An important stage in the design of modern internal combustion engines is the kinematic and dynamic analysis of the mechanical system, using data obtained in thermal calculation and significantly refining and supplementing preliminary mathematical models of the engine. This article proposes a methodology for studying the engineering system of kinematic analysis of the gas distribution mechanism using the example of using the MSC.ADAMS software product. The stage of model creation, calculation and analysis of calculation results are considered. Described the method of creating a solid model of the mechanism. Some results of the kinematic analysis of the gas distribution mechanism were given, including the speed parameters for the valves of the internal combustion engine depending on the rotation speed of the gas distribution mechanism, as well as the pattern of speeds and kinematic modeling when studying the characteristics of the GPM in the MSC.ADAMS system.

1.
D.
Hroncová
,
P.
Frankovský
,
I.
Virgala
and
I.
Delyová
,
Americ. Journal of Mechan. Engineering
,
2
,
312
315
(
2014
).
2.
M. E.
Lustenkov
,
Rus. Engineer. Research
30
,
862
866
(
2010
).
3.
A.V.
Boltian
and
M.A.
Boltian
,
Progr. Technol. and Systems of Mechan. Engineering
41
,
51
57
(
2011
).
4.
A.V.
Grinek
and
A.V.
Rybina
,
Mat. Science and Engineering
327
,
1
5
(
2018
).
5.
I.A.
Shveyov
,
A.I.
Shveyov
and
E.I.
Shveyova
,
Rus. Engineer. Research
39
,
177
179
(
2019
).
6.
I.
Bostan
, I. and
V.
Dulgheru
,
Pow. Transmissions
13
,
597
608
(
2012
).
7.
A.V.
Kolomeichenko
,
Repair, refurbish., modernization
4
,
29
30
(
2002
).
8.
B.V.
Namakonov
.
Bulletin of mechan. engineering
5
,
68
71
(
2001
).
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