[0001] The invention concerns a method and a workpiece according to the preamble of claim
1 and 5 respectively.
[0002] In a rodless cylinder, an inner sealing band is arranged to seal the slot against
overpressure in the cylinder spaces between the piston, which is moveable inside the
cylinder, and the cylinder end walls. Conventional flexible sealing bands are typically
provided with a main portion, being received inside the slot in one way or the other,
and sealing elements sealingly co-operating with the areas around the slot. In order
to allow a movement transferring means, being connected to the piston, to pass through
the slot, the band is guided downwards into the central portion of the piston between.
the axially separate cylinder seals, thus leaving the slot free. When the piston is
moving, there is thus a continuous deformation of the band radially inwards for movements
from the slot and outwards for movements towards the slot. In all rodless cylinders,
this continuous deformation result in that work which could be used for the piston
movement is instead used for effecting the band. This amount of work is generally
of no greater importance with respect to operating cylinders with large dimensions,
but in case of small cylinders, and in particularly miniaturised cylinders, having
piston diameters as small as close to 10 mm and even less, this work is an important
part of the total displacement work for the cylinder. The reason for this is that
conventional sealing bands for smaller cylinders have dimensions and proportions resulting
in a great deformation work as seen in the particular application.
[0003] It is an aim of this invention to provide a method and a workpiece according to the
above whereby flexible sealing bands may be produced, so that the above problem is
essentially reduced.
[0004] This aim is achieved according to the invention in a method of the above mentioned
kind through the features of the characterizing portion of claim 1 and by a workpiece
as mention above through the feature of the characterizing portion of claim 5.
[0005] This way it is possible to optimise the band workpiece for subsequent cutting operation,
wherein the sealing lips are cut. Further, hereby the main portion may be dimensioned
only in view of the demands put forward on the sealing band in the environment of
the slot cylinder, without having to take account of the fact that the main portion
has to be used for feeding and guiding when the sealing lips are cut. The guiding
and feeding function is instead provided for by the integral strip portion, which,
when it has fulfilled its function for assuring adequate handling of the band and
the band workpiece when cutting of the sealing lips, may be eliminated by cutting
it away lengthwise. This way the resulting sealing band may be given such dimensions
that the deformation work associated with the bending of the band when operating the
cylinder is reduced, particularly radically in cases of small cylinders. A further
advantage with the invention is that the sealing band having reduced dimensions demands
less space in the inside of a piston as well as in the slot.
[0006] Through the feature of claim 2 it is achieved that the cut between the strip portion
and the main portion is located on the side of the latter which is turned against
the outside of the cylinder, where there are not particular demands for surface smoothness
and where thus a certain roughness can be tolerated.
[0007] Further advantages are achieved through the features according to the other claims
and these advantages will appear in the following detailed description of embodiments
with reference to the annexed drawings, wherein:
Fig. 1 diagrammatically shows a section through a longitudinal workpiece for making
a sealing band according to the invention, and
Fig. 2 diagrammatically shows a cross section through a workpiece having an alternative
form.
[0008] In Fig. 1 numeral 1 concerns a cross section through a longitudinal workpiece for
making a sealing band for inside sealing of a slot cylinder, which may be of a kind
being known per se and therefore is not necessary to show here. The workpiece include
a main portion 2, having protruding elements 3, 8 and a guiding/feeding strip portion
4, which in this embodiment is comprised of two parallel strips 4', 4", and which
is intended for guiding and/or feeding the workpiece in a cutting operation for producing
the sealing lips 3. The division of the strip portion 4 into two strips 4', 4" is
related to production technical reasons and is associated with an operation wherein
the reinforcement thread 9 is placed. The strip portion 4 provides guiding surfaces
5 - 7, which are intended to contact corresponding guiding means in a machine for
carrying out a cutting process.
[0009] The reason for having to cut the sealing lips 3 is that the cutting procedure assure
that the sealing lips are really provided with a sufficiently sharp edge as seen at
the outer pointed areas on Fig. 1. Other methods of forming the sealing band, such
as moulding etc. can not guarantee such sufficiently sharp edges in this region, which
in use of the band might result in insufficient sealing of the slot cylinder, since
when the edges have too great radius, pressure fluid might find its way between the
sealing lips and the cylinder material thus resulting in leakage.
