The present application claims the priority of European Patent Application No. 07 017 730.8, filed Sep. 11, 2007, the subject matter of which, in its entirety, is incorporated herein by reference.
The invention relates to a shaft rod for setting up a heald shaft for a weaving machine.
Heald shafts in weaving machines are disposed to accommodate a large number of healds, whereby each heald has a thread eye in order to guide a warp thread. Additional warp threads run between the healds. As a result of the up-and-down movement of the heald shaft the warp threads guided by the healds can be moved out of the plane of the remaining healds, as a result of which a shed is created into which the weft thread can be carried.
In most cases, each heald has at least two horizontal shaft rods that are parallel to each other and that have ends that are connected to each other by vertical lateral supports. Thus, the heald shaft forms a rectangular frame. Each of the upper and the lower shaft rods carries a heald mounting rail that consists, e.g., of steel. The healds have terminal eyelets that are used to hold them on the heald mounting rails.
In most cases, the heald shafts and the heald mounting rails are manufactured separately and subsequently connected to each other. To accomplish this, document DE 10 2004 037 717 B3 suggests the use of rubber cords. To do so, the shaft rod is provided with a groove that extends into a foot of the heald mounting rail. The rubber cord that is inserted in axially expanded state into the remaining space is used for clamping the foot in place in the groove. If the rubber cord is relaxed, it is shortened and its diameter is thus increased, so that it wedges the foot of the heald mounting rail into the groove of the shaft rod. However, to do so, it is necessary that the rubber cord be able to contract accordingly along the entire length. In addition, the heald mounting rail is provided with a relatively complexly formed, precisely fitting foot in order to effect a correct positioning of the rails and also a positive-locking engagement for securing said rail.
Document JP 59-149981 discloses a heald mounting rail that has a trapezoidal foot. Depending on the embodiment, this foot is manufactured separately and riveted to the heald mounting rail or made in one piece with said heald mounting rail. The shaft rod comprises an appropriately shaped accommodation space into which the mounting rail foot is inserted and secured, for example, by gluing, so that a thin glued joint is formed.
This type of connecting technique requires that the parts to be connected to each other display narrow tolerance ranges.
Considering this, it is the object of the invention to provide a possibility for the manufacture of shaft rods for healds by means of a reliable process.
The above object is generally achieved with a shaft rod in accordance with the invention comprising a rod body and a heald mounting rail that are glued to each other. Gluing occurs within an accommodation space in which a holding section as well as a space-filling, solidifying material, e.g., in the form of an adhesive, are provided. The heald mounting rail is configured as a bent sheet metal part having at least one bent edge. The concept “bent sheet metal part” is also understood to mean roll-formed sheet metal parts. They consist of sheet metal having preferably uniform thickness.
These measures permit a particularly simple and reliable process for the manufacture of the shaft rod. The space-filling adhesive fills the accommodation space at least in so far as the holding section extends into said space. Preferably, the space-filling adhesive fills the larger portion of the accommodation space while the holding section fills the smaller portion of the accommodation space. In other words: the holding section extends with significant play into the accommodation space, so that said holding section can always be easily inserted into the accommodation space, irrespective of the manufacturing tolerances. To achieve this, the accommodation space has, in the region of its mouth, a width of cross-section—in opening direction, as well as in transverse direction of the mouth—that is greater than the material thickness of the holding section. The space-filling adhesive compensates for manufacturing tolerances and secures the holding section positively bonded in the accommodation space. This results in a cost-effective connection.
The holding section and the accommodation space are in engagement with each other. As a result of the shape of the regions that are in engagement with each other, additional connecting means such as, e.g., rivets or screws, become unnecessary. The connection is combined—positively bonded and positively connected—i.e., it is partially due to the material bond between the accommodation space, the holding section and the adhesive and partially due to the shape of the involved parts that are in abutment with each other in at least one area, preferably on at least two surfaces.
