EP3279007A1 - Embossing seal - Google Patents
Embossing seal Download PDFInfo
- Publication number
- EP3279007A1 EP3279007A1 EP16182551.8A EP16182551A EP3279007A1 EP 3279007 A1 EP3279007 A1 EP 3279007A1 EP 16182551 A EP16182551 A EP 16182551A EP 3279007 A1 EP3279007 A1 EP 3279007A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- base
- shaft unit
- shaft
- upper shaft
- main shaft
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000004049 embossing Methods 0.000 title claims abstract description 34
- 210000000707 wrist Anatomy 0.000 abstract description 5
- 230000008878 coupling Effects 0.000 description 10
- 238000010168 coupling process Methods 0.000 description 10
- 238000005859 coupling reaction Methods 0.000 description 10
- 239000003921 oil Substances 0.000 description 9
- 239000000463 material Substances 0.000 description 4
- 239000010687 lubricating oil Substances 0.000 description 3
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B44—DECORATIVE ARTS
- B44B—MACHINES, APPARATUS OR TOOLS FOR ARTISTIC WORK, e.g. FOR SCULPTURING, GUILLOCHING, CARVING, BRANDING, INLAYING
- B44B5/00—Machines or apparatus for embossing decorations or marks, e.g. embossing coins
- B44B5/0085—Portable apparatus for manual operation
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B44—DECORATIVE ARTS
- B44B—MACHINES, APPARATUS OR TOOLS FOR ARTISTIC WORK, e.g. FOR SCULPTURING, GUILLOCHING, CARVING, BRANDING, INLAYING
- B44B11/00—Artists' hand tools for sculpturing, kneading, carving, engraving, guilloching or embossing; Accessories therefor
- B44B11/04—Artists' hand tools for sculpturing, kneading, carving, engraving, guilloching or embossing; Accessories therefor for embossing
Definitions
- the present invention relates to an embossing seal, especially to an embossing seal that allows a user to hold and to form embossed patterns.
- a conventional embossing seal comprises a pressing assembly and a die assembly.
- the pressing assembly includes a base, a shaft, and a pressing handle.
- the base has a mounting recess formed in a front end of the base.
- the shaft is mounted in the base and is able to move up and down relative to the base.
- the shaft has a lower end protruding into the mounting recess.
- the pressing handle is pivotally coupled to the base and selectively drives the shaft to move.
- the die assembly is mounted in the mounting recess of the base and includes an upper die. The upper die is abutted by the lower end of the shaft.
- a material that is intended to be embossed is mounted in the die assembly and a user holds and turns the pressing handle.
- the pressing handle provides a downward pressure to the shaft and the shaft moves downward to push the upper die of the die assembly. Accordingly, the upper die forms embossed patterns on the material.
- the main objective of the present invention is to provide an embossing seal.
- the embossing seal has a base, a die assembly, a driven shaft assembly, a restoring member, and a pressing handle.
- the die assembly is mounted in the base.
- the driven shaft assembly is movably mounted in the base, abuts against the die assembly, and has a lower shaft unit, an upper shaft unit, and a cushion member, so as to perform two embossing steps.
- the restoring member is mounted in the base and abuts against the base and the upper shaft unit.
- the pressing handle is pivotally coupled to the base and abuts against the upper shaft unit.
- a first embossing step with the upper shaft unit drives the lower shaft unit via the cushion member, discomfort of wrist and elbow of a user can be reduced. Accordingly, the user can operate the embossing seal in a comfortable and labor saving manner.
- an embossing seal in accordance with the present invention comprises a base 10, a die assembly 20, a driven shaft assembly 30, a restoring member 40, and a pressing handle 50.
- the base 10 has a front end, a mounting recess 11, at least one positioning protrusion 12, a first coupling hole 13, and a second coupling hole 14.
- the mounting recess 11 is formed in the front end of the base 10.
- the at least one positioning protrusion 12 protrudes into the mounting recess 11.
- the first coupling hole 13 is formed in the base 10 and communicates with the mounting recess 11.
