Expansion chamber for compressor device and compressor device

By setting up a cylindrical expansion chamber in the compressor equipment, changing the pulsation wavelength to avoid resonance, the problems of compressor noise and vibration are solved, and a low-cost, easy to install and adjust noise reduction effect is achieved.

CN223282185UActive Publication Date: 2025-08-29ATLAS COPCO AIRPOWER NV
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Patent Information

Application Number
CN202422252241.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-09-14
Filing Date
2024-09-13
Publication Date
2025-08-29
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The noise and vibration generated by existing compressor equipment during operation is difficult to effectively reduce, and the muffler needs to be integrated into the airflow path, resulting in design and installation limitations, and is costly and difficult to adjust the damping characteristics.

Method used

An expansion chamber composed of cylindrical tube is designed. By changing the pulsation wavelength to avoid resonance frequency, it is arranged at different positions of the compressor equipment, adjacent to the airflow but not in the airflow path, and is made of rigid materials, with flexible coupling methods to adapt to the changes in resonance frequency.

Benefits of technology

Effectively reduce noise and vibration, low cost and easy to manufacture and install, adapt to the resonance frequency of compressor equipment, provides a modular interface, suitable for installation of multiple locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an expansion chamber for a compressor apparatus and a compressor apparatus. An expansion chamber for a compressor device (1), characterized in that the expansion chamber (8) comprises a cylindrical tube (9) having a closed first end (10a) and an open second end (10b), the cylindrical tube (9) having a fixed constant diameter (D) over its entire length (L), the second end (10b) being provided with coupling means (11) for coupling the expansion chamber (8) to the compressor device (1), such that the open second end (10b) of the cylindrical tube (9) is adjacent to an airflow in the compressor device (1).
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Description

Technical Field

[0001] The utility model relates to an expansion chamber for compressor equipment.

[0002] More specifically, the present invention is directed to reducing noise and vibration caused by pulsation or generated by compressor equipment.

[0003] The utility model also relates to a compressor device equipped with such an expansion chamber. Background Art

[0004] A compressor assembly includes one or more compressor elements defining one or more compressor stages. One or more intercoolers may be provided between the compressor elements. An aftercooler may be provided after the last compressor stage. Following the aftercooler, the compressor assembly may be equipped with a dryer to dry the compressed gas.

[0005] It is well known that most, if not all, compressor equipment generates undesirable noise during operation.

[0006] The one or more compressor elements draw in gas (eg, ambient air) and compress it to a desired pressure.

[0007] During the compression process, noise and vibration are generated due to the pulsation of the rotating compressor elements.

[0008] To reduce this noise, several solutions are available.

[0009] One specific solution is a compressor silencer or muffler, which dampens the noise due to gas pulsations by allowing the gas to expand within the muffler chamber. The internal baffles of the muffler will smooth out both low- and high-frequency compressor gas sound waves.

[0010] The disadvantage of this solution is that the gas must flow through the silencer. This means that the silencer must be built into the compressor unit, in the path of the gas flow.

[0011] This places restrictions on the design and installation of the compressor installation, and it is not always possible to include such a silencer at a desired location in the compressor installation.

[0012] Furthermore, silencers are not cheap and easy to manufacture components, so typically only one or two silencers are included in a compressor installation.

[0013] Furthermore, the damping characteristics of the muffler cannot be easily adjusted for use with a compressor device. Utility Model Content

[0014] Therefore, the object of the present invention is to provide a solution to one or more of the above-mentioned disadvantages.

[0015] To this end, the present invention provides an expansion chamber for a compressor device, the expansion chamber comprising a cylindrical tube having a closed first end and an open second end, the cylindrical tube having a fixed constant diameter throughout its entire length, the second end being provided with a coupling device for coupling the expansion chamber to the compressor device so that the open second end of the cylindrical tube is adjacent to the airflow in the compressor device.

[0016] The expansion chamber has the effect of reducing vibrations and associated noise because it changes the wavelength of the pulsations so that it does not coincide with an undesired resonant frequency.

[0017] The volume of the cylindrical tube determines the damping characteristics, ie the resulting frequency change.

[0018] It is not just the resonant frequencies of the pulsations caused by the compression element that are damped.

[0019] For example, if the pulsation frequency of the compression element were to be the same as the vibration frequency of the motor, for example, this would generate vibrations and noise. To avoid this, the cylindrical tube can be modified by making it longer or shorter, so that the pulsation wavelength of the compressor element is changed and the same frequency as the motor can be avoided.

[0020] Thus, by varying the volume or length of the cylindrical tube, the damping characteristics can be adapted to the resonant frequency of the compressor unit. This is an important feature and advantage of the expansion chamber.

