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Calibre RAG MCP Server

by ispyridis
chunk_683.json1.45 kB
{ "id": "chunk_683", "text": "Ll4 = 7,68 + 2 = 9,68 kNmfm \nModule d'Young du beton de predalle: E\n1 \n= 11 000 V3f5 = 34 180 MPa \nModule \nd'Young du beton CSP: Ez = 11 000 Vf5 = 32 164 MPa \nCoefficients \nd'equivalence: n\n1 \n= 5,851 et llz = 6,218 \nFibre neutre \nx = 1acirte de )'equation: 0,5 b xi + n\n1 \nAs (dt -x\n1\n) \n= 0 \nx\n2 \n+ 0,0068519 x\n1\n-\n0,0004101 = 0 soitx\n1 \n= 0,017144 m \n~oment d'irtertie: It = b xf 13 + nl As (dl -Xt)\n2 \n= 7,9774 10-\n6 \nm\n4 \ncr' bt = M' \n1 \nx\n1\n1 1\n1 \n= 20,80 MPa > 0,6 fc\n28 \n= 17 MPa \ncr'st = n\n1 \nM' \n1 \n(d\n1 \n-\nx\n1\n) \nI 1\n1 \n= 304,29 MPa \nRemarques \nI La contrainte du beton n'etant pas verifiee, on peut, soit augmenter Ia section d'acier, il \nf~udra alors 8,75 cm\n2 \nd'acier, soit augmenter Ia resistance du beton de la predall~, it faudra \nalors avoirfc\n28 \n= 35 MPa, ce qui donnera cr'bt = 21,21 MPa = 0,6fc\n28 \n= 21 MPa a 1 %pres. \n2. Le BAEL admet de prendre un coefficient d'equivalence n = 15. On trouve alors pour \nfc\n28 \n= 30 MPa etAs = 5,86 cm\n2\n, les contraintes. \nsuiva?tes : . , . .", "metadata": { "book_id": 34848, "title": "BASIC-STRUCTURAL-Henry-Thonier-Tome-2", "authors": "Unknown", "project": "basic_structural", "content_source": "ocr", "content_length": 756676, "chunk_index": 683, "line_start": 24094, "line_end": 24163, "has_formulas": false, "has_tables": false } }

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