EP3016721B1 - Racket or club consisting of magnesium - Google Patents

Racket or club consisting of magnesium Download PDF

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Publication number
EP3016721B1
EP3016721B1 EP14745093.6A EP14745093A EP3016721B1 EP 3016721 B1 EP3016721 B1 EP 3016721B1 EP 14745093 A EP14745093 A EP 14745093A EP 3016721 B1 EP3016721 B1 EP 3016721B1
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EP
European Patent Office
Prior art keywords
frame
wall thickness
magnesium
process according
halves
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EP14745093.6A
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German (de)
French (fr)
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EP3016721A1 (en
Inventor
Daniel Lau
Harald Rosenkranz
Ralf Schwenger
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Head Technology GmbH
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Head Technology GmbH
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B49/10Frames made of non-metallic materials, other than wood
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B49/12Frames made of metal
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B2049/0205Frames comprising at least two similar parts assembled with the interface plane parallel to the string plane
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B2049/0211Frames with variable thickness of the head in a direction perpendicular to the string plane
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2102/00Application of clubs, bats, rackets or the like to the sporting activity ; particular sports involving the use of balls and clubs, bats, rackets, or the like
    • A63B2102/02Tennis
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2209/00Characteristics of used materials
    • A63B2209/02Characteristics of used materials with reinforcing fibres, e.g. carbon, polyamide fibres

Definitions

  • the frame for a ball game racket in the blown from prepregs made so it is extremely challenging to vary the wall thickness of the frame specifically to influence the local stiffness of the frame and the weight distribution of the same.
  • the wall thickness of the frame profile is usually constant, since aluminum profiles with a constant cross-section are used.
  • the frame produced according to the invention for a ball game racket in particular for a tennis racket, has a head section and a grip section.
  • the frame is designed as a hollow profile and has magnesium, wherein the wall thickness of the hollow profile varies along a cross section through the frame hollow profile.
  • hollow profile is understood in the context of the present invention, a real hollow profile, which is formed only by a frame wall which surrounds a cavity, said cavity is free of additional walls, struts and the like.
  • mechanical properties such as bending stiffness and natural frequencies are determined essentially exclusively by the variable wall thickness of the hollow profile, without, for example, requiring additional stabilization struts.
  • magnesium or magnesium alloys can be used for a frame hollow profile for a ball game racket.
  • the manufacturing techniques used in this case advantageously allow a targeted variation of the wall thickness of the hollow profile, in particular also along a cross section through the frame hollow profile.
  • the section through the frame hollow profile is understood to mean a section perpendicular to the contour of the frame profile.
  • Targeted variation of the wall thickness along such a cross-section through the frame hollow profile is virtually impossible with the aid of the generally customary blow-molding method since the prepreg layers are generally wound to extend along such a cross-section through the frame hollow profile.
  • Usually only different cross-sectional shapes and / or dimensions can be realized in the blow-molding process.
  • the frame is produced by means of magnesium injection molding techniques according to the so-called thixotropic method.
  • wall thickness can be easily achieved appropriate training of the injection mold specifically vary.
  • melt-core technique in which an injection mold core is melted after the molding of the frame.
  • the wall thickness of the hollow profile varies not only along a cross-section through the frame hollow profile, but additionally also in the longitudinal direction of the frame, i. varies along the frame contour.
  • the wall thickness in the heart region or in the transition between bridge and head section of the frame is preferably greater than in the remaining head section.
  • the variation of the wall thickness along at least one transverse and / or longitudinal section relative to the minimum wall thickness is at least 25%, preferably at least 50%, more preferably at least 75% and particularly preferably at least 100%.
  • the wall thickness of the frame according to the invention is thinner in sections than 1 mm, preferably thinner than 0.8 mm, more preferably thinner than 0.7 mm and particularly preferably thinner than 0.6 mm.
  • the magnesium or magnesium alloy content does not have to be evenly distributed over the ball game racket frame. Rather, it is also preferred that the frame has a frame portion having magnesium, wherein the wall thickness of the hollow profile varies along a cross section through this frame portion.
  • the frame in this frame portion has at least 50% by weight, more preferably at least 80% by weight, even more preferably at least 90% by weight and most preferably at least 95% by weight of magnesium.
  • one or more components may be made separately from magnesium or a magnesium alloy, in particular injection molded. These components can then be placed together with the prepreg layers in a Schlauchblasform and pressed together with the prepreg layers. These separate components may be individual sections of the head section or handle section.
  • a separate heart region which consists of magnesium or has magnesium or magnesium alloys, is particularly preferably provided, since particularly advantageous effects can be achieved in this region with a corresponding variation of the wall thickness.
  • the core material preferably comprises one or a combination of the following materials or consists of one or a combination of the following materials: tin-based alloys (preferably at least 50% tin and optionally zinc, bismuth, antimony, copper, silver, lead, indium), Bismuth based alloys (preferably at least 50% bismuth and optionally tin, silver, germanium), lead based alloys (preferably at least 50% lead and optionally tin, antimony, bismuth, silver, indium), zinc based alloys (preferred at least 50% zinc), die-cast zinc alloys such as ZnAl4, ZnAl4Cu1, ZnA14Cu3, indium-based alloys, glass, plastic with or without glass-fiber reinforcement such as polyamide.
  • tin-based alloys preferably at least 50% tin and optionally zinc, bismuth, antimony, copper, silver, lead, indium
  • Bismuth based alloys preferably at least 50% bismuth and optionally tin, silver, germanium
  • an injection mold and a core are provided, wherein the core consists of a salt.
  • the frame (or frame member) is then molded between the injection mold and the core, preferably by the thixotropic method, by introducing a material comprising magnesium.
  • the core is washed out by introducing water into the cavity formed by the frame.
  • the core can also be made of an acid-soluble material, e.g. glass base, so that the core can be removed from the frame after forming the frame with the help of an acid.
  • an acid-soluble material e.g. glass base
  • first two frame halves are cast from a material which comprises magnesium. This is preferably done using the so-called thixotropic method. Subsequently, the two frame halves are connected to form a frame.
  • first two frame section halves of a material comprising magnesium are cast, and then the two frame section halves are firstly cast Frame section connected.
  • a second frame section is provided and the first and second frame sections are connected to form a frame.
  • the second frame section may be an unfinished section, for example a prepreg tube, so that the finishing of the second frame section and the connection of the second frame section to the first frame section occur in one method step.
  • the injection molding of the magnesium-containing material is preferably carried out at temperatures between 500 ° C and 800 ° C, more preferably at temperatures between 550 ° C and 700 ° C.
  • the injection of the material into the mold is preferably carried out in less than 80 ms, more preferably in less than 60 ms and particularly preferably in less than 50 ms.
  • the step of connecting the two frame halves or frame section halves preferably comprises welding and / or pressing and / or gluing. Furthermore, the two frame halves or frame section halves are preferably identical, wherein each of the two frame halves or frame section halves is formed asymmetrically with respect to the longitudinal axis.
  • the frame according to the invention for a ball game racket has a number of technical advantages over the prior art.
  • magnesium has higher density, lower specific stiffness, and lower specific strength than conventional prepreg materials
  • a frame for a magnesium or magnesium magnesium racket can be better optimized for stiffness and strength at the same weight, as the wall thickness can be reduced to simple Way can be optimally designed.
  • the use of magnesium injection molding allows automated production with short cycle times of approx. 35 seconds.
  • a pre- and post-processing, which are often done manually by conventional Perpreg compiler, accounts for virtually completely. Injection molding also allows excellent production stability and allows to produce exactly the desired structure using a defined injection mold.
  • FIG. 1 shows in perspective view a frame for a ball game racket according to a preferred embodiment of the present invention.
  • the frame is formed as a hollow profile and has a head portion 1 for receiving a fabric, not shown, a handle portion 2 and a heart portion 3, which has two arms 4a and 4b and a bridge 5.
  • the scope of this preferred embodiment is composed of two identical frame halves, with respect to the frame longitudinal axis are formed asymmetrically. One of these two identical frame halves is in perspective view in FIG. 2 shown.
  • the asymmetry of the frame half is provided so that the two frame halves can join each other during assembly.
  • the protruding webs 5a of the bridge 5 can engage with the step-shaped sections 5b of the bridge 5 of the respective other frame half. This allows a flush connection of the two frame halves to a frame.
  • the head portion (see. FIG. 5 ) Areas with projecting webs 1a and stepped portions 1b.
  • FIG. 6 is a cross section through the frame hollow profile of the frame FIG. 1 represented in the region of the head section 1.
  • the wall thickness of the frame hollow profile according to the invention vary quite considerably along a cross section through the frame hollow profile.
  • Such a finely tuned cross-sectional profile could not be achieved using the conventional bubble-blowing process.
  • magnesium or a magnesium alloy is injection-molded, such a cross-sectional profile can be designed in a simple manner by appropriate design of the injection mold, wherein the cross-sectional profile can additionally vary along the frame contour in the longitudinal direction.
  • FIG. 7 is a cross section through the hollow profile in the region of the bridge 5 is shown. Again, the wall thickness of the hollow profile varies, although the variation is not as pronounced as in the example of FIG. 6 ,
  • FIG. 8 An additional variation of the wall thickness in the longitudinal direction of the frame, ie along the frame contour, is in FIG. 8 to see a longitudinal section through the handle section 2 of the frame FIG. 1 shows.
  • the wall thickness of the frame hollow profile increases significantly in the region of the transition to the arm 4b.
  • the frame can also have a section or a separate component made of magnesium or a magnesium alloy.
  • a preferred embodiment of such a separate component of magnesium alloy is in the FIGS. 9 to 13 shown.
  • This is a section of the heart area, namely the bridge 5 and sections of the arms 4a and 4b and in the transition of the heart area in the head section.
  • the stress on this frame part during the game is particularly complex, so that in this area by means of a variation of the wall thickness of the hollow profile, the greatest effect can be achieved.
  • other insert components such as, for example, the grip section or regions of the head section can likewise be made of magnesium or a magnesium alloy and inserted into the frame according to the invention.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)
  • Body Structure For Vehicles (AREA)

