[0001] The present invention relates to a hermetic compressor comprising at least one spring
connection member the suspension system of which can be adjusted according to the
low or high operational speed.
[0002] In hermetic compressors, the body is connected to the lower casing by means of helical
compression springs. Springs limit the movement of the compressor in the entire casing
and also form the suspension system which contributes to the lowest possible speed
of the compressor in variable speed compressors. In the state of the art compressors,
the body is generally connected to the lower casing by using four springs. The spring
is fitted over the bolts which connect the body and the stator to each other, thus
ensuring the connection of the body of the compressor to the lower casing. However,
the use of four springs as standard may cause low operational speed and incompatible
spring strength in variable speed compressors. Adjusting the springs providing the
suspension according to the lowest operational speed causes noise and mechanical damage
during the start-stop of the compressor. The use of springs only in accordance with
the desired strength value causes high noise due to mechanical resonance at low rotational
speed. Therefore, it is important that the springs in variable speed hermetic compressors
provide strength and do not generate noise in accordance with low operational speed.
[0003] In the state of the art Chinese Patent Document No.
CN111306042, an adjustable connection member used in automobile compressors is disclosed.
[0004] In another state of the art Chinese Patent Document No.
CN111720289, a torsion spring structure is disclosed, which is used to reduce the start-stop
noise of a compressor.
[0005] The aim of the present invention is the realization of a hermetic compressor comprising
a suspension system which is suitable for high strength and low rpm operational speeds
thanks to a variable spring number and arrangement.
[0006] The hermetic compressor of the present invention comprises a connection member which
enables the springs to be connected to the lower casing in the desired number and
at the desired points. The connection member comprises a first arm, a second arm,
at least one compressor connection end, at least one casing connection end, and at
least one pin.
[0007] The first arm and the second arm can be angular, asymmetric or symmetric depending
on the region where the connection member is positioned in the body.
[0008] The pin has a length and thickness suitable for fitting over the spring. In an embodiment
of the present invention, the pin can be a component in the form of a blown pin profile
or bolt which provides the connection of the spring.
[0009] In an embodiment of the present invention, the pin is mounted to the connection member
by welding.
[0010] The first arm and the second arm which constitute the connection member ensures alignment
for carrying load and connecting the spring in the connection between the compressor
body and the lower casing.
[0011] The pin on the connection member can be manufactured by blowing the material of the
connection member such that at least some part thereof is positioned on the first
arm and/or the second arm.
[0012] Moreover, the pin can be mounted to the connection member by welding or mounted by
means of a connection means such as bolt, screw, etc. and a mounting tooth on the
connection member.
[0013] The pin can be selected so as to allow the placement of a spring at any length and
diameter which is corresponds to the speed and strength desired for the operation
of the compressor.
[0014] By means of the present invention, a hermetic compressor with the desired strength
is realized, wherein the body and the lower casing are connected to each other by
means of spring in the desired position and number independently of the bolts connecting
the body and the stator, and wherein no noise is generated at low operational speeds.
[0015] The model embodiments related to the hermetic compressor realized in order to attain
the aim of the present invention are shown in the attached figures, where:
Figure 1 - is the perspective view of the body and the lower casing in the hermetic
compressor of the present invention.
Figure 2 - is the front view of the connection of the body, stator and the springs
in the hermetic compressor of the present invention.
Figure 3 - is the perspective view of the connection member in the hermetic compressor
in an embodiment of the present invention.
Figure 4 - is the perspective view of the asymmetrical connection member in the hermetic
compressor in an embodiment of the present invention.
Figure 5 - is the perspective view of the symmetrical connection member in the hermetic
compressor in an embodiment of the present invention.
Figure 6 - is the view of three different connection members having the pin formed
by different mounting and welding methods in the hermetic compressor of the present
invention.
[0016] The following numerals are referred to in the description of the present invention:
- 1. Hermetic compressor
- 2. Lower casing
- 3. Spring
- 4. Body
- 5. Stator
- 6. Bolt
- 7. Connection member (bracket)
- 8. Compressor connection end
- 9. First arm
- 10. Second arm
- 11. Casing connection end
- 12. Pin
[0017] The hermetic compressor (1) comprises a lower casing (2), a body (4) placed onto
the lower casing (2), a rotor which is disposed in the lower casing (2) and a stator
(5) which is positioned around the rotor concentrically with the rotor, and at least
one bolt (6) which connects the body (2) and the stator (5) to each other.
