IP Library › Granted Patent US 12,583,660
Granted Patent B2
US 12,583,660 · App. 18/225,159 · Granted Mar 24, 2026

Shock absorber and packaging system

Inventors: Shinya Suehiro (Kanagawa, JP); Yuta Kobayashi (Kanagawa, JP); Tadakatsu Ikeda (Kanagawa, JP)
Assignee: RICOH COMPANY, LTD.
B65D81/022
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Quick Facts
Patent No.
US 12,583,660
App. No.
18/225,159
Granted
Mar 24, 2026
Kind
B2
Abstract

A shock absorber and two packaging systems. The shock absorber is to be attached to an object to be packaged, and the shock absorber includes a first shock absorber including a first base structure having a frame shape and at least one first shock-absorbing rib disposed inside the first base structure, and a second shock absorber having a second base structure in a shape of a plate and at least one second shock-absorbing rib disposed on a plane of the second base structure. In the shock absorber, the first shock absorber and the second shock absorber are coupled to each other. One of the two packaging systems includes shock absorbers including the shock absorber, and two of the shock absorbers are used for each object to be packaged. In the other one of the two packaging systems, four of the shock absorbers are used for each object to be packaged.

Claims (57)

1 . A shock absorber to be attached to an object to be packaged, the shock absorber comprising:

a first shock absorber including a first base structure having an annular frame shape that is open at two ends and at least one first shock-absorbing rib disposed inside the first base structure such that the at least one first shock-absorbing rib extends inwardly from the annular frame-shaped first base structure in a first direction; and

a second shock absorber having a second base structure in a shape of a plate and at least one second shock-absorbing rib disposed on a plane of the second base structure such that the at least one second shock-absorbing rib extends inwardly from the plate-shaped second base structure in a second direction that is orthogonal to the first direction, the first shock absorber and the second shock absorber being coupled to each other at one of the two open ends of the first shock absorber,

wherein the at least one first shock-absorbing rib of the first shock absorber is separate from the second base structure of the second shock absorber with a gap between the second base structure of the second shock absorber and a surface of the at least one first shock-absorbing rib of the first shock absorber which faces the second base structure of the second shock absorber, under conditions where:

the first shock absorber and the second shock absorber are coupled to each other and an inner surface of the at least one first shock-absorbing rib that faces in the first direction is configured to contact the object to be packaged, and

an inner surface of the at least one second shock-absorbing rib that faces in the second direction is configured to contact the object to be packaged and the inner surface of the at least one first shock-absorbing rib and the inner surface of the at least one second shock-absorbing rib are configured to support the object to be packaged above the gap.

2 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are coupled to each other as a claw-shaped protrusion formed on the first base structure of the first shock absorber is snap-fitted into a concave portion formed on the second base structure of the second shock absorber.

3 . The shock absorber according to claim 2 , further comprising:

a plurality of claw-shaped protrusions including the claw-shaped protrusion; and

a plurality of concave portions including the concave portion,

wherein the plurality of claw-shaped protrusions are formed on the first base structure of the first shock absorber, and

wherein the plurality of concave portions are formed on the second base structure of the second shock absorber.

4 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are coupled to each other as a rectangular protrusion formed on the first base structure of the first shock absorber is press-fitted into a recessed portion formed on the second base structure of the second shock absorber.

5 . The shock absorber according to claim 2 ,

wherein the rectangular protrusion or the recessed portion is chamfered to have a rounded face.

6 . The shock absorber according to claim 4 , further comprising:

a plurality of rectangular protrusions including the rectangular protrusion; and

a plurality of recessed portions including the recessed portion,

wherein the plurality of rectangular protrusions are formed on the first base structure of the first shock absorber, and

wherein the plurality of recessed portions are formed on the second base structure of the second shock absorber.

7 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are coupled to each other as a boss formed on the first base structure of the first shock absorber is press-fitted into a hole formed on the second base structure of the second shock absorber.

8 . The shock absorber according to claim 7 , further comprising:

a plurality of bosses including the boss; and

a plurality of holes including the hole,

wherein the plurality of bosses are formed on the first base structure of the first shock absorber, and

wherein the plurality of holes are formed on the second base structure of the second shock absorber.

9 . The shock absorber according to claim 1 ,

wherein the at least one first shock-absorbing rib includes a plurality of first shock-absorbing ribs, and

wherein the plurality of first shock-absorbing ribs are disposed inside the first base structure.

10 . The shock absorber according to claim 1 ,

wherein the at least one first shock-absorbing rib includes a plurality of first shock-absorbing ribs,

wherein the first base structure has a plurality of inner walls, and

wherein the plurality of first shock-absorbing ribs are disposed on each one of the plurality of inner walls.

11 . The shock absorber according to claim 1 ,

wherein the at least one second shock-absorbing rib includes a plurality of second shock-absorbing ribs, and

wherein the plurality of second shock-absorbing ribs are disposed on the plane of the second base structure.

12 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are formed using a packaging material made of foamed resin.

13 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are formed using a packaging material made of pulp molding.

14 . The shock absorber according to claim 1 ,

wherein the first shock absorber and the second shock absorber are formed using a vacuum-formed packaging material made of plastic sheet.

15 . The shock absorber according to claim 1 , wherein the at least one first shock-absorbing rib of the first shock absorber is spaced apart from the second base structure of the second shock absorber.

16 . The shock absorber according to claim 1 , wherein, in the first shock absorber and the second shock absorber that are coupled to each other, the annular-shaped first base structure contacts the plate-shaped second base structure.

17 . A packaging system comprising:

a plurality of shock absorbers to be attached to an object to be packaged, the plurality of shock absorbers each including:

a first shock absorber including a first base structure having an annular frame shape that is open at two ends and at least one first shock-absorbing rib disposed inside the first base structure such that the at least one first shock-absorbing rib extends inwardly from the annular frame-shaped first base structure in a first direction; and

a second shock absorber having a second base structure in a shape of a plate and at least one second shock-absorbing rib disposed on a plane of the second base structure such that the at least one second shock-absorbing rib extends inwardly from the plate-shaped second base structure in a second direction that is orthogonal to the first direction,

wherein the first shock absorber and the second shock absorber are coupled to each other at one of the two open ends of the first shock absorber,

wherein two of the plurality of shock absorbers are used for each object to be packaged, and

wherein the at least one first shock-absorbing rib of the first shock absorber is separate from the second base structure of the second shock absorber with a gap between the second base structure of the second shock absorber and a surface of the at least one first shock-absorbing rib of the first shock absorber which faces the second base structure of the second shock absorber, under conditions where:

the first shock absorber and the second shock absorber are coupled to each other and an inner surface of the at least one first shock-absorbing rib that faces in the first direction is configured to contact the object to be packaged, and

an inner surface of the at least one second shock-absorbing rib that faces in the second direction is configured to contact the object to be packaged and the inner surface of the at least one first shock-absorbing rib and the inner surface of the at least one second shock-absorbing rib are configured to support the object to be packaged above the gap.

18 . The packaging system according to claim 17 , wherein the at least one first shock-absorbing rib of the first shock absorber is spaced apart from the second base structure of the second shock absorber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2023
From: SUEHIRO, SHINYA; KOBAYASHI, YUTA; IKEDA, TADAKATSU
To: RICOH COMPANY, LTD.
Reel/Frame 064356/0273 →
Priority Claims (2)
JP 2022-121647 · Jul 29, 2022 · national
JP 2023-010856 · Jan 27, 2023 · national
Continuity (1)
Related Publication 20240034537A1 · Feb 1, 2024
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