Damping structure assembly type supporting leg of compressor

By designing the adjustable slider structure of the support leg assembly and reinforced connectors, the problem that the assembled support legs could not adapt to multiple models of compressors was solved, achieving a stable connection between compressors of various specifications and the shock absorption structure, as well as noise reduction.

CN223635753UActive Publication Date: 2025-12-05LOEB TURBOMACHINERY (ZHEJIANG) CO LTD
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Patent Information

Application Number
CN202423115078.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-05
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing prefabricated support legs cannot accommodate the connection between various compressor models and shock absorption structures, resulting in resource waste and limited application scenarios.

Method used

A shock-absorbing prefabricated support structure was designed, comprising support component one, support component two, reinforcing connectors, and a protective layer at the connection. By adjusting the slider and stud connection, a stable connection between multi-specification compressors and the shock-absorbing structure is achieved, and a rubber protective layer is used to reduce noise.

Benefits of technology

It achieves a stable connection between multi-specification compressors and shock-absorbing structures, reduces noise at the connection points, and improves the versatility and resource utilization of the assembled support legs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a damping structure assembly type supporting leg of a compressor, which comprises a first supporting leg component, a second supporting leg component, a reinforcing connecting piece and a first joint protective layer, and an adjusting transverse seat is arranged at the upper end of the internal component of the first supporting leg component. Compared with the prior art, the compressor base has the advantages that the first supporting foot assembly, the second supporting foot assembly and the reinforcing connecting piece are additionally arranged, the second connecting plate is arranged above the compressor base, the second adjusting sliding block slides in the second adjusting sliding groove, the upper surface of the adjusting vertical base is attached to the lower surface of the compressor base, and the double-screw bolts are used for clamping connection; according to the position of a damping structure connecting plate, a first adjusting sliding block slides on the inner side of a first adjusting sliding groove, a fixing nut and a fixing stud are screwed and fastened, a reinforcing connecting piece assists in firm connection, and the compressor damping structure connecting device can adapt to connecting use of compressors of multiple specifications and damping structures; and the noise at the clamping position can be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of assembly type supporting leg, and particularly relates to a shock-absorbing structure assembly type supporting leg of compressor. BACKGROUND

[0002] A compressor is a mechanical device used to increase the pressure of a gas or to deliver a gas, which is widely used in many industries and daily applications, including air compression, refrigeration systems, gas delivery, chemical production, etc. The compressor will generate vibration during operation, and in order to reduce the vibration and reduce the impact on the use of the compressor, a corresponding shock-absorbing structure is installed at the bottom of the compressor, and in order to be independently disassembled, the shock-absorbing structure is connected to the compressor through an assembly type supporting leg. Most of the assembly type supporting legs are set according to the model specifications of the compressor and the shock-absorbing structure. When the compressor or the shock-absorbing structure is changed, it may not be connected, resulting in the assembly type supporting leg cannot be used, which may be scrapped, causing waste of resources, and the assembly type supporting leg needs to be changed accordingly, so the use of the assembly type supporting leg is limited.

[0003] In summary, the assembly type supporting leg that cannot be connected to multiple models cannot be used in some problems, so a new structure is needed to solve the above technical problems. UTILITY MODEL CONTENTS

[0004] In view of the deficiencies in the prior art, the utility model aims to provide a shock-absorbing structure assembly type supporting leg of compressor to solve the problems in the background art.

[0005] The utility model realizes the following technical scheme: a shock-absorbing structure assembly type supporting leg of compressor, comprising: a supporting leg assembly one, a supporting leg assembly two, a reinforcing connecting piece, and a connecting place protective layer one, the upper end of the internal composition of the supporting leg assembly one is provided with an adjusting cross seat, the left end of the upper adjusting cross seat is provided with a supporting leg assembly two for connecting with the compressor base, the right side of the adjusting cross seat is provided with a reinforcing connecting piece for strengthening the fixing firmness of the supporting leg assembly two, the lower end of the internal composition of the supporting leg assembly two is provided with an adjusting sliding block one, the adjusting sliding block one is fixedly connected with an adjusting vertical seat above, the adjusting vertical seat is provided with an adjusting sliding block two above, the adjusting sliding block two is fixedly connected with a connecting plate two above, the lower surface of the connecting plate two is provided with an angle groove, the inner side of the angle groove is provided with a connecting place protective layer one, and a group of connecting place protective layer two is installed above the adjusting vertical seat.

[0006] As a preferred embodiment, the lower surface of the adjusting cross seat is fixedly connected with a support column at the right end, the lower surface of the support column is fixedly connected with a connecting plate one for connecting with the shock-absorbing structure, and the left side of the adjusting cross seat is vertically formed with an adjusting sliding groove one.

