AIR COMPRESSOR
20190368491 ยท 2019-12-05
Inventors
Cpc classification
F01C21/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/1281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2230/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C29/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An air compressor has a first plate and a second plate perpendicular to each other, a driving device, a compression assembly, a belt set, and an oil vessel. The driving device is securely mounted on the first plate and comprises a first pulley. A rotating axis of the first pulley is perpendicular to the second plate. The compression assembly is securely mounted on the second plate and comprises a second pulley. A rotating axis of the second pulley is perpendicular to the second plate. The belt set is sleeved on the first pulley and the second pulley. With the driving device and the compression assembly are securely mounted on the first plate and the second plate respectively, the rotating axes of the first pulley and the second pulley may be parallel to each other. Thus, a tension may be distributed on the belt set evenly.
Claims
1. An air compressor comprising: a frame comprising: a right-angled base including: a first plate and a second plate perpendicular to each other; a driving device securely mounted on the first plate and comprising: a first pulley, a rotating axis of the first pulley perpendicular to the second plate; a compression assembly comprising: a compressor securely mounted on the second plate; and a second pulley mounted on a first end of the compressor, and a rotating axis of the second pulley perpendicular to the second plate; a belt set sleeved around the first pulley and the second pulley; and an oil vessel communicating with the compression assembly.
2. The air compressor as claimed in claim 1, wherein the right-angled base further comprises: at least one upright column being perpendicular to the first plate; a lower end of each one of the at least one upright column securely mounted on the first plate and an upper end of each one of the at least one upright column securely mounted on a second end of the compressor; wherein the first end and the second end of the compressor are two opposite ends.
3. The air compressor as claimed in claim 2, wherein the right-angled base further comprises: at least one first shockproof bumper, each one of the at least one first shockproof bumper mounted on the upper end of a respective one of the at least one upright column and between the compression assembly and said upright column.
4. The air compressor as claimed in claim 1, wherein an upper surface of the driving device is securely mounted on a lower surface of the first plate.
5. The air compressor as claimed in claim 3, wherein an upper surface of the driving device is securely mounted on a lower surface of the first plate.
6. The air compressor as claimed in claim 1, wherein: the compression assembly further comprises: a driving shaft mounted in the compressor and extending out of the first end of the compressor; an end surface of the first end of the compressor abutting the second plate so that the driving shaft is perpendicular to the second plate; and the second pulley is sleeved on and rotates with respect to the driving shaft; wherein the end surface of the compression assembly abuts and is securely mounted on the second plate, and the rotating axis of the second pulley is perpendicular to the end surface of the compression assembly.
7. The air compressor as claimed in claim 5, wherein: the compression assembly further comprises: a driving shaft mounted in the compressor and extending out of the first end of the compressor; an end surface of the first end of the compressor abutting the second plate so that the driving shaft is perpendicular to the second plate; and the second pulley is sleeved on and rotates with respect to the driving shaft; wherein the end surface of the compression assembly abuts and is securely mounted on the second plate, and the rotating axis of the second pulley is perpendicular to the end surface of the compression assembly.
8. The air compressor as claimed in claim 1, wherein the right-angled base further comprises: at least one right-angled plate, each one of the at least one right-angled plate having a first edge and a second edge perpendicular to each other; the first edge of each one of the at least one right-angled plate abutting and securely mounted on the first plate and the second edge of each one of the at least one right-angled plate abutting and securely mounted on the second plate.
9. The air compressor as claimed in claim 7, wherein the right-angled base further comprises: at least one right-angled plate, each one of the at least one right-angled plate having a first edge and a second edge perpendicular to each other; the first edge of each one of the at least one right-angled plate abutting and securely mounted on the first plate and the second edge of each one of the at least one right-angled plate abutting and securely mounted on the second plate.
