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Download "Трубогиб "ГИББОН". ЧЕСТНОЕ МНЕНИЕ. Работает или НЕТ??!!! Стоит ли покупать? На что способен?!"

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00:00:02
[music]
00:00:04
hello everyone my name is Anatoly
00:00:06
welcome to the channel toolbox
00:00:08
today we will be testing a
00:00:09
pipe bender called gibbon there are
00:00:12
so many advertisements about it today that we can be heard
00:00:13
from every iron in general they didn’t send it too
00:00:16
today we will try to understand what it is
00:00:18
how it works and what we can do to
00:00:21
bend a variety of profiles, as
00:00:23
well as a round pipe, the
00:00:25
wall thickness will also be different, it will be black and
00:00:28
also stainless steel, and we will answer
00:00:30
several questions: firstly, is it possible to make a
00:00:33
round blank, secondly, is it possible to
00:00:35
make a straight one from a curved blank,
00:00:38
third is it possible make
00:00:40
the same type of identical blanks, for
00:00:42
example, for a greenhouse, today we will
00:00:45
also show the greenhouse that was made by these
00:00:47
gibbons, in general, have a seat, I’ll try
00:00:49
briefly, but as usual, it’s interesting, now
00:00:52
let’s get to know each other better, the pipe bender
00:00:54
came to us from the transport company, was
00:00:56
packed in a cardboard box, which in
00:00:58
my opinion was slightly dented, but inside the
00:01:00
pipe bender was wrapped very tightly and
00:01:03
so tightly that unpacking it was
00:01:05
just a chore and in general
00:01:07
nothing was damaged during transportation
00:01:09
I got the pro version which
00:01:10
is characterized by a frame thickness of
00:01:12
about seven millimeters seven
00:01:14
millimeters here is a channel which is
00:01:15
located at the base and is also used for
00:01:18
fixing the shafts the
00:01:20
corner is 4
00:01:22
millimeters thick and the pipe is 3 millimeters thick.
00:01:25
The principle here is quite simple, there are
00:01:27
three shafts, two support shafts, one pressure drive,
00:01:30
here it’s a chain drive, you can work manually
00:01:32
using a handle, there is a separate shaft
00:01:35
that has a mount for a screwdriver,
00:01:37
adjustment is done using a
00:01:40
screw, now we have more details on the support shafts
00:01:44
two bearings are pressed on each side, that is, 2 4 6 8 on the
00:01:48
pressure shaft,
00:01:50
one bearing is pressed on each side, and
00:01:53
that is 8 + 2 10 bearings on the stressed
00:01:56
shaft in order to make it easier to roll
00:01:59
metal, we have additionally supplied
00:02:01
five more bearings and that is 15 and there is
00:02:04
also a support bearing that is located
00:02:06
between the screw and the platform. Adjustment of
00:02:09
the force or bending is carried out
00:02:11
using a screw. The screw here is reinforced in a
00:02:13
conventional machine; screws are installed like a
00:02:15
pin with a fine thread, if
00:02:18
you compare, for example, photographs, now
00:02:20
you see here the thread is quite common and at the same time
00:02:22
it is deep and powerful,
00:02:24
somewhat reminiscent of a machine for fastening
00:02:27
sip tape in order to make
00:02:29
identical blanks, for example for a
00:02:31
greenhouse, into a pipe bender we clamp a profile,
00:02:33
for example, 25 by 25 thick, 6 meters long,
00:02:37
you can now see this procedure, we
00:02:39
begin to roll it to the required dimensions
00:02:42
or to the desired bend at In this case,
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we do this procedure with three people,
00:02:47
again, you can, in principle, get used to it
00:02:49
and do it in one person, then without removing the
00:02:52
workpiece, take this screw and start
00:02:55
tightening it in the right place, that is, a
00:02:57
rimowa foot for the stopper, and also here it is
00:03:00
used for a 3-point hexagon,
00:03:02
tighten it further for convenience, there is
00:03:05
a scale with which you can understand down to
00:03:07
the millimeter where exactly the
00:03:09
size you need is located, then unscrew the screw,
00:03:12
take out the workpiece and take the next one
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and roll it back in the same way. As a result,
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now with your eyes you see
00:03:21
that the resulting workpieces are identical, the
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difference between them is probably at most one
00:03:26
centimeter but initially take into account 6
00:03:29
meters, but the error is only
00:03:31
one centimeter, and small parts with a length of,
00:03:34
for example, one meter turn out exactly one to
00:03:37
