Insert holder having weight-reducing voids and cutting tool
An insert holder includes a cutting portion and a shank portion. The insert holder further includes a cavity which includes a cavity chamber and a plurality of cavity through recesses which serve to reduce the weight of the insert holder. The plurality of cavity through recesses open out to the cavity chamber and to the periphery of the shank portion. A cutting tool is provided having a cutting insert releasably attached to the insert holder.
1 . An insert holder ( 22 ), elongated along a holder longitudinal axis (B) thereof, the holder longitudinal axis (B) defining opposite forward and rearward directions (DF, DR), the insert holder ( 22 ) having monolithic construction and comprising:
a holder forward end surface ( 28 ), a holder rearward end surface ( 30 ) and a holder peripheral surface ( 36 ) extending therebetween, the holder peripheral surface ( 36 ) extending about the holder longitudinal axis (B);
a cutting portion ( 38 ) comprising an insert pocket ( 42 ), for releasably retaining a cutting insert ( 24 ), the cutting portion ( 38 ) located at a forward end ( 32 ) of the insert holder ( 22 );
a shank portion ( 46 ) extending rearwardly from a shank axial abutment surface ( 54 ) at a rearward end of the cutting portion ( 38 ), the shank axial abutment surface ( 54 ) perpendicular to the holder longitudinal axis (B), the holder peripheral surface ( 36 ) at the shank portion ( 46 ) comprising a shank radial centering surface ( 48 ), the entire shank portion ( 46 ) configured to be located in a tool receiving recess of a tool holder, the shank portion ( 46 ) releasably clamped therein with the shank radial centering surface ( 48 ) abutting a recess abutment surface of the tool receiving recess; and
a weight-reducing cavity ( 56 ) comprising:
a cavity chamber ( 58 ) enclosed within the insert holder ( 22 ), the cavity chamber ( 58 ) comprising a chamber interior wall surface ( 60 ); and
a plurality of cavity through recesses ( 66 ) opening out to: (i) the chamber interior wall surface ( 60 ) thereby forming a plurality of inner recess openings ( 70 ), and to (ii) the shank radial centering surface ( 48 ) thereby forming a plurality of outer recess openings ( 72 ); wherein:
an entirety of the weight-reducing cavity ( 56 ) is located in the shank portion ( 46 ), rearward of the cutting portion ( 38 ),
the plurality of cavity through recesses ( 66 ) extending helically about the holder longitudinal axis (B) along a respective through recess longitudinal axis defined by each cavity through recess ( 66 ),
the cutting portion ( 38 ) comprises a plurality of flutes ( 44 ) recessed in the holder peripheral surface ( 36 ), and
the plurality of flutes ( 44 ) extend helically about the holder longitudinal axis (B) in the same helical direction as the plurality of helically-extending cavity through recesses ( 66 ).
2 . The insert holder ( 22 ), according to claim 1 , wherein the cavity chamber ( 58 ) is spaced apart from the holder rearward surface ( 30 ).
3 . The insert holder ( 22 ), according to claim 1 , wherein:
each cavity through recess ( 66 ) comprises:
a recess interior wall surface ( 68 ) extending about a recess central axis (C);
two opposite through recess ends ( 74 ) located between a respective inner recess opening ( 70 ) and a respective outer recess opening ( 72 ); and
an elongated through recess middle portion ( 76 ) extending lengthwise between the two opposite through recess ends ( 74 ), so that each cavity through recess ( 66 ) is elongated in a direction along the holder longitudinal axis (B).
4 . The insert holder ( 22 ), according to claim 3 , wherein, for any given one of the plurality of cavity through recesses ( 66 ), one of the two through recess ends ( 74 ) is closer to the cutting portion ( 38 ) than the other one of the two through recess ends ( 74 ).
5 . The insert holder ( 22 ), according to claim 1 , wherein the shank radial centering surface ( 48 ) is cylindrical or conical about the holder longitudinal axis (B).
