Show Raw Data
{
"title": {
"name": "Main headline (H1)",
"type": "text",
"value": "6) Concrete-Damage-Plasticity (CDP)"
},
"preview_image": {
"name": "Preview image",
"type": "asset",
"value": []
},
"post_date": {
"name": "Post date",
"type": "date_time",
"value": null,
"displayTimeZone": "Europe/Prague"
},
"perex_content": {
"name": "Lead paragraph",
"type": "text",
"value": ""
},
"content": {
"images": [
{
"description": null,
"imageId": "73d3cf14-158d-4730-970d-dab692bcbe55",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/ce5d3295-ac83-44c6-b88a-818b0d104543/40.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "50a71029-9570-4c9b-bf26-cd689bdc0354",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/d65eb1d5-df9a-4483-9a18-8f4d62d82d86/37.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "ac396d36-fc3c-4f91-a637-ea762da60e49",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/2b86cada-607d-4a5c-bdec-9fccab53fb20/41.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "aa5536bc-b750-4205-8023-31924068e961",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/442c7985-6454-4fbb-9d44-279bb84e8a7c/47.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "b1cb32c0-190e-44ee-9e21-dd6df150b309",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/c2cabeea-9ba3-43a5-93bc-79a12cf06042/42.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "dd4a36ce-2d66-4f02-be2f-dd4389924a9c",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/26ccedc1-8bcd-40f5-b759-6a7fed6549fb/43.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "a71f090f-b25b-49bb-a2d7-489ea1e8afd4",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/0b431d1a-592a-4fee-a204-2098a1f19499/44.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "9a46bb87-ffcf-4b79-92b6-59638be773b9",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/f296848f-47d7-4bc6-b078-2e7a1db818eb/45.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "e57976ff-60d2-4653-99b8-7b2ce3286501",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/82042850-c4a4-4c23-8a3b-1f90e72fb0c1/50.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "6b368948-5b6c-4240-8fd9-f05f1f668edb",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/0e214c24-e4dc-40f7-a6a7-708059187fbc/51.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "ba6700ab-c1ce-407e-8387-df1cb76e9d51",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/bc2df111-fa00-4ff6-89c3-17b18e242629/52.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "f2824406-5362-4b73-81a9-7eb5f5434a11",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/da0a2a19-f16c-442a-839c-fbd53b5c97b6/53.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "4c76b980-ef91-4342-bfd8-9a3a436d8067",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/6def03a1-bef4-481e-b3d0-a20037f599b2/54.png",
"height": 2000,
"width": 2000
},
{
"description": null,
"imageId": "7ccde9be-e903-4cf7-8333-655852612ce9",
"url": "https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/65c01b80-ed77-4c5d-87a5-9bfab464ef34/55.png",
"height": 2000,
"width": 2000
}
],
"linkedItemCodenames": [],
"linkedItems": [],
"links": [],
"name": "Content",
"type": "rich_text",
