The present invention relates to a spring adjusting device and a valve assembly comprising the spring adjusting device.
A spring adjusting device is generally applied to a component which uses a spring to adjust and control parameters, and is especially applied to various valve assemblies. The spring adjusting device generally comprises an adjusting screw rod 101, a spring 102 and a spring seat 103 which is located between the adjusting screw rod and the spring, as shown in
However, when the force of the spring is too large during working, the end part 104 may be separated from a concave hole 105 of the spring seat 103, so that the use of the spring is influenced; and in addition, the spring seat 103 is twisted by taking the end part 104 as a center, so that the spring 102 is bent on the whole. For this reason, the spring 102 is extremely unstable during working, the setting points of the parameters of the valve assembly drift and the overall working performance of the valve assembly is influenced.
A spring seat is also disclosed in the prior art, the structure of the concave hole is only improved to a conical concave part and no further content is disclosed.
The present invention provides a spring adjusting device and a valve assembly to solve the above-mentioned technical problem.
In one aspect, the present invention provides a spring adjusting device, which comprises an adjusting screw rod, a spring and a spring seat which is located between the adjusting screw rod and the spring, wherein a groove is arranged in the spring seat, which can contain an end part of one end of the adjusting screw rod, and is provided with a cylindrical side wall.
The end part of the adjusting screw rod comprises a side wall and a bottom end surface; and the side wall of the end part is in clearance fit with the cylindrical side wall of the groove.
A bearing is arranged between the groove bottom of the groove and the bottom end surface of the end part.
The adjusting screw rod further comprises a main body part which is connected with the end part, the outer diameter of the main body part is larger than the outer diameter of the end part and a bearing is arranged between the bottom part of the main body part and the top part of the spring seat.
The bottom part of the end part is in line contact or point contact with the groove bottom of the groove.
The groove bottom of the groove is a conical surface or a flat surface.
In the example of the spring adjusting device provided by the present invention, since the groove with the cylindrical side wall is arranged in the spring seat, when the force of the spring is too large, the end part which is held in the groove is not easily separated from the groove. In addition, since the adjusting screw rod is perpendicular to the spring seat, the spring seat is not twisted by taking the end part as the center and the spring is prevented from being bent on the whole. The spring is more stable during working, the setting points of the parameters of the valve assembly are prevented from drifting and the overall working performance of the valve assembly is improved.
Further, when the adjusting screw rod is rotated, the bearing which is arranged between the groove bottom of the groove and the bottom end surface of the end part can greatly reduce the friction force between the groove bottom of the groove and the bottom end surface. The twisting force applied to the spring seat is reduced to minimum, so that the twisting force is prevented from being transferred to the spring and the using effect of the spring is improved. In addition, the bearing is arranged between the bottom part of the main body part and the top part of the spring seat, so that the same technical effect can be achieved.
Moreover, since the bottom end surface of the end part is designed to be a spherical surface, when the bottom end surface is in point contact with the groove bottom of the groove, the friction force between the end part and the groove is also reduced and components are not easily damaged.
Furthermore, since the groove bottom of the groove is a conical surface, the end part is in line contact with the groove bottom of the groove, the friction is reduced and easy to be processed.
In another aspect, the invention further provides a valve assembly, which comprises any spring adjusting device described above.
The examples of the present invention provide a spring adjusting device and a valve assembly comprising the spring adjusting device. The spring adjusting device comprises an adjusting screw rod, a spring and a spring seat which is located between the adjusting screw rod and the spring. A groove is arranged in the spring seat and the side wall of the groove is cylindrical; and the side wall of the end part is in clearance fit with the side wall of the groove, and the end part can be partially or fully held in the groove. When the force of the spring is too large, since the groove is provided with the cylindrical side wall which is perpendicular to the radial force, the end part which is held in the groove is not easily separated from the groove. In addition, since the adjusting screw rod is perpendicular to the spring seat, the spring seat is not twisted by taking the end part as the center and the spring is prevented from being bent on the whole. The spring is more stable during working, the setting points of the parameters of the valve assembly are prevented from drifting and the overall working performance of the valve assembly is improved.
The technical solution of the present invention is further described below in combination with the drawings and the embodiments. The description of the preferred embodiments below is just exemplary and is absolutely not limitation to the present invention and the application or using method thereof.