[0021] An advantage is that the expansion chamber does not have to be integrated into the air flow path through the compressor device.

[0022] Therefore, the expansion chamber can be arranged at different locations of the compressor device.

[0023] A further advantage is that the expansion chamber is very cost-effective and technically simple to produce since it comprises only a cylindrical tube.

[0024] Preferably, the cylindrical tube has a fixed volume.

[0025] Preferably, the coupling device coupling the expansion chamber to the compressor device is such that the longitudinal axis of the cylindrical tube extends in a plane perpendicular to the direction of gas flow or in a plane deviating from the perpendicular by a maximum of 15°.

[0026] Preferably, the cylindrical tube is made of a rigid material; for example, the rigid material is metal, rigid plastic or a fiber reinforced composite material.

[0027] Preferably, the coupling means for coupling the expansion chamber to the compressor device comprises screws and / or a flange provided at the second end of the cylindrical tube, a threaded connection, a nut and bolt connection, or an adhesive bond.

[0028] However, the coupling device can also be realized by using glue in the low-pressure area of ​​the compressor device.

[0029] It will be apparent to those skilled in the art that the coupling means for coupling the expansion chamber to the compressor arrangement may be realized in many different ways.

[0030] Since the expansion chamber is not located in the path of the gas flow but adjacent to the path of the gas flow, the expansion chamber will be a modular element of the compressor arrangement, making it easier and cheaper to provide the compressor arrangement with such an expansion chamber.

[0031] More specifically, the coupling arrangement coupling the expansion chamber to the compressor device provides a modular interface.

[0032] The present invention further relates to a compressor device comprising at least one compressor element defining one or more compressor stages, the compressor device being provided with an expansion chamber according to the present invention.

[0033] Preferably, the expansion chamber is arranged at the air inlet guide of the compressor device and / or upstream of a muffler of the compressor device and / or at the outlet of the compressor device.

[0034] Preferably, the compressor arrangement comprises more than one expansion chamber.

[0035] Preferably, the compressor arrangement is provided with a drier for drying the compressed gas produced by the at least one compressor element, the expansion chamber being arranged in the drier or immediately upstream of the drier. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to better illustrate the features of the present invention, preferred forms of embodiment of an expansion chamber for a compressor device and a compressor device equipped with such an expansion chamber will be described below as non-limiting examples with reference to the accompanying drawings, in which:

[0037] Figure 1 Schematically shows a compressor device according to the present invention;

[0038] Figure 2 Schematically shown on an enlarged scale Figure 1 Detailed view of the portion within the middle rectangle F2;

[0039] Figure 3 Another embodiment of the present invention is schematically shown. DETAILED DESCRIPTION

[0040] Figure 1The compressor device 1 shown essentially comprises: a first compressor element 2a and a second compressor element 2b, which define two compressor stages; an air intake guide 3, which includes two air intake filters 4, located upstream of the first compressor element 2a; an intercooler 5, which is located between the first compressor element 2a and the second compressor element 2b; and an aftercooler 6, which is located downstream of the second compressor element 2b, followed by a dryer 7.

[0041] According to the present invention, the compressor device 1 is provided with two expansion chambers 8 , one at the air inlet guide device 3 and one at the dryer 7 .

[0042] Each expansion chamber 8 generally comprises a cylindrical tube 9 having a closed first end 10a and an open second end 10b.

[0043] Each cylindrical tube 9 has a different length L and, according to the invention, a constant diameter D over its entire length.

[0044] The cylindrical tube 9 has a fixed volume. That is, it has no means of expanding, reducing or otherwise changing its volume when it is in place.

[0045] For this purpose, the cylindrical tube 9 is preferably made of a rigid material, such as metal, rigid plastic, or fiber-reinforced composite material.

[0046] In this way, when the expansion chamber 8 is applied downstream of the first compressor element 2a, it can withstand large pressures.

[0047] Of course, the length of the cylindrical tube 9 can be selected and varied depending on the compressor device 1 and its installation location.

[0048] like Figure 2 As can be seen in FIG, the second end 10 b is provided with coupling means 11 for coupling the expansion chamber 8 to the compressor device 1 .

[0049] This coupling places the open second end 10b of the cylindrical tube 9 adjacent to the air flow in the compressor device 1. This means that no intermediate connections are used or present, but rather the inner volume of the cylindrical tube 9 is immediately adjacent to the air flow path.

[0050] Furthermore, the above-mentioned coupling means 11 coupling the expansion chamber 8 to the compressor device 1 are such that the longitudinal axis XX′ of the cylindrical tube 9 extends in a plane perpendicular to the direction of gas flow or in a plane deviating from this perpendicular by a maximum of 15°.

