Literatura académica sobre el tema "SolidWorks"

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Artículos de revistas sobre el tema "SolidWorks"

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Agustiawan, Iwan y Ardi Adhiguna Riyadhi. "Analisis Kekuatan Stabilizer Bar (Anti-Roll Bar) Pada Kendaraan Roda Empat Menggunakan Bantuan Software Solidworks". Jurnal Rekayasa Energi dan Mekanika 1, n.º 2 (12 de octubre de 2021): 77. http://dx.doi.org/10.26760/jrem.v1i2.77.

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Abstrak Stabilizer bar berfungsi mengurangi besarnya sudut rolling, sehingga diharapkan kendaraan lebih stabil. Tujuan yang ingin dicapai dari penelitian ini adalah mengetahui kekuatan stabilizer bar akibat body roll kendaraan dengan pemodelan dan simulasi serta analisis menggunakan bantuan software solidworks. Metode yang digunakan adalah mengidentifikasi karakteristik fisik, beban, tumpuan dan material yang digunakan untuk proses pemodelan serta simulasi sederhana menggunakan software solidworks sehingga dapat memperoleh tegangan geser dan faktor keamanan. Sebagai pembanding terhadap model dan simulasi solidwork, tegangan geser maksimum yang terjadi dihitung secara manual berdasarkan momen puntir dan momen lentur yang bekerja secara simultan dalam stabilizer bar. Hasil penelitian ini menunjukkan bahwa ketika kendaraan mengalami body roll sebesar 3,51° dimana stabilizer bar terpuntir 2,62° dan mengalami tegangan geser dan faktor keamanan dari perhitungan manual, yaitu 52,47 MPa dan 9,39 untuk beban statis, 104,94 MPa dan 4,69 untuk beban dinamis. Berdasarkan analisis menggunakan software solidwork tegangan geser dan faktor keamanan, yaitu 50,05 MPa dan 8,96 untuk kondisi statis, 100,1 MPa dan 4,48 untuk kondisi dinamis. Berdasarkan prediksi menggunakan persamaan regresi linier, maka sudut body roll kritis yang dapat dicapai adalah sebesar 45,99° ketika stabilizer bar mulai mengalami deformasi plastis. Kata kunci : Stabilizer Bar, Anti-Roll Bar, Solidworks Abstract The stabilizer bar functions to reduce the amount of rolling angle, so that the vehicle is expected to be more stable. The purpose of this research is to determine the strength of the stabilizer bar due to vehicle body roll by modeling and simulation and analysis using Solidworks software. The method used is to identify the physical characteristics, loads, supports and materials used for the modeling process and simple simulations using solidworks software so as to obtain shear stress and safety factors. As a comparison to the solidwork model and simulation, the maximum shear stress that occurs is calculated manually based on the torsional moment and the bending moment that work simultaneously in the stabilizer bar. The results of this study indicate that when the vehicle experiences a body roll of 3.51 ° where the stabilizer bar is twisted 2.62 ° and experiences shear stress and safety factors from manual calculations, namely 52.47 MPa and 9.39 for static loads, 104.94 MPa and 4.69 for dynamic loads. Based on the analysis using solidwork shear stress software and safety factors, namely 50.05 MPa and 8.96 for static conditions, 100.1 MPa and 4.48 for dynamic conditions. Based on predictions using linear regression equations, the critical body roll angle that can be achieved is 45.99 ° when the stabilizer bar begins to undergo plastic deformation. Keywords : Stabilizer Bar, Anti-Roll Bar, Solidworks
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Suwantri, Suwantri. "Analisis Kerangka Mesin Hot press Plastik Berbasis Simulasi". Suara Teknik : Jurnal Ilmiah 13, n.º 1 (9 de julio de 2022): 19. http://dx.doi.org/10.29406/stek.v13i1.3961.

