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title: 3.6 分层 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-6. 分层 | ||
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### 3-6-1. 功能描述 | ||
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主要创建分层的参考线,作为孔腔定位的参考。 | ||
适用环境:零件环境; | ||
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### 3-6-2. 功能界面 | ||
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![图片](/images/24947277.png) | ||
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### 3-6-3. 操作方法 | ||
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1、TouchMDesign > 分层,弹出对应分层界面; | ||
2、选择分层轮廓线的参考平面,如阀块的表面; | ||
![图片](/images/24947326.png) | ||
3、定义分层的层数,每层层高初始化将均匀分布; | ||
![图片](/images/24947322.png) | ||
4、修改调整各层的层高,以符合实际设计需要; | ||
![图片](/images/24947325.png) |
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title: 3.14 拉伸 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-14. 对齐 | ||
### 3-14-1. 功能描述 | ||
主要实现选择已有孔腔与其它孔腔快速对齐的功能,对齐方式有3种:水平对齐、垂直对齐和完全对齐或同心; | ||
适用环境:零件环境; | ||
### 3-14-2. 功能界面 | ||
![图片](/images/24985183.png) | ||
### 3-14-3. 操作方法 | ||
1、TouchMDesign >对齐,将弹出如图所示的界面; | ||
2、在“选择孔腔”的选择框中,选择要移动对齐的孔腔; | ||
3、在“对齐到孔腔”的选择框中,选择要对齐的参考孔腔; | ||
4、软件将根据“选择孔腔”与“对齐到孔腔”之间的空间关系,自动推荐排列方式; | ||
4.1 若两孔腔相互垂直,则只会存在一种对齐方式,水平对齐或者垂直对齐,软件将自动选择; | ||
![图片](/images/24985195.png) | ||
4.2 若两孔腔相互平行,则会存在3种对齐方式,水平对齐、垂直对齐和完全对齐,软件将默认选择完全对齐(同心)的方式; | ||
![图片](/images/24985202.png) | ||
5、对齐后连接孔腔,若勾选,则对齐后将自动拉伸“选择孔腔”的深度至“对齐到孔腔”的中心处,若未勾选,则仅将“选择孔腔”移动至“对齐到孔腔”的对齐位置,不改变“选择孔腔”的深度。 |
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title: 2. 基础知识 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Markdown | ||
--- | ||
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# 2. 基础知识 | ||
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## 孔腔的定义 | ||
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title: 3.4 插入多孔 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Markdown | ||
--- | ||
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## 3-4. 插入多孔 | ||
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### 3-4-1. 功能描述 | ||
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title: 3.3 插入孔腔 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Markdown | ||
--- | ||
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## 3-3. 插入单孔 | ||
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### 3-3-1. 功能描述 | ||
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--- | ||
icon: lock | ||