As shown in
The adjusting screw rod 310 comprises a main body 311 and an end part 312. The end part 312 is located at the end part of the adjusting screw rod 310. The end part 312 is provided with a cylindrical side wall 313 and a bottom end surface 314 which is a spherical surface. The end part 312 is arranged in the inner chamber and is held in the groove 333, and the other end of the adjusting screw rod 310 is arranged outside the inner chamber. The length of the end part 312 is determined according to the depth of the groove 333, so as to enable the end part 312 to be partially or fully held in the groove 333. The inner diameter of the spring 320 is larger than the outer diameter of the bottom part 332, and the outer diameter of the spring 320 is smaller than the outer diameter of the top part 331.
The adjusting screw rod 310 can always be perpendicular to and be in contact with the spring seat 330. Even though the force of the spring is too large, since the groove 333 is provided with the cylindrical side wall which is perpendicular to the radial force, the end part 312 held in the groove is not easily separated from the groove 333. In addition, since the adjusting screw rod 310 can be always in perpendicular contact with the spring seat 330, the spring seat 330 is not twisted by taking the end part 312 as the center and the spring 320 is prevented from being bent on the whole. The spring 320 is more stable during working, the setting points of the parameters of the valve assembly 3 are prevented from drifting and the overall working performance of the valve assembly is improved. In addition, the outer diameter of the top part 331 is smaller than the inner diameter of the spring housing 350, so that the spring seat 330 can be movably arranged in the inner chamber, the spring seat 330 and the spring 320 can freely move up and down with the adjusting screw rod 310 and the adjustment range is larger.
Since the end part is in direct contact with the spring seat, friction occurs between the end part and the spring seat when the adjusting screw rod is rotated, the spring seat is subjected to twisting force and transfers the twisting force to the spring and the use of the spring is influenced. Therefore, the second example of the present invention provides a valve assembly with a bearing. The second example of the present invention is further described below in combination with
As shown in
Therefore, as shown in
One skilled in the art should understand that the description of the bearing provided by the second example of the present invention is just exemplary and the bearing shall not be limited to the bearing with the structure described above.
As shown in
As shown in
The bearing 860 comprises a shaft piece 861, a seat piece 862 and a plurality of balls 863 which are located between the shaft piece 861 and the seat piece 862. The shaft piece 861 and the seat piece 862 are annular. The bearing 860 is arranged between the bottom part of the main body part 813 and the top part 831 of the spring seat. The shaft piece 861 is in contact with the bottom part of the main body part 813 and the seat piece 862 is in contact with the top part 831 of the spring seat.
When the adjusting screw rod 810 is rotated, the shaft piece 861 rotates with the main body part 813, the seat piece 862 basically does not rotate and friction basically does not occur between the seat piece 862 and the spring seat 830 in contact with the seat piece 862. In addition to that the spring can be radially positioned and can be prevented from being bent, since the end surface 814 of the adjusting screw rod 810 is separated from the groove bottom 835 of the spring seat 830 and the bearing 860 exists between the bottom part of the main body part 813 and the spring seat 830, when the adjusting screw rod 810 is rotated, no friction occurs between the spring seat 830 and the adjusting screw rod 810, the twisting force applied to the spring seat 830 is reduced to minimum, the twisting force is prevented from being transferred to the spring 820 and the using effect of the spring is improved.
One skilled in the art should understand that the description of the bearing provided by the fourth example of the present invention is just exemplary and the bearing shall not be limited to the bearing with the structure described above.
The exemplary examples provided by the present invention are intended to enable the present disclosure to be more complete and to comprehensively convey the protection scope thereof to one skilled in the art. Examples of a great number of details such as specific parts, devices and methods are described, so as to provide comprehensive understanding to the examples of the present disclosure. It is very obvious for one skilled in the art that the details are unnecessarily provided, the exemplary examples can be implemented in various different forms and they shall not be explained as limitations to the scope of the present disclosure. In some exemplary examples, well-known processes, well-known device structures and well-known techniques are not described in detail.
Although terms such as first, second and third can be used to describe various components, parts or portions, these components, parts or portions shall not be limited by these terms; and these terms are only used for distinguishing a component, part or portion. When ordinal number terms such as “first”, “second”, among others, are used herein, they do not contain sequences or orders, unless otherwise clearly stated in the context. Therefore, under the situation of not departing from the description of the exemplary examples, the first component, part or portion described below can be explained as the term of a first component, part or portion.
Although various embodiments of the present invention have been described herein in detail, it should be understood that the present invention is not limited to the embodiments which are described and shown herein in detail. Other transformations and modifications can be realized by one skilled in the art under the situation of not departing from the essence and the scope of the present invention. All such transformations and modifications shall fall into the scope of the present invention. In addition, all components described herein can be replaced by other technically equivalent components.
Number | Date | Country | Kind |
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201220565995.2 | Oct 2012 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2013/085722 | 10/22/2013 | WO | 00 |