JP3998648B2 - Cup type rotating grindstone - Google Patents

Cup type rotating grindstone Download PDF

Info

Publication number
JP3998648B2
JP3998648B2 JP2004052007A JP2004052007A JP3998648B2 JP 3998648 B2 JP3998648 B2 JP 3998648B2 JP 2004052007 A JP2004052007 A JP 2004052007A JP 2004052007 A JP2004052007 A JP 2004052007A JP 3998648 B2 JP3998648 B2 JP 3998648B2
Authority
JP
Japan
Prior art keywords
cup
elastic film
grinding
outer peripheral
concrete
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.)
Expired - Fee Related
Application number
JP2004052007A
Other languages
Japanese (ja)
Other versions
JP2005238392A (en
Inventor
正智 手島
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.)
Noritake Co Ltd
Noritake Super Abrasive Co Ltd
Original Assignee
Noritake Co Ltd
Noritake Super Abrasive Co Ltd
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 Noritake Co Ltd, Noritake Super Abrasive Co Ltd filed Critical Noritake Co Ltd
Priority to JP2004052007A priority Critical patent/JP3998648B2/en
Publication of JP2005238392A publication Critical patent/JP2005238392A/en
Application granted granted Critical
Publication of JP3998648B2 publication Critical patent/JP3998648B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Description

本発明は石材、コンクリート、レンガ、鉄系材料などの研削に用いるカップ型回転砥石に関し、特にこれらの硬質材料に弾性膜が塗膜された被研削材を研削するのに好適なカップ型回転砥石に関する。   The present invention relates to a cup-type rotary grindstone used for grinding stones, concrete, bricks, iron-based materials and the like, and in particular, a cup-type rotary grindstone suitable for grinding a material to be ground whose elastic material is coated on these hard materials About.

石材、コンクリート、レンガなどの高脆性材料の研削用にカップ型回転砥石が広く用いられている。カップ型回転砥石の基本的な構造は、カップ型の基板の外周縁に沿って、間欠的または連続的に砥粒層を設けたものであり、回転する砥石の砥粒層を被研削物の表面に摺接させて平面研削を行うものである。   Cup-type rotary whetstones are widely used for grinding highly brittle materials such as stone, concrete and brick. The basic structure of a cup-type rotating grindstone is that an abrasive layer is provided intermittently or continuously along the outer periphery of a cup-type substrate. Surface grinding is carried out in sliding contact with the surface.

カップ型の基板の外周縁に沿って間欠的に砥粒層を設けた回転砥石は、間欠的な砥粒層の間からの切粉の排出が良く、目詰まりしにくい。また被研削材との接触面積が小さいので、砥粒層の被研削材に対する食い込みが良く、切れ味に優れるという長所を有する。他方、研削時の振動が大きくてチッピングが大きい、面粗さが粗いという短所も持ち合わせている。   The rotating grindstone provided with the abrasive layer intermittently along the outer peripheral edge of the cup-type substrate is good in discharging chips from between the intermittent abrasive layers and is not easily clogged. Further, since the contact area with the material to be ground is small, there is an advantage that the abrasive layer bites into the material to be ground and the sharpness is excellent. On the other hand, it also has the disadvantages of large vibration during grinding, large chipping, and rough surface.

カップ型の基板の外周縁に沿って連続的に砥粒層を設けた回転砥石は、連続的な砥粒層が被研削物に接触するので、研削時の振動が少なく、またチッピングが少ない。さらに研削面粗さが細かく、面精度が良好であるという長所を有する。他方、切粉の排出が悪いため、目詰まりが発生しやすく、また被研削材との接触面積が大きいため、研削焼けが発生しやすい、砥石部の被研削材に対する食い込みが悪く切れ味に劣る、研削液や冷却空気の供給が難しい、という短所も持ち合わせている。   In the rotating grindstone in which the abrasive layer is continuously provided along the outer peripheral edge of the cup-shaped substrate, since the continuous abrasive layer contacts the workpiece, there is less vibration during grinding and less chipping. Furthermore, the ground surface roughness is fine and the surface accuracy is good. On the other hand, since the discharge of chips is bad, clogging is likely to occur, and because the contact area with the material to be ground is large, grinding burn is likely to occur, the biting into the material to be ground of the grindstone is poor and the sharpness is poor, It also has the disadvantage that it is difficult to supply grinding fluid and cooling air.