10. The air compressor as claimed in claim 1 further comprising a tension adjusting assembly, the tension adjusting assembly comprising: a torque provider having a fixed end and a free end, the fixed end securely mounted on the second plate, and the torque provider extending in a direction that is perpendicular to the second plate; an arm having a pivoting end and an abutting end; the pivoting end tiltably mounted on the free end of the torque provider and the arm extending in a direction that is parallel with the second plate; and a wheel rotatably mounted on the abutting end of the arm, and a rotating axis of the wheel being perpendicular to the second plate; wherein the torque provider forces the arm so that the wheel on the arm keeps abuts the belt set.
11. The air compressor as claimed in claim 9 further comprising a tension adjusting assembly, the tension adjusting assembly comprising: a torque provider having a fixed end and a free end, the fixed end securely mounted on the second plate, and the torque provider extending in a direction that is perpendicular to the second plate; an arm having a pivoting end and an abutting end; the pivoting end tiltably mounted on the free end of the torque provider and the arm extending in a direction that is parallel with the second plate; and a wheel rotatably mounted on the abutting end of the arm, and a rotating axis of the wheel being perpendicular to the second plate; wherein the torque provider forces the arm so that the wheel on the arm keeps abuts the belt set.
12. The air compressor as claimed in claim 1, wherein the frame further comprises: a first support extending upward and downward; and a second support extending horizontally and securely mounted on an upper end of the first support; the right-angled base securely mounted on the second support.
13. The air compressor as claimed in claim 11, wherein the frame further comprises: a first support extending upward and downward; and a second support extending horizontally and securely mounted on an upper end of the first support; the right-angled base securely mounted on the second support.
14. The air compressor as claimed in claim 12, wherein the frame further comprises: a plurality of second shockproof bumpers securely mounted on joints of the first support and the second support and between the first support and the second support.
15. The air compressor as claimed in claim 13, wherein the frame further comprises: a plurality of second shockproof bumpers securely mounted on joints of the first support and the second support and between the first support and the second support.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0017] With reference to
[0018] Then please refer to
[0019] The first support 11 extends upward and downward, and the second support 12 extends horizontally and is securely mounted on an upper end of the first support 11. The second shockproof bumpers 13 are securely mounted on joints of the first support 11 and the second support 12 so that the second shockproof bumpers 13 are between the first support 11 and the second support 12. Precisely, there are four joints between the first support 11 and the second support 12 in this embodiment, so the number of the second shockproof bumpers 13 is four and the four second shockproof bumpers 13 are mounted on the four joints respectively. Each one of the second shockproof bumpers 13 is elastic to absorb vibration generated by the operating air compressor.
[0020] Then please refer to
[0021] Each right-angled plate 143 comprises a first edge 1431 and a second edge 1432. The first edge 1431 abuts and is securely mounted on the first plate 141, and the second edge 1432 abuts and is securely mounted on the second plate 142. Therefore, with the right-angled plates 143, the first plate 141 and the second plate 142 can be kept perpendicular to each other, instead of deforming because of bearing weight for a long period of time.
[0022] Each upright column 144 comprises an upper end and a lower end. The lower end of each upright column 144 is securely mounted on the first plate 141. Each first shockproof bumper 145 is securely mounted on the upper end of a respective upright column 144. Precisely, each upright column 144 has a screw at the upper end of the upright column 144 and the first shockproof bumper 145 is screwed on the screw, so that a height position of the first shockproof bumper 145 can be adjusted by rotating. Each upright column 144 is perpendicular to the first plate 141 and extends upward from the first plate 141. The upright column 144 may be a solid column or a hollow column, or a column-like body made from a folded plate.
[0023] Then please refer to
[0024] The compression assembly 30 is securely mounted on the second plate 142. In this embodiment, the compression assembly 30 comprises a compressor 31, a second pulley 32, a driving shaft 33, and selectively comprises an inlet filter device 34. The compressor 31 comprises a first end and a second end that are opposite ends of the compressor 31. An end surface of the first end of the compressor 31 abuts and is securely mounted on the second plate 142. The driving shaft 33 of the compression assembly 30 extends out of the first end of the compressor 31, and the driving shaft 33 of the compression assembly 30 is mounted through and is perpendicular to the second plate 142. The second pulley 32 is sleeved on the driving shaft 33 of the compression assembly 30, so a rotating axis of the second pulley 32 is also perpendicular to the second plate 142.
