Hydraulic pressure reservoir
View Patent ↗A hydraulic pressure reservoir having at least one pressure chamber formed between two opposed, movable inner boundary members. Each inner boundary members includes a spring cover and a diaphragm spring. An outer boundary member peripherally surrounds the movable inner boundary members and has a U-shaped cross section along at least a part of its periphery to axially support the diaphragm springs in a fixed axial position. The outer boundary member can be formed in several pieces that are held together by interconnections or by a surrounding outer tensioning member.
1. A hydraulic pressure reservoir comprising: at least one pressure chamber that is formed between two opposed, movable inner boundary members, each of which inner boundary members includes a spring cover and an abutting diaphragm spring that acts against the associated inner boundary member to urge it toward the opposed inner boundary member; and an outer boundary member peripherally surrounding the movable inner boundary members and having a U-shaped cross section along at least a part of its periphery, wherein the outer boundary member axially supports the diaphragm springs in a fixed axial position, and wherein each of the diaphragm springs includes a radially outer end that is pivotally supported by a housing-mounted pivot ring for pivotal movement of the radially outer end of the diaphragm spring relative to the outer boundary member and includes a radially inner end that is pivotally supported by a spring-cover-mounted pivot ring for pivotal movement of the radially inner end of the diaphragm spring relative to the inner boundary member.
2. A hydraulic pressure reservoir in accordance with claim 1 , wherein the outer boundary member is a housing ring having a U-shaped cross section.
3. A hydraulic pressure reservoir in accordance with claim 2 , wherein the housing ring is a two-piece component.
4. A hydraulic pressure reservoir in accordance with claim 3 , wherein the housing ring includes two half-rings.
5. A hydraulic pressure reservoir in accordance with claim 2 , wherein the housing ring includes three ring segments.
6. A hydraulic pressure reservoir in accordance with claim 5 , wherein the housing ring includes three 120° ring segments.
7. A hydraulic pressure reservoir in accordance with claim 4 , wherein the housing ring is divided in a plane that passes through an axis of rotation of a U-shaped cross section that defines a generating curve of the housing ring.
8. A hydraulic pressure reservoir in accordance with claim 7 , wherein the ring segments are of identical construction.
9. A hydraulic pressure reservoir in accordance with claim 8 , wherein the ring segments are joined together end-to-end in a positive connection.
10. A hydraulic pressure reservoir in accordance with claim 9 , wherein the positive connection includes a dovetail joint.
11. A hydraulic pressure reservoir in accordance with claim 10 , wherein the dovetail joint includes a dovetail-shaped component on one end of each of the ring segments and a correspondingly-shaped recess on an opposite end of each of the ring segments.
12. A hydraulic pressure reservoir in accordance with claim 11 , wherein the dovetail joint includes means for radially securing the dovetail joint from radial separation.
13. A hydraulic pressure reservoir comprising: at least one pressure chamber that is formed between two opposed, movable inner boundary members, each of which inner boundary members includes a spring cover and an abutting diaphragm spring that acts against the associated inner boundary member to urge it toward the opposed inner boundary member; and an outer boundary member peripherally surrounding the movable inner boundary members and having a U-shaped cross section along at least a part of its periphery, wherein the outer boundary member is a housing ring in the form of a two-piece component including two half-rings and is divided in a plane that passes through an axis of rotation of a U-shaped cross section that defines a generating curve of the housing ring and axially supports the diaphragm springs in a fixed axial position, wherein the ring segments are of identical construction and ends of the ring segments abut each other without a positive lock and are supported by at least one tensioning member that peripherally surrounds the ring segments to provide radial retention of the ring segments about the inner boundary members.