Nova Patents
EP0342683A2

A gas spring.

Abstract

According to an illustrative example of the invention a gas spring comprises adjacent one end of the cylinder two axially spaced sealing rings, namely an axially inner and an axially outer sealing ring. A lubricant chamber is defined axially between the axially inner and the axially outer sealing rings. The axially inner sealing ring is pressure-resistant against the elevated gas pressure within the working chamber such as to main­tain the pressure of gas within the working chamber at a level exceeding the pressure within the lubricant chamber.

EP0342683A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 18 May 2009, 17.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

22 claims: 14 independent, 8 dependent

  1. 1
    A gas spring comprising a cylinder member (1) having an axis and defining a cavity therein, and further compris­ing a piston rod (3) axially extending through at least one end of said cylinder member (1), said piston rod member (3) extending through a piston rod guiding and sealing group (5, 4, 7, 8, 9, 10) adjacent to said at least one end of said cylinder member (1), said piston rod guiding and sealing group (5, 4, 8, 8, 9, 10) including two axially spaced sealing arrangements (4, 5, 7;9, 10), namely an axially outer sealing arrangement (9, 10) and an axially inner sealing arrangement (4, 5, 7) axially fixed with respect to said cylinder member (1), said sealing arrangements 9, 10;4, 5, 7) being in sliding contact with an external surface of said piston rod member (3), a lubricant chamber (11) being provided axially between said two sealing arrangements (9, 10;4, 5, 7) adjacent to said external surface of said piston rod member (3), said lubricant chamber (11) containing a lubricant agent, a working chamber (2) being provided within said cavity adjacent to said axially inner sealing arrangement (4, 5, 7), said working chamber (2) containing a volume of pressurized gas, characterized by said axially inner sealing arrangement (4, 5, 7) being a pressure-resistant sealing arrangement capable of maintaining the pressure of said volume of pressurized gas at a level exceeding the pressure within said lubricant chamber (11).
  2. 4
    A gas spring as set forth in one of claims 1 to 3, said axially inner sealing arrangement (4, 5, 7) comprising an axially inner sealing member (4) located axially between an axially inner sealing member support member (5) and an axially outer sealing member support member (7).
  3. 6
    A gas spring as set forth in one of claims 1 to 5, said axially inner sealing member (4) being in sealing engagement with both said external surface of said piston rod member (3) and an internal surface of said cylinder member (1).
  4. 7
    A gas spring as set forth in one of claims 4 to 6, said axially inner sealing member support member (5) being fixed against axially inward movement by radially inward deformation (6) of said cylinder member (1).
  5. 8
    A gas spring as set forth in one of claims 4 to 7, said axially outer sealing member support member (7) being axially fixed against outwardly directed movement by a support sleeve (8), said support sleeve (8) being axially fixed with respect to said cylinder member (1) by terminal abutment means (12) of said cylinder member (1).
  6. 10
    A gas spring as set forth in one of claims 8 and 9, said axially outer sealing arrangement (9, 10) comprising an axially outer sealing member (9) radially between said piston rod member (3) and said support sleeve (8).
  7. 12
    A gas spring as set forth in one of claims 1 to 11, said axially outer sealing arrangement (9, 10) comprising an axially outer sealing member (9) supported against axially outward movement by an annular closure member (10) provided axially outwards of said axially outer sealing member (9) and being axially fixed with respect to said cylinder member (1).
  8. 15
    A gas spring as set forth in one of claims 12 to 14, said annular closure member (10) being axially fixed by snapping engagement with respect to said cylinder member (1).
  9. 17
    A gas spring as set forth in one of claims 8 to 16, said support sleeve (8) being integral with said axially outer sealing member support member (14).
  10. 18
    A gas spring as set forth in one of claims 1 to 17, said piston rod member (3) being provided with a piston unit (20) inside said cavity, said piston unit (20) dividing said working chamber (2) into two working compartments (2a, 2b), said working compartments (2a, 2b) being interconnected by passage means (31, 32) permitting gas exchange between said working compartments (2a, 2b).
  11. 19
    A gas spring as set forth in one of claims 1 to 18, said lubricant agent being an oil of high viscosity.
  12. 20
    A gas spring as set forth in one of claims 1 to 18, said lubricant being a lubricating grease.
  13. 21
    A gas spring as set forth in one of claims 1 to 20, substantially atmospheric pressure prevailing within said lubricant chamber.
  14. 22
    A method of assembling a gas spring, said gas spring comprising a a cylinder member (1) having an axis and defining a cavity therein, and further compris­ing a piston rod (3) axially extending through at least one end of said cylinder member (1), said piston rod member (3) extending through a piston rod guiding and sealing group (5, 4, 7, 8, 9, 10) adjacent to said at least one end of said cylinder member (1), said piston rod guiding and sealing group (5, 4, 8, 8, 9, 10) including two axially spaced sealing arrangements (4, 5, 7; 9, 10), namely an axially outer sealing arrangement (9, 10) and an axially inner sealing arrangement (4, 5, 7) axially fixed with respect to said cylinder member (1), said sealing arrangements (9, 10; 4, 5, 7) being in sliding contact with an external surface of said piston rod member (3), a lubricant chamber (11) being provided axially between said two sealing arrangements (9, 10; 4, 5, 7) adjacent to said external surface of said piston rod member (3), said lubricant chamber (11) containing a lubricant agent, a working chamber (2) being provided within said cavity adjacent to said axially inner sealing arrangement (4, 5, 7), said working chamber (2) containing a volume of pressurized gas, said axially inner sealing arrangement (4, 5, 7) being a pressure-resistant sealing arrangement capable of maintaining the pressure of said volume of pressurized gas at a level exceeding the pressure within said lubricant chamber (11), said piston rod member (3) being connected with a piston unit (20) inside said cavity, said method comprising the following steps:a) inserting said piston rod member (3) with said piston unit (20) into said cavity;b) inserting said axially inner sealing arrangement (4, 5, 7) into said cavity and axially fixing said axially inner sealing arrangement (4, 5, 7) with respect to said cylinder member (1) against axial movement thereof;c) introducing a gas into said working chamber (2) across said axially inner sealing arrangement (4, 5, 7) such as to provide said volume of pressurized gas within said working chamber (2);d) introducing said lubricant agent into said lubricant chamber (11);e) closing said lubricant chamber (11) by said axial outer sealing arrangement (9, 10).