Description

Die vorliegende Erfindung betrifft ein Verfahren zur Herstellung eines Rahmens für einen Ballspielschläger, der Magnesium aufweist.The present invention relates to a method of manufacturing a frame for a ball game racket comprising magnesium.

Als Material für den Rahmen eines Ballspielschlägers, insbesondere eines Tennisschlägers, sind bereits die unterschiedlichsten Materialien vorgeschlagen worden. Technisch durchgesetzt haben sich jedoch nach anfänglichen Holzschlägern lediglich Aluminiumschläger, deren Rahmen aus einem Aluminiumprofil gebogen wird, und glasfaserverstärkte Schläger und insbesondere karbonfaserverstärkte Schläger, deren Rahmen aus einem oder mehreren sogenannten Prepregschläuchen geformt wird.As a material for the frame of a ball game racket, especially a tennis racket, the most diverse materials have already been proposed. However, technically enforced after initial wooden clubs only aluminum rackets whose frame is bent from an aluminum profile, and glass fiber reinforced rackets and in particular carbon fiber reinforced rackets whose frame is formed from one or more so-called prepreg hoses.

Ferner ist beispielsweise aus der US 3,874,667 bekannt, Magnesium als Material für den Rahmen von Ballspielschlägern einzusetzen. Der in der US 3,874,667 offenbarte Schläger besteht aus einem massiven Metallrahmen. Ein solcher massiver Metallrahmen kann den heutzutage üblichen Anforderungen an das Gewicht und die Spielbarkeit eines Ballspielschlägers nicht gerecht werden. In der US 2003/0054908 A1 sind Ballspielschläger aus faserverstärktem synthetischen Harz beschrieben, deren Rahmen abschnittsweise mit Aluminium- oder Magnesiumstreifen verstärkt sind. Ferner werden in der US 5,551,689 B1 Ballspielschläger aus unterschiedlichsten Materialien, u.a. auch Magnesium, sowie verschiedene Herstellungsverfahren beschrieben.Furthermore, for example, from the US 3,874,667 known to use magnesium as a material for the frame of ball game rackets. The Indian US 3,874,667 revealed racket consists of a massive metal frame. Such a massive metal frame can not meet the requirements of today's weight and playability of a ball game racket. In the US 2003/0054908 A1 ball rackets made of fiber-reinforced synthetic resin are described, the frames are reinforced in sections with aluminum or magnesium strips. Furthermore, in the US 5,551,689 B1 Ball game rackets made of various materials, including magnesium, and various production methods described.

Wird jedoch, wie heutzutage in der Regel üblich, der Rahmen für einen Ballspielschläger im Schlauchblasverfahren aus Prepreglagen hergestellt, so ist es ausgesprochen anspruchsvoll, die Wandstärke des Rahmens gezielt zu variieren, um Einfluss auf die lokale Steifigkeit des Rahmens und die Gewichtsverteilung desselben zu nehmen. Wird der Rahmen andererseits aus einem Aluminiumhohlprofil gebogen, so ist die Wandstärke des Rahmenprofils in der Regel konstant, da Aluminiumprofile mit konstantem Querschnitt verwendet werden.If, however, as is customary today, the frame for a ball game racket in the blown from prepregs made, so it is extremely challenging to vary the wall thickness of the frame specifically to influence the local stiffness of the frame and the weight distribution of the same. On the other hand, if the frame is bent from an aluminum hollow profile, the wall thickness of the frame profile is usually constant, since aluminum profiles with a constant cross-section are used.

Die vorliegende Erfindung stellt sich die Aufgabe, ein Herstellungsverfahren für einen Rahmen für einen Ballspielschläger bereitzustellen, das es erlaubt, gezielt die Steifigkeit des Rahmens über die Variation der Wandstärke lokal zu optimieren und eine optimale Gewichtsverteilung zu erzielen, wobei das Gesamtgewicht des Schlägers möglichst gering gehalten werden soll.The present invention has as its object to provide a method of manufacturing a frame for a ball game racket, which allows to selectively optimize the rigidity of the frame locally on the variation of the wall thickness and to achieve optimum weight distribution, keeping the total weight of the racket as low as possible shall be.

Diese Aufgabe wird durch ein Verfahren zur Herstellung eines Rahmens für einen Ballspielschläger gemäß Anspruch 1 gelöst. Der erfindungsgemäß hergestellte Rahmen für einen Ballspielschläger, insbesondere für einen Tennisschläger, weist einen Kopfabschnitt und einen Griffabschnitt auf. Der Rahmen ist als Hohlprofil ausgebildet und weist Magnesium auf, wobei die Wandstärke des Hohlprofils entlang eines Querschnitts durch das Rahmenhohlprofil variiert.This object is achieved by a method for producing a frame for a ball game racket according to claim 1. The frame produced according to the invention for a ball game racket, in particular for a tennis racket, has a head section and a grip section. The frame is designed as a hollow profile and has magnesium, wherein the wall thickness of the hollow profile varies along a cross section through the frame hollow profile.

