HANDLE FOR A CONCRETE SCREED BLADE
20180202175 ยท 2018-07-19
Inventors
Cpc classification
E01C19/44
FIXED CONSTRUCTIONS
E01C19/187
FIXED CONSTRUCTIONS
International classification
Abstract
A manual screed assembly has a screed bar assembly, a release assembly releasably coupled to the screed bar assembly, and a handle assembly releasably secured to the quick release assembly.
Claims
1. A manual screed assembly comprises a screed bar assembly, a quick release assembly releasably coupled to the screed bar assembly, the quick release assembly permitting the removal of the quick release assembly from the screed bar assembly without the use of tools, and a handle assembly releasably secured to the quick release assembly, the quick release assembly configured to release the handle assembly to allow the orientation of the handle assembly relative to the quick release assembly to be adjusted without the use of tools.
2. The manual screed assembly of claim 1, wherein the manual screed assembly comprises supports for supporting weights over the screed bar assembly to vary the downforce applied to the screed bar assembly.
3. The manual screed assembly of claim 1, wherein the quick release assembly is clamped to the screed bar assembly.
4. The manual screed assembly of claim 3, wherein the quick release assembly is clamped to the screed bar assembly by lever screws.
5. The manual screed assembly of claim 4, wherein the quick release assembly includes a plurality of slots that engage the lever screws when the lever screws are engaged with the screed bar assembly.
6. The manual screed assembly of claim 5, wherein the handle assembly includes a crossbar that is engaged with the quick release assembly, the crossbar positioned in at least one clamp that is manually adjustable, without the use of tools, to clamp the handle assembly relative to the quick release assembly.
7. The manual screed assembly of claim 1, wherein the handle assembly includes a crossbar that is engaged with the quick release assembly, the crossbar positioned in at least one clamp that is manually adjustable, without the use of tools, to clamp the handle assembly relative to the quick release assembly.
8. The manual screed assembly of claim 1, wherein the quick release assembly comprises a plurality of support bases for supporting weights over the screed bar assembly to vary the downforce applied to the screed bar assembly.
9. The manual screed assembly of claim 8, wherein the support bases are configured to removably receive additional supports to extend upwardly from the support bases to increase the capacity of the number of weights that may be position on the quick release assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The detailed description particularly refers to the accompanying figures in which:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE DRAWINGS
[0023] A manual screed assembly 10, shown in
[0024] The quick connect assembly 14 solves multiple problems resulting in improved efficiency in the screeding process. First, the quick connect assembly 14 permits the handle assembly 12 to be quickly connected to or removed from the screed bar 16, allowing the user to quickly break down the screed assembly 10 for transport, or to use the same handle assembly 12 for different configurations of a screed bar, other than screed bar 16, as will be discussed in further detail below. Second, the quick connect assembly 14 is configured to permit the user to adjust handle assembly 12 through rotation about an axis 24, without the use of tools. By changing the pitch of handle simile 12 about the axis 24, a user may adjust the handle assembly 12 and adapt it for the preferences of the particular user and a particular application. Finally, quick connect assembly 14 is configured to permit a user to add one or more weights 26 to the screed assembly 10 to increase the down pressure applied to the lower surface 22 of the screed bar 16. This allows a user to adapt the screed assembly 10 to a particular application. For example, a hired density or viscosity material being moved by the screed assembly 10 may require more downforce 28 that a material that has a lower density or lower viscosity.
[0025] The handle assembly 12 includes a frame 30 is formed to include a crossbar 32 that is gripped by a pair of clamp assemblies 34, 36 of the quick connect assembly 14. A first arm 38 extends from the crossbar 32 to form the right hand handle 20. A second arm 40 extends from the crossbar 32 to form the left-hand handle 18. The first arm 38 and second arm 40 are secured together by a crossbeam 42 that provides rigidity to the handle assembly 12. A leg 44 is secured to the second arm 40 by a clamp 46. The user utilizes a grip 48 to loosen or tighten the clamp 46 and adjust the position of the leg 44 relative to the second arm 40. The leg 44 may be adjusted to an out-of-the-way position during use of the screed assembly 10, and placed in the position shown in
[0026] Referring now to
[0027] Referring now to
[0028] The quick connect assembly 14 includes a bracket 90 with legs 92, 94. Each leg 92, 94 is formed to include a respective slot 96, 98 which is received on a respective shaft 100, 102 of the respective lever screws 60, 58 the shafts 100, 102 are each threaded and pass through the H-bracket 76 with a respective nut 104, 106 being received on the shafts 100, 102. The lever screws 60, 58 include flanges 108, 110 that engage respective washers 112 114 which are positioned between the flanges 108, 110 and the respective legs 92, 94. The lever screws 60, 58 each include a handle on her 16, 118 which permit a user to rotate the lever screws 60, 58 as the shafts 100, 100 to engage the nuts 104, 106 to clamp the bracket 90 to the H-bracket 76. The lever screws 60, 58 are configured to permit a user to develop enough torque to manually secure the bracket 90 to the H-bracket 76 without the need for tools.
[0029] The quick connect assembly 14 further includes a pair of bolts 124, 126 that passed through the bracket 90 and secure the bases 62, 62 of the respective clamp assemblies 36, 34 to the bracket 90. Each bolt 124, one or 26 secured by respective nut 128, 130. The shaft of each bolt 124, 126 extends into an opening 132 formed in the grip 64 of each clamp assembly 36, 34. The bracket 90 is formed to include two arms 120, 122 which support respective weld nuts 134, 136 that are secured to the arms 120, 122 respectively. A shaft 138 of each clamp screw 66 is received in the weld nuts 134, 136. Each clamp screw 66 includes a handle 140 which a user may actuate manually to draw the respective grip 64 closer to the respective base 62 to increase a clamping force exerted on the crossbar 32.
[0030] Referring now to
[0031] Referring again now
[0032] In another embodiment of manual screed assembly 210, the handle assembly 12 and quick connect assembly 14 are secured to a screed bar assembly 216. The screed bar assembly 216 includes an L-shaped bracket 218 that is secured to an implement 220. The bracket 90 of the quick connect assembly 14 is supported on the shafts 100, 102 of the lever screws 58, 60 and clamped to the L-shaped bracket 218 in the manner described above with regard to the embodiment of
[0033] Referring now to
[0034] The manipulator 412 includes a bracket 144 that permits the attitude of a cup 428 to be adjusted about an axis 430 to change the relative angle between a handle 406 relative to the implement 420. A base 432 is secured to a plate 434 of the elevator bracket 408. The elevator bracket 408 has two notches 436, 438 that are received on respective lever screws 60, 58 on the respective quick-release supports 410, 410. The lever screws 60, 58 clamp the elevator bracket 408 to the supports 410, 410. The elevator bracket 408 is formed to include two support bases 72, 74 to support the weight 26. Similar to the embodiments of
[0035] Although certain illustrative embodiments have been described in detail above, variations and modifications exist within the scope and spirit of this disclosure as described and as defined in the following claims.