IP Library › Granted Patent US 10,981,319
Granted Patent B2
US 10,981,319 · App. 15/975,915 · Granted Apr 20, 2021

High strength blow-molded structure

Inventor: Chen-Kang Lin (DongGuan, CN)
Assignee: Dongguan Shichang Metals Factory Ltd.
B29C49/0005A47B13/08A47C5/12B29C49/02B29C49/20E04C2/326B29C49/0031B29C2049/2008B29L2031/448E04C2/32Y10T428/24628Y10T428/24661Y10T428/24669Y10T428/24702Y10T428/24736
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Quick Facts
Patent No.
US 10,981,319
App. No.
15/975,915
Granted
Apr 20, 2021
Kind
B2
Abstract

A blow-molded plastic structure has a hollow interior portion formed during a blow-molding process, and includes first and second outer portions that are spaced apart from each other, with the hollow interior portion disposed there between. The structure includes a pattern of structural stiffening features that are integrally formed in the second outer portion. The pattern of structural stiffening features includes a plurality of tripodal depressions disposed in rows and columns and a plurality of convex regions disposed in rows and columns between the plurality of tripodal depressions. Each convex region has a maximum height between the first and second outer portions. Each of the tripodal depressions extends into the hollow interior portion, includes three indentations disposed adjacent the first outer portion, and includes an island spaced away from the first outer portion. The island has three sides, each of which is disposed adjacent one of the three indentations.

Claims (45)

1. A blow-molded plastic structure having a hollow interior portion formed during a blow-molding process, the blow-molded plastic structure comprising:

a first outer portion;

a second outer portion that is spaced apart from the first outer portion, wherein the hollow interior portion is disposed between the first and second outer portions; and

a pattern of structural stiffening features integrally formed in the second outer portion, the pattern of structural stiffening features comprising:

a plurality of tripodal depressions extending into the hollow interior portion and disposed in rows and columns, each depression including:

no more than three indentations disposed in a triangular arrangement adjacent the first outer portion; and

a single triangular island centrally disposed between the three indentations, the triangular island comprising:

no more than three sides, each disposed adjacent a corresponding one of the three indentations; and

a central triangular portion disposed in the center of the depression and between the three sides and spaced away from the first outer portion, such that the hollow interior portion is disposed between the central triangular portion and the first outer portion; and

a plurality of convex regions, each convex region disposed between two adjacent depressions in the plurality of depressions, each convex region having a maximum height between the first and second outer portions, wherein the second outer portion within each convex region has a radius of curvature that defines a continuous arc connecting the two adjacent depressions.

2. The blow-molded plastic structure of claim 1 , wherein a centerline spacing between each island in each row of depressions is greater than three times the maximum height of the convex regions.

3. The blow-molded plastic structure of claim 1 , wherein a centerline spacing between each island in each row of depressions ranges from about 61.0 to about 68.8 millimeters.

4. The blow-molded plastic structure of claim 1 , wherein a centerline spacing between each island in each column of depressions is greater than three times the maximum height of the convex regions.

5. The blow-molded plastic structure of claim 1 , wherein a centerline spacing between each island in each column of depressions ranges from about 65.5 to about 72.5 millimeters.

6. The blow-molded plastic structure of claim 1 , wherein a centerline spacing between each island in each column of depressions ranges from about 49.1 to about 54.3 millimeters.

7. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a row of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent row of tripodal depressions by greater than three times the maximum height of the convex regions.

8. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a row of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent row of tripodal depressions by a distance ranging from 47.9 to 52.9 millimeters.

9. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a row of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent row of tripodal depressions by a distance ranging from 42.6 to 47.0 millimeters.

10. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a column of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent column of tripodal depressions by greater than three times the maximum height of the convex regions.

11. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a column of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent column of tripodal depressions by a distance ranging from 53.3 to 58.9 millimeters.

12. The blow-molded plastic structure of claim 1 , wherein one of the three indentations in a first tripodal depression in a column of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent column of tripodal depressions by a distance ranging from 28.7 to 31.7 millimeters.

