IP Library Granted Patent US 10,000,919
Granted Patent B2
US 10,000,919 · App. 15/266,479 · Granted Jun 19, 2018

Connection structure of column and beam and method for connecting column and beam

Inventors: Shuji Oba (Kumagaya, JP); Takashi Kitano (Kashiwa, JP); Michio Itoh (Kashiwa, JP)
Assignee: SENQCIA CORPORATION
E04B1/2403E04B2001/2415E04B2001/2418E04B2001/2451E04B2001/2466E04B2103/06
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Quick Facts
Patent No.
US 10,000,919
App. No.
15/266,479
Granted
Jun 19, 2018
Kind
B2
Abstract

A pair of outer diaphragms ( 3 a ), ( 3 b ) is connected to a column ( 5 ). The outer diaphragms ( 3 a ) and ( 3 b ) include female screws ( 15 ) formed in a direction so as to be put between an end plate ( 13 a ) and the column ( 5 ). The end plate ( 13 a ) is connected by welding to the end faces of an upper flange part ( 11 a ), a lower flange part ( 11 b ), and the web of a beam ( 9 a ). On upper and lower projecting parts of the end plate ( 13 a ), bolt holes 17 are formed at the positions that correspond to the female screws ( 15 ) of the outer diaphragms ( 3 a ) and ( 3 b ). The bolts ( 7 ), which are in a direction parallel to the longitudinal direction of the beam ( 9 a ), connect the end plate ( 13 a ) to the outer diaphragms ( 3 a ) and ( 3 b ).

Claims (43)

1. A connection structure for a column and a beam comprising:

outer diaphragms that are connected to different vertical heights of outer faces of the column relative to one another; and

a first beam of which an end face is connected with a first end plate, wherein:

female screws are formed on the outer diaphragms in a direction so as to be put between the first end plate and the column;

bolt holes are formed on the first end plate at positions that correspond to the female screws on the outer diaphragms;

bolts in a direction parallel to a longitudinal direction of the first beam connect the first end plate with the outer diaphragms; and

each outer diaphragm is divided at the substantially center of the width direction of a pair of opposing faces of the column so as to be divided into two sections in a perimeter direction, each of which is provided in a bending U-shape, and each of the divided sections of the outer diaphragms is connected to three outer faces of the column.

2. The connection structure for a column and a beam according to claim 1 , wherein:

divided sections of the outer diaphragms are connected to the column with gaps between the sections.

3. The connection structure for a column and a beam according to claim 1 , further comprising:

a second beam, which has a different height from the first beam, connected to the column in a direction different from the direction of the first beam, wherein:

a second end plate is connected to an end face of the second beam;

the height of the second end plate is taller than the height of the second beam, both end parts of the second end plate project upward and downward from both flange faces of the second beam, and bolt holes are formed on the projecting parts of the second end plate at positions that correspond to the female screws on the outer diaphragms; and

bolts in a direction parallel to a longitudinal direction of the second beam connect the second end plate with the outer diaphragms.

4. The connection structure for a column and a beam according to claim 1 , wherein:

the height of the first end plate is taller than the height of the first beam, both end parts of the first end plate project upward and downward from both flange faces of the first beam, and the bolt holes are formed on the projecting parts of the first end plate.

5. The connection structure for a column and a beam according to claim 1 , wherein:

thickness of each outer diaphragm is 1.5 times or more as large as thickness of the end plate in a plan view; and

a cutout is formed in a plan view at each corner part of outer faces opposite to inner faces, which are connected to the column, in each of the divided sections of the outer diaphragms where the cutout of each of the divided sections of the outer diaphragms does not touch an end plate of a beam.

6. A method for connecting a column and a beam using

outer diaphragms, each of which being divided at the substantially center of the width direction of a pair of opposing faces of the column so as to be divided into two sections in a perimeter direction, each of the sections being provided in a bending U-shape, and

a beam of which an end face is connected with an end plate in advance,

the method comprising:

forming female screws on the outer diaphragms in a direction so as to be put between the first end plate and the column;

making the height of the end plate taller than the height of the beam and both end parts of the end plate project upward and downward from both flange faces of the beam, and forming bolt holes on the projecting parts of the end plate at positions that correspond to the female screws on the outer diaphragms;

connecting the outer diaphragms to different vertical heights of outer faces of the column relative to one another such that each of the divided sections of each outer diaphragm is connected to three outer faces of the column;

inserting bolts into the bolt holes and the female screws in a direction parallel to a longitudinal direction of the beam to connect the end plate and the outer diaphragms.

7. A connection structure for a column and a beam comprising:

outer diaphragms that are connected to different vertical heights of outer faces of the column relative to one another; and

a first beam of which an end face is connected with a first end plate, wherein:

female screws are formed on the outer diaphragms in a direction so as to be put between the first end plate and the column;

bolt holes are formed on the first end plate at positions that correspond to the female screws on the outer diaphragms;

bolts in a direction parallel to a longitudinal direction of the first beam connect the first end plate with the outer diaphragms;

thickness of each outer diaphragm is 1.5 times or more as large as thickness of the end plate in a plan view;

each outer diaphragm is divided at the substantially center of the width direction of two pairs of opposing faces of the column so as to be divided into four sections in a perimeter direction, each of which is provided in a bending L-shape, and each of the divided sections of the outer diaphragms is connected to at least two outer faces of the column; and

a cutout is formed in a plan view at each corner part of outer faces opposite to inner faces, which are connected to the column, in each of the divided sections of the outer diaphragms where the cutout of each of the divided sections of the outer diaphragms does not touch an end plate of a beam.

8. A connection structure for a column and a beam comprising:

outer diaphragms that are connected to different vertical heights of outer faces of the column relative to one another; and

a first beam of which an end face is connected with a first end plate, wherein:

female screws are formed on the outer diaphragms in a direction so as to be put between the first end plate and the column;

bolt holes are formed on the first end plate at positions that correspond to the female screws on the outer diaphragms;

bolts in a direction parallel to a longitudinal direction of the first beam connect the first end plate with the outer diaphragms; and

each outer diaphragm is divided at a pair of corner parts facing each other diagonally of the column so as to be divided into two sections in a perimeter direction, each of which is provided in a bending L-shape, and each of the divided sections of the outer diaphragms is connected to two outer faces of the column.

Assignments (2)
CHANGE OF ADDRESS Recorded Apr 16, 2020
From: SENQCIA CORPORATION
To: SENQCIA CORPORATION
Reel/Frame 052411/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2016
From: OBA, SHUJI; KITANO, TAKASHI; ITOH, MICHIO
To: SENQCIA CORPORATION
Reel/Frame 039757/0962 →
Priority Claims (1)
JP 2016-131286 · Jul 1, 2016 · national
Continuity (1)
Related Publication 20180002913A1 · Jan 4, 2018
Cited By (6)
US 1,099,367 US 1,100,265 US 1,101,199 US 1,101,971 US 1,114,305 US 12,404,685