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Download "SolidWorks Продвинутый курс. Урок 8. Сварные конструкции в Солидворкс"

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Table of contents
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Table of contents

1:17
Добавление условных обозначений сварных соединений в сборку
5:03
Импорт условных обозначений сварки в чертеж
6:44
Использование элемента "Конструкция"
10:50
Список вырезов сварного соединения
12:37
Создание чертежа сварной конструкции
16:14
Создаем каркас рамы кабины
18:52
Добавляем угловые соединения
22:10
Создаем список вырезов сварного соединения для рамы кабины
25:14
Создаем пользовательские профили.
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Video tags

solidworks
видеоуроки solidworks
солидворкс
уроки солидворкс
solidfactory
solidworks уроки
solidworks онлайн обучение
продвинутый курс солидворкс
продвинутый курс solidworks
солид воркс видеоуроки
солид воркс
школа солидворкс
cad
solid works
обучение солидворкс
сварка в солидворкс
конструкция
сварные конструкции в солидворкс
солидворкс конструкция
список вырезов.
сварной шов солидворкс
ферма крыши
Subtitles
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Subtitles

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  • ruRussian
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00:00:03
In the last lesson, we
00:00:05
finished working with sheet
00:00:07
metal parts and today we are starting to study a new
00:00:10
topic: welded structures in solidworks, and to
00:00:13
be honest, this is probably my
00:00:15
favorite topic in modeling, and all
00:00:18
because it opens up
00:00:20
huge opportunities for users I was intrigued by the possibilities then
00:00:23
let's go
00:00:26
[music]
00:00:48
[music]
00:00:51
more
00:00:52
[music]
00:00:54
perhaps today's lesson is worth starting by
00:00:56
dividing solidworks welding into
00:00:58
two sections 1 is welding in assemblies. It is
00:01:01
from this section that we will begin the
00:01:04
study of welded elements
00:01:06
and the second section is the creation of welded
00:01:08
structures in details using the
00:01:11
command of the same name design this
00:01:13
section will be devoted to the second part of the
00:01:16
lesson, but as we agreed, let’s
00:01:18
start with welding in assemblies, the concept of the
00:01:21
method is such that we have an assembly with
00:01:24
several components that
00:01:26
need to be connected by welding,
00:01:28
look at the screen
00:01:30
in front of you, a bracket assembly consisting
00:01:33
of four parts
00:01:39
using this me
00:01:40
we do not create assembly geometry, but only
00:01:43
add a
00:01:45
component symbol which can later be
00:01:48
imported into the assembly drawing of the product
00:01:50
to add a weld,
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call the command bid assembly element weld
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in the property managers you can choose one
00:02:02
of two ways to create a weld 1
00:02:05
this weld geometry
00:02:07
in this In this case, it is necessary to select two
00:02:10
faces of the parts at the junction of which the program
00:02:12
will add a weld on the work field, a
00:02:15
preview will appear,
00:02:17
the seam will be displayed on the assembly with a pink
00:02:20
line,
00:02:21
then we indicate the size of the seam,
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its contour for this parameter
00:02:29
there are three options for choosing in this
00:02:33
case the weld will be created on one
00:02:35
side on at the junction of two selected faces,
00:02:38
both sides creates a symmetrical seam on the
00:02:41
selected and on the reverse side of the part and
00:02:44
everywhere
00:02:45
creates a seam along a closed contour,
00:02:48
let's focus on the option both sides, if
00:02:51
necessary, you can specify the parameters
00:02:53
of the offset and clay of the weld,
00:03:03
we can also enable the
00:03:04
intermittent welding parameter, in this case
00:03:07
we indicate long sections of the weld seam
00:03:09
and the gaps between them,
00:03:14
here you can also place the seam section in a
00:03:16
checkerboard pattern to add a
00:03:19
symbol to the weld,
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click the button to define a
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weld symbol in the window that appears,
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fill out the parameters by analogy with
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adding a weld joint in the
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drawing
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[music]
00:03:41
[music]
00:03:43
to add of the following welds,
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create a new welding path
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and select a new pair of faces of the assembly components;
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confirm
00:03:55
and
00:03:57
model; the seams themselves and their symbols will appear;
00:04:00
to return to
00:04:02
editing the weld,
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right-click on it and
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select the edit command;
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conditional definition
00:04:13
can be edited by double-clicking the
00:04:15
left mouse button
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second the method of creating a weld is
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called the welding path, unlike the
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previous option, you need to specify
00:04:28
not a couple of faces but the edges of the parts; its
00:04:32
advantage is that you can create a
00:04:33
weld not only for two parts,
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but since it is not tied to a
00:04:37
specific component, it is deprived of a number of
00:04:40
parameters; let
00:04:41
's add the remaining welds seams
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[music]
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[music]
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and confirm the command assembly ready
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now create a drawing from it
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[music]
00:05:10
select the A3 sheet format
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[music]
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add the main assembly view and the left view
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[music]
00:05:29
adjust the scale of the sheet
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[music]
00:05:36
now you can import welds
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call the command model elements from the
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comments tab of the command manager
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as a source, select only
00:05:47
the assembly, check that the option
00:05:50
to import elements into all views is
00:05:52
enabled and select the necessary elements
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on the notes tab,
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confirm the command,
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welds and their designations will appear in the drawing field
00:06:04
by clicking on the seam itself, you can select its
00:06:07
direction and location on the drawing
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[music] the
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symbol, if necessary,
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can be moved to another and the drawing
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[music]
00:06:48
the next one is possible
00:06:50
or two rgs are much more interesting and
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allow you not just to add a
00:06:54
symbol for welded joints, but
00:06:55
to create spatial welded
00:06:58
structures. Oddly enough, the process of their
00:07:01
creation does not take place in assembly, as
00:07:03
many might assume,
00:07:04
and in detail,
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look at the screen in front of us, a sketch of the
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roof truss, let's create a profile
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frame structure, for this we call the
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command
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welded parts structure
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in the property manager, select
00:07:23
the profile of interest, for this, first
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select the standard, let it be the
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international ISO standard,
00:07:30
then select the type profile, let it
00:07:33
be a rectangular pipe and finally
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choose the type and size of the profile,
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let it be a pipe with dimensions of 120
00:07:40
by 80 millimeters and a wall thickness of 8
00:07:43
millimeters,
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then you need to select the
00:07:47
frame guides, let's start with the outer contour
00:07:57
on the working field pride appeared about
00:08:00
it in yellow so that the ends of the profiles are
00:08:03
connected with other sections of the corpse, the
00:08:05
option to apply corner processing
00:08:08
must be turned on; in this case, you can
00:08:11
configure the method of forming corners; this is an
00:08:13
option without an open end
00:08:15
or with an open end of one of the profiles; in
00:08:19
addition, the end can have a straight cut
00:08:21
or a contour repeating profile;
00:08:24
mating parts;
00:08:25
we will choose the option with one open end
00:08:28
and straight edge, you can then specify the
00:08:31
amount of gap between the profiles;
00:08:35
leave this value equal to zero; however,
00:08:39
these settings are applied to all
00:08:41
corners of the selected elements at once; to
00:08:43
change the way a
00:08:45
specific corner is formed, click on the
00:08:47
pink mark at its top; in the
00:08:50
pop-up window, you can specify settings
00:08:52
only for the selected connection
00:08:57
analogues,
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we will specially correct the remaining angles
00:09:01
[music]
00:09:10
[music] please
00:09:18
note that
00:09:21
3 or more segments cannot intersect at a point, so
00:09:24
adding internal sections to this contour will
00:09:26
no longer be possible, but don’t
00:09:28
worry, we can create a new
00:09:30
group of segments by clicking on the button of the same name, we
00:09:34
will select the next contour profiles,
00:09:44
since at this point there are three
00:09:46
segments, then to add the remaining
00:09:48
sections of the sketch, you need to create a
00:09:50
third group, but first let’s finish
00:09:53
editing this one, rotate the profile
00:09:56
90 degrees, for this we will indicate the value of the
00:09:59
rotation angle in the property manager and
00:10:02
configure the parameters of cuts in corner
00:10:04
connections, but note that
00:10:07
now before selecting the type of angle, you
00:10:09
must also select a group of
00:10:11
segments; select group 2 and indicate the
00:10:15
values ​​of interest
00:10:18
[music]
00:10:27
create the third group of elements and
00:10:29
finish building the truss
00:10:32
[music]
00:10:46
confirm the command;
00:10:50
please note that in addition to the
00:10:51
design element itself,
00:10:53
property managers, a welded part element has appeared,
00:10:56
which determines the
00:10:58
document type its peculiarity is that
00:11:01
instead of the usual rigid bodies folder, there
00:11:03
is a folder cut out list as with
00:11:06
rigid bodies in parentheses the
00:11:09
total number of elements of the folder is displayed
00:11:11
let's open and and and see a list of all
00:11:14
elements
00:11:16
each element of the cut out list
00:11:18
corresponds to its own rigid body however
00:11:21
in fact since we are a symmetrical company
00:11:24
we have repeating elements for
00:11:27
grouping them by right-clicking
00:11:29
on the list of cuts and selecting the update command.
00:11:34
As you can see, now the same elements are
00:11:37
grouped into lists by cutting
00:11:40
in parentheses indicates the number of
00:11:42
identical elements by opening the list by
00:11:45
cutting out you can see the solid bodies included in it,
00:11:49
but what does this give us? what
00:11:51
practical benefits can be derived from this
00:11:53
and here the most
00:11:55
interesting part begins: right-click
00:11:58
on the list by cutting, do not call the properties command, a
00:12:02
pop-up window will appear with the properties of the
00:12:05
list by cutting here there is
00:12:07
information such as the length of the component, the
00:12:11
processing angles of both ends,
00:12:13
and if the end has a non-straight edge,
00:12:15
then the parameter angle will have a dash
00:12:18
instead of a value, then there is a description of the
00:12:21
profile used; we will
00:12:24
look at this parameter in more detail a little later
00:12:25
when we create our own
00:12:27
profile; material of the part; number of
00:12:31
parts of the same geometry and the total
00:12:34
length of all parts of the same profile;
00:12:37
close this window and create a new drawing;
00:12:45
select the format; drawings
00:12:47
3;
00:12:49
do not add to sheet main view of the truss
00:12:58
let's get the specification of the
00:13:00
components used
00:13:01
call the command insert table list
00:13:05
cut out the welded joint
00:13:08
indicate the type of model by which we will
00:13:10
form the table in our case this is
00:13:13
the only type
00:13:14
property managers specify the table settings
00:13:21
and click ok place the table on the drawing field
00:13:26
as you can see solidworks has generated
00:13:28
the specification blanks, however, in the
00:13:31
description and length columns there are no
00:13:34
parameter values, let's fix this by selecting the
00:13:38
description column and in the property manager
00:13:40
switching to the option of properties of
00:13:42
cut list elements and selecting the
00:13:45
value of discrimination, that is, the description, the
00:13:48
name of the column can be changed in the
00:13:50
text field below,
00:13:53
repeat the operation for the length column
00:13:58
[music]
00:14:06
then we can add custom
00:14:08
parameters for this, click on the
00:14:10
last column with the right mouse button and
00:14:13
select the command
00:14:14
rate column on the right, thus
00:14:17
adding the parameters angle one angle 2 and
00:14:21
total length
00:14:24
[music]
00:14:30
and
00:14:31
[music]
00:14:45
then we will adjust the sizes of the tables and
00:14:47
by the way, working with tables has been
00:14:50
considered in the ninth lesson of the basic
00:14:52
course using the example of a product specification,
00:14:55
since the total length parameter is the same
00:14:58
for all components of the cell, you can
00:15:00
combine all that
00:15:06
remains is to add positions to the drawing,
00:15:08
call the auto position command,
00:15:11
select the location of the callouts and the method of
00:15:14
joining
00:15:16
in the position settings, select the option of
00:15:19
underlining and tight fit,
00:15:23
select the position text drop-down menu
00:15:26
value position and confirm the command
00:15:33
the results of the position in the drawing will
00:15:35
correspond to the positions of the specification of
00:15:37
product blanks using the existing table, you
00:15:40
can purchase material as
00:15:43
well as cutting blanks for the manufacture of
00:15:46
trusses and, as in the case of
00:15:47
product specifications, the list table template
00:15:50
can be cut out by clicking
00:15:53
on the crosshair in the left in the top corner of the
00:15:55
table and select the save command,
00:15:59
indicate the path and file name and click the
00:16:02
save button
00:16:17
and now let's remember the very
00:16:19
first lesson of the advanced course, then we
00:16:22
created a three-dimensional sketch of the cabin frame,
00:16:25
I promised that we would finish building it
00:16:27
in one of the next lessons,
00:16:29
well, it seems like time came last
00:16:33
time, we stopped at the fact that we finished
00:16:35
creating a three-dimensional sketch, then
00:16:37
call up the design element,
00:16:44
select the ISO standard profile type pipe
00:16:48
size 33 7 by 4 millimeters and indicate the
00:16:53
elements of
00:16:54
one of the side posts,
00:17:02
please note that now each
00:17:04
section of the sketch
00:17:05
is regarded by the program as a separate
00:17:08
pipe segment but tangent sketch elements
00:17:11
can be combined into one segment by turning on the
00:17:13
option to
00:17:14
merge the bodies of arc segments; in this
00:17:17
case, the entire side post will consist
00:17:20
of one bent pipe; then create a
00:17:23
new group and select section 2 of the posts
00:17:33
and, by analogy, turn on the parameter
00:17:35
to combine the bodies of arc segments
00:17:38
since the horizontal crossbars have
00:17:40
different dimensions pipe profile, then they
00:17:43
need to be created as separate elements,
00:17:45
so we complete the command,
00:17:48
call the design element again,
00:17:53
now select the pipe size
00:17:55
21 and 3 by 2 point three millimeters
00:17:58
and create a new group for each of the
00:18:01
crossbars,
00:18:06
confirm the command,
00:18:09
but since the elements were created by different
00:18:11
teams, the pipes are of a smaller diameter
00:18:14
have interference with pipes of larger
00:18:16
diameter, this is corrected using the
00:18:19
bet tool,
00:18:21
welded parts, cut off, lengthen in the window,
00:18:25
cut a and the body, select the
00:18:27
horizontal crossbars
00:18:30
for the flow boundary parameter, select
00:18:33
the value of the body and indicate the side posts
00:18:35
as a flow tool in the window
00:18:38
below,
00:18:40
confirm the command,
00:18:52
then add gussets in places
00:18:54
pipe connections call the command bet
00:18:58
welded parts corner connection
00:19:01
in the window auxiliary faces indicate the
00:19:04
surfaces of the pipes on which you need to
00:19:06
add gussets
00:19:07
then select the profile type triangular
00:19:10
or pentagon according to the conditions of the task
00:19:13
select a pentagonal profile and
00:19:15
fill in its dimensions the
00:19:22
thickness parameter determines the offset of the
00:19:24
metal thickness of the gusset from the specified
00:19:26
default plane it is located
00:19:29
in the middle, but if necessary it can be
00:19:32
shifted, select the option of both sides without
00:19:35
shifting the plane and indicate the thickness of the
00:19:38
gusset at 5 millimeters,
00:19:40
confirm the command,
00:19:43
create the remaining gussets on this
00:19:46
side of the frame, the rest will be obtained by
00:19:48
creating a mirror image of solid
00:19:50
bodies
00:19:52
[music]
00:20:01
[music] there are
00:20:40
4 bases left to create for whom
00:20:42
we use a standard elongated boss for this
00:20:45
[music]
00:20:59
[music]
00:21:12
then create a new sketch and add us by
00:21:15
point
00:21:16
like this arrangement of the bases
00:21:20
[music]
00:21:24
revenge [music]
00:21:32
and call the command bet
00:21:36
array mirror array controlled and select the
00:21:43
newly created sketch as a reference sketch points of
00:21:47
the array components the body of the elongated boss
00:21:52
and confirm the command
00:21:56
3d model of the cabin frame is ready
00:22:14
now let's create a table of the list of cuts
00:22:17
to begin with, create a new
00:22:24
drawing drawing format and
00:22:29
add the main
00:22:31
no
00:22:37
top view
00:22:40
and left view to the models
00:22:44
then create a list table by cutting out the
00:22:46
welded joint
00:22:51
since we saved the tables in advance
00:22:54
we can use it, click
00:22:57
on the asterisk and select the path to the template file
00:23:01
[music]
00:23:07
confirm the command,
00:23:12
reduce the width of the description column
00:23:16
and combine the cells of the column total length
00:23:24
[music]
00:23:33
then add the positions of the parts using the
00:23:36
auto position command
00:23:37
[music]
00:23:51
note that in the table I managed to
00:23:54
match the rows non-profile
00:23:56
parts of the
00:23:57
gusset and the base of the side panels for
00:24:00
convenience, you can add a description,
00:24:03
return to the 3d model, open
00:24:09
the list of cuts and select the first folder of
00:24:11
solid bodies,
00:24:12
these are gussets measuring 50 by 50
00:24:15
millimeters, right-click on the folder
00:24:18
and select the properties command
00:24:21
from the context menu, add
00:24:23
description properties for a group of solid bodies
00:24:30
and indicate that this is
00:24:31
50 by 50 millimeters in size
00:24:37
in the left window, you can switch to the
00:24:39
remaining groups of solid bodies and, by
00:24:42
analogy, add descriptions for them
00:24:48
[music]
00:24:57
we return to the drawing,
00:25:03
we see the filled cells of the graph and
00:25:05
descriptions for positions 6 to 8
00:25:08
[music]
00:25:18
and perhaps the last thing I
00:25:20
need to fully use
00:25:21
this tool is the ability to create my
00:25:24
own profiles, let's start with the fact that the
00:25:28
path to the welded joint profile files
00:25:29
is in the parameters
00:25:33
location of the
00:25:34
welded parts profile files,
00:25:42
open this folder in
00:25:43
Windows Explorer
00:25:49
and create me a new
00:25:52
August profile for this operation
00:25:55
you will need rights administrator, already
00:25:59
inside this folder, create subcategories,
00:26:03
for example round pipes GOST 8732
00:26:07
78,
00:26:12
then in solidworks we create a new part
00:26:17
and save it as it is, this is the
00:26:24
file type lip fit pad,
00:26:27
specify the file name, for example pipe 108
00:26:31
for 4 GOST 8732 78
00:26:36
and do not forget to fill out the file description
00:26:39
exactly this information
00:26:41
they file name will be later
00:26:43
pulled by the program into the table
00:26:45
by cutting out the welded joint
00:26:47
since
00:26:50
the system will not allow saving in the folder with profiles on the
00:26:52
desktop,
00:26:55
then create a sketch of the profile
00:26:59
[music]
00:27:09
then click on the sketch with the right
00:27:11
mouse button in the design tree and select
00:27:14
the command add a library
00:27:16
next to the sketch, the
00:27:18
Latin letter l should appear,
00:27:20
everything is ready, save the changes and
00:27:22
close the template
00:27:24
[music]
00:27:27
and then you need to move the
00:27:30
file I created to the folder with GOST templates,
00:27:35
everything is ready, let’s check the result
00:27:37
[music]
00:27:49
great, the pipe template has appeared in the system
00:27:52
[music]
00:28:06
well Well, this 8th rock of the advanced
00:28:09
course has come to an end.
00:28:10
As you can see, the design tool has
00:28:14
very great capabilities and scope of
00:28:16
application, I hope you will
00:28:18
appreciate it and apply it in your
00:28:20
engineering practice, and in the next lesson
00:28:22
we will look at such a topic as advanced
00:28:26
collection modeling,
00:28:27
thank you for your attention and see you soon
00:28:33
[music]

Description:

Онлайн школа SolidWorks - https://solidfactory.ru/ Восьмой урок Продвинутого курса SolidWorks. Данный урок посвящен очень интересной теме - моделированию сварных конструкций в Солидворкс. Содержание урока: 01:17 - Добавление условных обозначений сварных соединений в сборку; 05:03 - Импорт условных обозначений сварки в чертеж; 06:44 - Использование элемента "Конструкция"; 10:50 - Список вырезов сварного соединения; 12:37 - Создание чертежа сварной конструкции; 16:14 - Создаем каркас рамы кабины; 18:52 - Добавляем угловые соединения; 22:10 - Создаем список вырезов сварного соединения для рамы кабины; 25:14 - Создаем пользовательские профили. Композиция "Pilots Of Stone" принадлежит исполнителю Audionautix. Лицензия: Creative Commons Attribution (https://creativecommons.org/licenses/by/4.0/). Исполнитель: https://audionautix.com/

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