The holding section is preferable a part of the heald mounting rail, however, may also be part of the rod body. Preferably, it is configured as a foot displaying uniform material thickness. Preferably, the holding section is part of a bent sheet metal part which represents the heald mounting rail or also the rod body. In order to anchor the holding section in the accommodation space, said section—in connected state—is angled in an area located in the accommodation space. This improves anchoring of the holding section in the accommodation space.
The accommodation space is preferably provided on the rod body. To do so, the rod body may also be configured as an extrusion-molded aluminum profile. It may also comprise a bent sheet metal part or several components that are connected to each other by welding, gluing or other connecting techniques. The arrangement of the accommodation space on the rod body results in simple engineering designs of the heald mounting rail that can then be configured as a bent sheet metal part in a particularly simple manner. Preferably, the height/width ratio is <5. As a result of this, a compact, stiff mounting rail is produced. In addition to the at least one bent edge, the mounting rail may have additional bent edges, thus resulting in a stable, strong mounting rail. The bent edges are disposed to stiffen the sheet metal strip that constitutes the mounting rail.
For mounting, the heald mounting rail and the rod body are preferably turned into each other, i.e., the holding section is pivoted into the accommodation space. The angled foot section preferably has a greater width than the mouth of the accommodation space. Therefore, when pivoted in, the foot section extends around a wall of the accommodation space, thus effecting a positive-locking secure retention.
Due to the pivoting or rotating movements of the rod body and the heald mounting rail toward each other, assembly of a long mounting rail of a shaft rod having a length of 4 to 6 meters, for example, is facilitated. The space-filling adhesive can be introduced in the accommodation space before joining the mounting rail and the rod body. After the mounting rail has been pivoted in, the adhesive flows around the holding section thus fixing said section in place. Depending on the composition of the adhesive, it is also possible to introduce it into the accommodation space following the assembly, i.e., after pivoting the mounting rail into the accommodation space of the rod body. A preferably thinly liquid adhesive then fills the accommodation space almost completely. After pivoting-in the mounting rail, preferably at least two surfaces of the connecting section that are at an angle relative to each other abut against the surfaces of the accommodation space, so that the heald mounting rail is fixed in the desired set position when the adhesive hardens. It is also possible to provide stop means on the connecting device, said means resulting in a stop effect and temporarily securing the heald mounting rail. This simplifies the fixation of the heald mounting rail while the adhesive is hardening.
The accommodation space may be arranged on the heald mounting rail as well as on the rod body. In the latter case, said space if preferably provided on a flat side thereof. However, said space may also be provided on a narrow side, should this be desirable. Preferably, the accommodation space has a mouth that opens parallel or perpendicular to a flat side of the heald mounting rail. Preferably, a pan-shaped region is provided underneath the mouth, said region representing the accommodation space and permitting the introduction of larger quantities of adhesive, before the heald mounting rail is connected to the rod body.
Additional details of advantageous embodiments of the invention are the subject matter of the drawing, the description or the claims. The description is restricted to essential aspects of the invention and miscellaneous situations. The drawings disclose additional details and are to be referred to as supplementary.
a through 2c are an illustration of details of the principle of the rod body and the heald mounting rail of the shaft rod in accordance with
a through 4d are details of a schematic front view of an alternative embodiment of the shaft rod, before, during and after the connection of the heald mounting rail and the rod body.
a through 5c are details of a schematic front view of an alternative embodiment of the shaft rod, before, during and after the connection of the heald mounting rail and the rod body.
a through 7c are details of a schematic front view of a modified embodiment of the shaft rod, before, during and after the connection of the heald mounting rail and the shaft rod.
The heald mounting rail 3 is preferably a bent sheet metal part. It is used for the support of healds, one of said healds 5 being shown in
The heald mounting rail 3 is connected to the rod body 2 by a connecting device 7.
For further illustration of the connecting device 7 in particular, reference is made to
Furthermore, the connecting device 7 comprises an accommodation space 14 that is bordered by a wall section 15 projecting from the strip 4. The wall section 15 first extends approximately at a right angle toward the strip 4 and then its front wall section 16 extends parallel to the strip 4. The upper edge 34 of the front wall section 16, in turn, is bent inward. Consequently, the front wall section 16 forms a hook profile 43 that is set opposite the hook profile 13 of the holding section 10.
