IP Library Granted Patent US 10,251,217
Granted Patent B2
US 10,251,217 · App. 14/897,773 · Granted Apr 2, 2019

Molybdenum disilicide-based ceramic heating element holding structure

Inventor: Kazutaka Gotoh (Hyogo, JP)
Assignee: Sandvik KK
H05B3/06C03B29/00C04B35/58092H05B3/141H05B3/16H05B3/24H05B3/46H05B3/66C04B2235/3427C04B2235/36C04B2235/80C04B2235/94H05B2203/003
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Quick Facts
Patent No.
US 10,251,217
App. No.
14/897,773
Granted
Apr 2, 2019
Kind
B2
Abstract

A molybdenum disilicide-based ceramic heating element holding structure includes a holding member that is attached to a base portion and that holds an elongated support member, for mounting a molybdenum disilicide-based ceramic heating element of an elongated shape at intervals in a long axis direction thereof. The molybdenum disilicide-based ceramic heating element mounted on the support member can be exchanged without breaking the holding structure. A plurality of elongated support members can be provided, and a U-shaped portion of an elongated molybdenum disilicide-based ceramic heating element having a meandering shape can be inserted and extracted from a uniaxial direction in a space partitioned by the base portion. The plurality of support members and the holding member holding the plurality of elongated support members are detachable and the support member is removable from the holding member.

Claims (17)

1. A molybdenum disilicide-based ceramic heating element holding structure, comprising:

one or more elongated support members arranged to support a molybdenum disilicide-based ceramic heating element having an elongated shape by mounting the molybdenum disilicide-based ceramic heating element at locations along a long axis direction thereof; and

a plurality of first holding members for holding each elongated support member at two or more locations in a long axis direction of each elongated support member,

wherein the plurality of first holding members are held by one or more second holding members or held by a base portion of a holding structure, the elongated molybdenum disilicide-based ceramic heating element being exchangeably mounted on the elongated support member so as to be exchanged without breaking a heating element holding structure,

wherein the elongated support members include a plurality of molybdenum disilicide-based ceramic elements located along a length of the elongated support member, successive molybdenum disilicide-based ceramic elements separated by an electrical insulator,

wherein a location of the successive molybdenum disilicide-based ceramic elements along the length of the elongated support member coincides with a location where the elongated support member supports the molybdenum disilicide-based ceramic heating element, and

wherein, at locations where the elongated support member supports the molybdenum disilicide-based ceramic heating element, the molybdenum disilicide-based ceramic heating element are directly contacted by the molybdenum disilicide-based ceramic elements.

2. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein a plurality of the elongated support members are provided, the elongated molybdenum disilicide-based ceramic heating element being exchangeablly held without breaking the heating element holding structure by being arranged to removably receive a U-shaped portion of an elongated molybdenum disilicide-based ceramic heating element having a meandering shape from a uniaxial direction in a space defined by the base portion or the second holding member, the plurality of elongated support members and the plurality of first holding members.

3. The molybdenum disilicide-based ceramic heating element holding structure according to claim 2 , wherein each of the elongated support members is detachablly held by the first holding members, and by detaching the elongated support members from the first holding members, the elongated molybdenum disilicide-based ceramic heating element arranged to be exchanged without breaking the holding structure.

4. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein is a frame body opened in both upward and downward, the frame body being heated by the elongated molybdenum disilicide-based ceramic heating element mounted to the elongated support member in both the upward and the downward directions.

5. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein the second holding members have an elongated shape, and the plurality of first holding members holding each of the plurality of elongated support members are held in series by the second holding members of the elongated shape.

6. The molybdenum disilicide-based ceramic heating element holding structure according to claim 5 , wherein a frame body opened in at least an upward downward direction is provided separately from the second holding members, the second holding members being held in the frame body, the at least one direction of the frame body is arranged to be heated by the elongated molybdenum disilicide-based ceramic heating element mounted to the elongated support members, and the second holding members can be removed from the frame body together with the first holding members and the elongated support members.

7. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein the elongated support members each are an elongated support member made of an electrically insulating ceramic that houses the plurality of molybdenum disilicide-based ceramic elements and electrical insulators.

8. The molybdenum disilicide-based ceramic heating element holding structure according to claim 7 , wherein the electrical insulators are inserted between molybdenum disilicide-based ceramic elements to suppress movement of the molybdenum disilicide-based ceramic elements, the electrical insulators having a larger size than the molybdenum disilicide-based ceramic elements such that there is a difference in their levels and deformation of the molybdenum disilicide-based ceramic heating element while heated is suppressed.

9. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein the plurality of molybdenum disilicide-based ceramic elements are bar or tube-like elements, wherein each pair of adjacent bar or tube-like elements and separating electrical insulator are held together by a bar or tube-like electrically insulating body, and wherein the elongated support members are held at portions of the tube-like electrically insulating bodies by the first holding members.

10. The molybdenum disilicide-based ceramic heating element holding structure according to claim 7 , wherein the elongated support members include grooves having a shape that is stably held in a hole of the first holding members.

11. The molybdenum disilicide-based ceramic heating element holding structure according to claim 1 , wherein a composition of the molybdenum disilicide-based ceramic heating element and a composition of the molybdenum disilicide-based ceramic elements are identical.

Assignments (3)
CHANGE OF NAME Recorded Apr 24, 2024
From: SANDVIK MATERIALS TECHNOLOGY JAPAN K.K.
To: ALLEIMA JAPAN K.K.
Reel/Frame 067202/0798 →
CHANGE OF NAME Recorded Mar 9, 2021
From: SANDVIK KK
To: SANDVIK MATERIALS TECHNOLOGY JAPAN K.K.
Reel/Frame 055539/0825 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2015
From: GOTOH, KAZUTAKA
To: SANDVIK KK
Reel/Frame 037270/0500 →
Priority Claims (1)
JP 2013-126151 · Jun 14, 2013 · national
Continuity (1)
Related Publication 20160113062A1 · Apr 21, 2016