的慰安妇主题纪录片,請見「二十二 (2017年电影)」。 22 ← 21 22 23 → 数表 — 整数 <<  20 21 22 23 24 25 26 27 28 29 >> 命名小寫二十二大寫貳拾貳序數詞第二十二twenty-second識別種類整數性質質因數分解 {\displaystyle } 2 × 11 {\displaystyle 2\times 11} 表示方式值22算筹希腊数字ΚΒ�...

Former Canadian Women's Hockey League team Burlington BarracudasCityBurlington, Ontario, CanadaLeagueCanadian Women's Hockey LeagueFounded2007 (2007)Folded2012 (2012)Home arenaAppleby Ice CentreColoursOrange, blue, white     General managerMaria QuintoHead coachBerardino QuintoWebsiteBurlington Hockey Club - CWHL The Barracudas line up for the national anthem, January 2012. A team huddle to discuss strategy. The Burlington Barracudas were a professional women's i...

 

24-й Український запасний полк Готель Континенталь в якому розташовувалися українська частина яка здалася більшовикам 11 січня 1918 року.На службі 1917—1918Країна  УНРНалежність  Армія УНРВид сухопутні військаГарнізон/Штаб МаріупольВійни/битви Українська революція 1917-1...

 

العلاقات الآيسلندية الغامبية آيسلندا غامبيا   آيسلندا   غامبيا تعديل مصدري - تعديل   العلاقات الآيسلندية الغامبية هي العلاقات الثنائية التي تجمع بين آيسلندا وغامبيا.[1][2][3][4][5] مقارنة بين البلدين هذه مقارنة عامة ومرجعية للدولتين: وجه المقا...

For related races, see 1940 United States gubernatorial elections. 1940 Georgia Democratic gubernatorial primary ← 1938 September 11, 1940 1942 → 410 county unit votes206 unit votes needed to win   Nominee Eugene Talmadge Columbus Roberts Hosea Abit Nix Party Democratic Democratic Democratic Electoral vote 318 80 12 Popular vote 183,133 127,653 44,282 Percentage 51.58% 35.95% 12.47% County resultsTalmadge:      30-40%   ...

 

1971 British film by Malcolm Leigh Games That Lovers PlayPromotional posterDirected byMalcolm LeighWritten byMalcolm LeighProduced byJudith SmithStarringJoanna LumleyPenny BrahmsRichard WattisCinematographyKen HigginsEdited byPeter Austen-HuntMusic byDavid LindupProductioncompanyBorder Film ProductionsRelease date 14 March 1971 (1971-03-14) Running time95 minutesCountryUnited KingdomLanguageEnglish Games That Lovers Play (U.S. titles: Lady Chatterley Versus Fanny Hill and Lady ...

 

韻可以指: 韻母,音節中元音加收尾音的部份 押韻,韻文中句子結尾使用韻母相同或相近的音節 这是一个消歧义页,羅列了有相同或相近的标题,但內容不同的条目。如果您是通过某條目的内部链接而转到本页,希望您能協助修正该處的内部链接,將它指向正确的条目。

Nếu gió thổi song song với đường bờ biển ở Nam bán cầu (như dọc theo bờ biển Peru, nơi gió thổi về hướng bắc), thì vận chuyển Ekman có thể tạo ra một chuyển động ròng của nước bề mặt 90° về bên trái. Điều này có thể dẫn tới nước trồi vùng duyên hải.[1] Nước trồi là một hiện tượng hải dương nói về dòng nước lạnh, nhiều dinh dưỡng và đặc quánh di chuyển từ ph...

 

Excited dimeric molecule containing a noble gas Excimer energy diagram An excimer (originally short for excited dimer) is a short-lived polyatomic molecule formed from two species that do not form a stable molecule in the ground state. In this case, formation of molecules is possible only if such atom is in an electronic excited state.[1] Heteronuclear molecules and molecules that have more than two species are also called exciplex molecules (originally short for excited complex). Exc...