"value": "<p>The theory used in the nonlinear solution is called CDP and is outlined in the <a href=\"https://classes.engineering.wustl.edu/2009/spring/mase5513/abaqus/docs/v6.6/books/usb/default.htm?startat=pt05ch18s05abm36.html\">theoretical background</a> [4]. The material model is a part of the ABAQUS library for concrete simulation.</p>\n<p>The simulation was terminated when the model reached its maximum bearing capacity, subsequently transitioning to the plastic state and the post-critical state, as observed on the load-deformation curve. No predefined stop criteria were applied in this case, as in CSFM.</p>\n<p> <strong>Assumptions and attributes of the model: </strong></p>\n<ul>\n <li>Utilizes concepts of isotropic damaged elasticity in conjunction with isotropic tensile and compressive plasticity to characterize the inelastic behavior of concrete.</li>\n <li>It is designed for applications in which concrete is subjected to monotonic, cyclic, and/or dynamic loading under low confining pressures.</li>\n <li>Consists of the combination of non-associated multi-hardening plasticity and scalar (isotropic) damaged elasticity to accurately describe the irreversible damage that occur during the fracturing process.</li>\n <li>Compression softening and tension stiffening are employed under assumptions of perfect bonding for reinforcement bars modeled independently. </li>\n <li>Total number of nodes 46,003</li>\n <li>Total number of elements 37,892\n <ul>\n <li>27,600 linear hexahedral element C3D8 - full integration, element deletion-on</li>\n <li>10,192 linear line elements T3D2</li>\n <li>Mesh size - 50 mm on the concrete and reinforcements</li>\n </ul>\n </li>\n <li>The interlayer between compression-only constraints representing soil and concrete footing strip provides information about the contact status and contact stress.</li>\n <li>A thin layer of 10 mm with modulus elasticity 1,000 MPa to emulate an interlayer for the results outputs from soil pressure.</li>\n</ul>\n<figure data-asset-id=\"73d3cf14-158d-4730-970d-dab692bcbe55\" data-image-id=\"73d3cf14-158d-4730-970d-dab692bcbe55\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/ce5d3295-ac83-44c6-b88a-818b0d104543/40.png\" data-asset-id=\"73d3cf14-158d-4730-970d-dab692bcbe55\" data-image-id=\"73d3cf14-158d-4730-970d-dab692bcbe55\" alt=\"\"></figure>\n<p><em>34) Mode + reinforcements, mesh</em></p>\n<h3>Material models for Concrete-Damage-Plasticity</h3>\n<p>The evolution of the material model under <strong>compression exhibits softening after reaching 20 MPa</strong>, while in tension, it exhibits a value of 0.2 MPa, which approximately simulates zero tensile strength. This precise zero value results in the model diverging. </p>\n<figure data-asset-id=\"50a71029-9570-4c9b-bf26-cd689bdc0354\" data-image-id=\"50a71029-9570-4c9b-bf26-cd689bdc0354\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/d65eb1d5-df9a-4483-9a18-8f4d62d82d86/37.png\" data-asset-id=\"50a71029-9570-4c9b-bf26-cd689bdc0354\" data-image-id=\"50a71029-9570-4c9b-bf26-cd689bdc0354\" alt=\"\"></figure>\n<p><em>35) Material models for concrete in compression, tension, and reinforcement</em></p>\n<h3>Concrete-Damage-Plasticity - Low-Stiffness-Soil (LSS)(GMNA)</h3>\n<p>The ultimate loading force imparted to the model is -2,029 kN. <strong>The minimum (compressive) strain observed is -0.04</strong>, located at the intersection of the column and footing. Conversely, <strong>the maximum (tensile) strain is identified on the bottom face of the footing, measuring 0.105</strong>. <strong>Excessive compressive strains </strong>have been assessed as the primary failure mechanism, characterized by <strong>concrete crushing</strong>.