[0007] As a preferred implementation, the rear side of the adjusting cross seat is provided with a fixed through groove, the rear side of the adjusting sliding block is fixedly connected with a fixed stud, and the adjusting sliding block and the adjusting sliding groove are movably embedded with each other, so that the adjusting sliding block slides in the adjusting sliding groove, and the relative positions of the connecting plate and the connecting plate are adjusted.

[0008] As a preferred implementation, the fixed stud is screwed and fastened with the fixed nut through the fixed through groove, the left side of the adjusting vertical seat is provided with an adjusting sliding groove above, and the adjusting sliding block and the adjusting sliding groove are movably embedded with each other.

[0009] As a preferred implementation, the upper surfaces of the adjusting vertical seat and the connecting plate are provided with fixed threaded holes at both front and rear ends, and the connecting plate and the adjusting vertical seat are clamped and connected with the compressor base and are fixedly connected by screwing the stud into the inside of the fixed threaded hole.

[0010] The right side of the adjusting vertical seat is provided with an embedded groove, the left end of the reinforcing connecting piece and the inside of the embedded groove are provided with an embedded plate, and the right side of the embedded plate is fixedly connected with an adjusting column.

[0011] As a preferred implementation, the right side of the adjusting column is provided with an adjusting threaded hole, the inside of the adjusting threaded hole is provided with an adjusting stud and is rotatably connected with each other, and the right side of the adjusting stud is provided with an end plate.

[0012] The left side of the end plate is fixedly connected with two groups of butt blocks, the right side of the adjusting cross seat is provided with two groups of butt grooves, and the butt blocks, the butt grooves, the embedded plate and the embedded groove are movably embedded with each other and are fixedly connected by using bolts, so that the adjusting stud rotates in the inside of the adjusting threaded hole, and the adjusting column is used to assist the reinforcing connection between the foot assembly and the foot assembly after the position of the foot assembly is adjusted.

[0013] As a preferred implementation, the upper surface of the adjusting vertical seat and the side surface of the corner groove are provided with connecting holes for connecting with the connecting layer and the connecting layer.

[0014] The connecting layer and the connecting layer are connected with the upper surface of the adjusting vertical seat and the side surface of the corner groove, and the connecting layer and the connecting layer are made of rubber material and are movably embedded with the connecting column and the connecting hole, and the connecting layer and the connecting layer are installed at the connecting position of the connecting plate and the adjusting vertical seat and the compressor base.

[0015] The beneficial effects of the compressor's damping structure assembly type support leg are as follows: the connecting plate two is arranged above the compressor base through the increase of the support leg assembly one, the support leg assembly two and the reinforcing connecting piece, the adjusting sliding block two is arranged in the adjusting sliding groove two, the upper surface of the adjusting vertical seat is attached to the lower surface of the compressor base, the clamping connection is achieved through the stud, the adjusting sliding block one is arranged in the inner side of the adjusting sliding groove one according to the position of the damping structure connecting plate, the fixed nut and the fixed stud are screwed and fastened, the reinforcing connecting piece is used for auxiliary firmness connection, the compressor of multiple specifications can be connected with the damping structure, the support leg assembly two, the connecting layer one and the connecting layer two are increased, and the noise at the clamping position can be reduced. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor under the premise of the drawings.

[0017] Figure 1 It is a whole structure schematic view of the compressor's damping structure assembly type support leg.

[0018] Figure 2 It is a structure schematic view of the support leg assembly one in the compressor's damping structure assembly type support leg.

[0019] Figure 3 It is a left side structure schematic view of the support leg assembly two in the compressor's damping structure assembly type support leg.

[0020] Figure 4 It is a right side structure schematic view of the support leg assembly two in the compressor's damping structure assembly type support leg.

[0021] Figure 5 It is a structure schematic view of the reinforcing connecting piece in the compressor's damping structure assembly type support leg.

[0022] Figure 6 It is a structure schematic view of the connecting layer one in the compressor's damping structure assembly type support leg.

[0023] In the drawings, 100 is the support leg assembly one, 101 is the connecting plate one, 102 is the adjusting horizontal seat, 103 is the adjusting sliding groove one, 104 is the fixed through groove, and 105 is the butt joint groove.