one; alignment of the workpiece in the rolling
00:03:39
shafts is carried out essentially in the basic
00:03:41
configuration using washers;
00:03:43
it didn’t initially seem
00:03:45
unprofessional; again, you can buy it
00:03:47
here such rings are fixed, but in fact,
00:03:49
as practice has shown, the washer is many times
00:03:52
more interesting than these rings, here the shafts are
00:03:54
aligned perfectly evenly and to roughly
00:03:57
speaking center you need to
00:03:59
align the washer perfectly evenly on both sides,
00:04:01
respectively, then dou series secure
00:04:04
them with washers phrases are generally easier, just
00:04:07
choose the one you need the quantity on each
00:04:08
side is the same, I’m looking for them so
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as not to worry, I fix them with electrical tape,
00:04:13
set them up and everything is centered perfectly
00:04:17
if you need to make a larger profile by decreasing the
00:04:18
washer if you need to add a
00:04:20
smaller profile by
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adding the washer so that
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in the process when you change the profile they
00:04:27
don’t run away anywhere I I just
00:04:28
fix them with this insulating tape and the
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data of the pipe benders is initially
00:04:32
provided manually. We have a shaft to
00:04:35
which the handle is attached using three
00:04:37
screws so that the whole thing doesn’t get
00:04:39
torn off. There is a hexagon here, then
00:04:43
there is a shaft for working with a screwdriver, how does
00:04:46
it differ from the usual oh, in fact, this is the same thing,
00:04:48
only here we have a
00:04:50
centered pin that can be
00:04:52
clamped into the cartridge, in fact, the same
00:04:54
holes for the handle are present in this
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wanted, that is, one to one, there
00:04:59
is no difference between them, now let's get
00:05:02
to the most interesting part, let's start from a profile
00:05:04
pipe, the smallest thing I found is 15
00:05:06
by 15 in front of your eyes, footage of the work
00:05:09
of a pipe bender, I hope you can see that
00:05:11
everything bends without problems, many asked
00:05:14
what to do if, for example, you bent it, you
00:05:16
need less than 5, but you can try to
00:05:19
bend your arm and straighten it again, and
00:05:21
the like but we turn it over and without any
00:05:23
problems, the same thing can be done as much as a
00:05:25
straight pipe, now a 25 by 25 square is
00:05:28
in front of your eyes, the frames
00:05:31
can also be bent without problems, which in one direction,
00:05:33
again, the effort is also minimal, and if, for
00:05:37
example, you mess up, you can
00:05:38
easily fix this whole thing, also speaking
00:05:40
I turned it over and twisted it in the opposite
00:05:43
direction, I curved it straight, perfectly evenly,
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many also asked whether it was possible to make a
00:05:48
circle in the general frame in front of your eyes,
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also in my opinion, without problems without
00:05:53
much effort, again I made a full
00:05:55
circle, I made a circle from a pipe 25 by 25,
00:05:58
respectively, we got the diameter it’s
00:06:00
actually quite small, you can even shoot
00:06:03
paramount pictures, but in fact the replacement is
00:06:05
present here due to the small
00:06:07
diameter, if for example you take something other than what I did, for
00:06:09
example, a one and a half meter shelf, for
00:06:11
example, I took a three-meter six-meter shelf, then
00:06:14
this circle will turn out to be almost
00:06:15
perfect without a single lesson if
00:06:18
you look at the passport data the minimum
00:06:20
can be inserted 10 by 10 maximum 60 by
00:06:22
40 I had 60 by 40 so let's
00:06:25
try to put the first edge in. It won't
00:06:28
work because 60 doesn't fit there,
00:06:30
but 40 fits in without any problems, so
00:06:32
let's try 1 problem that I
00:06:35
encountered is the torque of
00:06:37
relatively small profiles, what
00:06:39
we have now measured it in fact, it turns out that the
00:06:41
torque increases by at least a factor of a
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maximum of four times, it all
00:06:46
depends on the screw how much you
00:06:49
turn it, again with a small profile,
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often you turn it 90 degrees, here
00:06:53
again, if you turn it 90 degrees,
00:06:56
you’ll just go nuts, so speech in
00:06:59
the ease of bending a profile 60 by 40
00:07:01
can not be in general all the work I usually
00:07:04