これらの回転砥石において、砥粒層を形成する砥粒としては、酸化アルミナを主成分としたA系砥粒、炭化珪素(SiC)を主成分としたC系砥粒、ダイヤモンド砥粒、CBN(立方晶窒化ホウ素)砥粒などの超砥粒が、被研削物の材質や研削条件に応じて用いられる。   In these rotary whetstones, the abrasive grains forming the abrasive layer include A-based abrasive grains mainly composed of alumina oxide, C-based abrasive grains mainly composed of silicon carbide (SiC), diamond abrasive grains, CBN ( Super abrasive grains such as (cubic boron nitride) abrasive grains are used depending on the material and grinding conditions of the workpiece.

カップ型回転砥石について本発明者らも様々な改良を行っており、例えば、基板上に貫通孔を設けて切粉の排出を良くしたものが特許文献1に記載されており、また、研削時の振動と騒音の発生を抑制したものが特許文献2に記載されている。   The present inventors have also made various improvements with respect to the cup-type rotary grindstone. For example, Patent Document 1 describes that a through hole is provided on a substrate to improve chip discharge, and during grinding, Japanese Patent Application Laid-Open No. H10-228688 describes that which suppresses the generation of vibration and noise.

コンクリート等をベースとし、これに弾性膜が付着したものを被研削物として研削を行う際に用いられるカップ型砥石の一例を図3に示す。
図3は、カップ型回転砥石が、弾性膜32が塗膜されたコンクリート31を研削する様子を示したものであり、図3(a)では、カップ型回転砥石の基板11の平坦部11aの底面に弾性膜32の切削加工に好適なPCDチップ21が取り付けられている。PCDチップ21に替えてPCBNチップや超硬合金チップが用いられることもある。
しかし、PCD、PCBN、超硬合金はいずれも焼結体であるため、衝撃に対して弱く、コンクリート31と接触すると摩耗が著しく、チップの飛散やチップ割れを生じる。これは特に弾性膜32が薄膜である場合に起こりやすい。
FIG. 3 shows an example of a cup-type grindstone that is used when grinding is performed using a concrete or the like as a base and an elastic film attached thereto as an object to be ground.
FIG. 3 shows a state where the cup-type rotary grindstone grinds the concrete 31 coated with the elastic film 32. In FIG. 3A, the flat portion 11a of the substrate 11 of the cup-type rotary grindstone is shown. A PCD chip 21 suitable for cutting the elastic film 32 is attached to the bottom surface. Instead of the PCD chip 21, a PCBN chip or a cemented carbide chip may be used.
However, since PCD, PCBN, and cemented carbide are all sintered bodies, they are vulnerable to impact, and when they come into contact with the concrete 31, wear is significant, and chip scattering and chip cracking occur. This is particularly likely to occur when the elastic film 32 is a thin film.

一方、図3(b)に示すように、カップ型回転砥石10の基板11の平坦部11aの先端底面側に砥粒22を電着等により固着することも考えられる。
しかし、この場合には衝撃には強いものの、砥粒22の突き出し量が小さいために弾性膜32の剥離には好適ではなく、弾性膜32の膜厚が厚いときには加工に長時間を要するという不都合が生じる。
性質の異なる刃部を有する研削工具の例が、特許文献3、特許文献4、特許文献5、特許文献6に記載されている。
On the other hand, as shown in FIG. 3B, it is also conceivable that the abrasive grains 22 are fixed to the bottom surface of the flat portion 11a of the substrate 11 of the cup-type rotating grindstone 10 by electrodeposition or the like.
However, in this case, although it is strong against impact, the protruding amount of the abrasive grains 22 is small, so that it is not suitable for peeling of the elastic film 32. When the elastic film 32 is thick, it takes a long time for processing. Occurs.
Examples of grinding tools having blade portions having different properties are described in Patent Literature 3, Patent Literature 4, Patent Literature 5, and Patent Literature 6.

