EP1846188A1 - Verfahren zur herstellung einer gewindebohrung mit ansenkung und bohrer zur durchführung des verfahrens - Google Patents

Verfahren zur herstellung einer gewindebohrung mit ansenkung und bohrer zur durchführung des verfahrens

Info

Publication number
EP1846188A1
EP1846188A1 EP07703291A EP07703291A EP1846188A1 EP 1846188 A1 EP1846188 A1 EP 1846188A1 EP 07703291 A EP07703291 A EP 07703291A EP 07703291 A EP07703291 A EP 07703291A EP 1846188 A1 EP1846188 A1 EP 1846188A1
Authority
EP
European Patent Office
Prior art keywords
drill
edge
main
hole
threaded hole
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP07703291A
Other languages
German (de)
English (en)
French (fr)
Inventor
Gerhard Fischer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ernst Reime Vertriebs GmbH
Original Assignee
Ernst Reime Vertriebs GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ernst Reime Vertriebs GmbH filed Critical Ernst Reime Vertriebs GmbH
Publication of EP1846188A1 publication Critical patent/EP1846188A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G5/00Thread-cutting tools; Die-heads
    • B23G5/20Thread-cutting tools; Die-heads combined with other tools, e.g. drills
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G2200/00Details of threading tools
    • B23G2200/14Multifunctional threading tools
    • B23G2200/143Tools comprising means for drilling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G2200/00Details of threading tools
    • B23G2200/14Multifunctional threading tools
    • B23G2200/148Tools having means for countersinking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G2240/00Details of equipment for threading other than threading tools, details of the threading process
    • B23G2240/36Methods of threading not otherwise provided for