did with a screwdriver I had different
00:07:05
screwdrivers there you will see about the Unified State Exam just the world
00:07:08
lighter makita again with light
00:07:11
profiles there 25 by 25 all this was done
00:07:14
without problems we took the effort then, in
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essence, how to twist a screwdriver here the effort is
00:07:19
many times greater and screwdrivers die like
00:07:22
flies, so for work again in large quantities
00:07:24
or with healthy profiles, I would
00:07:26
still recommend that you use
00:07:28
a drill; the second problem is related to the roller,
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which consists of five bearings if you
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put them together and measure then their
00:07:35
total thickness 60 is the same as that
00:07:38
of the profile and in fact, placing this
00:07:40
roller ideally so that there is no gap there will
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always be a gap of
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about one and a half millimeters, it is
00:07:47
smaller than the washer due to this there is a
00:07:50
small backlash, respectively, with
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high pressure the roller it shifts and
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it turns out perfectly smooth on one side,
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but in the other country, in our IT God,
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someone will say that the problem is not the play
00:08:01
of the roller, but the play of the platform, now before
00:08:03
your eyes, how the platform was
00:08:05
initially configured, the share is quite healthy and
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again, you can tighten up the whole thing, I
00:08:10
tightened it up to make it practically ideal,
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but in fact all the same, this one
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millimeter gives a shift and it turns out to be evenly
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rolled 60 by 40; it doesn’t work for a
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healthy profile pipe, for example 40
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by 40 or 60 by 40, instead of
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bearings, it is recommended to use a
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center block, which is placed in
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their place; there is a convexity
00:08:31
due to which a furrow is formed and
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this furrow does not allow the workpiece to go either
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to the right or to the left, thus we get a
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perfectly even center workpiece, we
00:08:41
will start testing a rectangular
00:08:43
profile, something we have is about 40 by 15, in
00:08:46
general, what we get is put at Lari
00:08:48
Brown, we roll it, in principle, not bad if we
00:08:51
talk about the groove itself that the
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battle center makes does not work all the
00:08:55
way through, but there is a slight play and,
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again, due to the fact that the profile is
00:09:00
quite thin in thickness,
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this whole thing works without problems, but if you take a
00:09:05
60 by 40 profile, here on one side
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we have a groove without problems rolls on the
00:09:10
other side, the steel profile seems to
00:09:11
begin to bend, but on the other hand,
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when we look inside now, the
00:09:16
first thing we see is how
00:09:18
it initially looks like the
00:09:20
current turner looks normal after
00:09:22
she experiences the effort, now you see that
00:09:25
the displacement still occurs, the displacement
00:09:27
occurs because there is play
00:09:31
again in this very area and in the very
00:09:33
center of the battle, now you see there, too,
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about one millimeter, the washer does not
00:09:38
fit there and all this together shifts the
00:09:41
battle to the center. As a result, if you look at
00:09:44
the photographs, for example, now you will see
00:09:46
a roller of five bearings and the center of the battle
00:09:48
the center one seems to be thicker, but in
00:09:51
fact, when working, nothing
00:09:52
worked out for me, here I would like to add
00:09:54
the following: on the one hand, you can