特開2000−84858号公報JP 2000-84858 A 特開2002−239913号公報JP 2002-239913 A 特開2001−198719号公報JP 2001-198719 A 特開2002−239827号公報Japanese Patent Laid-Open No. 2002-239827 特開2003−200352号公報JP 2003-200352 A 特開2003−300168号公報JP 2003-300168 A

このうち、特許文献3に記載のものは、硬質焼結体とダイヤモンド砥粒とを用い、カップ状の台金の端面に傾斜部を設けて、この傾斜部に硬質焼結体を設けたフライス工具であり、重研削と仕上げ研削を同時に行うことを可能とすることを可能とするものであって、弾性膜が塗膜されたコンクリートを研削するのに好適な構造のものではない。   Among them, the one described in Patent Document 3 is a milling machine using a hard sintered body and diamond abrasive grains, provided with an inclined portion on the end face of a cup-shaped base metal, and provided with a hard sintered body on the inclined portion. It is a tool, and makes it possible to perform heavy grinding and finish grinding simultaneously, and is not of a structure suitable for grinding concrete coated with an elastic film.

また、特許文献4に記載のものは、砥粒からなる砥石にフライス刃を設けた複合工具であり、内周部に硬質焼結体を取り付け、この硬質焼結体に対して段差を設けた面に砥粒が配置されている。この複合工具では、砥粒層が外周側にあり硬質部が内周側にあるので、この複合工具を用いて弾性体を加工すると、砥材層側では焼けによる切味不良が起こり、硬質部が弾性体のベースのコンクリート等に当って硬質層の欠けが発生する。   Moreover, the thing of patent document 4 is a composite tool which provided the milling blade in the grindstone which consists of an abrasive grain, attached the hard sintered compact to the inner peripheral part, and provided the level | step difference with respect to this hard sintered compact Abrasive grains are arranged on the surface. In this composite tool, since the abrasive layer is on the outer peripheral side and the hard part is on the inner peripheral side, when the elastic body is processed using this composite tool, a sharpness defect due to burning occurs on the abrasive layer side, and the hard part However, the hard layer chipping occurs when it hits the concrete of the elastic base.

また、特許文献5に記載のものは、円筒状台金の外周面と端面または円盤状台金の外周面と側面に電着法により砥粒を固着した電着工具において、円筒状台金の外周面と端面との境界または円盤状台金の外周面と側面との境界である稜部に耐摩耗部材を配置した電着工具である。この電着工具では、硬質層が外周部と端面の稜部にあるため、この工具を用いて弾性膜が塗膜されたコンクリートを研削すると、硬質部が弾性体のベースのコンクリート等に当って硬質層の欠けが発生する。   Moreover, the thing of patent document 5 WHEREIN: In the electrodeposition tool which fixed the abrasive grain by the electrodeposition method to the outer peripheral surface and end surface of a cylindrical base metal, or the outer peripheral surface and side surface of a disk-shaped base metal, This is an electrodeposition tool in which an abrasion-resistant member is disposed on a ridge that is a boundary between an outer peripheral surface and an end surface or a boundary between an outer peripheral surface and a side surface of a disk-shaped base metal. In this electrodeposition tool, since the hard layer is on the outer peripheral part and the edge of the end face, when grinding concrete coated with an elastic film using this tool, the hard part hits the base concrete of the elastic body, etc. Hard layer chipping occurs.