The accommodation space 14 has a slit-shaped mouth 17 that opens in upward direction approximately parallel to the strip 14. A rib 18 may be provided in the immediate vicinity of the mouth 17 at the strip section 4, said rib extending parallel to the mouth 17.
The holding section 10 has a cross-section that is substantially smaller than the total cross-section of the accommodation space 14. Preferably, the ratio of the cross-section of the holding section 10 to the cross-section of the accommodation space is 14 ≦1:2.
The pan-like accommodation space 14 is disposed to receive the space-filling adhesive 19, as is obvious from
The connection 7 is preferably achieved as follows:
First, the accommodation space 14, as indicated in
Once the moldable adhesive 19 has been introduced into the accommodation space 14, it forms there—as illustrated by
By turning the holding section 10 into the accommodation space 14, part of the adhesive 19 is displaced out of the accommodation space 14. This adhesive flows around the holding section 10 and, for example, stays between the rib 18 and the heald mounting rail 3. In this position of the heald mounting rail 3, the space-filling adhesive 19 may finish hardening, thus permanently securing the heald mounting rail 3 to the strip section 4.
The present exemplary embodiment explains the fundamental principles of the invention; however, numerous modifications are possible. For example, the rod body 2 may consist of a bent sheet metal part or may contain such a part, thereby forming the strip section 4, in particular. One applicable example is provided by
Another modified embodiment is shown by
As shown by
As is shown by
As is shown by
A further modified embodiment is shown by
The holding section 10 on the strip section 4 is configured as a ledge having a hook-shaped cross-section, whereby said holding section may be associated with a rib 33 extending parallel at a distance, if needed.
The rod body 2 and the heald mounting rail 3 are joined as is obvious from
Suggested here is a shaft rod 1 comprising a heald mounting rail 3 that is glued to the rod body 2. In order to achieve bonding, a space-filling adhesive 19 provided in an accommodation space 14 of the heald mounting rail 3 or of the rod body 2 is used. The accommodation space 14 has a greater volume than a holding section 10 formed on the rod body 2 or on the heald mounting rail 3. Preferably, the holding section 10 and the accommodation space 14 are configured in such a manner that the two parts can only be inserted into each other with the aid of a pivoting movement. To achieve this, the holding section 10 is preferably provided with a part 21 extending in a direction transverse to the mouth 17 of the accommodation space 14, said part being wider than the mouth 17 and thus extending behind a wall section or a part 31, 34 of the accommodation space 14. Preferably, the accommodation space 14 and the holding section 10 are configured as hook profiles that are in engagement with each other.
It will be appreciated that the above description of the present invention is susceptible to various modifications, changes and modifications, and the same are intended to be comprehended within the meaning and range of equivalents of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
07017730 | Sep 2007 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
4390045 | Baumann | Jun 1983 | A |
4844130 | Blontrock | Jul 1989 | A |
5183082 | Baumann | Feb 1993 | A |
5232025 | Gysin et al. | Aug 1993 | A |
6283163 | Kagi | Sep 2001 | B1 |
20020124902 | Magri et al. | Sep 2002 | A1 |
20050016612 | Manthey et al. | Jan 2005 | A1 |
20050051228 | Bruske et al. | Mar 2005 | A1 |
20050061385 | Gesing | Mar 2005 | A1 |
20050081941 | Schmid et al. | Apr 2005 | A1 |
20050081943 | Olbing et al. | Apr 2005 | A1 |
20050109417 | Gesing | May 2005 | A1 |
20060249218 | Mettler | Nov 2006 | A1 |
Number | Date | Country |
---|---|---|
102004037717 | Dec 2005 | DE |
0 504 102 | Sep 1992 | EP |
1 170 409 | Jan 2002 | EP |
59-149981 | Oct 1984 | JP |
Number | Date | Country | |
---|---|---|---|
20090065087 A1 | Mar 2009 | US |