00:09:56
try playing with washers,
00:09:58
try them, grind them off again, achieve an
00:10:00
ideal result, but we are talking about
00:10:02
purchased pipe benders, again, that is, if
00:10:05
we take this pipe bender, we take it out take it out of
00:10:07
the package and rent it, for example, 25
00:10:09
profile, it works the first time
00:10:11
without problems, you do it and you get a kick out of the work,
00:10:14
but 60 to 40 doesn’t work the first time, the
00:10:16
second time it doesn’t work with 3,
00:10:19
also again, you need it, you don’t need it,
00:10:21
decide for yourself, by the way, a good idea
00:10:24
comes after that, in general, in the end
00:10:26
I came up with another option, I don’t know why
00:10:27
it slipped my mind, but
00:10:30
we remove both the bearings and the center from the upper shaft, that
00:10:33
is, rolling it back directly dumped them in
00:10:36
fact, it turns out 60 by 40 with an edge of 60
00:10:39
fits the current-current 40 and even more so in In this
00:10:42
position, nothing goes anywhere at all,
00:10:44
but due to the fact that there are no bearings
00:10:46
that help slide in this
00:10:48
position, in short it is more difficult to roll away for
00:10:51
rolling pipes. We have separate nozzles,
00:10:53
three of them are sold separately, they are needed
00:10:55
for better centering of the pipe in general,
00:10:57
see 1 is placed in the upper shaft instead
00:11:01
for example, the bearings are one to one on both
00:11:03
sides, it is round, these two pieces
00:11:06
are placed on each side on the rolling
00:11:08
shafts, and there is a peculiarity: look,
00:11:11
on one side it is round and on the other
00:11:13
side there is an overlap, the same thing
00:11:15
is present on the shaft itself
00:11:20
in order for this thing it didn’t
00:11:22
turn cool enough, everything is the
00:11:24
same on a manual shaft, and for example,
00:11:27
for a screwdriver, now we’ll start with
00:11:30
thin-walled pipes; they are generally not recommended to be
00:11:32
rolled through a pipe bender, but again,
00:11:33
let’s see what we get out of this
00:11:35
now before your eyes,
00:11:37
footage in fact, it looks like everything is rolling
00:11:40
it seems like there is a bend, but in fact the pipe
00:11:43
flattens the more you bend, the more
00:11:45
rectangular it becomes, I hope
00:11:48
you can see this whole thing now in the video,
00:11:50
then we take a thick-walled one, then we have
00:11:53
about 25 millimeters, it already
00:11:55
rolls without problems without any ivy or
00:11:58
bending and, in principle, it’s enough not bad,
00:12:00
then the diameter is larger, we have about 40
00:12:03
millimeters galvanized, in general, let's
00:12:05
see what we get in fact, to
00:12:07
dig it you need to spend a lot of
00:12:10
time, again the loads are hellish and in
00:12:13
fact it bends very hard, now let's
00:12:16
measure the torque, first of all
00:12:18
we will bend a square 25 by 25
00:12:30
82 is now 60 by 40
00:12:37
1892 in total the difference is twofold this is
00:12:40
only at the initial stage the further the further the
00:12:43
harder it is now what we did with the
00:12:45
help of this pipe bender we made a
00:12:47
greenhouse now before your eyes the fact
00:12:49
that we got a full video on
00:12:51
greenhouses will be on the channel Volodya,
00:12:53
because he invented it, he made it, and at the
00:12:56
same time we had a homemade pipe bender of
00:12:57
photographs for an hour, because it is twice as large
00:13:00
as a gibbon, but in fact, due to the fact that the
00:13:03
gibbon’s axis is firmly fixed, they are
00:13:05
perfectly parallel, the repeatability of the
00:13:07
workpieces was almost one hundred percent,
00:13:10
both healthy and small.
00:13:13
homemade axles played this
00:13:16
2 millimeter a little, due to this it turned out to be
00:13:19
either a larger arc or a smaller one, while
00:13:21
taking into account there are pipe benders that
00:13:23
come in two parts, here keep in mind
00:13:26
that this millimeter that may be
00:13:28
present in the elevator will ruin all the work in
00:13:30
the end above what was seen and also my opinion In
00:13:32
general, they sent us a pipe bender, but the opinion
00:13:35
will be honest, as usual, and there is no other one here.
00:13:37
In general, see whether you should
00:13:39
buy it or make it yourself, it’s up to you, it all
00:13:41
depends on the amount of
00:13:43
time, freedom, again, the desire
00:13:45
to experiment,
00:13:46
if you have neither the time nor the desire to
00:13:48
experiment, then in principle, buy
00:13:50
this thing can cost quite
00:13:52
inexpensively, and if we talk about our
00:13:55
experience, they brought it out, took it out of the box and
00:13:58
