Tamping tool
A tamp having replaceable tamp plates which, when operatively coupled to a tamp handle, can rotate relative to the tamp handle, or a longitudinal axis of the tamp handle, when in use to better allow a tamp plate surface to conform to the material being tamped, while allowing the handle to be more easily maintained in an orientation desired by the user and while reducing or absorbing shock. The tamp may also include “dead blow” material such as steel shot or the like to improve the inertia, efficiency and impact of the tamp as it is being utilized, while reducing recoil effects.
1. A tamper tool assembly comprising:
a tamp handle having a first end and a second end, and defining an aperture in the first end; and
a tamp head comprising a receiver, the receiver defining a receiver cavity configured to receive the first end of the tamp handle and defining a receiver aperture;
whereby the receiver is coupled to the tamp handle near the first end by providing a connection member through the receiver aperture and into the aperture in the first end of the tamp handle; and
whereby a cross sectional dimension of the receiver aperture is oversized relative to a cross section dimension of the connection member to help allow the tamp handle to move, rotate or articulate in any direction relative to the receiver.
2. The tamper tool assembly of claim 1 , wherein the tamp handle defines a tamp handle cavity therein and flowable material is retained in the tamp handle cavity.
3. The tamper tool assembly of claim 1 , whereby the tamp handle is provided in the receiver cavity in a spaced relation to one or more cavity walls helping define the cavity, and attached to the receiver; whereby a dampening transition member is provided between the one or more cavity walls and the tamp handle; and whereby the spaced relation and the dampening transition member provided between the tamp handle and one or more cavity walls also allows the tamp head to move, rotate or articulate in any direction relative to the tamp handle.
4. The tamper tool assembly of claim 2 , wherein the flowable material is metal shot.
5. The tamper tool assembly of claim 1 , wherein the tamp handle is configured to move, rotate or articulate up to ten degrees relative to the receiver in response to impact of the tamp head with material being tamped.
6. A tamper tool assembly comprising:
a tamp head having a first surface and a second surface, and a receiver coupled to the first surface;
an elongated tamp handle, provided in a cavity in the receiver in a spaced relation to one or more cavity walls helping define the cavity, and coupled to the receiver; and
a dampening transition member provided between the one or more cavity walls and the tamp handle;
whereby the spaced relation and the dampening transition member provided between the tamp handle and one or more cavity walls allow the tamp head to move, rotate or articulate in any direction relative to the tamp handle while remaining coupled to the tamp handle.
7. The tamper tool assembly of claim 6 , whereby the tamp handle is attached to the receiver by providing a connection pin through an aperture in the cavity wall of the receiver and an aperture defined in the tamp handle; and whereby at least one of the aperture are sized and/or shaped to maintain a sloppy fit with the connection pin, the sloppy fit allowing movement, rotation or articulation of the tamp head relative to the tamp handle in any direction, and allowing the tamp handle to contact the tamp head before any contact with the connection pin in response to impact of the tamp head with material being tamped.
8. The tamper tool assembly of claim 6 , wherein the tamp handle defines a tamp handle cavity therein and flowable material is retained in the tamp handle cavity.
9. The tamper tool assembly of claim 6 , wherein the tamp head is configured to move, rotate or articulate up to ten degrees relative to the tamp handle in response to impact of the tamp head with material being tamped.
10. The tamper tool assembly of claim 8 , wherein the flowable material is metal shot.
11. A tamper tool assembly comprising:
a tamp head having a first surface and a second surface, and a receiver coupled to the first surface; and
an elongated tamp handle provided in a cavity defined in the receiver and coupled to the receiver with a connection pin provided through receiver apertures defined in the receiver and one or more handle apertures defined in tamp handle;
whereby the handle apertures are sized and/or shaped to maintain a sloppy fit with the connection pin, the sloppy fit allowing movement, rotation or articulation of the tamp head relative to the tamp handle in substantially any direction, and allowing the tamp handle to contact the tamp head before any contact with the connection pin in response to impact of the tamp head with material being tamped.
12. The tamper tool assembly of claim 11 , wherein the tamp head is configured to move, rotate or articulate up to ten degrees relative to the tamp handle in response to impact of the tamp head with material being tamped.
13. The tamper tool assembly of claim 11 , whereby the tamp handle is provided in the cavity defined in the receiver in a spaced relation to one or more cavity walls helping define the cavity; whereby a dampening transition member is provided between the one or more cavity walls and the tamp handle; and whereby the spaced relation and the dampening transition member provided between the tamp handle and one or more cavity walls also allows the tamp head to move, rotate or articulate in any direction relative to the tamp handle.
14. The tamper tool assembly of claim 11 , wherein the tamp handle defines a tamp handle cavity therein and flowable material is retained in the tamp handle cavity.
15. The tamper tool assembly of claim 14 , wherein the flowable material is metal shot.