IP Library › Granted Patent US 12,280,476
Granted Patent B2
US 12,280,476 · App. 18/150,022 · Granted Apr 22, 2025

Pneumatic extraction device

Inventor: Jian-Shiou Liaw (Taichung, TW)
B25B27/026
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Quick Facts
Patent No.
US 12,280,476
App. No.
18/150,022
Granted
Apr 22, 2025
Kind
B2
Abstract

A pneumatic extraction device has a holding group, an air intake group, and a vibration group. The holding group has a handle and an outer shell. The handle has at least one connecting arm formed on and protruded from the handle. The outer shell is connected to the at least one connecting arm opposite to the handle such that the outer shell and the handle are spaced apart from each other. The air intake group is connected to the holding group and has a connecting sleeve connected to the handle. The vibration group is connected to the holding group and the air intake group and has a main shaft and a vibrating cylinder. The main shaft is connected to the connecting sleeve. The vibrating cylinder is slidably mounted on the main shaft and has an outer external surface non-contacted with an internal surface of the outer shell.

Claims (48)

1. A pneumatic extraction device comprising:

a holding group having

a handle having

an air inlet longitudinally formed in the handle from a top of the handle,

a mounting recess transversally formed in a middle portion of the handle and communicating with the air inlet,

an air outlet formed in a bottom of the handle and communicating with the mounting recess, and

at least one connecting arm transversally formed on and protruded from an external surface of the handle; and

an outer shell connected to an end of the at least one connecting arm opposite to the handle such that the outer shell and the handle are spaced apart from each other;

an air intake group connected to the holding group and having

a valve base mounted in the mounting recess of the handle to enable the air inlet to selectively communicate with the air outlet,

a trigger pressingly connected to the valve base on the external surface of the handle,

a connecting head connected to the bottom of the handle and communicating with the air outlet, and

a connecting sleeve connected to the handle, the connecting sleeve being connected to and communicating with the connecting head; and

a vibration group connected to the holding group and the air intake group and having

a main shaft connected to the connecting sleeve and being opposite to the handle, extended into the outer shell, and having a fixing head disposed on a bottom end of the main shaft; and

a vibrating cylinder slidably mounted around the main shaft, mounted in the outer shell, and having an outer external surface non-contacted with an internal surface of the outer shell;

wherein the air inlet communicates with the air outlet via the mounting recess when the trigger is pressed.

2. The pneumatic extraction device as claimed in claim 1 , wherein the connecting sleeve has

a vent pipe; and

two mounting rings respectively disposed on two ends of the vent pipe, one of the two mounting rings mounted around the connecting head and communicating with the connecting head, and the other one of the two mounting rings mounted around the main shaft and communicating with the main shaft.

3. The pneumatic extraction device as claimed in claim 1 , wherein the vibrating cylinder has

an outer jacket slidably mounted around the main shaft and having

a bottom mount disposed on a bottom of the outer jacket and slidably mounted around the main shaft;

a top cover disposed on a top of the outer jacket; and

an air chamber formed in the outer jacket between the bottom mount and the top cover; and

a ventilating seat mounted securely on a top end of the main shaft and disposed in the air chamber between the bottom mount and the top cover to allow compressed air in the main shaft to flow between the ventilating seat and the top cover and between the ventilating seat and the bottom mount to enable the outer jacket to move relative to the main shaft and the ventilating seat in the outer shell for providing a vibrating force to the main shaft.

4. The pneumatic extraction device as claimed in claim 2 , wherein the vibrating cylinder has

an outer jacket slidably mounted around the main shaft and having

a bottom mount disposed on a bottom of the outer jacket and slidably mounted around the main shaft;

a top cover disposed on a top of the outer jacket; and

an air chamber formed in the outer jacket between the bottom mount and the top cover; and

a ventilating seat mounted securely on a top end of the main shaft and disposed in the air chamber between the bottom mount and the top cover to allow compressed air in the main shaft to flow between the ventilating seat and the top cover and between the ventilating seat and the bottom mount to enable the outer jacket to move relative to the main shaft and the ventilating seat in the outer shell for providing a vibrating force to the main shaft.

5. The pneumatic extraction device as claimed in claim 3 , wherein the ventilating seat has

multiple lower through holes formed through a bottom of the ventilating seat at spaced intervals and surrounding the main shaft;

multiple upper through holes formed through a top of the ventilating seat at spaced intervals, respectively aligning with the lower through holes, and communicating with the air chamber of the outer jacket;

multiple toggle levers movably disposed in the ventilating seat, each one of the toggle levers mounted in one of the lower through holes and a corresponding one of the upper through holes, and each toggle lever having at least one washer mounted around the toggle lever and selectively shielding the corresponding lower through hole and the corresponding upper through hole; and

a communicating hole formed through the bottom of the ventilating seat and communicating with the main shaft.

6. The pneumatic extraction device as claimed in claim 4 , wherein the ventilating seat has

multiple lower through holes formed through a bottom of the ventilating seat at spaced intervals and surrounding the main shaft;

multiple upper through holes formed through a top of the ventilating seat at spaced intervals, respectively aligning with the lower through holes, and communicating with the air chamber of the outer jacket;

multiple toggle levers movably disposed in the ventilating seat, each one of the toggle levers mounted in one of the lower through holes and a corresponding one of the upper through holes, and each toggle lever having at least one washer mounted around the toggle lever and selectively shielding the corresponding lower through hole and the corresponding upper through hole; and

a communicating hole formed through the bottom of the ventilating seat and communicating with the main shaft.

7. The pneumatic extraction device as claimed in claim 1 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

8. The pneumatic extraction device as claimed in claim 2 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

9. The pneumatic extraction device as claimed in claim 3 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

10. The pneumatic extraction device as claimed in claim 4 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

11. The pneumatic extraction device as claimed in claim 5 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

12. The pneumatic extraction device as claimed in claim 6 , wherein the handle, the at least one connecting arm, and the outer shell are formed as a single piece.

Continuity (1)
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References Cited (13)
US 2730073A · Leavell · 1956 [cited by applicant]
US 6443675B1 · Kopras et al. · 2002 [cited by applicant]
US 10179400B2 · Furusawa · 2019 [cited by examiner]
US 20200230795A1 · Carlson · 2020 [cited by examiner]
US 20210387318A1 · Ueda · 2021 [cited by applicant]
US 20220388138A1 · Hale et al. · 2022 [cited by applicant]
US 20240217079A1 · Liaw · 2024 [cited by examiner]
US 20240351180A1 · Eardley · 2024 [cited by examiner]
CN 211863498U · 2020 [cited by applicant]
EP 1125698A2 · 2001 [cited by applicant]
FR 2152482A1 · 1973 [cited by applicant]
IT RM20150199A1 · 2016 [cited by applicant]
TW I647077B · 2019 [cited by applicant]