- the second coupling hole 14 is formed in the base 10 and does not communicate with the mounting recess 11.
- the die assembly 20 is mounted in the mounting recess 11 of the base 10 and includes a lower die 21 and an upper die 22.
- the lower die 21 has at least one positioning hole 23.
- the at least one positioning hole 23 engages with the at least one positioning protrusion 12 of the base 10.
- the upper die 22 is disposed above the lower die 21 and corresponds in position to the first coupling hole 13.
- the driven shaft assembly 30 is movably mounted in the first coupling hole 13 of the base 10 and abuts against the die assembly 20.
- the driven shaft assembly 30 includes a lower shaft unit 31, an upper shaft unit 32, and a cushion member 33.
- the lower shaft unit 31 is mounted in the first coupling hole 13 of the base 10, is able to move up and down relative to the base 10, and has an upper end and a lower end. The lower end of the lower shaft unit 31 abuts against the upper die 22 of the die assembly 20.
- the upper shaft unit 32 is coupled to the lower shaft unit 31 and is able to move up and down relative to the lower shaft unit 31.
- the cushion member 33 is mounted to the upper shaft unit 32 and has two ends. The two ends of the cushion member 33 respectively abut against the upper end of the lower shaft unit 31 and the upper shaft unit 32.
- the cushion member 33 is a power spring.
- the restoring member 40 is mounted in the second coupling hole 14 of the base 10 and has two ends. The two ends of the restoring member 40 respectively abut against the base 10 and the upper shaft unit 32.
- the pressing handle 50 is pivotally coupled to the base 10 and has a pivot portion and a pushing portion 51.
- the pivot portion is pivotally connected to the base 10.
- the pushing portion 51 is formed adjacent to the pivot portion and abuts against the upper shaft unit 32.
- the lower shaft unit 31 includes a main shaft 311, at least one oil retaining groove 312, an oil containing groove 316, and a necked portion 313.
- the main shaft 311 is tubular, is movably mounted in the first coupling hole 13, and has an outer surface and an inner surface. The outer surface of the main shaft 311 contacts the base 10.
- the at least one oil retaining groove 312 is formed in and around the outer surface of the main shaft 311. Each of the at least one oil retaining groove 312 is filled with lubricating oil and encircles an imaginary plane.
- the imaginary plane may be perpendicular to a central axis of the main shaft 311 or may be inclined relative to the central axis of the main shaft 311.
- the oil containing groove 316 is formed in and around the outer surface of the main shaft 311 and is disposed below the at least one oil retaining groove 312.
- the necked portion 313 protrudes from and is formed around the inner surface of the main shaft 311 and has a limit surface 314 and a first stop surface 315.
- the limit surface 314 faces toward an upper end of the main shaft 311.
- the first stop surface 315 faces toward a lower end of the main shaft 311.
- the upper shaft unit 32 includes a connecting panel 321, an upper shaft 322, and a fastener 323.
- the connecting panel 321 has a through hole 324 formed through the connecting panel 321.
- the upper shaft 322 is mounted to the connecting panel 321 and is mounted through the through hole 324 of the connecting panel 321.
- the upper shaft 322 has a lower end and a lower end surface. The lower end of the upper shaft 322 protrudes into the main shaft 311.
- the lower end surface of the upper shaft 322 faces the limit surface 314.
- the fastener 323 is mounted through the necked portion 313, is fastened to the upper shaft 322, and has a second stop surface 325.
- the second stop surface 325 selectively abuts against the first stop surface 315.
- the upper shaft 322 has an inner thread 326 formed in the upper shaft 322.
- the fastener 323 has an outer thread 327.
- the outer thread 327 passes through the necked portion 313 and engages with the inner thread 326.
- a material 60 that is intended to be embossed is inserted between the upper die 22 and the lower die 21 of the die assembly 20 and is mounted on the upper die 22.