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Meningkatnya konsumsi produk dan peralatan berbahan plastik berdampak pada meningkatkan jumlah sampah plastik. Sampah plastik telah menjadi salah satu masalah lingkungan yang paling mendesak. Untuk memastikan mesin hot press yang dihasilkan dapat mencapai tujuan yang optimal maka desain mesin hot press plastik dibuat simulasi dengan menggunkan software solidworks. Penelitian ini menggunakan metode simulasi dengan bantuan perangkat lunak (software) yang membantu menganalisa karakteristik model yang dibuat. Analisa yang dilakukan adalah berupa pembebanan dan pemberian gaya pada model berupa kerangka mesin hot press plastic. Adapun geometri dan simulasi pembebanan dilakukan pada software Solidworks. Berdasarkan hasil FEA (Finite Element Analysis) seperti yang diperlihatkan pada gambar hasil simulasi software solidwork, didapatkan hasil bahwa kerangka mesin hot press plastik dengan besi hollow, baik yang menggunakan siku penyangga dan kerangka tidak menggunakan siku penyangga sama-sama kuat menahan beban untuk mesin hot press plastik. Berdasarkan hasil simulasi didapatkan data yield strength bahan adalah 234.42 N/mm2. Hasil tersebut dinyatakan aman karena perhitungan tidak melebihi Kata kunci: mesin hot press plastic, FEA, Solidworks
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Eko Aprianto Nugroho y Abdul Rahman Agung Ramadhan. "DESAIN DAN ANALSIS RANGKA PADA MESIN PENGUPAS BIJI KOPI BASAH MENGGUNAKAN SOFTWARE SOLIDWORKS". Jurnal Teknik dan Science 2, n.º 2 (30 de junio de 2023): 16–22. http://dx.doi.org/10.56127/jts.v2i2.762.

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Coffee is a commodity that is currently developing. However, many coffee farmers in remote areas experience problems in increasing their business along with high market demand due to a lack of business support tools. The purpose of this paper is to find out the materials used in designing a wet coffee bean peeler machine. Design the frame of a wet coffee bean peeler machine using Solidwork software. Wet coffee bean peeler analysis. The type of iron to be used in the frame of this wet coffee bean peeler is galvanized angle iron with a size of 22 x 22 x 1.8 mm. The results obtained show that the von misses stress calculated using solidworks has the greatest stress of 69,654 Mpa. For von misses stress by manual calculation, a value of 71.707Mpa is obtained. The results obtained show that the displacement calculated using solidworks has the greatest stress of 0.293 mm. For displacement with manual calculations, a value of 0.163 mm is obtained. The results obtained show that the Factor of Safety value calculated using Solidworks has the greatest stress of 2,928 ul. For the Factor of Safety with manual calculations, a value of 2,830 ul was obtained.
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Pavlov, Eugene y Oleg Lifanov. "Pipeline design in SolidWorks". Problems of Water supply, Sewerage and Hydraulic, n.º 35 (31 de mayo de 2021): 42–47. http://dx.doi.org/10.32347/2524-0021.2021.35.42-47.

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It is shown that is the program SolidWorks and what it is intended for, taking into account also that SolidWorks is a network standard for tree- dimensional solid state design. There are also tree basic system configurations, which are used depending on the class and complexity of the tasks. Application in practice of design of SolidWorks provides automatic reception of the license for use of technologies of tree- dimensional designing which allow to design and bring to the market modern innovative production. Respect for those that the SolidWorks program functions on the Windows platform has been transferred to the Russian language and on- demands DSTU and ESKD. The use of SolidWorks can significantly reduce labor costs when performing assembly work. The risibility of tree- dimensional design is fundamentally different from the usual project and allows workers to perform assembly work without contact consultation and ongoing control by engineering personnel. SolidWorks can be used for the design in various branches of mechanical engineering, construction, as well as for installation work on water supply and sewerage pipe systems. There tasks are solved using the SolidWorks Routing module, which is included in the configuration of the SolidWorks Premium and is specially designed to facilitate the design of prefabricated and bent pipelines, as well as flexible hoses. When designing plumbing equipment in pumping stations there is a task to complete the individual components and nodes of the project to obtain a tree- dimensional model in a complete form. The inclusion of pipeline equipment in a tree- dimensional model of a object allows solving many problems already at the design stage and avoiding situations when at the installation stage it is revealed, that the pipes are incorrectly bent and interfere with the operation of other system nodes, or there is little free space in the created structure for saying all the necessary communications. Using the SolidWorks Routing program makes it possible to optimally and compactly place water and sewer pipes indoors, prevent them from crossing and quickly get accurate data on the needs for materials and components. Indicates additional modules, which can also be used witch the SolidWorks program to facilitate the design work on the boring and bent pipelines, flexible lines and communications.
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Knyazkov, V. V. y E. M. Fazlulin. "Geometrical modeling in SolidWorks". Izvestiya MGTU MAMI 8, n.º 1-5 (10 de septiembre de 2014): 170–76. http://dx.doi.org/10.17816/2074-0530-67541.