</p>\n<figure data-asset-id=\"ac396d36-fc3c-4f91-a637-ea762da60e49\" data-image-id=\"ac396d36-fc3c-4f91-a637-ea762da60e49\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/2b86cada-607d-4a5c-bdec-9fccab53fb20/41.png\" data-asset-id=\"ac396d36-fc3c-4f91-a637-ea762da60e49\" data-image-id=\"ac396d36-fc3c-4f91-a637-ea762da60e49\" alt=\"\"></figure>\n<p><em>36) Maximum applied force, Minimum principal stress</em></p>\n<figure data-asset-id=\"aa5536bc-b750-4205-8023-31924068e961\" data-image-id=\"aa5536bc-b750-4205-8023-31924068e961\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/442c7985-6454-4fbb-9d44-279bb84e8a7c/47.png\" data-asset-id=\"aa5536bc-b750-4205-8023-31924068e961\" data-image-id=\"aa5536bc-b750-4205-8023-31924068e961\" alt=\"\"></figure>\n<p><em>37) Minimum plastic strain, Maximum plastic strain</em></p>\n<figure data-asset-id=\"b1cb32c0-190e-44ee-9e21-dd6df150b309\" data-image-id=\"b1cb32c0-190e-44ee-9e21-dd6df150b309\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/c2cabeea-9ba3-43a5-93bc-79a12cf06042/42.png\" data-asset-id=\"b1cb32c0-190e-44ee-9e21-dd6df150b309\" data-image-id=\"b1cb32c0-190e-44ee-9e21-dd6df150b309\" alt=\"\"></figure>\n<p><em>38) Damage in tension, Damage in compression</em></p>\n<p>Regarding the reinforcement capacity, the analysis has been terminated at a <strong>plastic strain of 6% on the rebars, corresponding to a Von-Mises stress of 439 MPa</strong>. The longitudinal bars, transverse horizontal stirrups, and shear legs of the stirrups are utilized within the hardening plastic branch of the diagram. A simultaneous failure of both longitudinal and shear reinforcement is observed. <strong>This interaction results in a combined failure mechanism, where the longitudinal bars experience bending, the stirrups undergo tension due to transverse bending, and the vertical legs of the stirrups, subjected to shear forces within the concrete, experience axial tensile rupture.</strong></p>\n<figure data-asset-id=\"dd4a36ce-2d66-4f02-be2f-dd4389924a9c\" data-image-id=\"dd4a36ce-2d66-4f02-be2f-dd4389924a9c\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/26ccedc1-8bcd-40f5-b759-6a7fed6549fb/43.png\" data-asset-id=\"dd4a36ce-2d66-4f02-be2f-dd4389924a9c\" data-image-id=\"dd4a36ce-2d66-4f02-be2f-dd4389924a9c\" alt=\"\"></figure>\n<p><em>39)Stress in reinforcements</em></p>\n<figure data-asset-id=\"a71f090f-b25b-49bb-a2d7-489ea1e8afd4\" data-image-id=\"a71f090f-b25b-49bb-a2d7-489ea1e8afd4\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/0b431d1a-592a-4fee-a204-2098a1f19499/44.png\" data-asset-id=\"a71f090f-b25b-49bb-a2d7-489ea1e8afd4\" data-image-id=\"a71f090f-b25b-49bb-a2d7-489ea1e8afd4\" alt=\"\"></figure>\n<p><em>40)Nonlinear deflections</em></p>\n<figure data-asset-id=\"9a46bb87-ffcf-4b79-92b6-59638be773b9\" data-image-id=\"9a46bb87-ffcf-4b79-92b6-59638be773b9\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/f296848f-47d7-4bc6-b078-2e7a1db818eb/45.png\" data-asset-id=\"9a46bb87-ffcf-4b79-92b6-59638be773b9\" data-image-id=\"9a46bb87-ffcf-4b79-92b6-59638be773b9\" alt=\"\"></figure>\n<p><em>41)Contact area and contact stress</em></p>\n<h3>Concrete-Damage-Plasticity – High-Stiffness-Soil (HSS)(GMNA)</h3>\n<p>The ultimate loading force exerted on the model has been documented at -4,181 kN. <strong>The minimum (compressive) strain observed is -0.0175</strong>, which represents approximately a 56% reduction compared to the values recorded in LSS. A noteworthy change is identified in the location of this strain, shifting to the bottom face of the footing rather than the interface between the column and footing. This shift is primarily attributed to the predominance of vertical stress, which resulted in the peak strain relocating. Concurrently, <strong>the maximum (tensile) strain is observed on the bottom face of the footing, measuring 0.0451</strong>.