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Download "Сварка полуавтоматом для чайников (Часть 2)"

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"videoThumbnail Сварка полуавтоматом для чайников (Часть 2)
Table of contents
|

Table of contents

0:17
Ручки регулировки
0:40
Потенциометр сварочного напряжения
0:46
Ручка регулировки силы тока/скорости подачи проволоки
1:03
Переключатель скорости подачи проволоки, положения кнопки в зависимости от диаметра сварочной проволоки
1:31
Ручка регулировки индуктивности. Изменение жёсткости дуги, формы валика и глубины провара.
2:15
Как держать горелку полуавтомата
2:27
Сварка "углом вперёд" и "углом назад"
2:54
Таблица соотношения толщины металла со сварочным напряжением и скоростью подачи.
3:01
Подготовка к сварке. Нижнее положение.
3:25
Настройка сварочного режима для металла 1.5-2мм.
3:51
Настройка скорости подачи проволоки в зависимости от сварочного напряжения
4:15
Как звучит некачественная сварка
4:40
Настройка индуктивности Overman 180
5:03
Разница настроек в зависимости от пространственного положения шва.
5:12
Вертикальный шов
5:18
Сварка "сверху-вниз" и "снизу-вверх" в зависимости от толщины заготовок
5:30
Наглядная демонстрация различия настроек в зависимости от пространственного положения шва.
5:47
Сварочные параметры Overman 180 для вертикального шва
5:59
Сварка металла 0.8 - 1.5мм. Сварка точками
6:32
Примеры настройки полуавтомата
7:03
Анонс третьей части
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Video tags
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Video tags

Welding
Сварочные уроки
Азы сварки
сварочное оборудование
сварочный аппарат
сварка
шов
аврора
аврора про
aurora
aurorapro
weld
welding
сварочный инвертор
mma
stick
сварка электродами
tig
migmag
сварочный полуавтомат
евротек
сварщик
точечная сварка
шпильки
shoot
plasma
плазма
плазменная резка
плазменная сварка
азы сварки
сварочные уроки
учебный фильм по сварке
Subtitles
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Subtitles