- a user turns the pressing handle 50 to allow the pushing portion 51 of the pressing handle 50 to depress the upper shaft 322 as well as the connecting panel 321 of the upper shaft unit 32 to move downward. Accordingly, the cushion member 33 and the restoring member 40 are compressed and the cushion member 33 pushes the lower shaft unit 31 to move downward.
- the lower shaft unit 31 that moves downward presses upon the upper die 22, so as to emboss patterns on the material 60. As the lower end of the upper shaft 322 abuts the limit surface 314 of the lower shaft unit 31, a first embossing step of the driven shaft assembly 30 is completed.
- the pressing handle 50 is turned to allow the pushing portion 51 to leave the upper shaft unit 32, the restoring member 40 and the cushion member 33 push the upper shaft unit 32 and the lower shaft unit 31 to move upward.
- the lubricating oil in the at least one oil retaining groove 312 allows the main shaft 311 to move smoothly. Furthermore, the oil containing groove 316 can receive the lubricating oil that flows out from the at least one oil retaining groove 312.
- the embossing seal as described has the following advantages.
- the driven shaft assembly 30 that includes the upper shaft unit 32 and the lower shaft unit 31 allows the user to perform the first and second embossing steps.
- the first embossing step with the upper shaft unit 32 driving the lower shaft unit 31 via the cushion member 33, discomfort to the wrist and elbow of the user can be reduced. Accordingly, the user can operate the embossing seal in a comfortable and labor saving manner.
Landscapes
- Press Drives And Press Lines (AREA)
- Machines For Manufacturing Corrugated Board In Mechanical Paper-Making Processes (AREA)
- Closing And Opening Devices For Wings, And Checks For Wings (AREA)
Abstract
Description
- The present invention relates to an embossing seal, especially to an embossing seal that allows a user to hold and to form embossed patterns.
- A conventional embossing seal comprises a pressing assembly and a die assembly. The pressing assembly includes a base, a shaft, and a pressing handle. The base has a mounting recess formed in a front end of the base. The shaft is mounted in the base and is able to move up and down relative to the base. The shaft has a lower end protruding into the mounting recess. The pressing handle is pivotally coupled to the base and selectively drives the shaft to move. The die assembly is mounted in the mounting recess of the base and includes an upper die. The upper die is abutted by the lower end of the shaft.
- During embossing, a material that is intended to be embossed is mounted in the die assembly and a user holds and turns the pressing handle. Thus, the pressing handle provides a downward pressure to the shaft and the shaft moves downward to push the upper die of the die assembly. Accordingly, the upper die forms embossed patterns on the material.
- However, when the user turns the pressing handle with his wrist and elbow and the pressing handle directly pushes the shaft to move downward, the collision between the pressing handle, the shaft, and the upper die that are all solid causes discomfort to the wrist and the elbow of the user.
- The main objective of the present invention is to provide an embossing seal. The embossing seal has a base, a die assembly, a driven shaft assembly, a restoring member, and a pressing handle. The die assembly is mounted in the base. The driven shaft assembly is movably mounted in the base, abuts against the die assembly, and has a lower shaft unit, an upper shaft unit, and a cushion member, so as to perform two embossing steps. The restoring member is mounted in the base and abuts against the base and the upper shaft unit. The pressing handle is pivotally coupled to the base and abuts against the upper shaft unit.
- During a first embossing step, with the upper shaft unit drives the lower shaft unit via the cushion member, discomfort of wrist and elbow of a user can be reduced. Accordingly, the user can operate the embossing seal in a comfortable and labor saving manner.