</p>\n<p>The reduction in strain values can be attributed to the increased stiffness of the soil, confinement phenomena, and reduced deformation relative to LSS. Furthermore, the confined stress within the <strong>concrete reaches a value of -166 MPa</strong>. <strong>The confined strain highlights the post-critical behavior of concrete, including compression softening and concrete crushing</strong>.</p>\n<figure data-asset-id=\"e57976ff-60d2-4653-99b8-7b2ce3286501\" data-image-id=\"e57976ff-60d2-4653-99b8-7b2ce3286501\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/82042850-c4a4-4c23-8a3b-1f90e72fb0c1/50.png\" data-asset-id=\"e57976ff-60d2-4653-99b8-7b2ce3286501\" data-image-id=\"e57976ff-60d2-4653-99b8-7b2ce3286501\" alt=\"\"></figure>\n<p><em>42) Maximum applied force, Minimum principal stress</em></p>\n<figure data-asset-id=\"6b368948-5b6c-4240-8fd9-f05f1f668edb\" data-image-id=\"6b368948-5b6c-4240-8fd9-f05f1f668edb\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/0e214c24-e4dc-40f7-a6a7-708059187fbc/51.png\" data-asset-id=\"6b368948-5b6c-4240-8fd9-f05f1f668edb\" data-image-id=\"6b368948-5b6c-4240-8fd9-f05f1f668edb\" alt=\"\"></figure>\n<p><em>43) Minimum plastic strain, Maximum plastic strain</em></p>\n<figure data-asset-id=\"ba6700ab-c1ce-407e-8387-df1cb76e9d51\" data-image-id=\"ba6700ab-c1ce-407e-8387-df1cb76e9d51\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/bc2df111-fa00-4ff6-89c3-17b18e242629/52.png\" data-asset-id=\"ba6700ab-c1ce-407e-8387-df1cb76e9d51\" data-image-id=\"ba6700ab-c1ce-407e-8387-df1cb76e9d51\" alt=\"\"></figure>\n<p><em>44) Damage in tension, Damage in compression</em></p>\n<p><strong>The concentration of stress is predominantly centralized beneath the column area</strong>, resulting in elevated <strong>contact stress 3.41 MPa</strong> and a <strong>significant gradient of shear</strong>. This condition increases the likelihood of punching shear failure. <strong>The longitudinal reinforcement bars and stirrups play a pivotal role in accommodating plastic behavior</strong>. The localized stress induces yielding in the immediate vicinity of the column area on the footing strip. <strong>The tensile forces in the reinforcement bars, arising from the bending of the footing in both directions, combined with the shear force traction captured by the vertical legs of the stirrups, contribute to the manifestation of plasticity</strong>. The primary mode of failure is characterized by tension-induced stress along the reinforcement bars.</p>\n<figure data-asset-id=\"f2824406-5362-4b73-81a9-7eb5f5434a11\" data-image-id=\"f2824406-5362-4b73-81a9-7eb5f5434a11\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/da0a2a19-f16c-442a-839c-fbd53b5c97b6/53.png\" data-asset-id=\"f2824406-5362-4b73-81a9-7eb5f5434a11\" data-image-id=\"f2824406-5362-4b73-81a9-7eb5f5434a11\" alt=\"\"></figure>\n<p><em>45)Stress in reinforcements</em></p>\n<figure data-asset-id=\"4c76b980-ef91-4342-bfd8-9a3a436d8067\" data-image-id=\"4c76b980-ef91-4342-bfd8-9a3a436d8067\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/6def03a1-bef4-481e-b3d0-a20037f599b2/54.png\" data-asset-id=\"4c76b980-ef91-4342-bfd8-9a3a436d8067\" data-image-id=\"4c76b980-ef91-4342-bfd8-9a3a436d8067\" alt=\"\"></figure>\n<p><em>46) Nonlinear deflections</em></p>\n<figure data-asset-id=\"7ccde9be-e903-4cf7-8333-655852612ce9\" data-image-id=\"7ccde9be-e903-4cf7-8333-655852612ce9\"><img src=\"https://assets-us-01.kc-usercontent.com:443/28eac049-c8ed-00e2-220c-12142a968dff/65c01b80-ed77-4c5d-87a5-9bfab464ef34/55.png\" data-asset-id=\"7ccde9be-e903-4cf7-8333-655852612ce9\" data-image-id=\"7ccde9be-e903-4cf7-8333-655852612ce9\" alt=\"\"></figure>\n<p><em>47) Contact area and contact stress</em></p>"
},
"regions": {
