Hi Jenny, I did nothing more or less then shown in the tutorial really, but maybe did you use a bulkier yarn? You may want to make some decreases on the sides so the fabric stays close to the box. I hope that helped !

If you worked the sides of the box in hdc, THEN, when that one stitch hits the bottom of the box, you need to change the next stitch from hdc to sc. Then, crochet as many sc as will fit without going below the bottom of the box. THEN, if you need more stitches, switch to slip-stitches until the box is covered. If you worked the sides of the box in sc, then simply change to slip-stitches to finish.


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Aaaah, thank you for this lovely pattern!

My sons both love Lego and as winter is approaching fast, this is the ideal gift!

You explained each step very well so I can adapt it to my yarn and box.

Thank you so much for this free pattern. My kids love Lego, I plan to make several and give some to their friends for birthday gifts. I am having some trouble getting started. Like the lady commented earlier my second row is shrinking. I was wondering if I was reading the pattern correctly. Chain the length of my tissue box then SC in second chain from hook then in every other chain? I am wondering if it is supposed to be SC in every chain instead of every other.

coucou je suis bien contente !

cette boite de mouchoir lego va ravir dans mon salon !!^^

Mes grands enfants levs aux legos et autres jeux de construction mmorables sont fans !!! ^^

Merci et bonne anne !

Thank you for the pattern. I can see me using this for presents in the coming year. I subscribed to your newsletter, but when I click on the link to confirm my email my computer, mobile and kindle Fire come up with the same result :

Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript.

Low thermal conductivity materials are necessary for thermally isolating cryogenic components. Radiation shield spacers and support rods in dilution refrigerators are good examples of this. These components are useful for all cryogenics but especially for the current progression of quantum computing, which relies on isolated low temperatures for operation and coherence. Certain plastic materials, such as Vespel, have reasonably low thermal conductivities1, but large volumes can be costly. In this work, we show that a modular Acrylonitrile Butadiene Styrene (ABS) solid/void structure assembled from commercially available LEGO blocks exhibit effective thermal conductivity even lower than industry-standard bulk materials, whilst offering good mechanical properties. The individual blocks readily allow affordable and repeatable large volume customization. Thermal conduction along the structure is difficult to predict from the properties of pure ABS material, since the internal thermal paths are complicated and include the solid-solid contact thermal resistance between the blocks. The results presented are characteristic of a modular ABS/void composite material constructed from typical LEGO elements.

where Thigh and Tlow are respectively the high and low temperatures across the structure. This expression was obtained by integrating \(\dot{Q}/a=-\,\lambda {T}^{n}dT/dx\) over the height of the sample.

The measured results for \(\dot{Q}\) versus Thigh for the modular ABS structure are presented in Fig. 2. A least squares fit to our experimental data for the longitudinal thermal conductance yields:

Thermal conductances in plastic materials at very low temperatures in general show Tn dependencies with n ranging between 1.7 and 2.46, and our fit falls in this range. The thermal conductance of the extremely anisotropic modular ABS structure would clearly have a strong dependence on the axis of measurement.

There is no reason why thermal conductivity of bulk ABS should be very different from other polymer materials. Instead, we propose that the extremely low thermal conductivity of the structure can be attributed to the high resistance solid-solid connection between blocks, highlighted in Fig. 3.

D.E.Z. designed this research. J.M.A.C. performed analysis, wrote the manuscript and fabricated the sample. A.T.J., M.T.N. and V.T. operated the Lancaster built dilution refrigerator. G.R.P. provided assistance with the figures and manuscript. All the above participated in discussion on this work.

The Lego Group began manufacturing the interlocking toy bricks in 1949. Moulding is done in Denmark, Hungary, Mexico, and China. Brick decorations and packaging are done at plants in the former three countries and in the Czech Republic. Annual production of the bricks averages approximately 36 billion, or about 1140 elements per second. One of Europe's biggest companies, Lego is the largest toy manufacturer in the world by sales.[4][5] As of July 2015[update], 600 billion Lego parts had been produced.[6] Films, games competitions, and eight Legoland amusement parks have been developed under the brand.

