Math & Numbers
由拉伸试验数据计算工程抗拉强度 σ_uts = F_max/A₀、屈服强度 σ_y = F_y/A₀(可选)及屈强比 σ_y/σ_uts。力以 kN、面积以 mm² 输入,应力直接得 MPa。A₀ 为原始截面积(非颈缩处)。屈强比 <0.55 高延性、0.55–0.85 中等、>0.85 低延性。本工具只算强度值,安全系数请用 safety-factor-calculator。
用三种语言从你的代码中调用此工具。
curl -X POST 'https://api.elysiatools.com/zh/api/tools/tensile-strength-calculator' \
-H 'Content-Type: application/json' \
-d '{"area":50,"maxForce":40,"yieldForce":30,"decimalPlaces":4}'以 JSON 形式 POST 提交输入参数。文件类型参数需先单独上传。
POST https://api.elysiatools.com/zh/api/tools/tensile-strength-calculator| 参数名 | 类型 | 必填 | 说明 |
|---|---|---|---|
| area | number | 是 | Original (unstressed) cross-section area of the gauge section, in mm². Engineering convention uses A₀, not the necked area. |
| maxForce | number | 是 | Maximum force reached during the test (at onset of necking), in kN. |
| yieldForce | number | 否 | Force at the yield point, in kN. Optional — when omitted, only σ_uts is reported (yield ratio needs F_y). |
| decimalPlaces | number | 否 | — |
JSON 结果
{
"key": {...},
"metadata": {
"key": "value"
},
"error": "Error message (optional)",
"message": "Notification message (optional)"
}将此工具加入你的 Model Context Protocol 服务,让 AI 智能体可以列出并调用它。
将以下内容加入你的 MCP 客户端配置:
{
"mcpServers": {
"elysiatools-tensile-strength-calculator": {
"name": "tensile-strength-calculator",
"description": "由拉伸试验数据计算工程抗拉强度 σ_uts = F_max/A₀、屈服强度 σ_y = F_y/A₀(可选)及屈强比 σ_y/σ_uts。力以 kN、面积以 mm² 输入,应力直接得 MPa。A₀ 为原始截面积(非颈缩处)。屈强比 <0.55 高延性、0.55–0.85 中等、>0.85 低延性。本工具只算强度值,安全系数请用 safety-factor-calculator。",
"baseUrl": "https://api.elysiatools.com/mcp/sse?toolId=tensile-strength-calculator",
"command": "",
"args": [],
"env": {},
"isActive": true,
"type": "sse"
}
}
}连接到 SSE 端点后,列出已开放的工具:
{
"jsonrpc": "2.0",
"id": 1,
"method": "tools/list"
}通过工具 id 调用,参数由其参数表构建:
{
"jsonrpc": "2.0",
"id": 2,
"method": "tools/call",
"params": {
"name": "tensile-strength-calculator",
"arguments": {
"area": 50,
"maxForce": 40,
"yieldForce": 30,
"decimalPlaces": 4
}
}
}有问题或反馈?请联系 [email protected]