title: 孔腔库 | ||
order: 3 | ||
title: 4. 孔腔库 | ||
category: | ||
- Help | ||
tag: | ||
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--- | ||
title: 3.10 间隙检查 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-21. 间隙检查 | ||
### 3-21-1. 功能描述 | ||
主要实现检查阀块中所有孔腔之间的间隙,并显示出不符合最小间隙值的位置; | ||
适用环境:零件环境; | ||
### 3-21-2. 功能界面 | ||
![图片](/images/24986242.png) | ||
### 3-21-3. 操作方法 | ||
1、TouchMDesign >间隙检查,将弹出如图所示的界面; | ||
2、在“最小间隙”栏中,设置最小间隙值; | ||
备注:默认的最小间隙值,可在“设置”>“通用”页中预定义; | ||
![图片](/images/28651626.png) | ||
3、单击“检查”命令,软件将自动检查所有孔腔之间的距离,并将小于最小间隙值的结果列出来; | ||
4、从结果列表中,可查看孔腔间的最小间隙值,也可从视图区域查看最小间隙的位置; | ||
![图片](/images/28651636.png) |
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title: 3.20 测量间隙 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-20. 测量间隙 | ||
### 3-20-1. 功能描述 | ||
主要实现快速测量两个孔腔直接的最小间隙值; | ||
适用环境:零件环境; | ||
### 3-20-2. 功能界面 | ||
![图片](/images/24986065.png) | ||
### 3-20-3. 操作方法 | ||
1、TouchMDesign >测量间隙,将弹出如图所示的界面; | ||
2、在“选择孔腔”的选择框中,选择要测量的两个孔腔; | ||
3、在“结果”栏中将显示最小距离值,且在模型视图区域也会标记出最小距离的位置和值; | ||
**Tips:可连续选择测量,操作同SW自身的测量功能。** |
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title: 3.18 连接孔腔 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-18. 连接孔腔 | ||
### 3-18-1. 功能描述 | ||
主要实现快速所选孔腔移动后连接到另一个孔腔,包括终端到终端、终端到端口中心; | ||
**备注:连接孔腔功能中,选择孔腔的位置和底孔深度都会自动调整,连接到孔腔的位置和深度都不变** | ||
适用环境:零件环境; | ||
### 3-18-2. 功能界面 | ||
![图片](/images/28651357.png) | ||
### 3-18-3. 操作方法 | ||
1、TouchMDesign >连接孔腔,将弹出如图所示的界面; | ||
2、在“选择孔腔”的选择框中,选择要连接的孔腔; | ||
![图片](/images/28651395.png) | ||
3、在“连接到孔腔”的选择框中,选择要被连接的孔腔; | ||
![图片](/images/28651391.png) | ||
4、在“选择端口”中,选择被连接孔腔的端口号,默认端口号为1或-1,对应“连接到孔腔”的底孔末端处,若选择了非1或-1,则将连接到孔腔对应端口的中心处(非末端处); | ||
4.1 选择端口1或-1,将移动“选择孔腔”至“连接到孔腔”的底孔末端处,并可以设置孔腔的“连接方式”以及“对齐方式”; | ||
![图片](/images/28651423.png) | ||
4.2 选择端口非1或-1,如2,将移动“选择孔腔”至“连接到孔腔”所选端口区域的中心处,并仅可设置孔腔的“对齐方式”; | ||
![图片](/images/28651439.png) | ||
5、连接方式的选择有3种: | ||
5.1 “选择孔腔”末端过“连接到孔腔”,且至直径轮廓线处; | ||
5.2 选择孔腔”与“连接到孔腔”末端正交,分别至各自中心处; | ||
5.3 “连接到孔腔”末端过“选择孔腔”,且至直径轮廓线处; | ||
![图片](/images/24986045.png) | ||
6、对齐方式的选择有2种: | ||
6.1 选择孔腔”与“连接到孔腔”的中心轴对齐; | ||
6.2 选择孔腔”相对“连接到孔腔”的中心轴偏移一定距离,默认偏移距离为“连接到孔腔”所选端口的半径值; | ||
可直接设置“中心偏移距离”值,可单击换向按钮,切换中心偏移的方向; | ||
![图片](/images/24986055.png) |
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title: 3.22 连通性检查 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-22. 连通性检查 | ||
### 3-22-1. 功能描述 | ||
主要实现检查阀块中所有孔腔之间的连通性,可检查出相互连通的油道,也可检查出未连通的端口和孔腔,并且可以直接定义连通孔腔的通道颜色; | ||
