Two-stage method of cutting ultra-high strength material sheet
10328504 ยท 2019-06-25
Assignee
Inventors
Cpc classification
B23D31/00
PERFORMING OPERATIONS; TRANSPORTING
Y10T83/9432
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T83/942
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B23D35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
In a first stage or operation, at least one shear initiation breakthrough opening is formed through the ultra-high strength material sheet at an interior location. A leading terminal end of each of at least two inclined shearing edges of an interior opening shearing tool is positioned in the at least one shear initiation breakthrough opening. The interior opening shearing tool is different from the breakthrough opening forming tool. In a second stage or operation, shearing of the material is initiated from the at least one shear initiation breakthrough opening by advancing the at least two inclined shearing edges of the interior opening shearing tool against the ultra-high strength material sheet and relative to a corresponding shearing tool.
Claims
1. A two-stage method of cutting an interior opening in ultra-high strength material sheet comprising: forming at least one shear initiation breakthrough opening through the ultra-high strength material sheet at an interior location, each of the at least one shear initiation breakthrough opening formed with a shear initiation breakthrough opening forming tool; positioning a leading terminal end of each of at least two inclined shearing edges of an interior opening shearing tool, which is different from the shear initiation breakthrough opening forming tool, in the at least one shear initiation breakthrough opening; after positioning, initiating shearing of the material from the at least one shear initiation breakthrough opening by advancing the at least two inclined shearing edges of the interior opening shearing tool against the ultra-high strength material sheet and relative to a corresponding shearing die.
2. The two-stage method of claim 1, further comprising forming at least one other shear initiation breakthrough opening, each of the at least one and at least one other shear initiation breakthrough openings being formed with a round metal punch.
3. The two-stage method of claim 1, wherein forming the at least one shear initiation breakthrough opening comprises forming each of the at least one shear initiation breakthrough opening with a diameter that is between about 5 times and about 10 times the thickness of the ultra-high strength material sheet.
4. The two-stage method of claim 1, wherein the interior opening shearing tool comprises two surfaces inclined relative to each other in a V-shaped configuration and the at least two inclined shearing edges comprise two pairs of inclined shearing edges, each pair of inclined shearing edges being defined by opposite side edges of one of the two surfaces, and wherein the shearing comprises simultaneously advancing the two surfaces to initiate shearing in opposite directions from the at least one shear initiation breakthrough opening.
5. The two-stage method of claim 1, wherein the positioning comprises moving the at least one shear initiation breakthrough opening of the material sheet from a shear initiation breakthrough opening forming stage of a machine in which the forming occurs, to a shearing stage of the machine in which the shearing occurs.
6. The two-stage method of claim 1, wherein the method comprises cutting an ultra-high strength steel sheet.
7. The two-stage method of claim 1, wherein the method comprises cutting an ultra-high strength material sheet having a tensile strength of 800 MPa or greater.
Description
DRAWINGS
(1) The present invention will become more fully understood from the detailed description and the accompanying drawings.
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DETAILED DESCRIPTION
(9) Further areas of applicability will become apparent from the description, claims and drawings, wherein like reference numerals refer to like features throughout the several views of the drawings. It should be understood that the detailed description, including disclosed embodiments and drawings referenced therein are merely exemplary in nature, intended for purposes of illustration only, and are not intended to limit the scope of the present disclosure.
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(11) The machine 24 is illustrated as a progressive die machine. Alternatively, the machine can be a series of individual line die presses, or a roll forming machine. The machine 24 has a shear initiation breakthrough opening forming stage 28. At this stage 28, a pair of shear initiation breakthrough openings 30 is formed through the ultra-high strength material sheet 22 at an interior location of the sheet 24. In other words, the location is spaced from any exterior edge 62 or interior edge of the sheet. Each of the shear initiation breakthrough openings 30 is formed with a breakthrough opening forming tool 32. The breakthrough opening forming tool 32 is illustrated in this example as a round metal punch 32 with a roof or V-shaped initiation end 34 and corresponding die 36. Such a metal punch 32 is made of an expensive material, such as powder metallurgy materials and is made using expensive high precision grinding methods. Thus, such a metal punch 32 is capable of withstanding the rigors of repeatedly creating breakthrough openings 30 in an interior of the ultra-high strength sheet 22. Alternatively, the metal punch 32 is formed of relatively inexpensive materials and processes, such that the punches 32 are sacrificial punches that are cost-effectively replaced when they wear.
(12) In order to reduce the peak force necessary to drive the metal punch 32 through the ultra-high strength material sheet 22 and create the breakthrough opening 30, the size of the metal punch 32, and therefore the size of the breakthrough opening 30 formed thereby, is relatively small. In the example of
(13) Alternatively, such as where the ultra-high strength material sheet 22 is relatively thick, each of the two breakthrough openings 30 is separately formed. For example, each breakthrough opening 30 is separately formed in one stage of a two stage shear initiation opening forming stage 28 of the machine 24. Since the overall perimeter of the opening 30 that is being formed at one time is reduced by half, the peak breakthrough force that is required to form the openings 30 is reduced by half.
(14) After the breakthrough openings 30 are formed, the sheet material 22 is advanced one stage within the machine 24. Thus, the breakthrough openings 30 are repositioned from the breakthrough opening forming stage 28 into an interior opening shearing stage 38. At this stage 38, an interior opening sheering tool 40 and corresponding shearing die 42 are provided. The interior opening shearing tool 40 has two surfaces 44 inclined relative to each other in a V-shaped configuration. Each surface 44 has a pair of shearing edges 46 defined by edges 46 of opposite sides 52 of one of the surfaces 44. Each shearing edge 46 has a leading terminal end 48, which in the illustrated example is where the shearing edges 46 of the two inclined surfaces 44 come together at a leading terminal apex or point 48 on each side 52. A leading edge 50 or rooftop between the inclined surfaces 44 also comes together at the apex or point 48.
(15) When the sheet material 22 is advanced to the interior opening shearing stage 38, the breakthrough openings 30 are positioned so that each opening 30 is aligned with one of the apex or points 48 that correspond to the leading terminal ends 48 of all of the shearing edges 46. Then, the shearing tool40 is advanced toward the shearing die 42, causing the leading terminal ends 48 of all four shearing edges 46 to move into the breakthrough openings 30 so that each shearing edge 46 first engages the ultra-high strength material sheet 22 away from the leading terminal ends 48 thereof. As indicated by the unnumbered arrow in
(16) Because the interior opening shearing tool 40 does not have to perform the initial breakthrough of the ultra-high strength material sheet 22, the peak force required for the interior opening shearing operation is greatly reduced. Because the shearing begins away from the leading terminal end 48 of each shearing edge 46, the premature failure of the tool 40 at the leading terminal edge is also avoided.
(17) The machine 24 also includes a blanking stage 56 in which the ultra-high strength material sheet 22 is cut into separate panels or blanks 58. This stage 56 includes cooperating shearing tools 66 a pair of angled shear edges 60, which also initially engage one of the side edges 62 of the ultra-high strength material sheet 22 away from their leading terminal ends 64. This is possible because an interior-initiated cut or interior opening 54 is not involved requiring an initial breakthrough operation. Rather, the shearing cuts being made at this stage 56 start at an exterior side edge 62 of the ultra-high strength material sheet 22.
(18) Referring to
(19) The description of the invention is merely exemplary in nature and, thus, variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.