13. The blow-molded plastic structure of claim 1 , wherein the radius of curvature ranges from about 22 to about 26 millimeters.

14. The blow-molded plastic structure of claim 1 , wherein the maximum height of the convex regions ranges from about 17.5 to about 19.3 millimeters.

15. The blow-molded plastic structure of claim 1 , wherein the maximum height of the convex regions ranges from about 15.9 to about 17.5 millimeters.

16. The blow-molded plastic structure of claim 1 , wherein the triangular central portions of the islands are spaced away from the first outer portion by a distance that is greater than half of an average distance between the first outer portion and second outer portion.

17. The blow-molded plastic structure of claim 1 , wherein the triangular central portion of each island is spaced away from the first outer portion by a distance that ranges from about 6.0 to 7.5 millimeters.

18. The blow-molded plastic structure of claim 1 , wherein the triangular central portion of each island is spaced away from the first outer portion by a distance that ranges from about 7.5 to 8.9 millimeters.

19. The blow-molded plastic structure of claim 1 , wherein a distance between the first outer portion and the second outer portion at each indentation ranges from about 2.5 to about 3.3 millimeters.

20. The blow-molded plastic structure of claim 1 , wherein a distance between the first outer portion and the second outer portion at each indentation ranges from about 3.6 to about 4.8 millimeters.

21. The blow-molded plastic structure of claim 1 , constituting a portion of a tabletop, a chair, a bench, or a structural panel.

22. The blow-molded plastic structure of claim 21 , wherein the tabletop is circular.

23. A blow-molded plastic structure having a hollow interior portion formed during a blow-molding process, the blow-molded plastic structure comprising:

a first outer portion;

a second outer portion that is spaced apart from the first outer portion, wherein the hollow interior portion is disposed between the first and second outer portions; and

a pattern of structural stiffening features integrally formed in the second outer portion, the pattern of structural stiffening features comprising:

a plurality of tripodal depressions extending into the hollow interior portion and disposed in rows and columns, each depression including:

no more than three indentations disposed in a triangular arrangement adjacent the first outer portion; and

a single triangular island centrally disposed between the three indentations, the triangular island comprising:

no more than three sides, each disposed adjacent a corresponding one of the three indentations; and

a central triangular portion disposed in the center of the depression and between the three sides and spaced away from the first outer portion, such that the hollow interior portion is disposed between the central triangular portion and the first outer portion; and

a plurality of convex regions in the second outer portion, each convex region disposed between two adjacent depressions in the plurality of depressions, each convex region having a maximum height between the first and second outer portions, wherein the second outer portion within each convex region has a radius of curvature that defines a continuous arc connecting the two adjacent depressions,

wherein a first centerline spacing between each island in each row of depressions is greater than three times the maximum height of the convex regions, and

wherein a second centerline spacing between each island in each column of depressions is greater than three times the maximum height of the convex regions.

24. The blow-molded plastic structure of claim 23 , wherein one of the three indentations in a first tripodal depression in a row of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent row of tripodal depressions by greater than three times the maximum height of the convex regions.

25. The blow-molded plastic structure of claim 23 , wherein one of the three indentations in a first tripodal depression in a column of tripodal depressions is spaced apart from a nearest one of the three indentations in a second tripodal depression in an adjacent column of tripodal depressions by greater than three times the maximum height of the convex regions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2018
From: LIN, CHEN-KANG
To: DONGGUAN SHICHANG METALS FACTORY LTD.
Reel/Frame 046015/0780 →
Priority Claims (1)
CN 201810246788.2 · Mar 23, 2018 · national
Continuity (4)
Continuation In Part 29640679 · Mar 16, 2018
Continuation In Part 29640977 · Mar 19, 2018
Provisional Application 62645216 · Mar 20, 2018
Related Publication 20190283304A1 · Sep 19, 2019
Cited By (1)
US 1,065,330