-
-
Fig. 1 is a perspective view of an embossing seal in accordance with the present invention; -
Fig. 2 is an exploded perspective view of the embossing seal inFig. 1 ; -
Fig. 3 is a cross-sectional side view of the embossing seal inFig. 1 ; -
Fig. 4 is a cross-sectional side view of the embossing seal inFig. 1 , showing a die mounted therein; -
Fig. 5 is an operational cross-sectional side view of the embossing seal inFig. 1 ; and -
Fig. 6 is another operational cross-sectional side view of the embossing seal inFig. 1 - With reference to
Figs. 1 to 3 , an embossing seal in accordance with the present invention comprises abase 10, adie assembly 20, a drivenshaft assembly 30, arestoring member 40, and apressing handle 50. - The
base 10 has a front end, a mounting recess 11, at least onepositioning protrusion 12, afirst coupling hole 13, and asecond coupling hole 14. Themounting recess 11 is formed in the front end of thebase 10. The at least onepositioning protrusion 12 protrudes into the mounting recess 11. Thefirst coupling hole 13 is formed in thebase 10 and communicates with themounting recess 11. Thesecond coupling hole 14 is formed in thebase 10 and does not communicate with themounting recess 11. - The die
assembly 20 is mounted in themounting recess 11 of thebase 10 and includes alower die 21 and anupper die 22. The lower die 21 has at least onepositioning hole 23. The at least onepositioning hole 23 engages with the at least onepositioning protrusion 12 of thebase 10. Theupper die 22 is disposed above thelower die 21 and corresponds in position to thefirst coupling hole 13. - The driven
shaft assembly 30 is movably mounted in thefirst coupling hole 13 of thebase 10 and abuts against thedie assembly 20. The drivenshaft assembly 30 includes alower shaft unit 31, anupper shaft unit 32, and acushion member 33. Thelower shaft unit 31 is mounted in thefirst coupling hole 13 of thebase 10, is able to move up and down relative to thebase 10, and has an upper end and a lower end. The lower end of thelower shaft unit 31 abuts against theupper die 22 of the dieassembly 20. Theupper shaft unit 32 is coupled to thelower shaft unit 31 and is able to move up and down relative to thelower shaft unit 31. Thecushion member 33 is mounted to theupper shaft unit 32 and has two ends. The two ends of thecushion member 33 respectively abut against the upper end of thelower shaft unit 31 and theupper shaft unit 32. Specifically, thecushion member 33 is a power spring. - The restoring
member 40 is mounted in thesecond coupling hole 14 of thebase 10 and has two ends. The two ends of the restoringmember 40 respectively abut against thebase 10 and theupper shaft unit 32. - The
pressing handle 50 is pivotally coupled to thebase 10 and has a pivot portion and a pushingportion 51. The pivot portion is pivotally connected to thebase 10. The pushingportion 51 is formed adjacent to the pivot portion and abuts against theupper shaft unit 32. - With reference to
Figs. 2 and3 , in the preferred embodiment, thelower shaft unit 31 includes amain shaft 311, at least oneoil retaining groove 312, anoil containing groove 316, and anecked portion 313. Themain shaft 311 is tubular, is movably mounted in thefirst coupling hole 13, and has an outer surface and an inner surface. The outer surface of themain shaft 311 contacts thebase 10. The at least oneoil retaining groove 312 is formed in and around the outer surface of themain shaft 311. Each of the at least oneoil retaining groove 312 is filled with lubricating oil and encircles an imaginary plane. The imaginary plane may be perpendicular to a central axis of themain shaft 311 or may be inclined relative to the central axis of themain shaft 311. Theoil containing groove 316 is formed in and around the outer surface of themain shaft 311 and is disposed below the at least oneoil retaining groove 312. Thenecked portion 313 protrudes from and is formed around the inner surface of themain shaft 311 and has alimit surface 314 and afirst stop surface 315. Thelimit surface 314 faces toward an upper end of themain shaft 311. Thefirst stop surface 315 faces toward a lower end of themain shaft 311. - The