[0051] This means that the air flow in the compressor device 1 flows vertically or approximately vertically through the open second end 10 b of the cylindrical tube 9 .

[0052] This has the advantage that the connection between the expansion chamber 8 and the compressor device 1 or the opening area allowing fluid contact between the expansion chamber 8 and the air flow in the compressor device 1 will be as small as possible, thereby limiting the pressure drop.

[0053] The coupling device 11 to the expansion chamber 8 can be realized in different ways.

[0054] exist Figure 2 In this case, a flange 12 is provided at the second end 10 b of the cylindrical tube 9 , serving as the aforementioned coupling means 11 .

[0055] By means of this flange 12 the expansion chamber 8 can be connected to the compressor device 1 , for example by using screws or the like.

[0056] However, adhesive bonding, screw connections, screw-nut connections or clip-on systems are also possible.

[0057] exist Figure 2 In the embodiment, as an example of a possible location, the first expansion chamber 8 is coupled to the air intake guide device 3 , wherein the air intake guide device 3 further comprises an air intake filter 4 .

[0058] The expansion chamber 8 is connected to the filter housing 13 .

[0059] As another example of a possible location, the second expansion chamber 8 is provided at the dryer 7. Figure 1 In FIG. 1 , it is shown immediately upstream of the dryer 7 , but it can also be integrated in the construction of the dryer 7 .

[0060] exist Figure 3 In FIG, an alternative is shown, in which case the expansion chamber 8 is shown arranged upstream of the muffler 14. This location may be between the second compressor element 2b and the aftercooler 6, for example.

[0061] The location of the expansion chamber 8 may also be at the outlet of the compressor device 1. In fact, due to the modularity of the coupling device 11, almost any location between the inlet and the outlet of the compressor device 1 is possible.

[0062] Although Figures 1 to 3 The positions of the expansion chambers 8 shown in FIG. 1 are some preferred positions, but it is of course not excluded that one or more expansion chambers 8 are also arranged at other positions.

[0063] It should be noted that, although described above with respect to a compressor device 1 , the expansion chamber 8 according to the present invention may also be applied in a blower, and the compressor device 1 should be interpreted herein as including a blower.

[0064] However, the present invention is by no means limited to the forms of embodiments described by way of example and shown in the accompanying drawings, and such an expansion chamber for a compressor device and a compressor device equipped with such an expansion chamber may be implemented in various forms without departing from the scope of the present invention.

Claims

1. An expansion chamber for a compressor device (1), characterized in that The expansion chamber (8) comprises a cylindrical tube (9) having a closed first end (10a) and an open second end (10b), the cylindrical tube (9) having a fixed constant diameter (D) over its entire length (L), the second end (10b) being provided with coupling means (11) for coupling the expansion chamber (8) to the compressor device (1) so that the open second end (10b) of the cylindrical tube (9) is adjacent to the air flow in the compressor device (1).

2. An expansion chamber for a compressor device (1) according to claim 1, characterized in that The cylindrical tube (9) has a fixed volume.

3. An expansion chamber for a compressor device (1) according to claim 1 or 2, characterized in that The coupling device (11) coupling the expansion chamber (8) to the compressor device (1) is such that the longitudinal axis (XX') of the cylindrical tube (9) extends in a plane perpendicular to the direction of gas flow or in a plane deviating from the perpendicular by a maximum of 15°.

4. An expansion chamber for a compressor device (1) according to claim 1 or 2, characterized in that The cylindrical tube (9) is made of a rigid material.

5. An expansion chamber for a compressor device (1) according to claim 4, characterized in that The rigid material is metal, rigid plastic or fiber reinforced composite material.

6. An expansion chamber for a compressor device (1) according to claim 1 or 2, characterized in that The coupling means (11) for coupling the expansion chamber (8) to the compressor device (1) comprises screws and / or flanges (12) provided at the second end (10b) of the cylindrical tube, a threaded connection, a nut and bolt connection, or an adhesive bond.

7. A compressor apparatus comprising at least one compressor element defining one or more compressor stages, characterized in that A compressor device (1) is provided with an expansion chamber (8) for a compressor device (1) according to any one of the preceding claims.

8. The compressor device according to claim 7, characterized in that The expansion chamber (8) is arranged at the air inlet guide (3) of the compressor device (1) and / or upstream of the muffler (14) of the compressor device (1) and / or at the outlet of the compressor device (1).

9. The compressor device according to claim 7 or 8, characterized in that The compressor device (1) comprises more than one expansion chamber (8).

10. The compressor device according to claim 7 or 8, characterized in that The compressor arrangement is provided with a dryer (7) for drying the compressed gas produced by the at least one compressor element, the expansion chamber (8) being arranged in the dryer (7) or immediately upstream of the dryer (7).