Unter dem Begriff "Hohlprofil" wird dabei im Kontext der vorliegenden Erfindung ein echtes Hohlprofil verstanden, das lediglich durch eine Rahmenwand gebildet wird, die einen Hohlraum umschließt, wobei dieser Hohlraum frei von zusätzlichen Wänden, Streben und dergleichen ist. Mit anderen Worten werden erfindungsgemäß mechanischen Eigenschaften wie Biegesteifigkeit und Eigenfrequenzen im Wesentlichen ausschließlich durch die variable Wandstärke des Hohlprofils bestimmt, ohne dass es beispielsweise zusätzlicher Stabilisierungsstreben bedürfte.The term "hollow profile" is understood in the context of the present invention, a real hollow profile, which is formed only by a frame wall which surrounds a cavity, said cavity is free of additional walls, struts and the like. In other words, according to the invention, mechanical properties such as bending stiffness and natural frequencies are determined essentially exclusively by the variable wall thickness of the hollow profile, without, for example, requiring additional stabilization struts.

Es hat sich im Rahmen der Erfindung herausgestellt, dass sich Magnesium bzw. Magnesiumlegierungen für ein Rahmenhohlprofil für einen Ballspielschläger verwenden lassen. Die dabei zum Einsatz kommenden Fertigungstechniken erlauben vorteilhaft eine gezielte Variation der Wandstärke des Hohlprofils, insbesondere auch entlang eines Querschnitts durch das Rahmenhohlprofil. Unter dem Querschnitt durch das Rahmenhohlprofil wird im Kontext der vorliegenden Erfindung ein Schnitt senkrecht zur Kontur des Rahmenprofils verstanden. Mithilfe des allgemein üblichen Schlauchblasverfahrens ist eine gezielte Variation der Wandstärke entlang eines solchen Querschnitts durch das Rahmenhohlprofil praktisch unmöglich, da die Prepreglagen in der Regel so gewickelt werden, dass sie sich entlang eines solchen Querschnitts durch das Rahmenhohlprofil erstrecken. Üblicherweise können beim Schlauchblasverfahren lediglich verschiedene Querschnittsformen und/oder -dimensionen realisiert werden.It has been found within the scope of the invention that magnesium or magnesium alloys can be used for a frame hollow profile for a ball game racket. The manufacturing techniques used in this case advantageously allow a targeted variation of the wall thickness of the hollow profile, in particular also along a cross section through the frame hollow profile. In the context of the present invention, the section through the frame hollow profile is understood to mean a section perpendicular to the contour of the frame profile. Targeted variation of the wall thickness along such a cross-section through the frame hollow profile is virtually impossible with the aid of the generally customary blow-molding method since the prepreg layers are generally wound to extend along such a cross-section through the frame hollow profile. Usually only different cross-sectional shapes and / or dimensions can be realized in the blow-molding process.

Erfindungsgemäß wird der Rahmen mithilfe von Magnesiumspritzgusstechniken gemäß dem sogenannten Thixoverfahren hergestellt. Unter Verwendung dieser Technik lässt sich die Wandstärke auf einfache Weise durch
entsprechende Ausbildung der Spritzgussform gezielt variieren. Besonders bevorzugt ist dabei die sogenannte Schmelzkerntechnik, bei der ein Spritzgussformkern nach dem Ausformen des Rahmens geschmolzen wird.
According to the invention, the frame is produced by means of magnesium injection molding techniques according to the so-called thixotropic method. Using this technique, wall thickness can be easily achieved
appropriate training of the injection mold specifically vary. Particularly preferred is the so-called melt-core technique, in which an injection mold core is melted after the molding of the frame.

Es ist ferner bevorzugt, dass die Wandstärke des Hohlprofils nicht nur entlang eines Querschnitts durch das Rahmenhohlprofil variiert, sondern zusätzlich auch in Längsrichtung des Rahmens, d.h. entlang der Rahmenkontur variiert. So ist bevorzugt die Wandstärke im Herzbereich bzw. im Übergang zwischen Brücke und Kopfabschnitt des Rahmens größer als im restlichen Kopfabschnitt.It is further preferred that the wall thickness of the hollow profile varies not only along a cross-section through the frame hollow profile, but additionally also in the longitudinal direction of the frame, i. varies along the frame contour. Thus, the wall thickness in the heart region or in the transition between bridge and head section of the frame is preferably greater than in the remaining head section.

Gemäß einer bevorzugten Ausführungsform beträgt die Variation der Wandstärke entlang mindestens eines Quer- und/oder Längsschnitts bezogen auf die minimale Wandstärke mindestens 25 %, bevorzugt mindestens 50 %, stärker bevorzugt mindestens 75 % und besonders bevorzugt mindestens 100 %.According to a preferred embodiment, the variation of the wall thickness along at least one transverse and / or longitudinal section relative to the minimum wall thickness is at least 25%, preferably at least 50%, more preferably at least 75% and particularly preferably at least 100%.

Unter Verwendung von Magnesium und/oder Magnesiumlegierungen lassen sich mithilfe insbesondere von Magnesiumspritzguss besonders dünne Wandstärken erzielen. So ist die Wandstärke des erfindungsgemäßen Rahmens gemäß einer bevorzugten Ausführungsform abschnittsweise dünner als 1 mm, bevorzugt dünner als 0,8 mm, stärker bevorzugt dünner als 0,7 mm und besonders bevorzugt dünner als 0,6 mm.Using magnesium and / or magnesium alloys, particularly thin wall thicknesses can be achieved with the help of magnesium injection molding in particular. Thus, according to a preferred embodiment, the wall thickness of the frame according to the invention is thinner in sections than 1 mm, preferably thinner than 0.8 mm, more preferably thinner than 0.7 mm and particularly preferably thinner than 0.6 mm.

Das Rahmenprofil des erfindungsgemäßen Rahmens weist im Kopfabschnitt bevorzugt einen Außenabschnitt, der nach außen weist, einen Innenabschnitt, der nach innen zur Bespannung weist, und zwei Seitenabschnitte auf, wobei zumindest abschnittsweise die Wandstärke des Innen- und/oder Außenabschnitts dicker ist als die Wandstärke der Seitenabschnitte. Hierbei muss das Rahmenprofil nicht rechteckig ausgebildet sein. Vielmehr können weitere Abschnitte einen fließenden Übergang vom Innen- bzw. Außenabschnitt zu den beiden Seitenabschnitten bilden, sodass ein Vieleck, ein Rechteck mit abgerundeten Ecken oder dergleichen entsteht. Gemäß einer alternativen bevorzugten Ausfuhrungsform ist zumindest abschnittsweise die Wandstärke des Innen- oder Außenabschnitts dünner als die Wandstärke der Seitenabschnitte. Zusätzlich oder alternativ hierzu kann zumindest abschnittsweise die Wandstärke des Innenabschnitts dünner oder dicker als die Wandstärke des Außenabschnitts ausgebildet sein.The frame profile of the frame according to the invention preferably has in the head portion an outer portion facing outward, an inner portion facing inwardly to the fabric, and two side portions, wherein at least partially the wall thickness of the inner and / or outer portion is thicker than the wall thickness of side sections. In this case, the frame profile does not have to be rectangular. Rather, further sections can form a flowing transition from the inner or outer section to the two side sections, so that a polygon, a rectangle with rounded corners or the like is formed. According to an alternative preferred embodiment, the wall thickness of the inner or outer portion is at least partially thinner than the wall thickness of the side portions. Additionally or alternatively, at least in sections, the wall thickness of the inner portion may be thinner or thicker than the wall thickness of the outer portion.