[0024] 200 - foot assembly two, 201 - adjusting slider one, 202 - fixed stud, 203 - adjusting vertical seat, 204 - adjusting sliding groove two, 205 - adjusting slider two, 206 - connecting plate two, 207 - angle groove, 208 - connecting hole, 209 - fitting groove

[0025] 300 - reinforcing connector, 301 - end plate, 302 - butt block, 303 - adjusting stud, 304 - adjusting column, 305 - fitting plate

[0026] 400 - connecting layer one, 401 - connecting column

[0027] 500 - connecting layer two DETAILED DESCRIPTION

[0028] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0029] Please refer to Figures 1 to 6 The utility model provides a kind of technical scheme: the shock-absorbing structure assembly foot of compressor, it includes: foot assembly one 100, foot assembly two 200, reinforcing connector 300 and connecting layer one 400, the upper end of the internal composition of foot assembly one 100 is equipped with adjusting horizontal seat 102;

[0030] Adjusting horizontal seat 102 upper left end is equipped with foot assembly two 200 for being connected with the base of compressor, adjusting horizontal seat 102 right side is equipped with reinforcing connector 300 for strengthening the fixed firmness of foot assembly two 200, the lower end of the internal composition of foot assembly two 200 is equipped with adjusting slider one 201, adjusting slider one 201 upper fixed connection has adjusting vertical seat 203;

[0031] Adjusting vertical seat 203 upper is equipped with adjusting slider two 205, adjusting slider two 205 upper fixed connection has connecting plate two 206, the lower surface of connecting plate two 206 is equipped with angle groove 207, angle groove 207 inner side is equipped with connecting layer one 400 of protection, adjusting vertical seat 203 upper is equipped with a group of connecting layer two 500 of protection.

[0032] Adjusting horizontal seat 102 lower surface right end fixed connection has support column, support column lower fixed connection has connecting plate one 101 for being connected with shock-absorbing structure, adjusting horizontal seat 102 left side is vertically formed adjusting sliding groove one 103.

[0033] The rear side of the adjusting cross seat 102 is provided with a fixed through groove 104 facing the adjusting sliding groove 103, and the rear side of the adjusting sliding block 201 is fixedly connected with a fixed stud 202.

[0034] The fixed stud 202 passes through the fixed through groove 104 and is screwed with a fixed nut, and the left side of the adjusting vertical seat 203 is provided with an adjusting sliding groove 204 above.

[0035] The upper surfaces of the adjusting vertical seat 203 and the connecting plate 206 are provided with fixed threaded holes at both ends, and the connecting plate 206 and the adjusting vertical seat 203 are clamped and connected with the compressor base and are fixed by screwing the studs into the inside of the fixed threaded holes.

[0036] The right side of the adjusting vertical seat 203 is provided with an embedded groove 209, the left end of the reinforcing connecting piece 300 and the inner part is provided with an embedded plate 305, and the right side of the embedded plate 305 is fixedly connected with an adjusting column 304.

[0037] The right side of the adjusting column 304 is provided with an adjusting threaded hole, the inside of the adjusting threaded hole is provided with an adjusting stud 303 and is rotatably connected with each other, and the right side of the adjusting stud 303 is provided with an end plate 301.

[0038] The left side of the end plate 301 is fixedly connected with two groups of butt blocks 302, and the right side of the adjusting cross seat 102 is provided with two groups of butt grooves 105.

[0039] Please refer to Figures 1-5 , as the first embodiment of the utility model: first, the user places the connecting plate 206 above the compressor base, makes the adjusting sliding block 205 slide in the adjusting sliding groove 204, makes the connecting layer 500 installed on the upper surface of the adjusting vertical seat 203 abut with the lower surface of the compressor base, and is clamped and connected by screwing the stud into the inside of the fixed threaded hole, secondly, the user makes the adjusting sliding block 201 slide in the adjusting sliding groove 103 according to the position of the damping structure connecting plate, makes the fixed nut and the fixed stud 202 screw tightly, and makes the adjusting stud 303 rotate in the inside of the adjusting threaded hole in the sliding of the adjusting sliding block 201, changes the overall length of the reinforcing connecting piece 300, and reinforces the connection between the supporting leg assembly 100 and the supporting leg assembly 200, so that it can be suitable for multiple specifications of compressors and damping structure connection.

[0040] The upper surface of the adjusting vertical seat 203 and the three side surfaces of the corner groove 207 are provided with connecting holes 208 for connecting with the connecting layer one 400 and the connecting layer two 500;

[0041] The connecting layer one 400 and the connecting layer two 500 are provided with connecting columns 401 at the connecting positions with the upper surface of the adjusting vertical seat 203 and the three side surfaces of the corner groove 207, the connecting layer one 400 and the connecting layer two 500 are made of rubber material and the connecting columns 401 and the connecting holes 208 are embedded with each other, the connecting layer one 400 and the connecting layer two 500 are installed at the connecting position between the connecting plate two 206 and the adjusting vertical seat 203 and the compressor base for connecting protection.

