REFINER
20240242605 ยท 2024-07-18
Inventors
Cpc classification
G08G1/096741
PHYSICS
G08G1/096716
PHYSICS
G06F3/14
PHYSICS
G08G1/096783
PHYSICS
International classification
Abstract
A refiner for beating a raw material supplied between a stator beating part and a rotor beating part, and discharging the beaten raw material, the refiner including a rotating shaft, the rotor beating part attached to the rotating shaft, a motor configured to drive the rotating shaft; and a motor control part configured to variably control a rotation of the motor. The rotation of the motor of the rotor beating part is controlled by the motor control part to beat the raw material.
Claims
1. A refiner for beating a raw material supplied between a stator beating part and a rotor beating part, and discharging the beaten raw material, the refiner comprising: a rotating shaft; the rotor beating part attached to the rotating shaft; a motor configured to drive the rotating shaft; and a motor control part configured to variably control a rotation of the motor, wherein the rotation of the motor of the rotor beating part is controlled by the motor control part to beat the raw material.
2. The refiner according to claim 1, wherein the rotor beating part includes a first rotary blade provided on an outer periphery of an end face of a rotor, and a second rotary blade being the end face of the rotor and provided on an inner side of the first rotary blade, the stator beating part is a fixed blade arranged at an end portion of a first ring-shaped body through a slit, the fixed blade of the stator beating part is positioned between the first rotary blade and the second rotary blade, and a second ring-shaped body with a slit for discharging the raw material beaten by the stator beating part and the rotor beating part is positioned on an outer side of the first ring-shaped body.
3. The refiner according to claim 1, wherein the rotor beating part is a rotary blade provided radially on an end portion of a rotor, the stator beating part is a fixed blade provided radially on an end portion of a first ring-shaped body, wherein the fixed blade and the rotary blade are facing each other, and a ring-shaped body with a slit for discharging the raw material beaten by the stator beating part and the rotor beating part is positioned on an outer side of the rotary blade and the fixed blade.
4. The refiner according to claim 1, wherein the rotor beating part is provided with a raw material supply port for taking in the raw material inside the rotor beating part on an end face of a rotor, and a rotary blade on a side surface of the rotor through a slit, respectively, and the stator beating part is a fixed blade arranged on a side surface of a cylindrical body through a slit.
5. The refiner according to claim 1, wherein the rotating shaft is supported by a magnetic bearing, and a rotational rate of the motor is 4000 rpm or more.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] A refiner according to an embodiment of the present application will be described with reference to the drawings.
[0025] In
[0026] In a main body 10, a rotating shaft 3 is provided. The rotor beating part 2 is attached to the rotating shaft 3 by an attachment member 60.
[0027] Reference numeral 4 is a motor for driving the rotating shaft 3 (the motor is, for example, a spindle motor), and a rotation of the motor 4 is controlled by a motor control part 5. A high rotation range of the motor 4 is, for example, 4000 rpm or more, preferably in a range of 4000 rpm?60,000 rpm, and this wide variable range is controlled by the motor control part 5.
[0028] Reference numeral 6 is a magnetic bearing (a radial magnetic bearing) that supports the rotating shaft 3 by magnetic levitation, and reference numeral 7 is a magnetic bearing (an axial radial magnetic bearing) that supports the rotating shaft 3 by magnetic levitation; and these magnetic bearing (the radial magnetic bearing) 6 and the magnetic bearing (the axial radial magnetic bearing) 7 are controlled by a magnetic bearing control part 8 to form a gap between the rotating shaft 3 and the magnetic bearings 6, 7 by electromagnetic force so that the rotating shaft 3 rotating at high speed does not contact the magnetic bearings 6, 7.
[0029] The gap t (see
[0030] That is, when the raw material is not sufficiently beaten by the rotation of the motor 4, the rotation of the motor 4 is increased to a higher speed by the motor control part 5 to beat the raw material.
[0031] As shown in
[0032] Therefore, the raw material supplied from a raw material inlet 20 is beaten between the stator beating part 1 and the rotor beating part 2, and the beaten raw material is discharged from a raw material outlet 30 to an outer side of the main body 10.
[0033] According to this refiner R, even if the raw material is, for example, a material having short fibers or a material having no stiffness, the raw material could be beaten according to the raw material such as those having short fibers and those having no stiffness, not by adjusting the gap t between the stator beating part 1 and the rotor beating part 2, but by controlling the rotation of the motor 4 of the rotor beating part 1 at a high speed by the motor control part 5.