また、特許文献6に記載のものは、刃先の回転半径方向内側部分が砥粒を金属バインダで結合させた砥石で構成され、刃先の回転半径方向外側部分が砥石よりも硬質の焼結体で構成されている回転工具である。この回転工具では、硬質層と砥材層が同一面にあるため、この工具を用いて弾性膜が塗膜されたコンクリートを研削すると、硬質部が弾性体のベースのコンクリート等に当って硬質層の欠けが発生する。また、金属結合材を用いた砥材層であるため、十分な砥材突き出し量が得られず、焼けが発生し、切れ味不良となる。
このように、従来の工具では、弾性膜が塗膜されたコンクリートを好適に研削することができない。
Moreover, the thing of patent document 6 is comprised with the grindstone to which the rotation radial direction inner side part of the blade edge combined the abrasive grain with the metal binder, and the rotation radial direction outer side part of the blade edge | tip is a sintered body harder than a grindstone. It is the rotary tool comprised. In this rotary tool, since the hard layer and the abrasive layer are on the same surface, when the concrete coated with an elastic film is ground using this tool, the hard part hits the concrete of the elastic base and the hard layer. Chipping occurs. Moreover, since it is an abrasive material layer using a metal binder, a sufficient amount of abrasive material protrusion cannot be obtained, and scoring occurs, resulting in poor sharpness.
Thus, the conventional tool cannot suitably grind the concrete coated with the elastic film.

本発明は、このような問題点を解決するためになされたもので、弾性膜を効率良く剥離することができ、かつ衝撃に強く、耐摩耗性の高いカップ型回転砥石を提供することを目的とする。   The present invention has been made to solve such problems, and an object of the present invention is to provide a cup-type rotary grindstone that can efficiently peel an elastic film, is resistant to impact, and has high wear resistance. And

以上の課題を解決するために、本発明は、石材、コンクリート、またはレンガのいずれか一つからなる硬質材料に弾性膜が塗膜されたものを被研削材として研削を行う際に用いられるカップ型回転砥石であって、前記硬質材料に塗膜された弾性膜の剥離用チップが、カップ型基板の外周側平坦部の外周端面に焼結体によって形成されて取り付けられるとともに、前記カップ型基板の外周側平坦部の底面に、前記硬質材料研削用の、砥粒を固着してなる砥粒層が形成されていることを特徴とするカップ型回転砥石である。 In order to solve the above-mentioned problems, the present invention provides a cup used when grinding using a hard material made of any one of stone, concrete, or brick and coated with an elastic film as a material to be ground. An elastic film peeling chip coated with the hard material is formed and attached to an outer peripheral end surface of an outer peripheral side flat portion of the cup type substrate by a sintered body, and the cup type substrate A cup-type rotary grindstone characterized in that an abrasive grain layer formed by adhering abrasive grains for grinding the hard material is formed on the bottom surface of the outer peripheral flat portion.

カップ型基板の外周側平坦部の外周端面に取り付けられた弾性膜剥離用チップが弾性膜に作用して弾性膜を剥離し、弾性膜が剥離した領域においては、カップ型基板の外周側平坦部の底面に形成された砥粒層が、ベースであるコンクリート等の硬質材料に作用して研削する。   In a region where the elastic film peeling chip attached to the outer peripheral end surface of the outer peripheral flat part of the cup type substrate acts on the elastic film to release the elastic film, the outer peripheral side flat part of the cup type substrate is removed. Abrasive grain layer formed on the bottom surface acts on a hard material such as concrete as a base for grinding.

弾性膜剥離用チップは焼結体によって形成されているため、目詰まりを起こすことなく効率よく弾性膜を剥離できるとともに、砥粒を固着してなる砥粒層は衝撃に強く耐摩耗性に優れているため、硬質のコンクリートを好適に研削することができる。従って、コンクリートと弾性膜という性質の異なる材料からなる複合材料を被研削材とする場合においても、耐摩耗性を維持しつつ効率よく研削することが可能となる。   Since the tip for peeling the elastic film is formed of a sintered body, the elastic film can be peeled off efficiently without causing clogging, and the abrasive layer made by adhering abrasive grains is strong against impact and has excellent wear resistance. Therefore, hard concrete can be ground appropriately. Therefore, even when a composite material made of materials having different properties such as concrete and an elastic film is used as a material to be ground, it is possible to perform efficient grinding while maintaining wear resistance.