Der Rahmen weist bevorzugt mindestens 50 Gew.-%, stärker bevorzugt mindestens 80 Gew.-%, noch stärker bevorzugt mindestens 90 Gew.-% und besonders bevorzugt mindestens 95 Gew.-% Magnesium auf. Gemäß einer bevorzugten Ausführungsform weist der Rahmen eine Magnesiumlegierung, bevorzugt eine faser- oder partikelverstärkte Legierung, besonders bevorzugt SAE SiC/AZ91 auf. Besonders bevorzugt ist im Wesentlichen der gesamte Rahmen aus einer solchen Legierung gefertigt. Zusätzlich kann der Rahmen lokal mit Kohle- und/oder Glasfasermaterial verstärkt sein. Eine solche Verstärkung ist bevorzugt im Bereich des Übergangs zwischen Kopfabschnitt und Griffabschnitt vorgesehen.The frame preferably has at least 50 wt%, more preferably at least 80 wt%, even more preferably at least 90 wt%, and most preferably at least 95 wt% magnesium. According to a preferred embodiment, the frame comprises a magnesium alloy, preferably a fiber- or particle-reinforced alloy, particularly preferably SAE SiC / AZ91. Particularly preferably, substantially the entire frame is made of such an alloy. In addition, the frame may be locally reinforced with carbon and / or fiberglass material. Such a reinforcement is preferably provided in the region of the transition between the head section and the grip section.

Erfindungsgemäß muss der Magnesium- bzw. Magnesiumlegierungsanteil nicht gleichmäßig über den Ballspielschlägerrahmen verteilt sein. Vielmehr ist es auch bevorzugt, dass der Rahmen einen Rahmenabschnitt aufweist, der Magnesium aufweist, wobei die Wandstärke des Hohlprofils entlang eines Querschnitts durch diesen Rahmenabschnitt variiert. In diesem Fall weist bevorzugt der Rahmen in diesem Rahmenabschnitt mindestens 50 Gew.-%, stärker bevorzugt mindestens 80 Gew.-%, noch stärker bevorzugt mindestens 90 Gew.-% und besonders bevorzugt mindestens 95 Gew.-% Magnesium auf. Bei dieser bevorzugten Ausführungsform können ein oder mehrere Bauteile separat aus Magnesium oder einer Magnesiumlegierung gefertigt, insbesondere spritzgegossen, werden. Diese Bauteile können dann zusammen mit den Prepreglagen in eine Schlauchblasform eingelegt und gemeinsam mit den Prepreglagen verpresst werden. Bei diesen separaten Bauteilen kann es sich um einzelne Abschnitte des Kopfabschnitts oder des Griffbereichs handeln. Besonders bevorzugt ist erfindungsgemäß jedoch ein separater Herzbereich vorgesehen, der aus Magnesium besteht oder Magnesium bzw. Magnesiumlegierungen aufweist, da sich in diesem Bereich mit einer entsprechenden Variation der Wandstärke besonders vorteilhafte Effekte erzielen lassen.According to the invention, the magnesium or magnesium alloy content does not have to be evenly distributed over the ball game racket frame. Rather, it is also preferred that the frame has a frame portion having magnesium, wherein the wall thickness of the hollow profile varies along a cross section through this frame portion. In this case, preferably, the frame in this frame portion has at least 50% by weight, more preferably at least 80% by weight, even more preferably at least 90% by weight and most preferably at least 95% by weight of magnesium. In this preferred embodiment, one or more components may be made separately from magnesium or a magnesium alloy, in particular injection molded. These components can then be placed together with the prepreg layers in a Schlauchblasform and pressed together with the prepreg layers. These separate components may be individual sections of the head section or handle section. However, according to the invention, a separate heart region, which consists of magnesium or has magnesium or magnesium alloys, is particularly preferably provided, since particularly advantageous effects can be achieved in this region with a corresponding variation of the wall thickness.

Der das Magnesium aufweisende Rahmenabschnitt besteht bevorzugt aus zwei Rahmenabschnittshälften, die miteinander verschweißt, verpresst und/oder verklebt sind. Weist der gesamte Rahmen Magnesium auf, so besteht bevorzugt der gesamte Rahmen aus zwei Rahmenhälften, die miteinander verschweißt, verpresst und/oder verklebt sind. Die Rahmenhälften bzw. Rahmenabschnittshälften sind bevorzugt identisch, wobei jede der beiden Rahmenhälften bzw. Rahmenabschnittshälften im Bezug auf die Rahmenlängsachse bzw. Rahmenabschnittlängsachse asymmetrisch ausgebildet ist. Auf diese Weise lassen sich mithilfe des Spritzgussverfahrens auf besonders einfache Weise zwei identische Hälften herstellen, die dann beim Verbinden ineinandergreifen.The magnesium-containing frame section preferably consists of two frame section halves, which are welded together, pressed and / or glued. If the entire frame has magnesium, then preferably the entire frame consists of two frame halves which are welded together, pressed and / or glued together. The frame halves or frame portion halves are preferably identical, with each of the two Frame halves or frame portion halves is formed asymmetrically with respect to the frame longitudinal axis or frame portion longitudinal axis. In this way, using the injection molding process, two identical halves can be produced in a particularly simple manner, which then interlock when connecting.

Die vorliegende Erfindung betrifft ferner ein Verfahren zur Herstellung eines Rahmens bzw. Rahmenabschnitts für einen Ballspielschläger. Bei dem mit dem erfindungsgemäßen Verfahren hergestellten Rahmen handelt es sich bevorzugt um einen Rahmen mit den oben beschriebenen Eigenschaften. Gemäß einer bevorzugten Ausführungsform des erfindungsgemäßen Verfahrens zur Herstellung eines Rahmens oder Rahmenabschnitts werden eine Spritzgussform und ein Kern bereitgestellt, wobei der Kern bevorzugt aus einem Material mit einer Schmelztemperatur unterhalb der Schmelztemperatur oder Wärmebeständigkeitstemperatur des Rahmenmaterials besteht. Bevorzugt ist die Schmelztemperatur des Kernmaterials kleiner als 400°C, besonders bevorzugt kleiner als 370°C. Es ist ferner bevorzugt, dass die Schmelztemperatur des Kernmaterials über 190°C, besonders bevorzugt über 200°C liegt. Der Rahmen (oder ein Rahmenteil) wird dann, bevorzugt mit Hilfe des Thixoverfahrens, durch Einbringen eines Materials, das Magnesium aufweist, zwischen Spritzgussform und Kern geformt. Das Kernmaterial wird dabei so gewählt, dass während des Ausformens des Rahmens nicht genügend Wärmeenergie in den Kern eingebracht wird, um diesen aufzuschmelzen, wobei ein leichtes Erweichen unter Umständen toleriert werden kann. Nachdem der Rahmen geformt, aus der Form entnommen und soweit erkaltet ist, dass er seine Form stabil behält, wird der Kern, bevorzugt durch Erhitzen des gesamten Schlägers über die Schmelztemperatur des Kerns, geschmolzen, so dass das Kernmaterial aus dem durch den Rahmen gebildeten Hohlraum austreten kann. Dabei wird die Wärmebeständigkeitstemperatur des Rahmens bevorzugt nicht überschritten.The present invention further relates to a method of manufacturing a frame portion for a ball game racket. The frame produced by the method according to the invention is preferably a frame with the properties described above. According to a preferred embodiment of the method according to the invention for producing a frame or frame section, an injection mold and a core are provided, wherein the core is preferably made of a material having a melting temperature below the melting temperature or heat resistance temperature of the frame material. Preferably, the melting temperature of the core material is less than 400 ° C, more preferably less than 370 ° C. It is further preferred that the melting temperature of the core material is above 190 ° C, more preferably above 200 ° C. The frame (or frame member) is then molded between the injection mold and the core, preferably by the thixotropic method, by introducing a material comprising magnesium. The core material is chosen so that during the molding of the frame not enough heat energy is introduced into the core in order to melt this, with a slight softening may be tolerated. After the frame has been molded, removed from the mold, and cooled to keep its shape stable, the core is melted, preferably by heating the entire racket above the melting temperature of the core, such that the core material is formed from the cavity formed by the frame can escape. At this time, the heat-resistant temperature of the frame is preferably not exceeded.