Definitions

  • step drills The disadvantage of such step drills is the fact that with a step drill always only one Core hole or threaded hole with a predefined Depth can be made. For the production of core holes or tapped holes with different depths, different step drills adapted to the respective depth are required.
  • the disadvantage here is the required tool change from the combination taps to the countersinking tool on the one hand and the additional assignment of a tool slot in the tool magazine by the countersinking tool on the other hand.
  • the method according to the invention makes use of the fact that processing machines with three-dimensionally adjustable work spindles are used in modern production technology.
  • machine tools that are capable of producing internal threads by way of so-called screw interpolation are suitable for carrying out the method.
  • screw interpolation of the main spindle of the machine tool a circular motion and a linear motion for generating the helix are superimposed. In this way, all thread combinations can be produced for example with the help of thread milling.
  • a drill kinematically coupled to the main spindle usually a drill clamped into the chuck of the drill, is introduced into the workpiece in a first working stroke in the central longitudinal direction of the main spindle in order to drill out a core hole or to drill a molded core hole.
  • a drill clamped into the chuck of the drill With attached to the peripheral surface of the drill tapping teeth an internal thread is cut at the same time with the drilling process in the side wall of the drilled core hole. It thus creates the threaded hole.
  • this first step immediately follows the second process step without a tool change.
  • the main spindle After moving out of the tool, so the drill from the threaded hole, the main spindle approaches at a right angle to its central longitudinal axis and thus to the drilling direction to the edge of the threaded bore and guides the drill with a circular motion along the edge of the core hole and thereby cuts the countersink in the edge of the threaded hole. After completion of this second operation, the threaded hole with countersink is completely manufactured and used.
  • the drill is first immersed analogously to the procedure in the screw interpolation by the full amount of the depth of the countersink in the central longitudinal direction of the tool spindle in the threaded hole. After immersion, the drill moves a quarter circle entry loop, - A - cuts the countersink into the edge of the tapped hole, then returns to the center of the tapped hole with a quarter circle extension loop to leave the hole.
  • the method according to the invention can also be realized with other entry and exit loops.
  • the main advantage of the method according to the invention is that the tool change from the combined tapping tool to the countersinking tool is completely eliminated.
  • the method according to the invention it is possible to realize both the boring or boring of the core hole and the cutting of the thread as well as the lowering of the hole edge or bore edge with a tool in one clamping.
  • the corresponding space in the tool magazine for the countersinking tool is no longer needed.
  • Another tool can be placed in the tool magazine instead of the countersink tool. This has the advantage that the main cycle for the tool magazine is extended, so that the intervals for the tool change in the tool magazine decrease analogously. The associated time savings and the resulting cost reduction is evident.
  • Claims 3 to 6 relate to a drill adapted for carrying out the method.
  • the drill carries on its face at least one main cutting edge.
  • Each drill main cutting edge corresponds to two additional drill bit cutting edges on the drill circumference.
  • the auxiliary flanks associated with the drill bit cutters each carry the thread cutting teeth.
  • a chamfer is formed between each of the main faces at the drill bit end and the adjoining minor faces on the drill shank. This chamfer runs obliquely in such a way that an oblique cutting bevel forms between the main cutting edge and the secondary cutting edge assigned to it for stock removal in the second process step.
  • the chamfer in the area between the drill face and drill shank improves chip removal during drilling, namely when the main cutting edges are cut into the workpiece.
  • the opening angle ⁇ corresponds to twice the amount of helix angle of the counterbore. Since the chamfer angle of the chamfer relative to the central longitudinal axis of the drill corresponds to the helix angle of the countersink, the opening angle ⁇ of 120 ° is made with a bevel with a helix angle of 60 °.
  • the geometry of the countersinking produced with the method according to the invention on the one hand and the drill according to the invention for carrying out the method on the other hand always depends on the geometry of the chamfer formed on the drill.
  • the width of the chamfer on the drill is slightly larger than the width of the countersink to be machined with the chamfer.
  • the chamfer width corresponds to 105% of the width of the countersink to be produced.
  • the drill it is provided to install one or more cooling channels in the drill.
  • a liquid coolant can thus be transported to the site of action.
  • the cooling lubricant serves to remove the chips produced during drilling.
  • the chips are, as it were, flushed out of the bore with the aid of the liquid coolant, or washed away from the work site of the drill on the workpiece.
  • the cooling lubricant thus also serves to improve chip removal.
  • the cooling channel opens in the area of the open areas or the drill cross-section.
  • FIG. 2 is a perspective view of the drill head and a portion of the adjoining drill shank
  • FIG. 3 is an enlarged side view of the drill head of the drill shown in FIG. 1
  • FIG. 4 is a plan view of the end face of the drill head according to arrow IV in FIG. 3
  • FIG. 5 is a sectional side view of the drill shown in FIG. 1
  • FIG. 6 is an enlarged view of the tip of the drill head of the drill as shown in FIG. 5.
  • Fig. 1 In Fig. 1 can be seen the cylindrical drill shank 1 with a square 2 at its free end.
  • the square 2 is an anti-twist device for the drill chucked in the chuck of a machine tool.
  • the drill head 4 is formed at the free end of the drill shank 1 facing away from the square 2 in the central longitudinal direction 3.
  • the drill head 4 consists of several, in the exemplary embodiment four flutes 5.
  • ribs of the drill body are formed between the flutes, which carry 7 cutting teeth on their outer surfaces, the secondary flanks.
  • the cutting teeth 8 are used for actual cutting of the thread, while the guide teeth 18 guide the drill during the further drilling or threading process already cut internal thread.
  • the Bohrhaupting 10 are in the center of the drill head 4 of the cooling channel opening 11 is broken.
  • the cooling channel opening 11 of the drill in the central longitudinal direction 3 passes through the cooling channel 12 opens for the discharge of cooling lubricant to the site of action during the drilling process.
  • the main relief surfaces 13 are formed on the front side of the drill head 4. Between the main free surfaces 13 and the secondary flanks 7, the oblique chamfer 14 is formed on the drill head 4.
  • the helix angle 16 of the chamfer 14 in the exemplary embodiment is 38 °.
  • a chamfer 14 with a helix angle 16 of 60 ° is selected.
  • the chamfer width 19 is preferably slightly larger than the width of the countersink made with the chamfer 14.
  • the operation of the drill shown in the embodiment is the following: For boring a core hole to a threaded hole, the drill moves into the preformed core hole and cuts this core hole with his Bohrhauptberger 10 and formed on the Mauok vom 7 Bohrnebener to measure. At the same time, the thread cutting teeth 8 arranged on the secondary relief surfaces 7 cut a thread into the inner wall of the core hole, so that a threaded bore is formed.
  • the drill After completing the threaded hole, the drill again moves in the central longitudinal direction 3 along its central longitudinal axis 15 out of the threaded hole.
  • the main spindle of the machine tool which is aligned with the central longitudinal axis 15, then moves the drill in the orthogonal direction 17 at right angles to the central longitudinal direction 3 to the edge of the hole.
  • the chamfer 14 engages the bore edge and the cutting edges associated with the chamfer 14 cut the countersink into the bore edge by rotation of the drill in the direction of rotation 6 and simultaneous circular motion of the drill controlled by the main spindle of the machine tool.
  • the drill bit After completion of the countersink, the drill bit is disengaged from the hole edge forming the thread by means of a quarter-circle extension loop and moved away from the workpiece. The threaded hole with countersink at the start of the thread is thereby completely completed.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Drilling Tools (AREA)
  • Milling Processes (AREA)
EP07703291A 2006-02-09 2007-02-06 Verfahren zur herstellung einer gewindebohrung mit ansenkung und bohrer zur durchführung des verfahrens Withdrawn EP1846188A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE200610005887 DE102006005887A1 (de) 2006-02-09 2006-02-09 Verfahren zur Herstellung einer Gewindebohrung mit Ansenkung und Bohrer zur Durchführung des Verfahrens
PCT/EP2007/000982 WO2007090600A1 (de) 2006-02-09 2007-02-06 Verfahren zur herstellung einer gewindebohrung mit ansenkung und bohrer zur durchführung des verfahrens