6 . The insert holder ( 22 ), according to claim 5 , wherein:
the shank radial centering surface ( 48 ) is cylindrical about the holder longitudinal axis (B), and
the cylindrical shank radial centering surface ( 48 ) has a shank diameter (DS).
7 . The insert holder ( 22 ), according to claim 6 , wherein:
the chamber interior wall surface ( 60 ) comprises two opposite chamber end surfaces ( 62 ) and a chamber peripheral surface ( 64 ) extending between the chamber end surfaces ( 62 ), about a chamber central axis (F);
the chamber peripheral surface ( 64 ) is cylindrical about the chamber central axis (F), the cylindrical chamber peripheral surface ( 64 ) having a chamber diameter (DC); and
the chamber diameter (DC) is greater than a quarter the shank diameter (DS) and less than three quarters the shank diameter (DS).
8 . The insert holder ( 22 ), according to claim 7 , wherein the chamber diameter (DC) is equal to half the shank diameter (DS).
9 . The insert holder ( 22 ), according to claim 1 , wherein the plurality of cavity through recesses ( 66 ) comprises N cavity through recesses ( 66 ), N being a positive integer satisfying the condition, 5≤N≤9.
10 . The insert holder ( 22 ), according to claim 9 , wherein N=7.
11 . The insert holder ( 22 ), according to claim 1 , wherein the plurality of cavity through recesses ( 66 ) are angularly spaced apart about the holder longitudinal axis (B).
12 . The insert holder ( 22 ), according to claim 11 , wherein the plurality of cavity through recesses ( 66 ) are angularly spaced by a plurality of shank support members ( 78 ), each circumferentially adjacent pair of cavity through recesses ( 66 ) being spaced apart by a respective shank support member ( 78 ).
13 . The insert holder ( 22 ), according to claim 12 , wherein the shank radial centering surface ( 48 ) at each shank support member ( 78 ) is wider than each outer recess opening ( 72 ) in a circumferential direction.
14 . The insert holder ( 22 ), according to claim 12 , wherein in a cross-section taken in a radial plane perpendicular to the holder longitudinal axis (B) and intersecting the plurality of shank support members ( 78 ), each of the plurality of shank support members ( 78 ) has an annular sector shape.
15 . The insert holder ( 22 ), according to claim 12 , wherein the holder peripheral surface ( 36 ) at the shank portion ( 46 ) comprises a shank flat surface ( 50 ) which is oriented parallel to the holder longitudinal axis (B) and intersects the shank radial centering surface ( 48 ), the shank flat surface ( 50 ) having monolithic construction with the remainder of the insert holder ( 22 ).
16 . The insert holder ( 22 ), according to claim 15 , wherein the shank flat surface ( 50 ) intersects a projected path (P) of at least one of the plurality of cavity through recesses ( 66 ), so that the plurality of cavity through recesses ( 66 ) comprises at least one truncated cavity through recess ( 66 a ).
17 . The insert holder ( 22 ), according to claim 16 , wherein for each cavity through recess ( 66 ) that is not a truncated cavity through recess ( 66 a ), one of the two through recess ends ( 74 ) is closer to the cutting portion ( 38 ) than to the holder rearward end surface ( 30 ) and the other one of the two through recess ends ( 74 ) is closer to the holder rearward end surface ( 30 ) than to the cutting portion ( 38 ).
18 . The insert holder ( 22 ), according to claim 16 , comprising a flat support member ( 78 b ), the flat support member ( 78 b ) being angularly located between two cavity through recesses ( 66 ) and incorporating a portion of the shank flat surface ( 50 ).
19 . The insert holder ( 22 ), according to claim 18 , wherein:
the plurality of cavity through recesses ( 66 ) comprises a plurality of truncated cavity through recess ( 66 a ); and
the flat support member ( 78 b ) is located between two truncated cavity through recess ( 66 a ).
