DETACHABLE CONNECTION
20220130560 ยท 2022-04-28
Inventors
Cpc classification
Y02E30/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
Detachable connection of a linear motor tubular armature and a vertical cylindrical rod of a nuclear reactor actuator, the rod, located in a guide pipe, is installed in the armature with an annular gap, in which a tubular fork with pins is placed. L-shaped slots are made at the end of the armature, vertical slots are made above them and the lower part of the armature is closed with a longitudinally fixed plug. On the side surface of the plug, -shaped grooves are made for the insertion or removal of the fork pins. Also, radial protrusions are made on the rod, and in the guide pipe, below the vertical slots of the armature, a bushing with
-shaped grooves is fixed coaxially to the armature with the possibility of inserting the protrusions of the rod into, or removing the protrusions of the rod from, the grooves.
Claims
1. A detachable connection of a linear motor tubular armature and a vertical cylindrical rod of a nuclear reactor actuator, wherein the rod is located in a guide pipe; an end of the armature comprises L-shaped slots, the armature comprises vertical slots above the L-shaped slots; the rod is installed in the armature with an annular gap between the armature and the rod; a tubular fork with pins is located in the tubular gap; radial protrusions are made on the rod; in the guide pipe, below the vertical slots of the armature, a bushing with -shaped grooves is fixed coaxially with the armature and configured so that the rod protrusions can be inserted into, removed from, the
-shaped grooves; and the lower part of the armature is closed by a longitudinally fixed plug, on the side surface of which there are
-shaped grooves for inserting or removing the fork pins.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0010] The essence of the claimed invention is explained by the drawings, where
[0011]
[0012]
[0013] The figures show the tubular armature 1 of a linear stepper motor, L-shaped slots 2 of the armature 1, vertical slots 3 of the armature 1, vertical cylindrical rod 4, radial protrusions 5 on the rod 4, tubular fork 6, teeth 7 of the fork 6, pins 8 of the fork 6, plug 9, -shaped grooves 10 of the plug 9, bushing 11 with
-shaped grooves 12, guide pipe 13.
THE BEST EMBODIMENT OF THE INVENTION
[0014] The detachable connection of the linear motor tubular armature and the vertical cylindrical rod of the actuator of the control and protection system of the nuclear reactor functions as follows.
[0015] Linear stepper motor (not shown in the figure) vertically moves the tubular armature 1 and the cylindrical rod 4 connected to the control member (not shown in the figure). The movement of the control member enhances or weakens the nuclear reaction in the core of a nuclear reactor.
[0016] To attach the armature 1 to the rod 4, the radial protrusions 5 of the rod 4 are first brought into the upper lateral vertical sections of the -shaped grooves 12 of the bushing 11, which is fixed coaxially to the armature 1 in the guide pipe 13. Then, the protrusions 5 are moved along the horizontal sections of the
-shaped grooves 12 of the bushing 11 into the central blind vertical sections of the
-shaped grooves 12 of the bushing 11 This prevents the rotation of the rod 4 when coupling and uncoupling with the armature 1. After that, the armature 1 is lowered until the protrusions 5 of the rod 4 bump into the end of the armature 1 and the armature 1 is rotated until the protrusions 5 enter the vertical sections of the L-shaped slots 2 of the armature 1. Then the armature 1 is lowered until the protrusions 5 bump into the point of transition of the vertical part of the L-shaped slot 2 into the horizontal one. In this position, the protrusions 5 pass through the annular gap between the armature 1 and the rod 4. Located in this gap, the tubular fork 6 rests with teeth 7 on the protrusions 5 of the rod 4 and does not lower. Next, the armature 1 is rotated until the protrusions 5 stop at the dead ends of the horizontal sections of the L-shaped slots 2, while the teeth 7 cease to rest on the protrusions 5, and the fork 6 lowers until the pins 8 stop at the lower end of the vertical slots 3 of the armature 1, locking with the teeth 7 the protrusions 5 of the rod 4 in the horizontal sections of the L-shaped slots 2 of the armature 1. At the same time, the transverse pins 8 of the fork 6 located in the upper part enter with the outer ends into the slots 3 of the armature 1, which allow only vertical movement of the fork 6 relative to the armature 1 from the lower to the upper stops of the pins 8 in the slots 3 of the armature 1.
[0017] Coupling is controlled by attempting to turn the armature 1. If the fork 6 has moved to the position of locking with the teeth 7 of the fork 6 of the protrusions 5 of the rod 4 in the horizontal blind sections of the L-shaped slots 2, the armature 1 does not rotate because the protrusions 5 of the rod 4 are located in the central vertical sections of the -shaped grooves 12 of the fixed bushing 11.
[0018] To uncouple the armature 1 from the rod 4, the protrusions 5 of the rod 4 are brought into the central vertical sections of the -shaped grooves 12 of the bushing 11. After that, the armature 1 with the rod 4 is lifted up to the stop of the pins 8 from below to the place of transition of the lower vertical section to the horizontal section of
-shaped grooves 10 of the vertically fixed plug 9, which covers the lower part of the armature 1 to protect personnel from the reactor radiation. Then the plug 9 is rotated relative to the armature 1 until the pins 8 stop at the place of transition of the horizontal section to the upper vertical section of the
-shaped grooves 10. After that, the armature 1 with the rod 4 is lowered until the pins 8 stop at the upper ends of the vertical slots 3, while the fork 6 is not lowered, and the protrusions 5 together with the armature 1 fall below the teeth 7 of the fork 6 and get the opportunity to exit the L-shaped slots 2 of the armature 1. Then the plug 9 is turned together with the armature 1 until the protrusions 5 of the rod 4 stop at the place of transition of the vertical section into the horizontal section of L-shaped slots 2. In this position, the rod 4 cannot be turned, because the protrusions 5 of the rod 4 are located in the vertical sections of the
-shaped grooves 12 of the bushing 11. After that, the armature 1 is raised to the exit of the protrusions 5 of the rod 4 from the L-shaped slots 2 of the armature 1. In the position of uncoupling the armature 1 with the rod 4, the inner ends of the pins 8 are located in the
-shaped grooves 10 of the plug 9.
[0019] Thus, this detachable connection prevents the possibility of spontaneous uncoupling of the tubular armature of a linear stepper motor by a vertical cylindrical rod of the nuclear reactor actuator while reducing the dose loads on personnel due to a reduction in the number of running actions for coupling-uncoupling the detachable connection.
INDUSTRIAL APPLICABILITY
[0020] The invention can be applied in a detachable connection of a linear motor tubular armature and a vertical cylindrical rod of the actuator of the control and protection system of a nuclear reactor.