Collimator for radiation generating apparatus
11311253 ยท 2022-04-26
Assignee
Inventors
- Hong-Ryang Jung (Gwangmyeong-si, KR)
- Cheong-Hwan Lim (Suwon-si, KR)
- In Seog Kang (Incheon, KR)
- Ki-Jeong Kim (Gimpo-si, KR)
Cpc classification
A61B6/54
HUMAN NECESSITIES
International classification
A61B6/00
HUMAN NECESSITIES
Abstract
The present disclosure relates to a collimator for radiation generating apparatus, attached to a radiation generating apparatus, the collimator comprising: a frame fixed to the radiation generating apparatus and formed in a ring shape; and a shielding adjustment part provided with a plurality of shielding wings, one end of the shielding wings being hinged to the frame such that, when rotated, the other end of the shielding wings enters into a center of the frame, and the each one end of the shielding wings being disposed to be spaced apart on the frame, wherein the shielding wing is made of a radiation shielding metal. Accordingly, it is possible to easily adjust the diameter of radiation field made in a circular shape.
Claims
1. A collimator for radiation generating apparatus, attached to a radiation generating apparatus, the collimator comprising: a frame fixed to the radiation generating apparatus and formed in a ring shape; and a shielding adjustment part provided with a plurality of shielding wings, one end of the shielding wings being hinged to the frame such that, when rotated, the other end of the shielding wings enters into a center of the frame, and the each one end of the shielding wings being disposed to be spaced apart on the frame, wherein the shielding wing is made of a radiation shielding metal.
2. The collimator for radiation generating apparatus according to claim 1, wherein two shielding adjustment parts are disposed to be spaced apart from each other on a central axis of the frame.
3. The collimator for radiation generating apparatus according to claim 1, wherein the shielding wing consists of a shielding part made of lead, positioned at a center of thickness of the shielding wing, and a reinforcement part made of aluminum, attached to both sides of the shielding part.
4. The collimator for radiation generating apparatus according to claim 1, wherein the shielding wing is made in an arc shape having a predetermined width.
5. The collimator for radiation generating apparatus according to claim 1, wherein the frame is made in a flat ring shape having a predetermined width.
6. The collimator for radiation generating apparatus according to claim 1, further comprising an adjustment member having a flat ring shape, provided with a plurality of adjustment slits that are coupled rotatably with respect to the frame around a central axis of the frame, the adjustment slits extending in a radial direction and spaced apart in a circumferential direction, wherein the other end of the shielding wing is coupled to the adjustment member to be moveable and rotatable along the adjustment slit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
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(5)
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DETAILED DESCRIPTION
(7) Hereinbelow, specific embodiments of the present disclosure will be described in detail with reference to the drawings attached.
(8) The collimator for radiation generating apparatus according to the present disclosure 1 may be attached to the part that discharges radiation in a radiation generating apparatus, to play the role of adjusting the diameter of radiation field.
(9) In
(10) The collimator for radiation generating apparatus according to the present disclosure 1 consists of a frame 10 and a shielding adjustment part 20.
(11) The frame 10 is a member that is fixed to the radiation generating apparatus, and the overall shape of the frame 10 is a ring formed along the circumference of the part where the radiation is discharged. That is, the frame 10 is disposed such that the radiation generated by the radiation generating apparatus can be irradiated through a space 11 formed at the center of the frame 10.
(12) The shielding adjustment part 20 has a plurality of shielding wings 21. Each shielding wing 21 is formed to have one end hinged to the frame 10 such that the other end of the shielding wing 21 can enter into the space 11 of the center of the frame 10, depending on the angle of the shielding wing 21 with respect to the frame 10. Further, the shielding wings 21 have one end spaced at regular intervals on the frame 10.
(13) As illustrated in
(14) Each shielding wing 21 is made of a high-density radiation shielding metal, such as lead, so as to shield radiation.
