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What are types of lines in engineering drawing?

In engineering drawing, there are several types of lines used to convey different information. Some common types of lines include object lines, which represent the visible edges and outlines of an object; hidden lines, which show edges that are not visible from a certain viewpoint; center lines, used to indicate the center of a cylindrical or symmetrical object; and dimension lines, which show the measurements of an object. Each type of line serves a specific purpose in communicating the design and specifications of an engineering drawing.


What is the Meaning of visible and invisible lines?

Visible lines are lines that are drawn in a technical drawing to represent the edges or outlines of an object that can be seen in the finished product. Invisible lines, on the other hand, are used to represent features that are hidden from view or are behind other objects in the drawing.


What is the function of visible lines?

Visible lines in a drawing or design indicate the edges or boundaries of an object or shape. They help to define the form, structure, and dimensions of an object, making it easier to understand and interpret the visual information presented.


What type of lines can be used in a drawing to show that part of an object has been removed?

In a drawing, dashed or dotted lines are commonly used to indicate that part of an object has been removed or is not visible. These lines suggest a break in continuity, helping viewers understand the object's form despite the missing section. Additionally, phantom lines, which are also dashed but typically more distinct, can be employed for this purpose in technical drawings.


What are alphabet lines?

The "Alphabet of Lines" refers to the different styles of lines used in drafting such as to show different features about an object that is drawn: hidden. construction, cutting-plane, visible (object), dimension, extention, phantom, center, section, and border.AnswerIn Drafting, or Computer Aided Drafting (CAD) -- the alphabet of lines are the different lines that draftsmen, architects, engineers, et al use when constructing a drawing. For example, a thick solid line is called an object line and represents the outline of a part on a drawing. A dash line represents an edge that is not visible in a particular view, hence it is called a hidden line.Other common lines used in drafting include dimension lines, extension lines, construction lines, border lines, center lines, among many others depending on the type of drawing.


Where are lines visible?

visible lines are the part of clipping of object in computer graphics. if you find out the line in the figure area then this line is said to be visible line


What are sub titles and break Lines as well as Lines representing Cutting Planes mean in graphics?

these lines represent that the drawing is too large for he required space so the lines help the spectator to understand that the drawing is too big.


What is the definition for a visible line?

lines used to indicate all visible edges of an object


Where are visible lines used?

visible lines are the part of clipping of object in computer graphics. if you find out the line in the figure area then this line is said to be visible line


How do you make hidden lines visible in an Autodesk Inventor 2009 drawing?

u suk a dik


What are object lines used to identify?

Different thickness of lines denotes different things. Object lines are a specifice thickness (in relation to other lines on the same drawing) to visually identify 'objects'. Dimension lines are usually thinner, so as not to get confused with the lines that identify the object in question.


Why is it important to layout a multi view sketch with points and construction lines before drawing object lines?

Laying out a multi-view sketch with points and construction lines is crucial because it establishes a clear framework for the drawing, ensuring proper alignment and proportion of the object being represented. Construction lines help visualize relationships and dimensions between different views, reducing errors in the final object lines. This systematic approach enhances accuracy and facilitates easier adjustments, leading to a more precise and effective technical drawing.