IP Library Granted Patent US 12,643,733
Granted Patent B2
US 12,643,733 · App. 18/371,981 · Granted Jun 2, 2026

Sea-land-air intermodal transportation apparatus for magnetic resonance imaging apparatus

Inventor: Xiaona Yu (Beijing, CN)
Assignees: Beijing Linking Technology Development Co. Ltd.; Beijing Energy Prime Technology Services Co. Ltd.; Beijing Ray Power Environmental Protection Technology Co. Ltd.
B65D88/12B65D88/74G01R33/28
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Quick Facts
Patent No.
US 12,643,733
App. No.
18/371,981
Granted
Jun 2, 2026
Kind
B2
Abstract

A sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus is described. The apparatus includes a primary container body, a secondary container body, a power supply system, a temperature controlling system, and a monitoring system. The primary container body is mounted with the temperature controlling system, the monitoring system and a slide rail device for fixing in place the magnetic resonance imaging apparatus. The secondary container body is mounted with the power supply system, and the primary container body and the secondary container body can be fixedly mounted on the same hoisting frame. On shore, the primary container body is powered by the power supply system of the secondary container body. On board a ship or in a plane, the apparatus(es) of the primary container body is/are connected to a mains power supply interface or directly to a shipboard power supply.

Claims (44)

1 . A sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus comprising:

a primary container body,

a secondary container body,

a power supply system,

a temperature controlling system, and

a monitoring system,

wherein:

the primary container body is mounted with the temperature controlling system,

the monitoring system and a slide rail device for fixing the magnetic resonance imaging apparatus,

the secondary container body is mounted with the power supply system, and

the primary container body and the secondary container body can be fixedly mounted on the same hoisting frame,

the apparatus is further configured such that:

on shore, the primary container body is powered by the power supply system of the secondary container body, and

on board a ship or on a plane, the temperature controlling system, the monitoring system and other apparatus(es) in the primary container body are connected to at least one power source taken from the group consisting of:

a mains power supply interface, and

a shipboard power supply of the ship or the plane.

2 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the primary container body is provided with a separation plate dividing the primary container body into an electrical chamber and a storage chamber,

wherein the separation plate is provided thereon with an air inlet fan, an air outlet fan and a line through hole,

wherein the air inlet fan is provided above the separation plate and is used for discharging hot air from the storage chamber into the electrical chamber, and

wherein the air outlet fan is provided below the separation plate and is used for blowing cold wind of a cooler of the electrical chamber into the storage chamber.

3 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the slide rail device comprises several slide rails mounted at a lower end of the primary container body,

wherein the slide rail is provided thereon with a position limiting assembly,

wherein the position limiting assembly comprises a first position limiting block and a second position limiting block which are arranged symmetrically on both sides of the slide rail,

wherein the first position limiting block is mounted by a first mounting shaft onto the slide rail and a first position limiting torsion spring is provided between the first position limiting block and the first mounting shaft,

wherein the second position limiting block is mounted by a second mounting shaft onto the slide rail and a second position limiting torsion spring is provided between the second position limiting block and the second mounting shaft, and

wherein the position limiting assembly further comprises a position limiting seat which is fixedly mounted on the slide rail by a third mounting shaft.

4 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the primary container body is formed by container boards that comprise: a bottom board, a top board and a side board, having an interlayer structure or a multilayer composite structure such that:

the container board in the interlayer structure is formed by hot pressing by an inner covering, a heat insulation layer and an outer covering, wherein the inner or outer covering is a whole sheet of fiber glass-reinforced plastic, and the heat insulation layer is a polyurethane foam layer or is a structure of two layers of unsaturated polyester resin matrix layers and a high-strength glass fiber layer there between; and

the container board in the multilayer composite structure includes a fireproof layer and/or a sandwich layer, wherein the sandwich layer is of a material of carbon fiber composite material, aramid fiber composite material, rock wool, high-strength active/reactive powder concrete plate or high-strength steel fiber concrete plate.

5 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the temperature controlling system comprises a water cooler and a wind cooler comprising a cooler and a temperature controlling external machine,

wherein the water cooler and the cooler are mounted in the primary container body and the temperature controlling external machine is mounted in the secondary container body,

wherein the water cooler is used for cooling a helium compressor of the magnetic resonance imaging apparatus, and

wherein the wind cooler is used for regulating and controlling a temperature within the primary container body to ensure an operation temperature of the water cooler.

6 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the secondary container body is provided therein with the power supply system, and

wherein the power supply system is an electricity generator on the secondary container body or a mains power plug at the primary container body for connection with an external power source, and can supply power for the temperature controlling system, the monitoring system and other apparatus(es) in the primary container body.

7 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the electrical chamber of the primary container body is provided with a monitoring window and a line winding bracket,

wherein the monitoring window is used for cooperation with a magnet detector, and

wherein the line winding bracket is used for arranging connection lines of the temperature controlling system, the monitoring system and other apparatus(es).

8 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein each of the primary container body and the secondary container body is mounted, at an inner corner position, with a damping seat in an L shape, and

wherein the damping seat is provided at its outer side with a mounting threaded hole and is provided at its inner side with a damping cushion having a section of a sector shape structure.

9 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein each of the primary container body and the secondary container body is mounted at its lower end with several casters and is mounted at its top with a hoisting structure.

10 . The sea-land-air intermodal transportation apparatus for a magnetic resonance imaging apparatus according to claim 1 , wherein the primary container body and the secondary container body can be movably connected,

wherein a structure for the movable connection comprises an L-shape connection plate connected at a connection position of the primary container body and the secondary container body, and

wherein the L-shape connection plate is connected by bolts onto the primary container body and the secondary container body, respectively.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2023
From: YU, XIAONA
To: BEIJING LINKING TECHNOLOGY DEVELOPMENT CO., LTD.; BEIJING ENERGY PRIME TECHNOLOGY SERVICES CO., LTD.; BEIJING RAY POWER ENVIRONMENTAL PROTECTION TECHNOLOGY CO., LTD.
Reel/Frame 065035/0371 →
Continuity (2)
Continuation PCTCN2023088065 · Apr 13, 2023
Related Publication 20240343474A1 · Oct 17, 2024
References Cited (2)
CN 204872266U · 2015 [cited by examiner]
CN 211870001U · 2020 [cited by examiner]