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The article discusses the possibility of application of parametric modeling system SolidWorks for solving of geometric modeling problems in graphics disciplines. The examples illustrate various aspects of graphic works.
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Demitrova, I. y A. Nazarov. "Designing of furniture solidworks". Актуальные направления научных исследований XXI века: теория и практика 3, n.º 5 (2 de diciembre de 2015): 452–55. http://dx.doi.org/10.12737/16299.

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Dickin, Peter. "Integrated CAM for SolidWorks". Advanced Technologies in Mechanics 2, n.º 2(3) (30 de octubre de 2015): 41. http://dx.doi.org/10.17814/atim.2015.2(3).22.

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Lemus Solorio, Martha Angélica y Damian Campuzano Milian. "Transformando la ingeniería con SolidWorks". Milenaria, Ciencia y arte, n.º 22 (14 de diciembre de 2023): 26–29. http://dx.doi.org/10.35830/mcya.vi22.415.

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Este artículo explora cómo SolidWorks, un software de diseño asistido por computadora (CAD), ha revolucionado la ingeniería moderna al permitir la creación de productos vanguardistas y eficientes. A través de mi experiencia personal como ingeniero mecánico en la agroindustria, destaco cómo SolidWorks ha sido un aliado esencial en el desarrollo de máquinas clasificadoras de frutas y hortalizas. Desde la concepción de proyectos hasta la producción, SolidWorks ha permitido una precisión sin precedentes, optimización de diseños y colaboración efectiva. Además, se exploran las ventajas clave de SolidWorks en la innovación del diseño, eliminación de errores y estímulo a la colaboración, transformando la manera en que creamos y construimos productos ingenieriles.
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Urdea, Mihaela. "Harmonic Gear Modeled in SolidWorks". Applied Mechanics and Materials 371 (agosto de 2013): 453–57. http://dx.doi.org/10.4028/www.scientific.net/amm.371.453.

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This paper deals with significant aspects connected to what the specialized literature calls CAD and it refers to modeling harmonic gears, from a modern and personal point of view. The first part presents harmonic gears in several constructive variants. This is an analysis of the characteristics of this gear, studying the most important components. The second part studies Smart Fasteners PropertyManager and how can this insert fasteners and associated hardware into assemblies. In order to illustrate SolidWorkss ability to offers part and features library or to process databases and to develop new part library a harmonic gear was modeled.
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Saibov, Maruf Farhadovich, Ulugbek Yunusovich Ochilov y Khisrav Khurshid ugli Ashurov. "TOPOLOGICAL LEVERAGE OPTIMIZATION IN SOLIDWORKS". Theoretical & Applied Science 123, n.º 07 (30 de julio de 2023): 69–74. http://dx.doi.org/10.15863/tas.2023.07.123.10.

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Tesis sobre el tema "SolidWorks"

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Shapochka, J. S. y N. O. Rudakova. "SolidWorks". Thesis, Sumy State University, 2016. http://essuir.sumdu.edu.ua/handle/123456789/46938.

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Nowadays, parametric 3D computer-aided design (CAD) of solid and surface models are the principal means for design ideas communicating and developing new products and systems. 3D parametric modeling facilitates visual thinking and design process. There are many programs for creating 3D models.
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Plahn, Diana. "Ekodesign med SolidWorks Sustainability". Thesis, KTH, Maskinkonstruktion (Inst.), 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-156896.