[0034] The stator beating part 1 and the rotor beating part 2 of the refiner R of the present application are not limited to the above-mentioned stator beating part 1 and the rotor beating part 2 of the refiner R in
[0035] That is, the refiner R shown in
[0036] The refiner R includes a rotating shaft 3, a rotor beating part 2 attached to the rotating shaft 3, a motor 4 for driving the rotating shaft 3, and a motor control part 5 for controlling a rotational rate of the motor 4.
[0037] A gap t between the stator beating part 1 and the rotor beating part 2 is a constant dimension that cannot be changed, and instead of adjusting the gap between the stator beating part 1 and the rotor beating part 2, the rotational rate of the motor 4 of the rotor beating part 2 is variably controlled according to the raw material such as those having short fibers and those having no stiffness.
[0038] As shown in
[0039] In the refiner R shown in
[0040] The stator beating part and the rotor beating part of the refiner R of the present application are not limited to the stator beating part 1 and the rotor beating part 2 of the refiner R shown in
[0041] That is, the refiner R shown in
[0042] The refiner R includes a rotating shaft 3, a rotor beating part 2 attached to the rotating shaft 3, a motor 4 for driving the rotating shaft 3, and a motor control part 5 for controlling a rotation of the motor 4.
[0043] A gap t between the stator beating part 1 and the rotor beating part 2 is a constant dimension that cannot be variably changed, and instead of adjusting the gap between the stator beating part 1 and the rotor beating part 2, the rotation of the motor 4 of the rotor beating part 2 is variably controlled according to the raw material such as those having short fibers and those having no stiffness.
[0044] The rotor beating part 2 is a rotary blade 21 provided radially at an end part of a rotor, and the stator beating part 1 is a fixed blade 11 provided radially at an end part of a first ring-shaped body wherein the fixed blade 11 and the rotary blade 21 face each other.
[0045] A ring-shaped body 40 having a slit S3 for discharging the raw material beaten by the stator beating part 1 and the rotor beating part 2 is positioned on an outer side of the rotary blade 21 and the fixed blade 11, and the rotation of the motor 4 of the rotor beating part 2 is variably controlled to beat the raw material.
[0046] According to this refiner R, even if the raw material is, for example, a material having short fibers or a material having no stiffness, the raw material could be beaten, not by adjusting the gap between the stator beating part 1 and the rotor beating part 2, but by controlling the rotation of the motor 4 of the rotor beating part 2 by the motor control part 5, similarly to the refiner R shown in
[0047] The stator beating part and the rotor beating part of the refiner R of the present application are not limited to the above-mentioned stator beating part 1 and the rotor beating part 2 of the refiner R in
[0048] That is, the refiner R shown in
[0049] The refiner R includes a rotating shaft 3, a rotor beating part 2 attached to the rotating shaft 3, a motor 4 for driving the rotating shaft 3, and a motor control part 5 for controlling a rotational rate of the motor 4.
[0050] A gap t between the stator beating part 1 and the rotor beating part 2 is a constant dimension that cannot be changed, and instead of adjusting the gap between the stator beating part 1 and the rotor beating part 2, the rotation of the motor 4 of the rotor beating part 2 could be variably controlled according to the raw material such as those having short fibers and those having no stiffness.
[0051] The rotor beating part 2 includes a first rotary blade 21 provided on an outer periphery of an end face of the rotor and a second rotary blade 23 provided in an annular shape on an inner side of the first rotary blade 21 and being the end face of the rotor, wherein the first rotary blade 21 and the second rotary blade 23 are provided on a rotor beating part main body 2A.
[0052] The stator beating part 1 is a fixed blade 11 arranged at an end portion of a first ring-shaped body through a slit S2, and the fixed blade 11 is positioned between the first rotary blade 21 and the second rotary blade 23. Further, a second ring-shaped body 50 having a slit S4 for discharging the raw material beaten by the stator beating portion 1 and the rotor beating part 2 is positioned on an outer side of the first ring-shaped body.
[0053] According to the refiner R, even if the raw material is, for example, a material having short fibers or a material having no stiffness, the raw material could be beaten, not by adjusting the gap between the stator beating part 1 and the rotor beating part 2, but by variably controlling the rotation of the motor 4 of the rotor beating part 2 by the motor control part 5, similarly to the refiner R shown in
[0054] Note that reference numeral 60 shown in