本発明においては、前記弾性膜剥離用チップは、PCD、PCBNまたは超硬合金からなることが好ましい。これらの材料で弾性膜剥離用チップを形成することにより、弾性膜を効率よく剥離することができる。   In the present invention, the elastic film peeling chip is preferably made of PCD, PCBN or cemented carbide. By forming the elastic film peeling tip with these materials, the elastic film can be peeled efficiently.

本発明においては、前記砥粒層はダイヤモンド、CBNなどからなる砥粒を単層または層状に並べて形成されたものであることを特徴とする。これらの砥粒で形成された砥粒層は衝撃に強いため、コンクリート等の硬質材料を研削するのに適しており、耐摩耗性の高いカップ型回転砥石を実現することができる。   In the present invention, the abrasive grain layer is formed by arranging abrasive grains made of diamond, CBN or the like in a single layer or in a layer form. Since the abrasive grain layer formed of these abrasive grains is resistant to impact, it is suitable for grinding hard materials such as concrete, and a cup-type rotating grindstone with high wear resistance can be realized.

本発明によると、石材、コンクリート、またはレンガのいずれか一つからなる硬質材料に塗膜された弾性膜の剥離用チップが、カップ型基板の外周側平坦部の外周端面に焼結体によって形成されて取り付けられるとともに、前記カップ型基板の外周側平坦部の底面に、前記硬質材料研削用の、砥粒を固着してなる砥粒層が形成されていることにより、コンクリート等の硬質材料に弾性膜が塗膜された被研削材を研削する場合においても、耐摩耗性を維持しつつ効率よく弾性膜を剥離して研削することが可能となる。 According to the present invention, an elastic film peeling chip coated on a hard material made of any one of stone, concrete, or brick is formed on the outer peripheral end surface of the outer peripheral flat portion of the cup-type substrate by a sintered body. In addition to being attached to the bottom surface of the outer peripheral side flat portion of the cup-type substrate, an abrasive layer formed by adhering abrasive grains for the hard material grinding is formed on a hard material such as concrete. Even when grinding a material to be ground coated with an elastic film, it is possible to efficiently peel and grind the elastic film while maintaining wear resistance.

以下、本発明の実施形態に係るカップ型回転砥石について説明する。
図1は本発明の実施の形態に係るカップ型回転砥石を示す図で、(a)は正面図、(b)は(a)の断面図である。
図1に示すカップ型回転砥石10において、基板11は、厚さ3mmの鋼板をプレス絞り加工によりカップ状としたものであり、底部中央部に電動工具の回転軸に取り付けるための取付け用孔11bが設けられている。基板11の外径は100mmである。
カップ型の基板11の外周側の平坦部11aの底面には、ダイヤモンド等からなる砥粒12をろう付けにより固着してなる砥粒層13が形成されている。また、カップ型の基板11の外周側の平坦部11aの外周端面には、弾性膜剥離用チップ14が取り付けられている。弾性膜剥離用チップ14は、PCD、PCBN、あるいは超硬合金を用いて形成することができる。基板11には、平坦部11aで砥粒層13でない部分に集塵用の貫通孔11cが設けられている。
Hereinafter, a cup-type rotary grindstone according to an embodiment of the present invention will be described.
1A and 1B are diagrams showing a cup-type rotary grindstone according to an embodiment of the present invention. FIG. 1A is a front view, and FIG. 1B is a cross-sectional view of FIG.
In the cup-type rotary grindstone 10 shown in FIG. 1, the substrate 11 is a cup-shaped 3 mm-thick steel plate formed by press drawing and has a mounting hole 11b for mounting on the rotating shaft of the electric tool at the center of the bottom. Is provided. The outer diameter of the substrate 11 is 100 mm.
On the bottom surface of the flat portion 11a on the outer peripheral side of the cup-type substrate 11, an abrasive grain layer 13 is formed by adhering abrasive grains 12 made of diamond or the like by brazing. An elastic film peeling chip 14 is attached to the outer peripheral end surface of the flat portion 11 a on the outer peripheral side of the cup-shaped substrate 11. The elastic film peeling chip 14 can be formed using PCD, PCBN, or cemented carbide. The substrate 11 is provided with a through hole 11c for collecting dust at a portion of the flat portion 11a that is not the abrasive grain layer 13.