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I dagens samhälle börjar det bli allt viktigare att tänka på miljöaspekterna vid framtagningen av nya produkter. Med hjälp av olika datorprogram kan det bli lättare att konstruera produkter som har mindre påverkan på miljön. Denna rapport hade som syfte att få en förståelse för hur man kan använda sig av SolidWorks program Sustainability i konstruktionsarbetet och att med hjälp av ekodesignens 10 Gyllene Regler och CES EduPack mäta/värdera i vad mån SolidWorks Sustainability ger en bättre produkt eller inte. Slutligen också visa hur och på viket sätt SolidWorks Sustianability verkligen skapar mer miljövänliga produkter. Livscykelanalyser med SolidWorks Sustainability och CES EduPack genomfördes på ett lås och ett takaggregat. Skillnaden mellan programmen blev framför allt stor då takaggregatet analyserades. Då räknade SolidWorks Sustainability att takaggregatet koldioxidavtryck var 6300 kg och energiförbrukning 1,1 MJ medan CES EduPack gav resultatet 465 kg och 4,71 MJ. Skillnaden blev som störst under användningsfasen. SolidWorks Sustainability och CES EduPack skiljde sig åt på många punkter. Den största skillnaden är att SolidWorks Sustainability är integrerad i CAD-filen, vilket CES EduPack inte är. CES EduPack har däremot en större och mer organiserad materialdatabas. SolidWorks Sustainability bearbetar fyra av de tio gyllene reglerna, Hushållning, Vikt, Energi och Livslängd. För att miljöanpassa produkter är det bra med de tio gyllene reglerna tidigt i produktutvecklingsprocessen som i kravspecifikationen, idégenereringen, konceptutvecklingen och vid konceptvalet. Material och olika koncept kan sedan jämföras i SolidWorks Sustainability. En livscykelanalys på produkten kan utföras och produkten kan jämföras med tidigare modell eller kontrollera om värdena motsvarar de riktlinjer som finns.
In today’s society it is getting more and more important to think about a products enviro nmental impact. With the help from different computer programs it is getting easier to design products that have less impact on the environment. The purpose of this thesis was to get an understanding of how SolidWorks Sustainability can be used during the product development process and with the help from the ten golden rules of EcoDesign and CES EduPack evaluate if and how SolidWorks Sustainability can reduce a product´s environmental impact. Also explain how SolidWorks Sustainability can create environmentally friendly products. Lifecycle analysis was done on a lock and ceiling unit both with SolidWorks Sustainability and CES EduPack. The difference between the programs was particularly large when the analysis was done on the ceiling unit. SolidWorks´ result was that the carbondioxid footprint was 6300 kg and the energy consumption was 1,1 MJ while CES EduPack´s result was 465 kg och 4,71 MJ. The difference was greatest during the using phase. SolidWorks and CES EduPack differed at many aspects. The biggest difference was that SolidWorks was integrated in the CAD, which CES EduPack wasn´t. CES EduPack on the other hand had a much bigger and well organized material database. SolidWorks Sustainability handles four of the ten golden rules; Housekeeping, Weight, Energy and Long Life. It is good to start with the ten golden rules of EcoDesign early in the product development process, as in the specification of demands, brainstorming, concept development and choice of concept. Materials and concepts can then be compared in SolidWorks Sustainability. A lifecycle analysis can also be conducted and the product can be compared to earlier models or existing guidelines.
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Скоропад, Г. Ю. "Оптимізація графічних файлів SolidWorks". Thesis, Видавництво СумДУ, 2011. http://essuir.sumdu.edu.ua/handle/123456789/10386.

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Баранова, Ірина Володимирівна, Ирина Владимировна Баранова y Iryna Volodymyrivna Baranova. "Технология работы с пакетом SolidWorks". Thesis, Издательствл СумГУ, 2008. http://essuir.sumdu.edu.ua/handle/123456789/7441.

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В результате выполнения курсовых и дипломных проектов на базе программного пакета SolidWorks разработаны твердотельные модели различных машиностроительных узлов и механизмов, которые используются в образовательных целях для различных дисциплин при обучении студентов инженерного факультета. Анализ преподавания показал целесообразность изучения этого пакета студентами с начальных курсов. Возможности таких пакетов позволяют студентам быстрее разобраться в особенностях выбранной специальности. Еще более важно то, что студенты младших курсов, овладев такими пакетами, могут принимать участие в конкретных разработках, связанных с направлением их обучения и создается возможность совмещать учебу с практической работой без отрыва от учебы. При цитировании документа, используйте ссылку http://essuir.sumdu.edu.ua/handle/123456789/7441
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Saiz, Sau Marc. "SolidWorks Parameterization for Industrial Robot Design". Thesis, Linköping University, Machine Design, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-57492.