bent a bunch of different oak trees in one go,
00:14:00
it turned out for us the first time, with
00:14:02
almost one hundred percent repeatability of both
00:14:05
small and healthy, and if
00:14:08
we talk about pipe benders in general, in my
00:14:10
opinion this thing is more designed for
00:14:11
small diameters like 25,
00:14:14
the maximum is thirty then you'll have a blast,
00:14:16
it will be generally cool, that is, it
00:14:18
bends quickly with a minimum effort of 60 to 40 in
00:14:22
my opinion, this is crap, what an overkill
00:14:23
I couldn't bend this pipe and
00:14:26
in my opinion this pipe bender is not suitable for this
00:14:28
I created further, if we talk about
00:14:30
the package, there’s a lot of
00:14:32
extra stuff, in my opinion, the
00:14:34
best thing that’s there is, of course, a
00:14:36
magnetic corner, then there’s the attachment for the
00:14:38
drill, it actually works out much
00:14:40
faster than turning this thing,
00:14:42
plus if something suddenly happens to of that
00:14:45
star, they are interchangeable, that is,
00:14:47
without any problems, you can always turn it by hand,
00:14:49
then the nozzle for round pipes, if
00:14:52
you still have to work on
00:14:54
roofs for someone in life, in principle, it’s not bad,
00:14:57
again, if you don’t work with someone,
00:14:59
you don’t need this nozzle, the rest are
00:15:02
locking rings in my opinion are unnecessary
00:15:05
things and again the center fight with it I couldn’t
00:15:08
work with it for small
00:15:10
diameters it’s not really needed but for
00:15:12
healthy ones again 60 to 40 we saw it ourselves it didn’t work out
00:15:14
40 to 40
00:15:17
I didn’t try that’s why this thing is on my
00:15:18
opinion is questionable, in short, that’s all we have
00:15:21
today if the video turned out to be
00:15:22
interesting or useful, thank
00:15:24
us simply enough like repost
00:15:26
subscribe comments similar
00:15:27
simple actions you only need to
00:15:29
click this clip helps our
00:15:31
channel grow also don’t forget we
00:15:33
have additional social networks if
00:15:35
suddenly something happens so that we don’t get
00:15:36
lost Andy son rutub VKontakte
00:15:39
telegram all links are in the description
00:15:41
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Трубогиб "ГИББОН" Моё мнение про современный профилегиб. Купить можно тут https://trubogib-gibbon.ru/ Плюсы и минусы работы трубогиба Гиббон. Опыт использования. Сделаем суперский парник с помощью трубогиба. СоцСети: Яндекс Дзен https://zen.yandex.ru/id/5fa8317b0c920d799fadcbf5 Вконтакте https://vk.com/toolbox_russia Рутуб https://rutube.ru/channel/24159618/ Телеграм https://t.me/toolbox_russia Канал Володи https://www.youtube.com/channel/UCO71jzImFr1gURtx1t0WcIw Протестируем станок для изгиба профильной трубы, водопроводно трубы, швеллера, прута и т.п. Расскажу как он работает, покажу в тестах, как гнет разнообразные изделия из металла. раскажу зачем нужен центробой, АДАПТЕР ДЛЯ ДРЕЛИ, МАГНИТНЫЙ УГОЛ, НАБОР РОЛИКОВ ДЛЯ ТРУБ, НАБОР СТОПОРНЫХ КОЛЕЦ. Гиббон - трубогиб для разных задач. Гнет не только профили, прутки и швеллеры, но и круглые трубы: диаметром - до 48 мм со стенкой - до 2 мм. Для работы с круглыми трубами используйте специальный набор валов. В него входят 3 ролика: 2 ведущих и 1 прижимной. Ролики - из конструкционной стали СТ-45, каленые. Трубогиб Гиббон гнёт всё: от профилей и швеллеров - до круглых труб. Профилегиб Гиббон гнет полосы, прутки, швеллеры и профили. Максимальная ширина профилей и полос - 60 мм; Максимальная ширина швеллера - 50 мм; Минимальная ширина - 10 мм; Толщина стенки профиля - до 2 мм (в стандартной комплектации); Толщина стенки профиля - до 3 мм (с центробоем). С профилегибом Гиббон вы сделаете и дуги для парника, и прочный каркас для навеса. В отличие от конкурентов, Гиббон легко прокатывает профиль 60х40 со стенкой 2 мм. Это самый популярный профиль у садоводов и мастеров. Рекомендуется для основательных надежных конструкций! ПРОФИЛЬ 60Х40 - ПРОКАТ БЕЗ УСИЛИЙ Цепной привод на 2 вала - прокат в 2 раза быстрее В обычном трубогибе без цепи вы вращаете 1 вал из 3-х. Чтобы привести в движение 2 других вала, нужны дополнительные усилия. В цепном трубогибе одновременно вращаются 2 вала, а не 1. Поэтому гнуть профиль на нем в 2 раза легче. А качество проката - выше. При работе с широкими профилями 50-60 мм это особенно заметно. Цепной трубогиб гнет их без усилий, а обычный - “буксует”. Другие преимущества цепной передачи: Высокий КПД 97-98% - усилие практически без потерь передается с главного вала ведомому; Нагрузка на валы минимальна - срок службы трубогиба минимум 10 лет; Цепной трубогиб экономит ваши силы и время, затраченное на прокат. Универсальный инструмент под разные задачи!

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