EXPANDING METAL WITH LOOPS IN DIFFERENT SHAPES
20210129202 ยท 2021-05-06
Inventors
- Heiko Kirchknopf (Hardheim, DE)
- Christian Schreck (Koenigheim, DE)
- Ralf Tuerk (Wallduern, DE)
- Gunter Link (Buchen-Hainstadt, DE)
Cpc classification
B21D31/043
PERFORMING OPERATIONS; TRANSPORTING
B60H1/3407
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for producing an expanded metal, the method including producing a sheet of the expanded sheet metal by introducing openings through one expansion blade wherein all the openings are configured as diamond shaped loops without a material loss and defined by a loop width, a loop length and a loop shape; and forming the diamond shaped loops respectively by four linear bars that are defined by a bar width and a bar thickness wherein two of the four linear bars are respectively connected at four nodes; arranging plural of the diamond shaped loops in columns adjacent to one another and in rows adjacent to one another; and forming first columns of first diamond shaped loops different from second columns of diamond shaped second loops in a loop width or in a loop length respectively measured from a node center to a node center.
Claims
1. A method for producing an expanded metal, the method comprising: producing a sheet of the expanded sheet metal by introducing openings through one expansion blade wherein all the openings are configured as diamond shaped loops without a material loss and defined by a loop width, a loop length and a loop shape; and forming the diamond shaped loops respectively by four linear bars that are defined by a bar width and a bar thickness wherein two of the four linear bars are respectively connected at four nodes; arranging plural of the diamond shaped loops in columns adjacent to one another and in rows adjacent to one another; and forming first columns of first diamond shaped loops different from second columns of diamond shaped second loops in a loop width or in a loop length respectively measured from a node center to a node center so that the sheet of the expanded metal is provided with the openings configured as the diamond shaped loops with different loop shapes.
2. The method according to claim 1, further comprising: configuring the sheet with column sections wherein each of the column sections has loop columns with an identical loop shape.
3. The method according to claim 2, further comprising: configuring a loop shape of loops of a first column section as a mirror image of a loop shape of loops of a second column section.
4. The method according to claim 3, further comprising: providing at least three column sections, wherein a center section includes loops with a first loop shape, and wherein loops of columns that are respectively laterally arranged relative to the center section are configured as mirror images of each other.
5. The method according to claim 1, further comprising: configuring each loop column has a loop shape that differs from loop shapes of adjacent columns.
6. The method according to claim 5, further comprising: varying loop shapes of respective loop columns from a first outer column with a loop shape that is distorted from a symmetrical loop shape by a larger amount in one direction to a center column with the symmetrical loop shape to a second outer column with a loop shape that is distorted from the symmetrical loop shape by a larger amount in an opposite direction.
7. The method according to claim 1, further comprising: feeding a piece of sheet metal in feed steps to the one expansion blade, wherein the one expansion blade has an alternating movement component that is horizontal and transversal to a feed direction of the piece of sheet metal, and wherein the one expansion blade is provided with a plurality of teeth which penetrate into the piece of sheet metal with a vertical movement component to produce the loops, and wherein the one expansion blade has teeth with different shapes or orientations relative to adjacent teeth.
8. The method according to claim 7, further comprising: arranging teeth with identical shape or orientation in groups.
9. The method according to claim 8, further comprising: arranging or shaping the teeth of a first group as mirror images of teeth of a second group.
10. The method according to claim 7, wherein an orientation of the teeth of the expansion blade changes continuously starting from a first edge tooth over a center tooth to a second edge tooth that is arranged remote from the first edge tooth, wherein teeth that are arranged equidistant from the center tooth are oriented as mirror images of each other.
11. The method according to claim 7, wherein a shape of the teeth of the expansion blade changes continuously starting from a first edge tooth over a center tooth to a second edge tooth that is arranged remote from the first edge tooth, and wherein teeth that are arranged equidistant from the center tooth are configured as mirror images of each other.
12. The method according to claim 1, further comprising: enveloping the loops by bars that are configured to have a different bar width.