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Development of Industrial robots is becoming more expensive and time consuming over the years. A lot of costs are spent in the development, and so it is necessary to improve the conceptual design phase.

 

This thesis is an object lesson that shows one of the multiple ways to improve the named phase.

It basically consists on, using a CAD program, build a robot whose parameters have to be modified from a user interface. The parameters to change are the dimensions of the robot’s parts (morphology parameterization) and also the parts to use (topology parameterization), which can be chosen from a large library of different parts.

 

Some parameters are changed so as the build robot has similar mass properties to a given one, in order to be able to do some tests with it and export the results to improve the real robot. For this reason, in the interface done there is also written some code to get the mass properties of the built robot. Even so, this thesis only shows how to do the named actions but it has not been done any kind of test.

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Лісаченко, В. О. "Плагін-конвертер моделей Solidworks у Unity". Master's thesis, Сумський державний університет, 2018. http://essuir.sumdu.edu.ua/handle/123456789/71870.

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Дипломний проект присвячений розробці плагіна-конвертера моделей Solidworks у Unity. В роботі проведено аналіз предметної області з аналізом аналогів плагіна, визначення мети проекту, засобів реалізації, планування та проектування роботи. Представлена поетапна розробка плагіна, показана структура та призначення елементів інтерфейсу та функціональних модулів плагіна. Після реалізації проекту проведено тестування трьох видів. Результатом роботи є програмний продукт, який дозволить перетворювати модель Solidworks у формати Unity. Передбачено можливість обрати якість моделей конвертації, здійснення імпорту безпосередньо у проект Unity.
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Алєксєєв, Олександр Миколайович, Александр Николаевич Алексеев, Oleksandr Mykolaiovych Alieksieiev, Микола Іванович Волков, Николай Иванович Волков, Mykola Ivanovych Volkov, Олексій Миколайович Кочевський, Алексей Николаевич Кочевский y Oleksii Mykolaiovych Kochevskyi. "Возможности пакета SOLIDWORKS для дистанционного преподавания инженерных дисциплин". Thesis, Издательство СумГУ, 2004. http://essuir.sumdu.edu.ua/handle/123456789/23257.

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Drábek, Jakub. "Modelování lineárního pohonu pro potřeby návrhu řízení". Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2010. http://www.nusl.cz/ntk/nusl-229267.

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Thesis deals with the design of control of linear drive by taking advantage of connection between tools provided by NI LabView graphical programming environment and SolidWorks 3D CAD system. This work describes the various resources the CAD systems provide for virtual modeling of mechatronic systems and their simulation. Control is designed using simulation tools by utilizing link between NI LabView and SolidWorks, while the invented control mechanism is finally tested on real system.
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Застанченко, О. Ю. "Побудова параметричної моделі петлі кулірного трикотажу у програмі Solidworks". Thesis, Київський національний університет технологій та дизайну, 2018. https://er.knutd.edu.ua/handle/123456789/11930.

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Rohozhyna, N., Ivan Samoilenko y Ksenia Meleshko. "Procedure of editing existing polygonal models by SolidWorks system". Thesis, National aviation university, 2021. https://er.nau.edu.ua/handle/NAU/52829.

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1. 2021 Best 3D Printer Slicer Software [Electronic resource]. - Access mode: https://all3dp.com/1/best-3d-slicer-software-3d-printer/
The ability to use 3D printing technology directly depends on the quality of the input geometric model. It is usually difficult to see small defects, missing triangles, convex and other deformations of the grid in slicers. There are online services stlfixers that fix network models. They quickly fill in defects, but are limited by the size and number of triangles of the model. In this case, slicers "do not see" the smallest holes in the grid or one / two triangles that protrude beyond the shape of the part, such defects are simply not printed, so in most cases stlfixers are quite enough.
Можливість використання технології 3D-друку безпосередньо залежить від якості вхідної геометричної моделі. Зазвичай важко побачити дрібні дефекти, відсутні трикутники, опуклі та інші деформації сітки в нарізках. Існують онлайн-сервіси stl-fixers, які виправляють моделі. Вони швидко заповнюють дефекти, але обмежені розміром і кількістю трикутників моделі. У цьому випадку слайсери "не бачать" найменших отворів у сітці або одного / двох трикутників, які виступають за форму деталі, такі дефекти просто не друкуються, тому в більшості випадків stlfixers цілком достатньо.
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Libros sobre el tema "SolidWorks"