[0025] A bottom surface of the second end of the compressor 31 abuts on the upper end of the upright column 144 for supporting the compression assembly 30, so that the driving shaft 33 of the compression assembly 30 can keep perpendicular to the second plate 142. In this embodiment, the second end of the compressor 31 is securely mounted on the first shockproof bumpers 145 at the upper ends of the upright columns 144. In other words, the first shockproof bumpers 145 are between the compression assembly 30 and the upright column 144. However, the compressor 31 and the first shockproof bumpers 145 are not fixed on each other tightly, each first shockproof bumper 145 upward abuts slightly a bottom surface of the compressor 31 instead, so that the first shockproof bumpers 145 can support the compressor 31 and the driving shaft 33 of the compression assembly 30 may not be oblique. Similar to the second shockproof bumpers 13, the first shockproof bumpers 145 may be elastic to absorb vibration generated by the operating air compressor. Besides, a distance between the compressor 31 and the upright column 144 may be adjusted through adjusting the first shockproof bumpers 145 and thereby keep the driving shaft 33 of the compression assembly 30 perpendicular to the second plate 142.
[0026] Then please refer to
[0027] The belt set 40 is sleeved on the first pulley 22 and the second pulley 32 and thereby energy generated by the driving device 20 can transmit to the compression assembly 30 via the belt set 40.
[0028] Then please refer to
[0029] With the tension adjusting assembly 60 keeping abutting the belt set 40, even if the air compressor of the present invention is used for a long term and thus the belt set 40 gets loose, the tension adjusting assembly 60 still can make the belt set 40 have constant tension and adjustment is not needed. Therefore, the first pulley 22 can transmit power to the second pulley 32 stably via the belt set 40 instead of being broken or slipping with respect to the belt set 40.
[0030] The oil vessel 50 communicates with the compression assembly 30, or, to be precise, communicates with the compressor 31. The air compressed by the compressor 31 is reserved in the oil vessel 50. The cooling assembly 70 may be used for cooling the compressed air or lubricating oil circulating in the compressor 31.
[0031] Consequently, with the right-angled base 14 comprising the first plate 141 and the second plate 142 that are perpendicular to each other, the accuracy of assembling the driving device 20 and the compression assembly 30 is improved. Precisely, because the driving device 20 and the compression assembly 30 are securely mounted on the first plate 141 and the second plate 142 respectively, the driving shaft 23 of the driving device 20 and the driving shaft 33 of the compression assembly 30 are ensured to be parallel with each other, and thereby the rotating axes of the first pulley 22 and the second pulley 32 that are mounted on the driving shafts 22, 33 can keep in parallel with each other. Therefore, the tension on the belt set 40 that is sleeved on the first pulley 22 and the second pulley 32 may distribute evenly on the belt set 40, and it will not occur that the tension on one part of the belt set 40 is different from that of another part of the belt set 40 in a direction parallel with the rotating axes. With aforesaid structure, the belt set 40 may not slip and be worn out and thereby a useful lifetime of the belt set 40 is extended. In addition, with the right-angled base 14, the worker does not need a precision instrument to assist him with locating, adjusting, and calibrating the driving device 20 and the compression assembly 30 during assembly. Instead, the worker may just put the driving device 20 and the compression assembly 30 to abut the right-angled base 14, fix the driving device 20 and the compression assembly 30 on the right-angled base 14, and then the assembling is completed. Therefore, even though the worker is not particularly skilled in the assembly, the worker still can finish the assembly with lower error rate and thereby a cost of maintenance is reduced.
[0032] Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.