upper shaft unit 32 includes a connectingpanel 321, anupper shaft 322, and afastener 323. The connectingpanel 321 has a throughhole 324 formed through the connectingpanel 321. Theupper shaft 322 is mounted to the connectingpanel 321 and is mounted through the throughhole 324 of the connectingpanel 321. Theupper shaft 322 has a lower end and a lower end surface. The lower end of theupper shaft 322 protrudes into themain shaft 311. The lower end surface of theupper shaft 322 faces thelimit surface 314. Thefastener 323 is mounted through thenecked portion 313, is fastened to theupper shaft 322, and has asecond stop surface 325. Thesecond stop surface 325 selectively abuts against thefirst stop surface 315. - As shown in
Figs. 2 and3 , specifically, theupper shaft 322 has aninner thread 326 formed in theupper shaft 322. Thefastener 323 has anouter thread 327. Theouter thread 327 passes through thenecked portion 313 and engages with theinner thread 326. - With reference to
Fig. 4 , before embossing, amaterial 60 that is intended to be embossed is inserted between theupper die 22 and thelower die 21 of thedie assembly 20 and is mounted on theupper die 22. - With further reference to
Fig. 5 , a user turns thepressing handle 50 to allow the pushingportion 51 of thepressing handle 50 to depress theupper shaft 322 as well as the connectingpanel 321 of theupper shaft unit 32 to move downward. Accordingly, thecushion member 33 and the restoringmember 40 are compressed and thecushion member 33 pushes thelower shaft unit 31 to move downward. Thelower shaft unit 31 that moves downward presses upon theupper die 22, so as to emboss patterns on thematerial 60. As the lower end of theupper shaft 322 abuts thelimit surface 314 of thelower shaft unit 31, a first embossing step of the drivenshaft assembly 30 is completed. - With reference to
Fig. 6 , when the user applies more downward force to depress thepressing handle 50 to perform a second embossing step, the pushingportion 51 of thepressing handle 50 and theupper shaft 322 directly push themain shaft 311 to move downward to press upon theupper die 22. - Afterwards, as the
pressing handle 50 is turned to allow the pushingportion 51 to leave theupper shaft unit 32, the restoringmember 40 and thecushion member 33 push theupper shaft unit 32 and thelower shaft unit 31 to move upward. - As shown in
Figs. 3 and4 , when themain shaft 311 moves in thefirst coupling hole 13 of thebase 10, the lubricating oil in the at least oneoil retaining groove 312 allows themain shaft 311 to move smoothly. Furthermore, theoil containing groove 316 can receive the lubricating oil that flows out from the at least oneoil retaining groove 312. - The embossing seal as described has the following advantages. The driven
shaft assembly 30 that includes theupper shaft unit 32 and thelower shaft unit 31 allows the user to perform the first and second embossing steps. During the first embossing step, with theupper shaft unit 32 driving thelower shaft unit 31 via thecushion member 33, discomfort to the wrist and elbow of the user can be reduced. Accordingly, the user can operate the embossing seal in a comfortable and labor saving manner.
Claims (6)
- An embossing seal comprising a base (10) having a front end and a mounting recess (11) formed in the front end of the base (10), a die assembly (20) mounted in the mounting recess (11) of the base (10), and a pressing handle (50) pivotally coupled to the base (10) and having a pivot portion pivotally connected to the base (10) and a pushing portion (51) formed adjacent to the pivot portion, and the embossing seal characterized in:the embossing seal further comprisesa driven shaft assembly (30) movably mounted in the base (10) and abutting against the die assembly (20), and the driven shaft assembly (30) includinga lower shaft unit (31) mounted in the base (10), being able to move up and down relative to the base (10), and having a lower end, and the lower end of the lower shaft unit (31) abutting against the die assembly (20);an upper shaft unit (32) coupled to the lower shaft unit (31) and being able to move up and down relative to the lower shaft unit (31); anda cushion member (33) mounted to the upper shaft unit (32) and having two ends respectively abutting against the lower shaft unit (31) and the upper shaft unit (32);a restoring member (40) mounted in the base (10) and having two ends respectively abutting against the base (10) and the upper shaft unit (32); andthe pressing handle (50) abuts against the upper shaft unit (32).