13. The method according to claim 1, further comprising: enveloping the loops by bars that are configured to have a different bar thickness.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Further advantages and an even better comprehension of the invention can be derived from a description of various embodiments with reference to drawing figures; wherein:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION OF THE INVENTION
[0035]
[0036] The illustrated expanding arrangement 102 is also schematically illustrated in
[0037] In
[0038] The expanded metal 10 according to the invention is illustrated in overview in
[0039] This is also clearly evident from
[0040] The different loop width B is a consequence of a different tooth geometry of a tooth 15 of an expansion blade 14 according to the invention. The tooth 15 to produce a column in the second shape 11.2 has less width than the tooth 15 used to fabricate a loop with the first shape 11.1.
[0041] An essential advantage of maintaining an identical length L.sub.1 of loops in a first shape 11.1 and in a second shape 11.2 can be found in that a length expansion when producing the expanded metal 10 between loops 11 that are arranged adjacent to each other in rows X.sub.1 to X.sub.N is identical though the geometries are different and thus a disadvantageous distortion of the expanded metal 10 can be kept within very tight limits.
[0042]
[0043] The bars with the second shape 11.2, however, are enveloped by diametrically opposed bars 12.2 and 12.3 and diametrically opposed bars 12.1. The bars 12.2 are configured to have a bar thickness Sd.sub.2, the bars 12.3 are configured to have a bar thickness Sd.sub.3. The bars 12.1 have the bar thickness Sd.sub.1 also this case.
[0044] Therefore, the loops 11.2 with the second shape appear to be offset substantially to the right and slightly upward with respect to the paper plane and relative to four adjacent nodes which envelop the loop 11.2. This offset is caused by a different tooth arrangement.
[0045] With respect to the expanded metal 10 according to the invention it is appreciated that loop shapes that differ from each other cause different bar dimensions as a matter of consequence but primarily deviating bar widths Sb are to be expected. Therefore, a deviation of the bar thicknesses Sd is not mandatory in order to produce different loop shapes in the expanded metal but this an additional optional feature of the expanded metal 10 according to the invention.
[0046] As evident in particular from
[0047] This effect can be used e.g. for an expanded metal 10 according to the invention according to
[0048] However, the effect described supra of the expanded metal 10 according to the invention upon the air flow 16 is essential, Contrary to the prior art the expanded metal 10 according to the invention facilitates distributing the air flow 16 that exits from the feed air opening of the defroster and can be oriented over the windshield width which requires separate air guidance and diffusion devices in the prior art below the cover that is used in the prior art.
[0049] Certainly, other applications are conceivable for a piece of expanded metal 10 that is configured according to the invention. Also, other air outlets can be provided with a cover of this type in order to orient the exiting air flow 16. It is also conceivable to use expanded metals of this type as speaker covers to influence a sound exit.
[0050] The invention also relates to a novel expansion blade which is overall designated with reference numeral 14. The expansion blade 14 according to the invention is illustrated in different embodiments in
[0051] In
[0052] Thus, the expansion blade 14 according to
[0053]
[0054] Starting from a center loop column Z with a basic loop shape, however, the basic loop shape of any loop column Z oriented towards an edge of the expanded metal is distorted in one direction, wherein loop columns Z that are spaced apart equidistant from a center loop column have loop shapes that are configured as mirror images.
[0055] Depending on loop shape and orientation an air flow 16 can be fanned out in a particularly fine manner or also bundled using the expanded metal 10.
[0056] With respect to the expansion blade 14 according to
REFERENCE NUMERALS AND DESIGNATIONS
[0057] 100 sheet metal [0058] 101 coil [0059] 102 expansion arrangement [0060] 103 expansion blade [0061] 104 reaction bearing [0062] 105 teeth of expansion blade 103 [0063] 106 expanded metal [0064] 107 loop [0065] 108 bar [0066] 10 expanded metal [0067] 11 loop [0068] 11.1 loop with first shape [0069] 11.2 loop with second shape [0070] 12 bar [0071] 13 node [0072] 14 expansion blade [0073] 15 tooth [0074] 16 air flow [0075] 17 reaction bearing [0076] 18 edge teeth [0077] 19 center tooth [0078] A section [0079] V vertical direction [0080] O surface of expansion blade 103 [0081] S sideways direction [0082] R expansion direction [0083] X loop row [0084] Z loop column [0085] L loop length [0086] B loop width [0087] Sb bar width [0088] Sd bar thickness [0089] Zg tooth group [0090] Za tooth axis