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SolidWorks Administration. Hoboken: Wiley [Imprint], 2009.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. Mastering SolidWorks. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7.

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Vogel, Harald. SolidWorks 2010. München: Carl Hanser Verlag GmbH & Co. KG, 2009. http://dx.doi.org/10.3139/9783446422902.

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Engelken, Gerhard. SolidWorks 2010. München: Carl Hanser Verlag GmbH & Co. KG, 2010. http://dx.doi.org/10.3139/9783446424524.

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SolidWorks 2013. Mission, Kan: SDC Publications, 2013.

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Inside SolidWorks. Santa Fe, NM: OnWord Press, 1998.

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Michael, Minbiole, ed. Learning SolidWorks. 2a ed. Upper Saddle River, NJ: Pearson/Prentice Hall, 2003.

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Jankowski, Greg. SolidWorks for dummies. Hoboken, N.J: Wiley, 2005.

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Onwubolu, Godfrey C. Introduction to SOLIDWORKS. Boca Raton : Taylor & Francis Group, a CRC title, part of the Taylor & Francis imprint, a member of the Taylor & Francis Group, the Academic Division of T&F Informa, plc, [2017]: CRC Press, 2017. http://dx.doi.org/10.1201/9781315382500.

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Vogel, Harald. Konstruieren mit SolidWorks. München: Carl Hanser Verlag GmbH & Co. KG, 2009. http://dx.doi.org/10.3139/9783446422919.

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Capítulos de libros sobre el tema "SolidWorks"

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Weber, Irene. "SOLIDWORKS". En VBA für Office-Automatisierung und Digitalisierung, 225–40. Wiesbaden: Springer Fachmedien Wiesbaden, 2024. http://dx.doi.org/10.1007/978-3-658-42717-7_12.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Introduction". En Mastering SolidWorks, 1–29. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_1.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Assembly". En Mastering SolidWorks, 227–38. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_10.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Assembly Continued". En Mastering SolidWorks, 239–50. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_11.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Basics of Drawing". En Mastering SolidWorks, 251–59. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_12.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "To Create a Flanged Coupling". En Mastering SolidWorks, 261–86. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_13.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "To Create a Foot Step Bearing". En Mastering SolidWorks, 287–316. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_14.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Introduction to Sketching". En Mastering SolidWorks, 31–66. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_2.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Basic Sketch Relations and Dimensioning". En Mastering SolidWorks, 67–91. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_3.

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Kumar, Kaushik, Divya Zindani y J. Paulo Davim. "Part Modeling Using Features". En Mastering SolidWorks, 93–113. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-38901-7_4.

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Actas de conferencias sobre el tema "SolidWorks"

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Menda, Frantisek, Patrik Sarga, Erik Prada y Frantisek Trebuna. "SolidWorks API for Ring-Core simulations". En 2014 IEEE 12th International Symposium on Applied Machine Intelligence and Informatics (SAMI). IEEE, 2014. http://dx.doi.org/10.1109/sami.2014.6822397.

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Zhang, Changfu, Zhuangde Jiang, Dejiang Lu y Taian Ren. "3D MEMS Design Method via SolidWorks". En 2006 1st IEEE International Conference on Nano/Micro Engineered and Molecular Systems. IEEE, 2006. http://dx.doi.org/10.1109/nems.2006.334887.

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Shi, Congguo, Weizhen Wu, Xun Qiao y Jianshe Huang. "Secondary development of Solidworks based parts". En 2020 5th International Conference on Mechanical, Control and Computer Engineering (ICMCCE). IEEE, 2020. http://dx.doi.org/10.1109/icmcce51767.2020.00522.