Das Kernmaterial weist bevorzugt eines oder eine Kombination der folgenden Materialien auf oder besteht aus einem oder einer Kombination der folgenden Materialien: Legierungen auf Zinnbasis (bevorzugt mind. 50% Zinn und wahlweise Zink, Bismut, Antimon, Kupfer, Silber, Blei, Indium), Legierungen auf Bismutbasis (bevorzugt mind. 50% Bismut und wahlweise Zinn, Silber, Germanium), Legierungen auf Bleibasis (bevorzugt mind. 50% Blei und wahlweise Zinn, Antimon, Bismut, Silber, Indium), Legierungen auf Zinkbasis (bevorzugt mind. 50% Zink), Zink-Druckguss-Legierungen wie z.B. ZnAl4, ZnAl4Cu1, ZnA14Cu3, Legierungen auf Indiumbasis, Glas, Kunststoff mit oder ohne Glasfaserverstärkung wie z.B. Polyamid. Besonders bevorzugt sind metallische Integral-Schaumkerne basierend auf diesen niedrigschmelzenden Legierungen. Diese können beispielsweise im Druckguss hergestellt werden. Durch Hinzufügung eines Treibmittels entsteht ein Integralschaum mit geschlossener Außenhaut. Die relative Dichte kann beispielsweise 50% bis 100% der absoluten Materialdichte betragen. Somit wird durch Verwendung eines Schaums beispielsweise nur die halbe Materialmenge im Vergleich zu einem Vollkern benötigt.The core material preferably comprises one or a combination of the following materials or consists of one or a combination of the following materials: tin-based alloys (preferably at least 50% tin and optionally zinc, bismuth, antimony, copper, silver, lead, indium), Bismuth based alloys (preferably at least 50% bismuth and optionally tin, silver, germanium), lead based alloys (preferably at least 50% lead and optionally tin, antimony, bismuth, silver, indium), zinc based alloys (preferred at least 50% zinc), die-cast zinc alloys such as ZnAl4, ZnAl4Cu1, ZnA14Cu3, indium-based alloys, glass, plastic with or without glass-fiber reinforcement such as polyamide. Particularly preferred are metallic integral foam cores based on these low-melting alloys. These can be produced, for example, by die casting. The addition of a propellant results in an integral foam with closed outer skin. The relative density may be, for example, 50% to 100% of the absolute material density. Thus, by using a foam, for example, only half the amount of material is needed compared to a solid core.

Gemäß einer weiteren bevorzugten Ausführungsform des erfindungsgemäßen Verfahrens zur Herstellung eines Rahmens werden eine Spritzgussform und ein Kern bereitgestellt, wobei der Kern aus einem Salz besteht. Der Rahmen (oder ein Rahmenteil) wird dann, bevorzugt mit Hilfe des Thixoverfahrens, durch Einbringen eines Materials, das Magnesium aufweist, zwischen Spritzgussform und Kern geformt. Nachdem der Rahmen geformt, aus der Form entnommen und soweit erkaltet ist, dass er seine Form stabil behält, wird der Kern durch Einbringen von Wasser in den durch den Rahmen gebildeten Hohlraum aus diesem ausgewaschen bzw. aufgelöst.According to a further preferred embodiment of the method according to the invention for producing a frame, an injection mold and a core are provided, wherein the core consists of a salt. The frame (or frame member) is then molded between the injection mold and the core, preferably by the thixotropic method, by introducing a material comprising magnesium. After the frame has been molded, removed from the mold, and cooled enough to stably retain its shape, the core is washed out by introducing water into the cavity formed by the frame.

Gemäß einer weiteren bevorzugten Ausführungsform des erfindungsgemäßen Verfahrens zur Herstellung eines Rahmens kann der Kern auch aus einem säurelöslichen Material, z.B. auf Glasbasis, bestehen, so dass der Kern nach dem Formen des Rahmens mit Hilfe einer Säure aus dem Rahmen entfernt werden kann.According to a further preferred embodiment of the method according to the invention for producing a frame, the core can also be made of an acid-soluble material, e.g. glass base, so that the core can be removed from the frame after forming the frame with the help of an acid.

Gemäß einer weiteren bevorzugten Ausführungsform des erfindungsgemäßen Verfahrens zur Herstellung eines Rahmens werden zunächst zwei Rahmenhälften aus einem Material gegossen, das Magnesium aufweist. Bevorzugt erfolgt dies mithilfe des sogenannten Thixoverfahrens. Anschließend werden die beiden Rahmenhälften zu einem Rahmen verbunden.According to a further preferred embodiment of the method according to the invention for producing a frame, first two frame halves are cast from a material which comprises magnesium. This is preferably done using the so-called thixotropic method. Subsequently, the two frame halves are connected to form a frame.

Beim erfindungsgemäßen Verfahren dieser zweiten Ausführungsform zur Herstellung eines Rahmenabschnitts werden zunächst zwei Rahmenabschnittshälften aus einem Material, das Magnesium aufweist, gegossen und dann die beiden Rahmenabschnittshälften zu einem ersten Rahmenabschnitt verbunden. Um aus diesem ersten Rahmenabschnitt einen Rahmen für einen Ballspielschläger herzustellen, wird ein zweiter Rahmenabschnitt bereitgestellt und der erste und zweite Rahmenabschnitt zu einem Rahmen verbunden. Erfindungsgemäß kann es sich dabei beim zweiten Rahmenabschnitt um einen unfertigen Abschnitt handeln, beispielsweise um einen Prepregschlauch, sodass das Fertigstellen des zweiten Rahmenabschnitts und das Verbinden des zweiten Rahmenabschnitts mit dem ersten Rahmenabschnitt in einem Verfahrensschritt erfolgen.In the method according to the invention of this second embodiment for producing a frame section, first two frame section halves of a material comprising magnesium are cast, and then the two frame section halves are firstly cast Frame section connected. In order to produce a frame for a ball game racket from this first frame section, a second frame section is provided and the first and second frame sections are connected to form a frame. According to the invention, the second frame section may be an unfinished section, for example a prepreg tube, so that the finishing of the second frame section and the connection of the second frame section to the first frame section occur in one method step.

Das Spritzgießen des Magnesium aufweisenden Materials erfolgt bevorzugt bei Temperaturen zwischen 500°C und 800°C, besonders bevorzugt bei Temperaturen zwischen 550°C und 700°C. Das Einspritzen des Materials in die Gussform erfolgt dabei vorzugsweise in weniger als 80 ms, besonders bevorzugt in weniger als 60 ms und besonders bevorzugt in weniger als 50 ms.The injection molding of the magnesium-containing material is preferably carried out at temperatures between 500 ° C and 800 ° C, more preferably at temperatures between 550 ° C and 700 ° C. The injection of the material into the mold is preferably carried out in less than 80 ms, more preferably in less than 60 ms and particularly preferably in less than 50 ms.