The Lego Group's motto, "only the best is good enough"[20] (Danish: det bedste er ikke for godt, literally "the best isn't excessively good") was created in 1936.[8] Christiansen created the motto, still used today, to encourage his employees never to skimp on quality, a value he believed in strongly.[8] By 1951, plastic toys accounted for half of the company's output, even though the Danish trade magazine Legetjs-Tidende ("Toy Times"), visiting the Lego factory in Billund in the early 1950s, wrote that plastic would never be able to replace traditional wooden toys.[21] Although a common sentiment, Lego toys seem to have become a significant exception to the dislike of plastic in children's toys, due in part to the high standards set by Ole Kirk.[22]

By 1954, Christiansen's son, Godtfred, had become the junior managing director of the Lego Group.[21] It was his conversation with an overseas buyer that led to the idea of a toy system. Godtfred saw the immense potential in Lego bricks to become a system for creative play, but the bricks still had some problems from a technical standpoint: Their locking ability was still limited, and they were not yet versatile.[2] In 1958, the modern brick design was developed; ABS subsequently replaced cellulose acetate as the manufacturing material five years later.[19][23][24] A patent application for the modern Lego brick design was filed in Denmark on 28 January 1958 and in various other countries in the subsequent few years.[25][26]

The Lego Group's Duplo product line was introduced in 1969 and is a range of blocks whose lengths measure twice the width, height, and depth of standard Lego blocks and are aimed towards younger children.[21][27] In 1978, Lego produced the first minifigures, which have since become a staple in most sets.[28]

In May 2011, Space Shuttle Endeavour mission STS-134 brought 13 Lego kits to the International Space Station, where astronauts built models to see how they would react in microgravity, as a part of the Lego Bricks in Space program.[29][30] In May 2013, the largest model ever created, made of over 5 million bricks, was displayed in New York City; a one-to-one scale model of a Star Wars X-wing fighter.[31] Other record breakers include a 34-metre (112 ft) tower[32] and a 4 km (2.5 mi) railway.[33][34]

While Lego has generally been considered a children's toy, there have also been adult fans of the toys. In 2020, Lego introduced sets aged at 18+, generally some of their more expensive and difficult-to-assemble sets based on real world or fictional objects, such as the Concorde or Rivendell. The timing of these sets favorably aligned with the COVID-19 pandemic, with many adults purchasing these sets to work on during various lockdown periods. Popularity within adults was further pushed by the release of The Lego Movie and the reality series Lego Masters. By 2024, nearly 15% of the sets released in the U.S. were aimed for adult builders.[37]

Each piece must be manufactured to an exacting degree of precision. When two pieces are engaged, they must fit firmly, yet be easily disassembled. The machines that manufacture Lego bricks have tolerances as small as 10 micrometres.[41]

Primary concept and development work for the toy takes place at the Billund headquarters, where the company employs approximately 120 designers. The company also has smaller design offices in the UK, Spain, Germany, and Japan which are tasked with developing products aimed specifically at their respective national markets. The average development period for a new product is around twelve months, split into three stages. The first is to identify market trends and developments, including contact by the designers directly with the market; some are stationed in toy shops close to holidays, while others interview children. The second stage is the design and development of the product based on the results of the first stage. As of September 2008[update] the design teams use 3D modelling software to generate CAD drawings from initial design sketches. The designs are then prototyped using an in-house stereolithography machine. These prototypes are presented to the entire project team for comment and testing by parents and children during the "validation" process. Designs may then be altered in accordance with the results from the focus groups. Virtual models of completed Lego products are built concurrently with the writing of the user instructions. Completed CAD models are also used in the wider organisation for marketing and packaging.[44]

Lego Digital Designer is an official piece of Lego software for Mac OS X and Windows which allows users to create their own digital Lego designs.[45] The program once allowed customers to order custom designs[46] with a service to ship physical models from Digital Designer to consumers; the service ended in 2012.[47] 152ee80cbc

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