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Шевцова, Н. М. "ANALYSIS WELD CONNECTION'S STREIGHT IN SOLIDWORKS". En САПР и моделирование в современной электронике. Брянский государственный технический университет, 2020. http://dx.doi.org/10.51932/9785907271739_56.

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Warrier, Preethy V. y Preetha P. K. "Electromagnetic analysis of transformer using Solidworks". En 2015 International Conference on Technological Advancements in Power and Energy (TAP Energy). IEEE, 2015. http://dx.doi.org/10.1109/tapenergy.2015.7229657.

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Gutai, Andrea, Valentina Dukić, Andraš Anderla, Srđan Sladojević y Milan Mirković. "DRAWING AUTOMATION APPROACH USING SOLIDWORKS API". En 19th International Scientific Conference on Industrial Systems. Faculty of Technical Sciences, 2023. http://dx.doi.org/10.24867/is-2023-t4.1-5_03341.

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The automation of repetitive processes included in the design phase represents an emerging trend in the CAD industry. Automation plays a crucial role in the reduction and minimization of time-consuming and error-prone tasks. In technical drawings it provides a higher level of precision by ensuring that standards and design principles are applied uniformly across all drawings. The aim of the paper is to improve the drawing process in terms of modification efficiency and quality, leading to a shortened time required to complete a design and accelerate time to market. In this paper, the automation process for creating drawings is proposed using SolidWorks API macros. In order to create standardized documentation, a macro is created in which tasks related to views, dimensions, formats, and annotations are unified and automated. With the suggested technique, new drawings can be made with minimal user input based on the CAD model.
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Zhao, Mingxia. "Tolerance optimization method based on solidworks". En 3rd International Conference on Electronic Information Engineering and Data Processing (EIEDP 2024), editado por M. A. Jabbar y Pascal Lorenz. SPIE, 2024. http://dx.doi.org/10.1117/12.3032922.

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Dukić, Valentina, Andrea Gutai, Andraš Anderla, Dušanka Dakić y Marko Arsenović. "Automatic part creation in SolidWorks using API functions". En 19th International Scientific Conference on Industrial Systems. Faculty of Technical Sciences, 2023. http://dx.doi.org/10.24867/is-2023-t4.1-7_04141.

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The SolidWorks API (Application Programming Interface) is a set of tools, functions, and interfaces that allows interaction and automation of various aspects in SolidWorks software. By leveraging the SolidWorks API it is possible to automate repetitive design tasks, integrate SolidWorks with other software systems, create custom design applications, extract data for analysis and reporting, and enhance productivity for SolidWorks users. Using macro API calls are recorded to allow multiple executions with a simplified part creation process. This paper presents the use of SolidWorks API and macros for generating part within the SolidWorks environment. With macros is possible to generate a part by providing only input dimension values. After creating the part with the use of the macro recorder, the code was edited and the code for entering the input parameters was defined.
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Zhao, Lifang y Shuguo Zhao. "Virtual design of bike based on SolidWorks". En Mechanical Engineering and Information Technology (EMEIT). IEEE, 2011. http://dx.doi.org/10.1109/emeit.2011.6022879.

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Karagulle, Hira y Levent Malgaca. "Design of medical robotic operating rooms by SolidWorks". En 2009 14th National Biomedical Engineering Meeting. IEEE, 2009. http://dx.doi.org/10.1109/biyomut.2009.5130327.

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Informes sobre el tema "SolidWorks"

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Cortés Sierra, Fabián Guillermo y Carlos Javier García Castellanos. Grupo de Estudio en SolidWorks 2023-II. Escuela Tecnológica Instituto Técnico Central, 2023. http://dx.doi.org/10.55411/2023.5.

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A partir del trabajo de investigación desarrollado en la construcción de aprendizaje significativo con los estudiantes de la asignatura de Dibujo Asistido por Computador, y los resultados obtenidos en el grupo de estudio en el semestre 2023-I, se busca profundizar en temas de diseño y fabricación con la ayuda de la herramienta CAD SolidWorks. De manera tal que permita la generación de proyectos de investigación que deriven en la generación de artículos académicos.
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