Der Schritt des Verbindens der beiden Rahmenhälften bzw. Rahmenabschnittshälften weist vorzugsweise ein Verschweißen und/oder Verpressen und/oder Verkleben auf. Ferner sind die zwei Rahmenhälften bzw. Rahmenabschnittshälften bevorzugt identisch, wobei jede der beiden Rahmenhälften bzw. Rahmenabschnittshälften im Bezug auf die Längsache asymmetrisch ausgebildet ist.The step of connecting the two frame halves or frame section halves preferably comprises welding and / or pressing and / or gluing. Furthermore, the two frame halves or frame section halves are preferably identical, wherein each of the two frame halves or frame section halves is formed asymmetrically with respect to the longitudinal axis.

Der erfindungsgemäße Rahmen für einen Ballspielschläger weist eine Reihe von technischen Vorteilen gegenüber dem Stand der Technik auf. Obwohl Magnesium eine höhere Dichte, eine geringere spezifische Steifigkeit und eine geringere spezifische Festigkeit als übliche Prepregmaterialien aufweist, lässt sich ein Rahmen für einen Ballspielschläger aus Magnesium bzw. aus Magnesiumlegierungen bei gleichem Gewicht besser im Hinblick auf Steifigkeit und Festigkeit optimieren, da die Wandstärke auf einfache Art und Weise optimal ausgelegt werden kann. Die Verwendung von Magnesiumspritzguss erlaubt eine automatisierte Fertigung mit geringen Zykluszeiten von ca. 35 Sekunden. Eine Vor- und Nachbearbeitung, die bei herkömmlichen Perpregverfahren oftmals händisch erfolgen, entfallen praktisch völlig. Spritzguss erlaubt ferner eine hervorragende Produktionsstabilität und erlaubt es, mithilfe einer definierten Spritzgussform exakt die gewünschte Struktur zu fertigen.The frame according to the invention for a ball game racket has a number of technical advantages over the prior art. Although magnesium has higher density, lower specific stiffness, and lower specific strength than conventional prepreg materials, a frame for a magnesium or magnesium magnesium racket can be better optimized for stiffness and strength at the same weight, as the wall thickness can be reduced to simple Way can be optimally designed. The use of magnesium injection molding allows automated production with short cycle times of approx. 35 seconds. A pre- and post-processing, which are often done manually by conventional Perpregverfahren, accounts for virtually completely. Injection molding also allows excellent production stability and allows to produce exactly the desired structure using a defined injection mold.

Nachfolgend werden bevorzugte Ausführungsformen des erfindungsgemäßen Rahmens anhand der Figuren näher beschrieben. Es zeigen:

Fig. 1
eine perspektivische Ansicht des erfindungsgemäßen Rahmens;
Fig. 2
eine perspektivische Ansicht einer Rahmenhälfte des Rahmens gemäß Figur 1;
Fig. 3
eine vergrößerte perspektivische Ansicht des Herzbereichs des Rahmens gemäß Figur 2;
Fig. 4
eine perspektivische Ansicht des Übergangs vom Griffabschnitt in den Herzbereich des Rahmens gemäß Figur 2;
Fig. 5
eine perspektivische Ansicht eines Abschnitts des Kopfabschnitts des Rahmens gemäß Figur 2;
Fig. 6
einen perspektivischen Querschnitt durch den Kopfabschnitt des Rahmens gemäß Figur 1;
Fig. 7
einen perspektivischen Querschnitt durch die Brücke des Rahmens gemäß Figur 1;
Fig. 8
einen perspektivischen Längsschnitt durch den Griffabschnitt des Rahmens gemäß Figur 1;
Fig. 9
eine Draufsicht auf ein separates Bauteil für einen Rahmen gemäß einer bevorzugten Ausführungsform der vorliegenden Erfindung;
Fig. 10
eine Seitenansicht betrachtet von der Bespannungsebene auf das Bauteil aus Figur 9;
Fig. 11
eine Seitenansicht von einer Figur 10 gegenüberliegenden Seite auf das Bauteil gemäß Figur 9;
Fig. 12
eine perspektivische Ansicht des Bauteils gemäß Figur 9; und
Fig. 13
eine weitere perspektivische Ansicht des Bauteils gemäß Figur 9.
Hereinafter, preferred embodiments of the frame according to the invention are described in detail with reference to FIGS. Show it:
Fig. 1
a perspective view of the frame according to the invention;
Fig. 2
a perspective view of a frame half of the frame according to FIG. 1 ;
Fig. 3
an enlarged perspective view of the heart region of the frame according to FIG. 2 ;
Fig. 4
a perspective view of the transition from the handle portion in the heart region of the frame according to FIG. 2 ;
Fig. 5
a perspective view of a portion of the head portion of the frame according to FIG. 2 ;
Fig. 6
a perspective cross section through the head portion of the frame according to FIG. 1 ;
Fig. 7
a perspective cross section through the bridge of the frame according to FIG. 1 ;
Fig. 8
a perspective longitudinal section through the handle portion of the frame according to FIG. 1 ;
Fig. 9
a plan view of a separate component for a frame according to a preferred embodiment of the present invention;
Fig. 10
a side view viewed from the clothing plane on the component FIG. 9 ;
Fig. 11
a side view of one FIG. 10 opposite side on the component according to FIG. 9 ;
Fig. 12
a perspective view of the component according to FIG. 9 ; and
Fig. 13
a further perspective view of the component according to FIG. 9 ,

Figur 1 zeigt in perspektivischer Ansicht einen Rahmen für einen Ballspielschläger gemäß einer bevorzugten Ausführungsform der vorliegenden Erfindung. Der Rahmen ist als Hohlprofil ausgebildet und weist einen Kopfabschnitt 1 zur Aufnahme einer nicht dargestellten Bespannung, einen Griffabschnitt 2 und einen Herzbereich 3 auf, der zwei Arme 4a und 4b sowie eine Brücke 5 aufweist. Der Rahmen dieser bevorzugten Ausführungsform setzt sich aus zwei identischen Rahmenhälften zusammen, die in Bezug auf die Rahmenlängsachse asymmetrisch ausgebildet sind. Eine dieser beiden identischen Rahmenhälften ist in perspektivischer Ansicht in Figur 2 gezeigt. FIG. 1 shows in perspective view a frame for a ball game racket according to a preferred embodiment of the present invention. The frame is formed as a hollow profile and has a head portion 1 for receiving a fabric, not shown, a handle portion 2 and a heart portion 3, which has two arms 4a and 4b and a bridge 5. The scope of this preferred embodiment is composed of two identical frame halves, with respect to the frame longitudinal axis are formed asymmetrically. One of these two identical frame halves is in perspective view in FIG. 2 shown.

Wie in Figur 2 zu erkennen ist, ist die Asymmetrie der Rahmenhälfte derart vorgesehen, dass die beiden Rahmenhälften beim Zusammenfügen miteinander in Eingriff treten können. Im vergrößerten Ausschnitt von Figur 3, die den Herzbereich 3 der Rahmenhälfte aus Figur 2 zeigt, ist dies besonders deutlich zu erkennen: So können beispielsweise die vorstehenden Stege 5a der Brücke 5 mit den stufenförmigen Abschnitten 5b der Brücke 5 der jeweils anderen Rahmenhälfte in Eingriff treten. Dies ermöglicht ein bündiges Verbinden der beiden Rahmenhälften zu einem Rahmen. In ähnlicher Weise weist der Kopfabschnitt (vgl. Figur 5) Bereiche mit vorstehenden Stegen 1a und stufenförmigen Abschnitten 1b auf.As in FIG. 2 can be seen, the asymmetry of the frame half is provided so that the two frame halves can join each other during assembly. In the enlarged section of FIG. 3 that make up the heart area 3 of the frame half FIG. 2 For example, the protruding webs 5a of the bridge 5 can engage with the step-shaped sections 5b of the bridge 5 of the respective other frame half. This allows a flush connection of the two frame halves to a frame. Similarly, the head portion (see. FIG. 5 ) Areas with projecting webs 1a and stepped portions 1b.