- The embossing seal as claimed in claim 1, wherein
the lower shaft unit (31) includes:a main shaft (311) being tubular,;at least one oil retaining groove (312) formed in and around an outer surface of the main shaft (311); anda necked portion (313) protruding from and formed around an inner surface of the main shaft (311) and havingthe upper shaft unit (32) includes:a limit surface (314) facing toward an upper end of the main shaft (311); anda first stop surface (315) facing toward a lower end of the main shaft (311); anda connecting panel (321) having a through hole (324) formed through the connecting panel (321);an upper shaft (322) mounted to the connecting panel (321), mounted through the through hole (324) of the connecting panel (321), and havinga lower end protruding into the main shaft (311); anda lower end surface facing the limit surface (314); anda fastener (323) mounted through the necked portion (313), fastened to the upper shaft (322), and having a second stop surface (325), and the second stop surface (325) selectively abutting against the first stop surface (315). - The embossing seal as claimed in claim 2, wherein each of the at least one oil retaining groove (312) encircles an imaginary plane being perpendicular to a central axis of the main shaft (311).
- The embossing seal as claimed in claim 2, wherein each of the at least one oil retaining groove (312) encircles an imaginary plane inclined relative to the central axis of the main shaft (311).
- The embossing seal as claimed in claim 2, 3, or 4, wherein the lower shaft unit (31) further includes an oil containing groove (316), and the oil containing groove (316) is formed in and around the outer surface of the main shaft (311) and is disposed below the at least one oil retaining groove (312).
- The embossing seal as claimed in claim 2, 3, 4, or 5, wherein
the upper shaft (322) has an inner thread (326) formed in the upper shaft (322); and
the fastener (323) has an outer thread (327), and the outer thread (327) passes through the necked portion (313) and engages with the inner thread (326).
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
ES16182551T ES2709930T3 (en) | 2016-08-03 | 2016-08-03 | Dry seal |
PL16182551T PL3279007T3 (en) | 2016-08-03 | 2016-08-03 | Embossing seal |
EP16182551.8A EP3279007B1 (en) | 2016-08-03 | 2016-08-03 | Embossing seal |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP16182551.8A EP3279007B1 (en) | 2016-08-03 | 2016-08-03 | Embossing seal |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3279007A1 true EP3279007A1 (en) | 2018-02-07 |
EP3279007B1 EP3279007B1 (en) | 2018-12-12 |
Family
ID=56740073
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP16182551.8A Active EP3279007B1 (en) | 2016-08-03 | 2016-08-03 | Embossing seal |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP3279007B1 (en) |
ES (1) | ES2709930T3 (en) |
PL (1) | PL3279007T3 (en) |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE44145C (en) * | gandenberger'sche maschinenfabrik, georg göbel in Darmstadt, Schützenstr. 8 | Billet Coupir Pliers | ||
DE184520C (en) * | ||||
DE183533C (en) * | ||||
US1442201A (en) * | 1923-01-16 | Recording punch | ||
US1506512A (en) * | 1923-07-23 | 1924-08-26 | Meyer & Wenthe | Seal press |
GB437540A (en) * | 1934-06-26 | 1935-10-31 | Charles Henry Hougham | Improvements in and relating to embossing presses |
-
2016
- 2016-08-03 PL PL16182551T patent/PL3279007T3/en unknown
- 2016-08-03 ES ES16182551T patent/ES2709930T3/en active Active
- 2016-08-03 EP EP16182551.8A patent/EP3279007B1/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE44145C (en) * | gandenberger'sche maschinenfabrik, georg göbel in Darmstadt, Schützenstr. 8 | Billet Coupir Pliers | ||
DE184520C (en) * | ||||
DE183533C (en) * | ||||
US1442201A (en) * | 1923-01-16 | Recording punch | ||
US1506512A (en) * | 1923-07-23 | 1924-08-26 | Meyer & Wenthe | Seal press |
GB437540A (en) * | 1934-06-26 | 1935-10-31 | Charles Henry Hougham | Improvements in and relating to embossing presses |
Also Published As
Publication number | Publication date |
---|---|
ES2709930T3 (en) | 2019-04-22 |
PL3279007T3 (en) | 2019-05-31 |
EP3279007B1 (en) | 2018-12-12 |
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