[0042] Please refer to Figures 1-4 and Figure 6 , as a second embodiment of the present application: based on the above first embodiment, the user can install the connecting layer one 400 into the inner side of the corner groove 207 through the embedding of the connecting column 401 and the connecting hole 208, and install the connecting layer two 500 on the upper surface of the adjusting vertical seat 203 through the embedding of the connecting column 401 and the connecting hole 208, when clamping and connecting the compressor base, the connecting layer one 400 and the connecting layer two 500 are connected, so as to reduce the noise generated by the later vibration.

[0043] The above only describes the preferred embodiments of the present application and is not intended to limit the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. An assembled foot for a compressor shock mount, comprising: The foot assembly one (100), the foot assembly two (200), the reinforcing connector (300) and the joint protective layer one (400) are characterized in that: The upper end of the internal composition of the foot assembly one (100) is provided with an adjusting horizontal seat (102); The left end of the adjusting horizontal seat (102) is provided with a foot assembly two (200) connected with the compressor base, and the right side of the adjusting horizontal seat (102) is provided with a reinforcing connector (300) for strengthening the fixing firmness of the foot assembly two (200), and the lower end of the internal composition of the foot assembly two (200) is provided with an adjusting sliding block one (201), and the upper side of the adjusting sliding block one (201) is fixedly connected with an adjusting vertical seat (203); 2. The fabricated foot for a compressor's vibration isolation structure as set forth in claim 1, wherein: The upper side of the adjusting vertical seat (203) is provided with an adjusting sliding block two (205), and the upper side of the adjusting sliding block two (205) is fixedly connected with a connecting plate two (206), and the lower surface of the connecting plate two (206) is provided with an angle groove (207), and the inner side of the angle groove (207) is provided with a joint protective layer one (400), and the upper side of the adjusting vertical seat (203) is provided with a group of joint protective layer two (500).

3. A compressor shock absorbing structure assembly type foot according to claim 2, characterized in that: The right end of the lower surface of the adjusting horizontal seat (102) is fixedly connected with a support column, the lower side of the support column is fixedly connected with a connecting plate one (101) connected with the damping structure, and the left side of the adjusting horizontal seat (102) is vertically formed with an adjusting sliding groove one (103).

4. The assembled foot of a compressor's shock absorbing structure according to claim 3, characterized in that: The rear side of the adjusting horizontal seat (102) is provided with a fixed through groove (104) facing the adjusting sliding groove one (103), the rear side of the adjusting sliding block one (201) is fixedly connected with a fixed screw column (202), and the adjusting sliding block one (201) and the adjusting sliding groove one (103) are movably embedded.

5. A compressor shock absorbing structure assembly type foot according to claim 4, characterized in that: The fixed screw column (202) passes through the fixed through groove (104) and is screwed with a fixed nut, the left side of the adjusting vertical seat (203) is provided with an adjusting sliding groove two (204), and the adjusting sliding block two (205) and the adjusting sliding groove two (204) are movably embedded. The upper and lower ends of the adjusting vertical seat (203) and the connecting plate two (206) are provided with fixed threaded holes, and the connecting plate two (206) and the adjusting vertical seat (203) are clamped and connected to the compressor base and are fixedly connected by screwing the screw column into the inner side of the fixed threaded hole; 6. A compressor shock absorbing structure assembly type foot according to claim 5, characterized in that: The right side of the adjusting vertical seat (203) is provided with an embedded groove (209), the left end of the reinforcing connector (300) and the internal composition is provided with an embedded plate (305), and the right side of the embedded plate (305) is fixedly connected with an adjusting column (304). The right side of the adjusting column (304) is provided with an adjusting threaded hole, the adjusting threaded hole is provided with an adjusting screw column (303) and is rotatably connected, and the right side of the adjusting screw column (303) is provided with an end plate (301). The left side lower end of the end plate (301) is fixedly connected with two groups of butt blocks (302), the right side of the adjusting horizontal seat (102) is provided with two groups of butt grooves (105), the butt blocks (302) and the butt grooves (105) and the embedded plates (305) and the embedded grooves (209) are mutually embedded and fixed by bolts.

7. The fabricated foot of claim 1 wherein: The upper surface of the adjusting vertical seat (203) and the three side surfaces of the corner groove (207) are provided with connecting holes (208) for connecting the connecting protective layer one (400) and the connecting protective layer two (500); The connecting protective layer one (400) and the connecting protective layer two (500) and the upper surface of the adjusting vertical seat (203) and the three side surfaces of the corner groove (207) are provided with connecting columns (401), the connecting protective layer one (400) and the connecting protective layer two (500) are made of rubber material and the connecting columns (401) and the connecting holes (208) are mutually embedded.