In der dargestellten bevorzugten Ausführungsform bildet die Stufe eine Art Anschlag für die zweite Rahmenhälfte und Steg und Stufe können beispielsweise miteinander verschweißt oder verklebt werden. Alternativ oder zusätzlich können die Rahmenhälften auch beispielsweise Vorsprünge und Nuten oder ähnliche Bereiche aufweisen, die es erlauben, die beiden Rahmenhälften miteinander zu verrasten.In the illustrated preferred embodiment, the step forms a kind stop for the second frame half and web and stage can be welded or glued together, for example. Alternatively or additionally, the frame halves may also, for example, projections and grooves or similar areas, which allow to lock the two frame halves together.

In Figur 6 ist ein Querschnitt durch das Rahmenhohlprofil des Rahmens der Figur 1 im Bereich des Kopfabschnitts 1 dargestellt. Wie in Figur 6 deutlich zu sehen ist, kann die Wandstärke des Rahmenhohlprofils erfindungsgemäß entlang eines Querschnitts durch das Rahmenhohlprofil ganz erheblich variieren. In der dargestellten bevorzugten Ausführungsform weist das Rahmenprofil im Bereich des Kopfabschnitts einen Außenabschnitt 7, einen Innenabschnitt 6 und zwei Seitenabschnitte 8a und 8b auf, wobei im dargestellten Querschnitt die Wandstärke des Innenabschnitts 6 und des Außenabschnitts 7 erheblich größer ist als die Wandstärke der beiden Seitenabschnitte 8a und 8b. Dabei findet ein kontinuierlicher bzw. allmählicher Übergang von der Wandstärke des Innen- bzw. Außenabschnitts hin zu den beiden Seitenabschnitten statt. Ein solches fein abgestimmtes Querschnittsprofil ließe sich mithilfe des herkömmlichen Schlaublasverfahrens nicht erzielen. Wird jedoch Magnesium bzw. eine Magnesiumlegierung spritzgegossen, lässt sich ein solches Querschnittsprofil auf einfache Weise durch entsprechende Ausgestaltung der Spritzgussform gestalten, wobei das Querschnittsprofil zusätzlich entlang der Rahmenkontur in Längsrichtung variieren kann.In FIG. 6 is a cross section through the frame hollow profile of the frame FIG. 1 represented in the region of the head section 1. As in FIG. 6 can be clearly seen, the wall thickness of the frame hollow profile according to the invention vary quite considerably along a cross section through the frame hollow profile. In the illustrated preferred embodiment, the frame profile in the region of the head portion on an outer portion 7, an inner portion 6 and two side portions 8a and 8b, wherein in the illustrated cross section, the wall thickness of the inner portion 6 and the outer portion 7 is considerably larger than the wall thickness of the two side portions 8a and 8b. In this case, there is a continuous or gradual transition from the wall thickness of the inner or outer section to the two side sections. Such a finely tuned cross-sectional profile could not be achieved using the conventional bubble-blowing process. However, if magnesium or a magnesium alloy is injection-molded, such a cross-sectional profile can be designed in a simple manner by appropriate design of the injection mold, wherein the cross-sectional profile can additionally vary along the frame contour in the longitudinal direction.

In Figur 7 ist ein Querschnitt durch das Hohlprofil im Bereich der Brücke 5 dargestellt. Auch hier variiert die Wandstärke des Hohlprofils, wenn auch die Variation nicht so ausgeprägt ist wie im Beispiel der Figur 6.In FIG. 7 is a cross section through the hollow profile in the region of the bridge 5 is shown. Again, the wall thickness of the hollow profile varies, although the variation is not as pronounced as in the example of FIG. 6 ,

Eine zusätzliche Variation der Wandstärke in Längsrichtung des Rahmens, d.h. entlang der Rahmenkontur, ist in Figur 8 zu sehen, die einen Längsschnitt durch den Griffabschnitt 2 des Rahmens der Figur 1 zeigt. Wie hier deutlich zu erkennen ist, nimmt die Wandstärke des Rahmenhohlprofils im Bereich des Übergangs zum Arm 4b deutlich zu.An additional variation of the wall thickness in the longitudinal direction of the frame, ie along the frame contour, is in FIG. 8 to see a longitudinal section through the handle section 2 of the frame FIG. 1 shows. As can be clearly seen here, the wall thickness of the frame hollow profile increases significantly in the region of the transition to the arm 4b.

Erfindungsgemäß muss nicht der gesamte Rahmen Magnesium aufweisen. Vielmehr kann erfindungsgemäß der Rahmen auch einen Abschnitt bzw. ein separates Bauteil aufweisen, das aus Magnesium oder einer Magnesiumlegierung gefertigt ist. Eine bevorzugte Ausführungsform eines solchen separaten Bauteils aus Magnesiumlegierung ist in den Figuren 9 bis 13 dargestellt. Hierbei handelt es sich um einen Ausschnitt aus dem Herzbereich, nämlich die Brücke 5 sowie Abschnitte der Arme 4a und 4b und im Übergang des Herzbereichs in den Kopfabschnitt. Die Beanspruchung dieses Rahmenteils während des Spiels ist besonders komplex, sodass sich in diesem Bereich mithilfe einer Variation der Wandstärke des Hohlprofils der größte Effekt erzielen lässt. Erfindungsgemäß lassen sich aber auch andere Einsatzbauteile wie beispielsweise der Griffabschnitt oder Bereiche des Kopfabschnitts in entsprechender Weise aus Magnesium oder einer Magnesiumlegierung fertigen und in den erfindungsgemäßen Rahmen einfügen. Dies erfolgt bevorzugt dadurch, dass das separate Magnesiumbauteil mit den Prepreglagen des restlichen Rahmens im Schlauchblasverfahren verpresst wird. Wie beispielsweise in der Seitenansicht der Figur 10 zu erkennen ist, lässt sich mithilfe des erfindungsgemäßen Verfahrens der Spritzguss derart gut kontrollieren, dass sogar die Saitenöffnungen 10 für die Durchführungen der die Bespannung bildenden Saiten entsprechend gefertigt werden können, ohne dass ein zusätzlicher Schritt des Bohrens erforderlich ist.According to the invention does not have the entire frame magnesium. Rather, according to the invention, the frame can also have a section or a separate component made of magnesium or a magnesium alloy. A preferred embodiment of such a separate component of magnesium alloy is in the FIGS. 9 to 13 shown. This is a section of the heart area, namely the bridge 5 and sections of the arms 4a and 4b and in the transition of the heart area in the head section. The stress on this frame part during the game is particularly complex, so that in this area by means of a variation of the wall thickness of the hollow profile, the greatest effect can be achieved. According to the invention, however, other insert components such as, for example, the grip section or regions of the head section can likewise be made of magnesium or a magnesium alloy and inserted into the frame according to the invention. This is preferably done by the separate magnesium component is pressed with the prepreg layers of the rest of the frame in the tube blowing process. For example, in the side view of FIG. 10 can be seen, the injection molding process can be controlled so well with the aid of the method according to the invention that even the string openings 10 for the passages of strings forming the stringing can be manufactured without an additional step of drilling being required.

