摘要:
A film forming method for a metal film (F) includes steps of, after a substrate material (B) is mounted on a mounting table (40), forming the metal film (F) on a surface of the substrate material (B) with a plating solution (L) brought into contact with the substrate material (B) through an electrolyte membrane (13), and with the plating solution (L) sealed, separating the electrolyte membrane (13) from the substrate material (B) by moving at least one of the mounting table (40) and a container (15) in a direction away from the other. The plating solution (L) contained in the container (15) is circulated through a circulation path (50) outside the container (15), before or during the film forming step. A circulation path (50) is blocked and the plating solution (L) in the container (15) is sealed, before this separating step.
摘要:
A vacuum heat insulating container 1 includes an outer tube 2 having a bottom and an inner tube 3 having a bottom and an inner tube 3 having a bottom, the outer tube 2 and the inner tube 3 being arranged in such a way that the central axes thereof being a horizontal direction, an opening end of the outer tube 2 and an opening end of the inner tube 3 being bonded to each other, and a depressurized sealed space 8 being formed between the outer tube 2 and the inner tube 3, in which the vacuum heat insulating container further includes a load receiving part 7 for causing the outer tube 2 to support the inner tube 3, and the location of the load receiving part 7 in a vertical direction coincides with the location of the central axis of the outer tube 2.
摘要:
Provided is a decompression heat-insulating pipe structure (1) that can be used in the system operating at high temperatures. A decompression heat-insulating pipe structure of the present disclosure includes: an outer tube (10) and an inner tube (20) each having a flange (11; 12; 21; 22); and a seal member (30) between the flanges, the seal member being configured to keep a space between the outer tube and the inner tube in a decompression state, and a shifting means (40) configured to shift the outer tube and the inner tube relatively so as to selectively dispose the tubes at a pressing position to press the seal member between the flanges and at a cancellation position to cancel the pressing of the seal member.
摘要:
A decompression heat-insulating pipe structure (1A) that can exhibit the desired heat-insulating performance and is easy to assemble. In the structure, a space (4) between ends of inner (3) and outer (4) tubes is decompressed. The outer tube includes a first flange (21), which extends radially inward from an axially one end thereof, and a second flange (22), which extends radially outward from the axially other end thereof. The inner tube includes a third flange (31), which extends radially inward from an axially one end thereof and is opposed to the first flange at an axially inward position of the first flange, and a fourth flange (32), which extends radially outward from the axially other end thereof and being opposed to the second flange at an axially outward position of the second flange. First (11) and second (12) elastic seal members are disposed between the first and third flanges and between the second and fourth flanges, respectively.
摘要:
An intermediate product (1) for a vacuum insulation panel (14) includes an outer covering member (6) having a sealed space (8), a core material (2) disposed in the sealed space (8) and having heat insulation properties, and a first gas absorbent disposed in the sealed space (8), sealed by a container (4) having gas barrier properties and absorbing a first specific gas, wherein the first specific gas is sealed in the sealed space (8), and an unsealing member (3) configured to unseal the container (4) when a pressing force is applied from an outside is attached to the container (4).
摘要:
A double insulating wall structure heating furnace capable of preventing its inner pipe whose strength has decreased due to high-temperature heating from being damaged. A double insulating wall structure heating furnace 1 includes an outer pipe 2 and an inner pipe 3 disposed inside the outer pipe 2, in which a sealed space 8 formed between the outer and inner pipes 2 and 3 is depressurized and a heating space 13 formed inside the inner pipe 3 is heated, and in which a tubular reinforcing member 6 is disposed so as to cover an outer circumference of the inner pipe 3, the tubular reinforcing member being formed of a material having a higher heat resistance and a higher strength than those of the material of the inner pipe 3.