図2に、本発明の実施の形態に係るカップ型回転砥石の加工面の詳細を示す。
図2(a)において、カップ型回転砥石10の基板11の平坦部11aの外周端面に弾性膜剥離用チップ14が取り付けられている。また、基板11の平坦部11aの底面にダイヤモンド等からなる砥粒12をろう付けにより固着してなる砥粒層13が形成されている。
FIG. 2 shows details of the processed surface of the cup-type rotary grindstone according to the embodiment of the present invention.
In FIG. 2A, an elastic film peeling tip 14 is attached to the outer peripheral end face of the flat portion 11 a of the substrate 11 of the cup-type rotating grindstone 10. In addition, an abrasive layer 13 formed by adhering abrasive grains 12 made of diamond or the like to the bottom surface of the flat portion 11a of the substrate 11 by brazing is formed.

図2(b)に、このカップ型回転砥石10を用いて、弾性膜32で表面が覆われたコンクリート31を研削する様子を示す。コンクリート31をベースとし、これに弾性膜32が付着したものを被研削物として研削する際に、弾性膜32に対しては基板11の平坦部11aの外周端面に設けられた弾性膜剥離用チップ14が作用し、弾性膜32が剥離した領域においては、ベースであるコンクリート31に対して、基板11の平坦部11aの底面に設けられたダイヤモンド等からなる砥粒12が作用する。弾性膜剥離用チップ14は焼結体によって形成されたチップであるため、目詰まりを起こすことなく効率よく弾性膜32を研削できるとともに、砥粒12を固着してなる砥粒層13は衝撃に強く耐摩耗性に優れているため、硬質のコンクリートの研削に好適である。弾性膜剥離用チップ14は、砥粒12が配列された研削面から最大で砥粒12の直径の分だけ段差を設けて基板11に取り付けられていることとなり、弾性膜剥離用チップ14がベースであるコンクリート31に接触して欠けを生じることがない。   FIG. 2B shows a state in which the concrete 31 whose surface is covered with the elastic film 32 is ground using the cup-type rotary grindstone 10. When a concrete 31 is used as a base and an elastic film 32 attached thereto is ground as an object to be ground, an elastic film peeling tip provided on the outer peripheral end surface of the flat portion 11a of the substrate 11 with respect to the elastic film 32 In the region where the elastic film 32 is peeled off, the abrasive grains 12 made of diamond or the like provided on the bottom surface of the flat portion 11a of the substrate 11 act on the concrete 31 which is the base. Since the elastic film peeling chip 14 is a chip formed of a sintered body, the elastic film 32 can be efficiently ground without causing clogging, and the abrasive layer 13 formed by adhering the abrasive grains 12 is subjected to an impact. Because it is strong and excellent in wear resistance, it is suitable for grinding hard concrete. The elastic film peeling chip 14 is attached to the substrate 11 with a level difference corresponding to the diameter of the abrasive grain 12 at the maximum from the grinding surface on which the abrasive grains 12 are arranged. There is no chipping in contact with the concrete 31.

このように、本発明の実施の形態に係るカップ型回転砥石によると、コンクリート31と弾性膜32という性質の異なる材料からなる複合材料を被研削材とする場合においても、耐摩耗性を維持しつつ弾性膜を効率よく剥離することが可能となる。   As described above, according to the cup-type rotary grindstone according to the embodiment of the present invention, the wear resistance is maintained even when the composite material made of materials having different properties such as the concrete 31 and the elastic film 32 is used as the material to be ground. In addition, the elastic film can be efficiently peeled off.