Publications (1)

Publication Number Publication Date
EP1846188A1 true EP1846188A1 (de) 2007-10-24

Family

ID=38089109

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07703291A Withdrawn EP1846188A1 (de) 2006-02-09 2007-02-06 Verfahren zur herstellung einer gewindebohrung mit ansenkung und bohrer zur durchführung des verfahrens

Country Status (5)

Country Link
EP (1) EP1846188A1 (enExample)
JP (1) JP2009525884A (enExample)
CN (1) CN101378872A (enExample)
DE (1) DE102006005887A1 (enExample)
WO (1) WO2007090600A1 (enExample)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105478929A (zh) * 2015-12-28 2016-04-13 常州市海力工具有限公司 台阶倒角刀
CN109277617A (zh) * 2018-11-12 2019-01-29 何挺 一种组合式多功能刀具
USD943406S1 (en) 2019-10-04 2022-02-15 Devin Corbit Tap
US11618092B2 (en) 2020-01-27 2023-04-04 Devin Corbit Bottoming tap and chaser and method of use
USD921722S1 (en) 2020-05-26 2021-06-08 Devin Corbit Fluted tap
CN115156642A (zh) * 2022-04-18 2022-10-11 北京航天卓越精密机械制造有限公司 一种用于加工5g螺纹的6h丝锥改装方法及改装丝锥
DE102023132592B4 (de) * 2023-11-22 2025-10-23 Audi Aktiengesellschaft Prozessanordnung sowie Verfahren zur Erzeugung zumindest einer Werkstück-Gewindebohrung

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB696833A (en) * 1950-11-17 1953-09-09 Reginald Bastien Improvements in or relating to engineers' taps and drills
DE2323316C3 (de) * 1973-05-09 1978-07-20 Bruno 7519 Oberderdingen Lotter Drehantrieb in einer Einrichtung zum Herstellen von Gewindelöchern aus dem vollen Material
US4271554A (en) * 1979-01-09 1981-06-09 Allen-Stevens Corp. Combination drill and tap tool
DE3246663A1 (de) * 1982-12-16 1984-06-20 Kurt Bass KG, 6994 Niederstetten Kombinationswerkzeug zur herstellung einer gewindebohrung
DE3516724A1 (de) * 1985-05-09 1985-10-10 Wengenmayer, Erich, 8883 Gundelfingen Bgs-bohrer
DE8803565U1 (de) * 1988-03-16 1988-09-01 Prototyp-Werke GmbH, Fabrik für Präzisionswerkzeuge, 7615 Zell Gewindefraeser
DE9317312U1 (de) * 1993-11-12 1994-01-20 Joh. & Ernst Link GmbH & Co KG, 70565 Stuttgart Fräswerkzeug
KR100232740B1 (ko) * 1994-09-06 2000-01-15 제럴드 떠블유. 노벨로치 개선된 일체형 보링 및 나사절삭 공구 및 그 방법
DE19548199A1 (de) * 1995-12-22 1997-06-26 Link Johann & Ernst Gmbh & Co Verfahren zur Herstellung einer Gewindebohrung sowie Werkzeug zur Durchführung eines solchen Verfahrens
FR2766746B1 (fr) * 1997-07-30 1999-09-03 Diager Ind Fraise pour percer et fileter par interpolation

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2007090600A1 *

Also Published As

Publication number Publication date
WO2007090600A1 (de) 2007-08-16
CN101378872A (zh) 2009-03-04
JP2009525884A (ja) 2009-07-16
DE102006005887A1 (de) 2007-08-16

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