[0010] The cutting is achieved such that the workpiece is fed through obliquely positioned
knives, that cut the band along the cutting planes B-B and C-C for cutting the sealing
lips 3, whereupon the main portion may be cut free from the strip portion 4 by a knife
acting along the cut A-A.
[0011] In an alternative form of the band workpiece, according to Fig. 2, the strip portion
is a strip 14 placed as a continuation of the lower surface of the resulting sealing
band, whereby one single cutting operation is necessary, which is made in the plane
D-D, whereby in one operation the sealing lips 13 are cut at the same time as the
main portion 2 is cut free from the guiding/feeding strip 14. Further, the band workpiece
11 provides corresponding guiding surfaces 15 - 17 and, within the body of the main
portion 12, correspondingly as the main portion 2 in Fig. 1, a reinforcement thread
19, which preferably is a steel wire.
[0012] The material of the workpiece is a suitable synthetic material whereof polyurethane
may be mentioned.
[0013] Shapes of the workpiece other than the one shown, may come into question, for example,
the strip portion 4 may instead of being arranged on an upper side of the main portion,
as seen in Fig. 1, be arranged centrally but not extending over the entire width of
the sealing lips on the bottom side of the main portion. It is however, preferred
that the strip portion is attached as is shown in Fig. 1, since, at the upper surface
of the main portion, certain surface smoothness deviations may be tolerated emanating
from the cutting which is less tolerable at the inside of the sealing band. Further,
the strip portion 4 in Fig. 1 may be made from one single strip instead of two strips
4', 4" as in the Figure.
[0014] Through the invention it is achieved that sealing bands having essentially smaller
dimensions may be manufactured, particularly in the vertical dimension as seen on
Figs. 1 and 2 while maintaining, and even improving the provisions for guiding the
band when cutting the lips. Using conventional techniques the sealing band would have
essentially larger final dimensions, particularly in the vertical direction, resulting
in the above mentioned drawbacks.
1. Method for making elongated, flexible sealing bands for inner sealing of axial slots
in fluid cylinder of the rodless cylinder type, wherein the band includes a main portion
(2,12), and extending therefrom, two sealing lips (3,13) for sealing co-operation
with the cylinder in areas on each side of the slot, wherein an elongated flexible
band workpiece (1,11) is produced from a synthetic material by forming the synthetic
material, and that subsequently the band workpiece is fed through a cutting station,
wherein the sealing lips are cut (B-B, C-C) from elements (3,8,13,14) protruding from
the main portion (2), characterized in that a band workpiece (1) is produced which besides the main portion and the protruding
elements includes an integral strip portion (4,14) along the longitudinal extension
of the band workpiece, and that, in a cutting operation (A-A), the strip portion is
longitudinally cut away from the main portion after having been used for guiding and/or
feeding the band while cutting the sealing lips (3,13).
2. Method according to claim 1, characterized in that the band workpiece (1) is produced such that the strip portion is attached
to the main portion (2) at the side which in use is turned in the direction away from
the cylinder room.
3. Method according to claim 1 or 2, characterized in that the sealing lips (3) are cut by cutting longitudinal excess material (8)
away from the side of the sealing lips which in use is turned against the outside
of the cylinder.
4. Method according to any of previous claims, characterized in that each cutting operation (A-(A-A, B-B, C-C, D-D) is carried out continuously.
5. Elongated workpiece (1,11), for a sealing band for inside sealing of axial slots in
fluid cylinders of the rodless cylinder type, wherein the band includes a main portion
(2,12) and, extending therefrom, two protruding elements (3,8) which are cut into
sealing lips for sealing co-operation with a cylinder in regions on each side of the
slot, characterized in that the workpiece, besides the main portion (2,12) and the protruding elements
(3,8), includes a longitudinal strip portion (4,14) for guiding and/or feeding the
workpiece (1,11), which is removable by cutting.
6. Workpiece according to claim 5, characterized in that it also includes longitudinal excess material (8) being removable by cutting,
in the regions of the sealing lips (3), on the side of which in use is turned against
the outside of the cylinder.
7. Workpiece according to claim 5 or 6, characterized in that at least one longitudinal reinforcement thread (9, 19) is included inside
the body of the main portion (2,12).