以上説明した本発明のカップ型回転砥石の加工性能を確認するために、PCDチップをカップ型回転砥石の基板11の平坦部11aの底面に取り付けた従来品1と、カップ型回転砥石の基板11の平坦部11aの底面に砥粒を電着により固定した従来品2とを比較対象とした試験を実施した。その結果を図4に示す。
図4(a)は加工能率を示しており、発明品の加工能率を100として表示している。ここで、加工能率は、単位時間あたりの弾性膜の剥離面積として定義している。従来品1は発明品と同程度の加工能率であるものの、従来品2は加工能率が著しく低下している。これは、砥粒の突き出し量が小さいために弾性膜の剥離には好適ではなく、加工に長時間を要するためである。
図4(b)は寿命を示しており、発明品の寿命を100として表示している。従来品2は発明品と同程度の寿命を有するものの、従来品1は寿命が著しく低下している。これは、PCDチップは衝撃に対して弱く、コンクリートと接触すると摩耗が著しいためである。
以上の結果から、本発明のカップ型回転砥石が、加工能率、寿命のいずれの点においても優れていることが実証されている。
In order to confirm the processing performance of the cup-type rotary grindstone of the present invention described above, the conventional product 1 in which the PCD chip is attached to the bottom surface of the flat portion 11a of the cup-type rotary grindstone substrate 11 and the cup-type rotary grindstone substrate 11 A test was conducted in which the comparison product was a conventional product 2 in which abrasive grains were fixed to the bottom surface of the flat portion 11a by electrodeposition. The result is shown in FIG.
FIG. 4A shows the processing efficiency, and the processing efficiency of the invention is displayed as 100. Here, the processing efficiency is defined as the peeled area of the elastic film per unit time. Although the conventional product 1 has the same processing efficiency as the invention product, the conventional product 2 has a significantly reduced processing efficiency. This is because the protruding amount of the abrasive grains is small, which is not suitable for peeling of the elastic film, and a long time is required for processing.
FIG. 4B shows the life, and the life of the invention product is indicated as 100. Although the conventional product 2 has the same life as the invention product, the conventional product 1 has a significantly reduced life. This is because PCD chips are vulnerable to impact and wear significantly when in contact with concrete.
From the above results, it is demonstrated that the cup-type rotary grindstone of the present invention is excellent in both processing efficiency and life.

本発明はコンクリート等の硬質材料に弾性膜が塗膜された複合材料を研削するのに好適なカップ型回転砥石として利用することができる。   INDUSTRIAL APPLICABILITY The present invention can be used as a cup-type rotary grindstone suitable for grinding a composite material in which an elastic film is coated on a hard material such as concrete.

本発明の実施の形態に係るカップ型回転砥石を示す図である。It is a figure which shows the cup type rotary grindstone which concerns on embodiment of this invention. 本発明の実施の形態に係るカップ型回転砥石の加工面の詳細を示す図である。It is a figure which shows the detail of the processed surface of the cup type rotary grindstone which concerns on embodiment of this invention. 弾性膜が塗膜されたコンクリートを従来のカップ型回転砥石で研削する様子を示す図である。It is a figure which shows a mode that the concrete with which the elastic film was coated is ground with the conventional cup type rotary grindstone. 試験結果を示す図である。It is a figure which shows a test result.

符号の説明Explanation of symbols

10 カップ型回転砥石
11 基板
11a 平坦部
11b 取付け用孔
11c 貫通孔
12 砥粒
13 砥粒層
14 弾性膜剥離用チップ
21 PCDチップ
22 砥粒
31 コンクリート
32 弾性膜
DESCRIPTION OF SYMBOLS 10 Cup-type rotary grindstone 11 Substrate 11a Flat part 11b Mounting hole 11c Through-hole 12 Abrasive grain 13 Abrasive grain layer 14 Elastic film peeling chip 21 PCD chip 22 Abrasive grain 31 Concrete 32 Elastic film

Claims (3)