Claims (12)

  1. A process for producing a frame or a frame portion for a ball-game racket comprising a head portion (1) and a handle portion (2), wherein at least a part of the frame is configured as a hollow profile and comprises magnesium and wherein the wall thickness of the hollow profile varies along a cross-section through the hollow frame profile, wherein the process comprises the following steps:
    providing an injection mold and a core, wherein the core consists of a material having a melting temperature below 400°C;
    casting the frame or the frame portion by means of the thixo process by inserting a material comprising magnesium between the injection mold and the core; and
    melting the core by heating the frame or frame portion including the core to above the melting temperature of the core, wherein the heat resistance temperature of the frame or frame portion is not exceeded.
  2. The process according to claim 1, wherein the frame material comprises at least 50% (by weight), preferably at least 80% (by weight), more preferably at least 90% (by weight), particularly preferably at least 95% (by weight) of magnesium.
  3. The process according to claim 1 or 2, wherein the frame material comprises a magnesium alloy, preferably a fiber-reinforced or particle-reinforced alloy, particularly preferably SAE SiC/AZ91.
  4. The process according to any one of the preceding claims, wherein the core material comprises or consists of one of or a combination of the following materials: an alloy on the basis of tin, an alloy on the basis of bismuth, an alloy on the basis of lead, an alloy on the basis of zinc, an alloy on the basis of indium, glass, plastics with or without glass-fiber reinforcement, polyamide.
  5. The process according to any one of the preceding claims, wherein further the wall thickness of the hollow profile varies in the longitudinal direction of the frame or frame portion.
  6. The process according to any one of the preceding claims, wherein the variation in the wall thickness along at least one cross-section and/or longitudinal section relative to the minimum wall thickness is at least 25%, preferably at least 50%, more preferably at least 75%, particularly preferably at least 100%.
  7. The process according to any one of the preceding claims, wherein the wall thickness of the frame or frame portion in sections is thinner than 1 mm, preferably thinner than 0.8 mm, more preferably thinner than 0.7 mm, particularly preferably thinner than 0.6 mm.
  8. The process according to any one of the preceding claims, wherein the frame profile of the frame comprises an outer portion (7), an inner portion (6) and two side portions (8a, 8b) in the head portion (1), and wherein the wall thickness of the inner and/or outer portion at least in sections is thicker than the wall thickness of the side portions and/or wherein the wall thickness of the inner and/or outer portion at least in sections is thinner than the wall thickness of the side portions.
  9. The process according to any one of the preceding claims, wherein the frame profile of the frame comprises an outer portion (7), an inner portion (6) and two side portions (8a, 8b) in the head portion (1), and wherein the wall thickness of the inner portion at least in sections is thinner than the wall thickness of the outer portion.
  10. The process according to any one of the preceding claims, wherein the frame is locally reinforced with carbon fiber material and/or glass fiber material, wherein preferably the frame is reinforced with carbon fiber material and/or glass fiber material in the area of the transition between the head portion (1) and the handle portion (2).
  11. The process according to any one of the preceding claims, wherein the frame or frame portion comprises two frame halves or frame portion halves which are welded to each other, pressed together and/or bonded to each other, wherein preferably the two frame halves or frame portion halves are identical and wherein preferably each of the two frame halves or frame portion halves is asymmetrical with respect to the longitudinal axis of the frame or the frame portion.
  12. The process according to any one of the preceding claims, wherein the frame comprises a frame portion comprising magnesium, and wherein the wall thickness of the hollow profile varies along a cross-section through this frame portion, wherein preferably the frame in said frame portion comprises at least 50% (by weight), more preferably at least 80% (by weight), more preferably at least 90% (by weight) and particularly preferably at least 95% (by weight) of magnesium, and/or wherein preferably said frame portion comprises two frame portion halves which are welded to each other, pressed together and/or bonded to each other.
EP14745093.6A 2013-07-04 2014-07-04 Racket or club consisting of magnesium Active EP3016721B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102013011174.9A DE102013011174B4 (en) 2013-07-04 2013-07-04 magnesium bat
PCT/EP2014/064300 WO2015001077A1 (en) 2013-07-04 2014-07-04 Racket or club consisting of magnesium

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EP3016721A1 EP3016721A1 (en) 2016-05-11
EP3016721B1 true EP3016721B1 (en) 2019-09-11

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US (1) US20170050090A1 (en)
EP (1) EP3016721B1 (en)
CN (1) CN105407987B (en)
DE (1) DE102013011174B4 (en)
ES (1) ES2758727T3 (en)
WO (1) WO2015001077A1 (en)

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Publication number Priority date Publication date Assignee Title
EP3241590A1 (en) 2016-05-06 2017-11-08 Head Technology GmbH Racket with magnesium bridge
DE102017000565A1 (en) 2016-05-06 2017-11-09 Head Technology Gmbh Ball game racket with magnesium bridge
RU2750575C1 (en) * 2020-02-25 2021-06-29 Федеральное государственное автономное образовательное учреждение высшего образования "Уральский федеральный университет имени первого Президента России Б.Н. Ельцина" Reversible gear pump
CN113069741A (en) * 2021-04-28 2021-07-06 上海迎轩体育科技有限公司 Manufacturing process of steady three-way device for badminton racket

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US5551689A (en) * 1988-08-18 1996-09-03 Athletic Alternatives Inc. String suspension and frame construction for sports rackets

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US1587919A (en) * 1922-04-26 1926-06-08 Spalding & Bros Ag Racket
DE1757527U (en) * 1957-09-25 1957-12-05 Fuchs Fa Otto BALL GAME RACKETS, IN PARTICULAR TENNIS RACKETS.
US3874667A (en) 1972-08-09 1975-04-01 Nl Industries Inc Die-cast light-metal racket and stringing means therefor
US4176841A (en) * 1974-04-10 1979-12-04 Reinhold Sommer Tennis racket
WO1980002510A1 (en) * 1979-05-17 1980-11-27 J Frolow Tennis racket
US4290604A (en) * 1979-08-07 1981-09-22 Ektelon Racquetball racquet having a metal frame meshable with a throat piece
US5358261A (en) * 1993-12-16 1994-10-25 Cheng Chin Cheng Metal racket frame
US6234921B1 (en) * 1999-05-05 2001-05-22 Benetton Sportsystem Usa, Inc. Sports racquets with tripod weighting
CN2460147Y (en) * 2001-01-15 2001-11-21 厦门侨兴工业有限公司 Improved structure of tennis racket
JP4051198B2 (en) * 2001-11-14 2008-02-20 ヨネックス株式会社 tennis racket
CN2897342Y (en) * 2006-02-27 2007-05-09 白尧嘉 Tennis racket of carbon-fibre composite fibre
CN103083877B (en) * 2013-02-05 2015-04-15 梁栌伊 Badminton racket

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5551689A (en) * 1988-08-18 1996-09-03 Athletic Alternatives Inc. String suspension and frame construction for sports rackets

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Publication number Publication date
CN105407987B (en) 2019-03-15
DE102013011174A1 (en) 2015-01-08
ES2758727T3 (en) 2020-05-06
CN105407987A (en) 2016-03-16
WO2015001077A1 (en) 2015-01-08
DE102013011174B4 (en) 2016-08-18
EP3016721A1 (en) 2016-05-11
US20170050090A1 (en) 2017-02-23

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