适用环境:零件环境; | ||
### 3-22-2. 功能界面 | ||
![图片](/images/28651663.png) | ||
### 3-22-3. 操作方法 | ||
1、TouchMDesign >连通性检查,将弹出如图所示的界面; | ||
2、单击“检查”命令,软件将自动检查所有孔腔的连通性,以及未连通的端口和孔腔; | ||
3、在“通道”栏中,将显示所有相互连通的端口通道 | ||
备注:端口通道——指孔腔端口相互连通的; | ||
4、选择“端口通道”节点后,模型视图区将高亮显示所选通道 | ||
5、可以单击通道后面的“颜色”定义按钮,将弹出颜色定义界面,选择颜色后,模型视图中对应的通道将被定义上对应的颜色; | ||
备注:端口可用颜色的默认设置,在“设置”>“通道颜色"页定义默认的可选颜色。 | ||
![图片](/images/28651690.png) | ||
6、可单击通道后面的“X”(取消),可以清除所选通道的颜色; | ||
7、在“未连通端口”栏,查看是否存在未连通的孔腔端口; | ||
![图片](/images/28651698.png) | ||
8、在“未连通孔腔”栏,查看是否存在未连通的孔腔,若无需该孔腔,则可压缩该孔腔; | ||
![图片](/images/28651701.png) |
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title: 3.19 交互拉伸 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-19. 交互拉伸 | ||
### 3-19-1. 功能描述 | ||
主要实现所选两个孔腔相互参考,底孔深度拉伸至各自的中心轴位置; | ||
适用环境:零件环境; | ||
**备注:交互拉伸功能中,所选两个孔腔的位置都不变,仅深度相互参考到孔腔中心** | ||
### 3-19-2. 功能界面 | ||
![图片](/images/28651535.png) | ||
### 3-19-3. 操作方法 | ||
1、TouchMDesign >交互拉伸,将弹出如图所示的界面; | ||
2、在“选择孔腔1”的选择框中,选择要连接的孔腔; | ||
3、在“选择孔腔2”的选择框中,选择要连接的孔腔; | ||
4、连接方式的选择有3种: | ||
4.1 “选择孔腔”末端过“连接到孔腔”,且至直径轮廓线处; | ||
4.2 选择孔腔”与“连接到孔腔”末端正交,分别至各自中心处; | ||
4.3 “连接到孔腔”末端过“选择孔腔”,且至直径轮廓线处; | ||
![图片](/images/24986045.png) |
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title: 3.17 删除孔腔 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-17. 删除孔腔 | ||
### 3-17-1. 功能描述 | ||
主要针对自定义孔腔特征的删除功能; | ||
适用环境:零件环境; | ||
### 3-17-2. 功能界面 | ||
![图片](/images/24985861.png) | ||
![图片](/images/24985862.png) | ||
### 3-17-3. 操作方法 | ||
**删除孔腔,有两种操作方式:** | ||
1、TouchMDesign >单击“删除孔腔”命令后,在“选择孔腔”的选择框中,选择要被删除的孔腔,可多选; | ||
也可以先选择要被删除的孔腔后,单击“删除孔腔”命令; | ||
![图片](/images/24985866.png) | ||
2、在模型视图区域,选择要被删除的孔腔特征,可在SW关联工具栏的快速菜单中选择“删除孔腔”命令; | ||
![图片](/images/24985888.png) |
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title: 3.23 发布 | ||
icon: markdown | ||
category: | ||
- Help | ||
tag: | ||
- Help | ||
--- | ||
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## 3-23. 发布 | ||
### 3-23-1. 功能描述 | ||
主要实现阀块零件或装配体外发时,将自动隐藏内部油道的功能。 | ||
适用环境:零件环境、装配体环境; | ||
### 3-23-2. 功能界面 | ||
![图片](/images/25007943.png) | ||
![图片](/images/25007974.png) | ||
### 3-23-3. 操作方法 | ||
1、TouchMDesign >发布,弹出如图所示界面; | ||
2、设置阀块体的缩小量,即填充体偏移距离 | ||
备注:默认的缩小量,可在“设置”>“通用”页中预定义; | ||
![图片](/images/25008009.png) | ||
3、根据需要勾选“预览”,若勾选,则在模型视图区域可以显示填充体的大小; | ||
4、单击“确定”后,软件将自动填充内部油道,并输出一个零件文件; | ||
![图片](/images/25008060.png) | ||
![图片](/images/25008050.png) |
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