[0018] The hermetic compressor (1) of the present invention comprises a connection member
(12) having a first arm (9), a compressor connection end (8) which connects the first
arm (9) to the body (4), a casing connection end (11) which connects the first arm
(9) to the lower casing (2) and at least one pin (12) at least some part of which
is placed onto the first arm (9), the hermetic compressor (1) further comprising a
spring (3) which is fitted over the pin (12).
[0019] The hermetic compressor (1) comprises the body (4) which is placed into the lower
casing (2), and the stator (5) which is connected to the body (4) and which forms
the motor. The stator (5) and the body (4) are connected to each other by means of
the bolt (6). The hermetic compressor (1) of the present invention further comprises
the at least one connection member (7) for managing the suspension system in the hermetic
compressor (1) according to varying needs (speed, strength, etc.). The connection
member (7) comprises the at least one first arm (9) and the at least one pin (12)
at least some part of which is placed onto the first arm (9). The connection member
(7) is connected to the body (4) at the compressor connection end (8), and aligned
with the lower casing (2) at the casing connection end (11). Thus, the desired number
of springs (3) at the desired positions are fitted over the pins (12), and the hermetic
compressor (1) acquires the suspension system desired by the manufacturer independently
of the bolts (6) connecting the stator (5) and the body (4).
[0020] In an embodiment of the present invention, the hermetic compressor (1) comprises
the connection member (7) having a second arm (10) connected to the first arm (9),
and a pin (12) disposed between the first arm (9) and the second arm (10). In this
embodiment, the connection member (7) is designed as a two-piece component. By means
of the pin (12) disposed between the first arm (9) and the second arm (10), especially
the connection member (7) is easily connected to the lower casing (2) at the central
regions of the body (4), and the spring (3) can be fitted over at said regions.
[0021] In an embodiment of the present invention, the hermetic compressor (1) comprises
a connection member (7) having the second arm (10) which is monolithic with the first
arm (9).
[0022] In an embodiment of the present invention, the hermetic compressor (1) comprises
the connection member (7) having the second arm (10) with the same length and structure
as the first arm (9) and the pin (12) disposed at the middle point of the first arm
(9) and the second arm (10), wherein the first arm (9) and the second arm (10) are
symmetrical with respect to the pin (12). Thus, the spring (3) can be easily fitted
over at long regions where the connection member (7) is desired to be placed.
[0023] In an embodiment of the present invention, the hermetic compressor (1) comprises
the connection member (7) having the second arm (10) shorter than and different from
the first arm (9), wherein the first arm (9) and the second arm (10) are asymmetrical
with respect to the pin (12). Thus, the spring (3) can be more easily fitted over
at angular regions.
[0024] In an embodiment of the present invention, the hermetic compressor (1) comprises
a pin (12) which is connected to the first arm (9) and/or the second arm (10) by means
of a connection means such as bolt, screw, etc. Thus, the pin (12) can be easily mounted
to the connection member (7).
[0025] By means of the present invention, a hermetic compressor (1) is realized, comprising
springs in numbers and regions different than standards, which connect the body (4)
and the lower casing (2) to each other.
1. A hermetic compressor (1) comprising a lower casing (2), a body (4) placed onto the
lower casing (2), a rotor which is disposed in the lower casing (2) and a stator (5)
which is positioned around the rotor concentrically with the rotor, and at least one
bolt (6) which connects the body (2) and the stator (5) to each other, characterized by a connection member (7) having a first arm (9), a compressor connection end (8) which
connects the first arm (9) to the body (4), a casing connection end (11) which connects
the first arm (9) to the lower casing (2) and at least one pin (12) at least some
part of which is placed onto the first arm (9), and by a spring (3) which is fitted
over the pin (12).
2. A hermetic compressor (1) as in Claim 1, characterized by the connection member (7) having a second arm (10) connected to the first arm (9),
and a pin (12) disposed between the first arm (9) and the second arm (10).
3. A hermetic compressor (1) as in Claim 2, characterized by a connection member (7) having the second arm (10) which is monolithic with the first
arm (9).
4. A hermetic compressor (1) as in Claim 2 or 3, characterized by the connection member (7) having the second arm (10) with the same length and structure
as the first arm (9) and the pin (12) disposed at the middle point of the first arm
(9) and the second arm (10), wherein the first arm (9) and the second arm (10) are
symmetrical with respect to the pin (12).
5. A hermetic compressor (1) as in Claim 2 or 3, characterized by the connection member (7) having the second arm (10) shorter than and different from
the first arm (9), wherein the first arm (9) and the second arm (10) are asymmetrical
with respect to the pin (12).
6. A hermetic compressor (1) as in any one of the above claims, characterized by a pin (12) which is connected to the first arm (9) and/or the second arm (10) by
means of a connection means such as bolt, screw, etc.