20 . The insert holder ( 22 ), according to claim 11 , wherein:
the insert holder ( 22 ) comprises a cooling conduit ( 80 ), the cooling conduit ( 80 ) comprising a plurality of cooling channels ( 82 ), each cooling channel ( 82 ) having a channel inlet ( 84 ) and a channel outlet ( 86 ) which are in fluid communication with each other; and
each cooling channel ( 82 ) passes through a respective shank support member ( 78 ).
21 . The insert holder ( 22 ), according to claim 20 , wherein:
the cooling conduit ( 80 ) comprises a cooling reservoir ( 88 ) comprising a reservoir interior wall surface ( 90 ), the cooling reservoir ( 88 ) being enclosed in the insert holder ( 22 ) forward of the cavity chamber ( 58 ); and
each channel outlet ( 86 ) is located at the reservoir interior wall surface ( 90 ).
22 . The insert holder ( 22 ), according to claim 1 , wherein each helically-extending cavity through recess ( 66 ) has a recess helix angle (θ), the recess helix angle (θ) being greater than or equal to 20° and less than or equal to 40°.
23 . The insert holder ( 22 ), according to claim 1 , wherein:
the holder peripheral surface ( 36 ) comprises a holder intermediate surface ( 52 ) oriented transversely to the holder longitudinal axis (B);
the holder intermediate surface ( 52 ) is contained in a delimiting plane (D) which is oriented perpendicular to the holder longitudinal axis (B) and delimits the cutting portion ( 38 ) and the shank portion ( 46 ); and
in the forward direction (DF), the cavity chamber ( 58 ) terminates before the delimiting plane (D).
24 . The insert holder ( 22 ), according to claim 1 , wherein:
the cutting portion ( 38 ) has a cutting portion length (LC) and the shank portion ( 46 ) has a shank portion length (LS), both measured in a direction parallel to the holder longitudinal axis (B); and
the shank portion length (LS) is greater than the cutting portion length (LC).
25 . The insert holder ( 22 ), according to claim 24 , wherein:
the cavity chamber ( 58 ) has a cavity chamber length (L), measured in said direction parallel to the holder longitudinal axis (B); and
the cavity chamber length (L) is greater than half the shank portion length (LS).
26 . The insert holder ( 22 ), according to claim 1 , wherein:
the chamber interior wall surface ( 60 ) comprises two opposite chamber end surfaces ( 62 ) and a chamber peripheral surface ( 64 ) extending therebetween about a chamber central axis (F); and
the chamber peripheral surface ( 64 ) is cylindrical about the chamber central axis (F), the cylindrical chamber peripheral surface ( 64 ) having a chamber diameter (DC).
27 . The insert holder ( 22 ), according to claim 26 wherein the plurality of inner recess openings ( 70 ) are located at the cylindrical chamber peripheral surface ( 64 ).
28 . The insert holder ( 22 ), according to claim 1 , wherein in a cross-section taken in a radial plane perpendicular to the holder longitudinal axis (B) and intersecting the plurality of cavity through recesses ( 66 ), each cavity through recess ( 66 ) extends linearly along a recess central axis (C).
29 . The insert holder ( 22 ) according to claim 1 , wherein:
the cavity chamber ( 58 ) has a cavity chamber length (L); and
along the cavity chamber length (L) of the cavity chamber ( 58 ), the plurality of cavity through recesses ( 66 ) take up between 10%-40% of the surface area of the shank radial centering surface ( 48 ).
30 . The insert holder ( 22 ), according to claim 26 , wherein at least one of the two chamber end surfaces ( 62 ) slopes inwardly towards the chamber central axis (F) and has a conical shape.
31 . The insert holder ( 22 ), according to claim 30 , wherein both chamber end surfaces ( 62 ) slope inwardly towards the chamber central axis (F) and have a conical shape.
32 . The insert holder ( 22 ), according to claim 1 , wherein the shank portion ( 46 ) terminates at and extends rearwardly from the shank axial abutment surface ( 54 ).