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  • ruRussian
Download
00:00:04
the second part of our lesson will be
00:00:07
devoted to studying the functionality of the
00:00:10
averman 180 machine, inverter settings
00:00:13
and welding of thin workpieces on the front
00:00:16
panel of the device
00:00:17
there are three adjustment knobs, this
00:00:20
feature
00:00:21
distinguishes the averman 180 from many budget
00:00:24
competitors, usually manufacturers
00:00:26
limit themselves to two adjustments of the
00:00:28
welding voltage and wire feed speed
00:00:31
on germany
00:00:33
there is also the inductance adjustment knob,
00:00:35
why we
00:00:37
will tell you a little later, using the first
00:00:40
knob, the welder can adjust the required
00:00:43
welding voltage on the averman 180, the
00:00:46
wire feed speed potentiometer
00:00:48
is indicated by the letter a, since when working
00:00:51
with a semi-automatic device, the wire feed speed
00:00:53
and the current strength are
00:00:55
two interdependent quantities and an
00:00:58
increase in the feed speed and the current
00:01:00
increases when decreasing, it
00:01:02
decreases; in addition, the wire feed speed,
00:01:05
depending on its diameter,
00:01:07
can be adjusted with a switch; this
00:01:10
feature is also Averman’s trump card,
00:01:12
and when working with wire with a
00:01:15
diameter of 0.8 millimeters, it is
00:01:18
recommended to set the toggle switch to the
00:01:20
high speed position;
00:01:22
quickly, when using wire with a
00:01:24
diameter of 1 millimeter, the button should be
00:01:26
in position low speed
00:01:28
or slow third adjustment knob
00:01:31
this is inductance, the averman machine
00:01:34
is a representative of the professional
00:01:36
line of devices and this adjustment
00:01:39
confirms its status; this
00:01:42
setting allows you to adjust the
00:01:43
rigidity of the arc and change the
00:01:46
depth of penetration and the shape of the
00:01:48
roller at your discretion; in other words, inductance
00:01:51
helps to weld a strong and beautiful seam
00:01:53
even in a kettle, when the
00:01:55
inductance decreases, the arc will be colder as a
00:01:58
result, a thin roller and deep
00:02:00
penetration; when the
00:02:02
inductance increases, the arc becomes hotter; as
00:02:06
a result, we get a wide and smooth
00:02:08
roller with
00:02:09
deep penetration; before
00:02:12
moving on to the settings, we’ll tell you how to
00:02:14
hold the torch correctly; the torch
00:02:17
must be held at an angle of
00:02:18
approximately 60 degrees to the surface of the
00:02:21
workpiece, the
00:02:22
distance from the nozzle to the weld pool is
00:02:25
seven twenty millimeters;
00:02:27
welding is done in most
00:02:29
cases at an angle forward or away from you so
00:02:32
that the edges being welded are visible,
00:02:34
but welding at an angle
00:02:37
backwards, in other words, towards yourself, is also allowed. Now
00:02:40
let’s try to set up the device in order to
00:02:43
understand the approximate the ratio of the
00:02:44
thickness of the workpiece welding voltage
00:02:47
and the wire feed speed you can
00:02:50
use the table presented,
00:03:01
turn on the machine, connect the ground cable
00:03:04
to the parts being welded or, as in our
00:03:06
case, to the welding table,
00:03:08
bite off the excess wire during the
00:03:11
welding process, before each seam you need to
00:03:13
bite off the tip of the wire on which a
00:03:16
ball is formed, this manipulation is
00:03:18
necessary since the ball
00:03:20
does not conduct current well and difficulties may arise at the beginning of a welding session,
00:03:25
consider setting the mode using the example of
00:03:27
metal one and a half to two millimeters thick;
00:03:29
before welding,
00:03:31
the parts must be cleaned of rust
00:03:33
paint and other coatings; it
00:03:36
is better to set the mode on a
00:03:38
metal workpiece of the same thickness and
00:03:40
composition as the main one metal that you do
00:03:43
n’t mind throwing away for the
00:03:45
correct positioning of the metal, we
00:03:47
use magnets, we put tacks at
00:03:50
approximately the same level and the welding voltage
00:03:52
during the welding process you will need to change the
00:03:55
wire feed speed according to your
00:03:57
own feeling, you will need to
00:04:00
achieve an acceptable balance of smooth
00:04:02
arc burning and correct formation of the
00:04:05
seam on the screen you see the seam with too
00:04:08
high, too low and normal
00:04:11
wire feed speed,
00:04:14
you can also judge the welding process by the sound of
00:04:17
welding; if you hear a distinct click,
00:04:20
then you either set the
00:04:23
welding voltage too high or the
00:04:25
wire feed speed is not sufficient;
00:04:28
if the wire feed speed is higher than
00:04:31
normal, the wire will not have time
00:04:33
to melt You can see the settings of the device for these
00:04:36
conditions on the screen. Now let’s
00:04:39
adjust the inductance for clarity.
00:04:42
Let’s remove the value to a minimum. In this
00:04:45
position of the handle, the arc will be as
00:04:48
hard as possible. Now let’s move the handle to the
00:04:50
maximum position. The arc will be soft. The
00:04:53
difference can only be felt
00:04:56
by trying to change these modes
00:04:58
yourself. It’s worth considering that each
00:05:01
spatial the position of the seam
00:05:03
requires its own settings;
00:05:05
vertical; lower horizontal and
00:05:08
ceiling seams
00:05:09
require different settings; for example,
00:05:13
look at a vertical seam of metal one
00:05:15
and a half millimeters thick; metal up to
00:05:17
three millimeters is advisable to weld
00:05:20
from top to bottom; if the metal is thicker than three
00:05:23
millimeters; welding is done from bottom to top; the
00:05:25
torch should be at an
00:05:27
angle of approximately 45 degrees to the workpiece
00:05:30
let's try to weld a vertical seam in
00:05:33
the same mode as the control sample,
00:05:36
as you can see,
00:05:37
the mode for welding is not suitable metal pro, a
00:05:40
large drop is collected,
00:05:43
it is necessary to reduce the welding voltage
00:05:45
and feed speed, set the voltage to
00:05:48
16 volts and reduce the wire feed speed by half,
00:05:51
as you can see, the
00:05:55
welding result is much better previous attempts, we will
00:05:57
further consider the example of welding thin
00:06:00
metal 0.8 and a half millimeters thin
00:06:04
metal with a thickness of for example 0.8 millimeters is
00:06:08
not welded with a continuous seam in order
00:06:11
not to overheat the metal and avoid its
00:06:13
warping, you need to weld the workpieces
00:06:16
in spots,
00:06:17
of course we are not talking about a sealed
00:06:20
seam, this technique is suitable for welding,
00:06:22
for example, a car body,
00:06:24
this method guarantees that the metal will
00:06:26
not move during the welding process and it will retain
00:06:29
its geometry;
00:06:34
example of welding metal 1
00:06:36
millimeter thick; lower position
00:06:38
butt joint with an angle forward;
00:06:41
settings you see on the screen
00:06:44
vertical seam
00:06:45
butt joint metal thickness one
00:06:48
millimeter;
00:06:49
welding from top to bottom; it is worth noting that in
00:06:52
this case, for thin metal, the
00:06:56
inductance on the machine should be reduced to a minimum
00:06:58
in order to cool the arc and better
00:07:01
control the molten metal. At this point,
00:07:04
we will finish the story about welding thin metal and
00:07:06
move on to the third part of our lesson from
00:07:09
which you will learn what pore undercutting is,
00:07:12
they are penetration and so on and also learn to
00:07:15
avoid them, we will tell you how to weld
00:07:17
workpieces 4 millimeters thick and more,
00:07:20
we will show the machine settings for different
00:07:23
spatial positions

Description:

00:17 Ручки регулировки 00:40 Потенциометр сварочного напряжения 00:46 Ручка регулировки силы тока/скорости подачи проволоки 01:03 Переключатель скорости подачи проволоки, положения кнопки в зависимости от диаметра сварочной проволоки 01:31 Ручка регулировки индуктивности. Изменение жёсткости дуги, формы валика и глубины провара. 02:15 Как держать горелку полуавтомата 02:27 Сварка "углом вперёд" и "углом назад" 02:54 Таблица соотношения толщины металла со сварочным напряжением и скоростью подачи. 03:01 Подготовка к сварке. Нижнее положение. 03:25 Настройка сварочного режима для металла 1.5-2мм. 03:51 Настройка скорости подачи проволоки в зависимости от сварочного напряжения 04:15 Как звучит некачественная сварка 04:40 Настройка индуктивности Overman 180 05:03 Разница настроек в зависимости от пространственного положения шва. 05:12 Вертикальный шов 05:18 Сварка "сверху-вниз" и "снизу-вверх" в зависимости от толщины заготовок 05:30 Наглядная демонстрация различия настроек в зависимости от пространственного положения шва. 05:47 Сварочные параметры Overman 180 для вертикального шва 05:59 Сварка металла 0.8 - 1.5мм. Сварка точками 06:32 Примеры настройки полуавтомата 07:03 Анонс третьей части

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