石材、コンクリート、またはレンガのいずれか一つからなる硬質材料に弾性膜が塗膜されたものを被研削材として研削を行う際に用いられるカップ型回転砥石であって、前記硬質材料に塗膜された弾性膜の剥離用チップが、カップ型基板の外周側平坦部の外周端面に焼結体によって形成されて取り付けられるとともに、前記カップ型基板の外周側平坦部の底面に、前記硬質材料研削用の、砥粒を固着してなる砥粒層が形成されていることを特徴とするカップ型回転砥石。 A cup-type rotary grindstone used when grinding using a hard material made of any one of stone, concrete, or brick and coated with an elastic film as a material to be ground, the coating on the hard material The formed elastic film peeling tip is formed and attached to the outer peripheral end surface of the outer peripheral side flat portion of the cup type substrate by a sintered body, and the hard material grinding is applied to the bottom surface of the outer peripheral side flat portion of the cup type substrate. of use, the cup-type grinding wheel, characterized in that the abrasive grain layer formed by fixing the abrasive grains are formed. 前記弾性膜の剥離用チップは、PCD、PCBNまたは超硬合金からなることを特徴とする請求項1記載のカップ型回転砥石。   The cup-type rotary grindstone according to claim 1, wherein the elastic film peeling tip is made of PCD, PCBN, or cemented carbide. 前記砥粒層はダイヤモンド、CBNなどからなる砥粒を単層または層状に並べて形成されたものであることを特徴とする請求項1記載のカップ型回転砥石。   2. The cup-type rotary grindstone according to claim 1, wherein the abrasive grain layer is formed by arranging abrasive grains made of diamond, CBN, or the like in a single layer or a layer.
JP2004052007A 2004-02-26 2004-02-26 Cup type rotating grindstone Expired - Fee Related JP3998648B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004052007A JP3998648B2 (en) 2004-02-26 2004-02-26 Cup type rotating grindstone

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004052007A JP3998648B2 (en) 2004-02-26 2004-02-26 Cup type rotating grindstone

Publications (2)

Publication Number Publication Date
JP2005238392A JP2005238392A (en) 2005-09-08
JP3998648B2 true JP3998648B2 (en) 2007-10-31

Family

ID=35020666

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004052007A Expired - Fee Related JP3998648B2 (en) 2004-02-26 2004-02-26 Cup type rotating grindstone

Country Status (1)

Country Link
JP (1) JP3998648B2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111347307A (en) * 2020-03-10 2020-06-30 广东博智林机器人有限公司 Polishing cutter disc and polishing machine

Also Published As

Publication number Publication date
JP2005238392A (en) 2005-09-08

Similar Documents

Publication Publication Date Title
EP0985505A3 (en) Outer-Diameter blade, inner-diameter blade, core drill and processing machines using same ones
JP3791610B2 (en) Super abrasive wheel for mirror finishing
US20050164620A1 (en) Rotary tool and its cutting part
JPH10118938A (en) Super abrasive grain grinding wheel
JP2005111626A (en) Grinding wheel
JP4340184B2 (en) Whetstone
JP3998648B2 (en) Cup type rotating grindstone
US20220097157A1 (en) Machining tool having asymmetrical teeth having cutting particles
JP4545100B2 (en) Compound tool
CN113329846B (en) Metal bond grindstone for high-hardness brittle material
JP2000084858A (en) Cup type rotating grinding wheel with through hole
JP2000301468A (en) Grinding wheel for grinding and grinding wheel for vertical line grinding
JPH0615572A (en) Grinding wheel
CN107486794B (en) A kind of ceramics grooving-is turned a millstone composite wheel and its processing method
JPH11165262A (en) Cup shaped grinding wheel
JP2750552B2 (en) Honing wheel and honing method
JP2002263937A (en) Milling tool
JPH0760648A (en) Precision grinding cutting grinding wheel
JP2001009733A (en) Diamond tool
JP3459379B2 (en) Cup type grinding tool
JP3922900B2 (en) Whetstone with shaft
JP3537367B2 (en) Milling tools
JP3623203B2 (en) Whetstone with shaft
JP3759047B2 (en) Abrasive layer adhesion method for cup type grindstone
JP2007167997A (en) Truing tool

Legal Events

Date Code Title Description
A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20061214

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20070130

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20070508

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20070613

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20070731

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20070807

R150 Certificate of patent or registration of utility model

Ref document number: 3998648

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20100817

Year of fee payment: 3

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20110817

Year of fee payment: 4

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20110817

Year of fee payment: 4

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20120817

Year of fee payment: 5

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20120817

Year of fee payment: 5

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20130817

Year of fee payment: 6

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees