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In this tutorial we will create this object, this object.
Let's start with this object.
At first start the sheet metal environment for that click on start,
mechanical design and generative sheet metal design.
In this part the sheet thickness is 2 mm, click on sheet metal parameters,
give the thickness of 2 and we will keep the bend radius as 4 and click on ok.
In this object at first we will create this base plate of 230 by 130.
Click on wall, then click on sketch, then select this horizontal plane,
then create one rectangle from center, click on centered rectangle,
give the center point, take your cursor away and click.
Then give the dimensions, click on constraint or double flip,
then select the line, give the position, double flip the dimension,
give the length of 230, enter, then select this line, give the position,
double flip, give the length of 130, enter, then click on exit workbench,
and ok.
Then to create this flanges of 30 length, click on wall on edge,
then give the length of 30.
Now this 30 length is from the bottom to top,
therefore we will select this option, the first option where dimensions are considered
from bottom to top.
Then select the bottom edges, then reverse the direction, click on reverse position,
then select all the bottom edges from all sides.
Now zoom on this corner, now here our material is actually going outside,
but we have created the wall with outside dimension,
therefore it is important that we keep this thickness inside,
to keep this thickness inside, click on inward material side,
so that your material will be kept inside your overall size,
then only it will come correct, then click on ok, then zoom fit,
then we will see the top view, whether it matches with our drawings or not,
click on top view, and zoom fit.
Now if we compare both the drawings,
now here holes are not shown, now in this case there are holes,
but in this drawing no holes are there, to remove these holes,
we will have to change it's extremities for that WDK on this sheet metal parameters,
and click on these bend extremities, then from here we will select this tangent option,
or you can also select this linear, and ok, now if we see here there are no holes,
some gap is still there, we will change it, this double click,
bend extremities, and from here select this closed one, so that there will not be any gap,
ok, now no gap is there, and we will check all the other parameters,
whether the part is made as per dimensions,
for that click here on major between, then select this surface,
orbit it, and select this surface, and here you can also zoom fit, fit all in,
the length is 230, and here length is 230, then width, again select this surface,
orbit, select this surface, here length is 130, it is also correct,
and thickness 2 we already have given the thickness of 2, then 30,
for that we will select this top surface, and this bottom surface, and zoom fit,
and here actually it is giving an inclined length of 30.2,
but we can see the here, z, z is vertical, z is minus 30,
that means thickness of 30 is correct, if in your case this xyz is not shown,
then you will have to click on this customize, and you will have to tick here for components 3d,
here you will have to tick, then only it will show this component in xyz direction,
okay, cancel, now this model is correct, zoom fit, then to start new model,
click on new, then select part, okay, okay, then next will be this one,
now here at first we will create base wall of 180 by 100 sides,
before that we will set this parameter, sheet metal thickness is 1.2,
and inner bend radius is 1, for that click on sheet metal parameters,
then give thickness of 1.2, and radius of 1, click on okay, then click on wall,
then click on sketch, then select this horizontal plane,
then create one rectangle from center, center rectangle,
give the center point, take your cursor of a and click,
and give the parameters, length is 180 and width is 100,
double click on constraint, select this line,
take your cursor below, click, double click, give the length of 180,
enter, select this line, click double click, length of 100, enter,
and click on exit workbench, and okay,
then next will be to create this side walls,
the length of this side wall is 50 from bottom to top,
and these walls are on 180 length, click on wall on edge,
then give length of 50, then option is correct from bottom to top,
then select this bottom edge, zoom, and select,
then reverse position, zoom minus orbit, select this bottom edge,
now again in this case we will need material inside,
if you see the side,
your material is outside, click on this inward material side,
and click on okay, zoom fit,
isometric,
then next is to create this walls of 15 length,
and there is this gap of 0.5,
again click on wall on edge, then give length of 15,
then select this bottom edge,
then reverse position, select this bottom edge,
and select this bottom edge,
then this option is correct,
height is from bottom to top,
then we need to set this gap for that click on this extremities,
and give your gap value of 0.5,
and click in other box, now this gap is applied,
click on this height and inclination,
again we need to check the material,
we will watch the top view,
now again this material is outside the length,
click on this inward material side,
so that it will be within our length,
then same is required on other side also,
we will select bottom edges on other side also,
zoom fit,
and select the bottom edges,
then it, zoom it,
and select,
then click on,
nice and metric view,
now here it is projecting outside,
it is not required,
which if we see here,
there is a small home,
for that click on the sheet metal parameter one,
click on bend extremities,
and from here,
we will select this linear,
okay,
there is small home is there,
alright,
now it will match with this one,
and next is to create this cut,
zoom fit,
to create this cut,
click on cut out,
then click on sketch,
and select the surface,
zoom it,
now here is a rectangle of 40 by 20,
and location is 30 from both the side,
create one rectangle using 2 point method,
give the first point, second point,
then double click constraint,
and specify the parameters from this line to bottom line,
is 30,
from this line to this line is also 30,
then height is 40,
and width is 20,
then there is chamfer in the corner of 5 you height,
and 2 point 5 width,
for that click on chamfer,
then we will select this option,
construction line stream,
and select this line and this line,
then we will choose this first and second length,
then press tab to specify dimensions,
then give first length will be for you,
tab second length will be 2 point for you,
enter,
yes,
same way on all the other corners,
chamfer,
this is first line,
this is second line,
then tab 2 times,
then give length of first line will be 2 point for you,
tab 1 second length for you,
enter, enter,
first line second line,
then chamfer,
then tab,
first line length will be for you,
tab 2 point 5,
enter,
then again chamfer,
select this line as a first line,
this line as a second line,
then tab 2 point for you,
tab for you, enter,
all the chamfers are created,
then click on exit workbench,
then depth of 1 point 2 is correct,
and limit up to next is correct,
click on ok,
the cut is created,
and next will be this holes,
at first we will create this hole,
and then we will array it,
now this hole is at a gap of 50 and 9,
and diameter of the hole is 4,
for that click on hole,
orbit it,
and select this surface,
then click on position sketch,
double click on constraint,
select this star,
and this bottom edge,
give the length of 9,
enter,
then select this star,
select this vertical line,
give the length of 50,
enter,
then click on exit workbench,
then give diameter of 4,
then click on blind up to next,
ok, this hole is created,
and we will pattern it,
for that at first we will select the hole,
then click on rectangular pattern,
the number of instances will be 3,
that is this one,
second and third,
and the spacing,
you are spacing between this hole and this hole will be,
actually this 50 minus this 9,
that is 41,
then for direction,
click here,
and give this line as a direction,
now I want this hole at the center,
for that click here on mover,
and give row in direction 1,
will be second,
click below,
it is at correct position,
that means second direction,
click on second direction,
the number of instances will be 2,
and the spacing,
will be 50,
minus this 10 and 9,
that is 50 minus 19,
that is 31,
give here gap of 31,
click in other box,
then for reference direction,
click here,
and select this vertical line,
then we want it in reverse direction,
then click on the holes,
we should not want,
those will be removed,
and click on,
okay, so these holes are created,
then we want the same hole on this side,
we will cut them by using these holes,
for that click on cut out,
then click on sketch,
then select this surface,
zoom fit,
then project these holes,
to project select this circle,
and click on project 3D elements,
click outside,
again select this circle,
again click on project 3D element,
click outside,
again select this circle,
click, click outside,
and click on exit workbench,
and click on okay,
this hole is also created,
click on isometric view,
then fit all in,
this object is also created,
in the next lecture,
we will learn some more sheet metal commands,
thanks for watching,
we will stop here,
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