(15) As described above, the collimator for radiation generating apparatus according to the present disclosure can easily adjust the size of radiation field by adjusting the angle of the shielding wings 21.
(16) The shielding wing 21 may be formed in an arc shape having a predetermined width.
(17) Since the inner circumference of the shielding wing 21 is formed in a curved shape, the hole formed by the inner circumference of the shielding wings 21 may be as close to a circular shape as possible, and accordingly, it is possible to prevent irradiation of radiation to unnecessary portions when inspecting circular portions.
(18)
(19) It is desirable that the frame 10 is formed in a flat ring shape having a predetermined width.
(20) Due to the width of the frame 10, when the shielding wing 21 is not rotated with respect to the frame 10, the shielding wing 21 overlaps with the frame 10. Therefore, even when the shielding wing 21 is rotated with respect to the frame 10 at a predetermined angle in order to reduce the size of radiation field and the original position of the shielding wing 21 becomes empty, the frame 10 is able to prevent radiation from being irradiated through the original position of the shielding wing 21.
(21) In order to shield radiation, the frame 10 may be made of a radiation shielding metal or may have a separate member made of a radiation shielding material.
(22) As illustrated in
(23) In this case, since the shielding adjustment part 20 doubles the shielding of radiation, it is possible to prevent penumbra from occurring.
(24) It is desirable that each shielding wing 21 consists of a shielding part 21a and a reinforcement part 21b.
(25) The shielding part 21a is positioned at the center of the thickness of the shielding wing 21, and as it is made of lead, it plays the role of shielding the radiation. Further, the reinforcement part 21b is made of an aluminum material, to be attached on both sides of the shielding part 21a, so that it can reinforce the lead having a high ductility.
(26) Accordingly, the shielding wing 21 will not easily deform, and thus the shielding wing 21 can rotate smoothly with respect to the frame 10.
(27) Since the aluminum forming the reinforcement part 21b has high rigidity but light weight, it is possible to prevent the weight of the shielding wing 21 from being increased by the reinforcement part 21b.
(28) The collimator for radiation generating apparatus according to the present disclosure 1 may further include an adjustment member 30 in order to rotate each shielding wing 21.
(29) The adjustment member 30 has an overall shape of a flat ring having a predetermined width, similar to the frame 10, and has a plurality of adjustment slits 31 that extend in a radial direction and that are spaced apart in a circumferential direction.
(30) Such an adjustment member 30 is coupled rotatably with respect to the frame 10 around the central axis of the frame 10, and the other end of each shielding wing 21 is coupled with the adjustment member 30 such that it can move and rotate along each adjustment slit 31 of the adjustment member 30. For example, a long bolt B having a smaller diameter than the adjustment slit 31 is attached to each shielding wing 21, and as the long bolt passes through the adjustment slit 31 and fastens a nut N, the shielding wing 21 can be coupled to be movable and rotatable with respect to the adjustment slit 31 of the adjustment member. For reference, it is to be noted that
(31) As illustrated in
(32) In other words, by rotating the adjustment member 30, the shielding wings 21 can be rotated at a certain angle all at once.
(33) When there are two shielding adjustment parts 20, it is desirable that the adjustment member 30 is provided separately for each shielding adjustment part 20.
(34) The scope of rights of the present disclosure is not limited to the embodiments described above, and the present disclosure can be implemented in various forms of embodiments within the claims set attached hereto. Without departing from the gist of the present disclosure claimed in the claims set, any person of ordinary skill in the art to which the present invention pertains is considered to be within the scope of the description of the claims of the present invention to various ranges that can be modified.
REFERENCE NUMERALS
(35) 1: COLLIMATOR FOR RADIATION GENERATING APPARATUS 10: FRAME 20: SHIELDING ADJUSTMENT PART 21: SHIELDING WING 21A: SHIELDING PART 21B: REINFORCEMENT PART 30: ADJUSTMENT MEMBER 31: ADJUSTMENT SLIT