"name": "Region",
"type": "taxonomy",
"value": [
{
"name": "EMEA",
"codename": "emea"
},
{
"name": "APAC",
"codename": "apac"
}
],
"taxonomyGroup": "region"
},
"product_groups": {
"name": "Product group",
"type": "taxonomy",
"value": [
{
"name": "Concrete",
"codename": "concrete"
},
{
"name": "Reinforced concrete",
"codename": "reinforced_concrete"
}
],
"taxonomyGroup": "product_group"
},
"support_center_article_types": {
"name": "Support center article",
"type": "taxonomy",
"value": [
{
"name": "Verifications",
"codename": "verification_example"
}
],
"taxonomyGroup": "support_center_article"
},
"expertise_levels": {
"name": "Expertise level",
"type": "taxonomy",
"value": [
{
"name": "Beginner",
"codename": "beginner"
},
{
"name": "Intermediate",
"codename": "intermediate"
},
{
"name": "Expert",
"codename": "expert"
}
],
"taxonomyGroup": "expertise_level"
},
"labels": {
"name": "Labels",
"type": "taxonomy",
"value": [
{
"name": "Detail 2D",
"codename": "detail"
},
{
"name": "Detail 3D",
"codename": "detail_3d"
},
{
"name": "EN (Eurocode)",
"codename": "eurocode"
},
{
"name": "CSFM",
"codename": "csfm"
}
],
"taxonomyGroup": "labels"
},
"linked_items": {
"name": "Linked items",
"type": "modular_content",
"value": [],
"linkedItems": []
},
"attachments__files": {
"name": "Attachments",
"type": "asset",
"value": []
},
"content_priority__value": {
"name": "Content priority value",
"type": "number",
"value": null
},
"options": {
"name": "Options",
"type": "multiple_choice",
"value": []
},
"url_slug": {
"name": "Url slug",
"type": "url_slug",
"value": "6)Concrete-Damage-Plasticity (CDP)"
},
"unique_url_slug": {
"name": "Unique URL slug",
"type": "custom",
"value": "[\"6-Concrete-Damage-Plasticity--CDP-\",\"[autogenerated]\"]"
},
"content_settings__sitemap": {
"name": "Show in sitemap",
"type": "multiple_choice",
"value": []
},
"content_settings__robots": {
"name": "Search engine indexing",
"type": "multiple_choice",
"value": []
},
"content_settings__is_hidden": {
"name": "Hidden nested content",
"type": "multiple_choice",
"value": [
{
"name": "yes",
"codename": "yes"
}
]
},
"metadata__page_title": {
"name": "Page title",
"type": "text",
"value": ""
},
"metadata__page_description": {
"name": "Page description",
"type": "text",
"value": ""
},
"metadata__page_keywords": {
"name": "Page keywords",
"type": "text",
"value": ""
},
"metadata__canonical_url": {
"name": "Canonical URL",
"type": "text",
"value": ""
},
"metadata__og_title": {
"name": "OG:title",
"type": "text",
"value": ""
},
"metadata__og_description": {
"name": "OG:description",
"type": "text",
"value": ""
},
"metadata__og_image": {
"name": "OG:image",
"type": "asset",
"value": []
},
"translation__translation_connector": {
"name": "Translation Connector",
"type": "taxonomy",
"value": [],
"taxonomyGroup": "languages"
},
"translation__force_translation": {
"name": "Force translation",
"type": "multiple_choice",
"value": []
},
"translation__last_translation": {
"images": [],
"linkedItemCodenames": [],
"linkedItems": [],
"links": [],
"name": "Last translation",
"type": "rich_text",
"value": "<p><br></p>"
},
"translation__ai_translated": {
"name": "AI translated",
"type": "multiple_choice",
"value": []
},
"page_tree_settings__page_label": {
"name": "Page label",
"type": "text",
"value": ""
},
"page_tree_settings__path_segment": {
"name": "Path segment",
"type": "text",
"value": ""
},
"page_tree_settings__breadcrumb_style": {
"name": "Breadcrumb style",
"type": "multiple_choice",
"value": []
},
"page_tree_settings__hide_in_breadcrumbs": {
"name": "Hide in breadcrumbs",
"type": "multiple_choice",
"value": []
}
}