IP Library Granted Patent US 12667228
Granted Patent B2
US 12667228 · App. 17/959,802 · Granted Jun 30, 2026

Quick release attachment mechanism on a stand mixer

Inventors: Matthew R. Hunter (Louisville, KY); Joseph Mazzella (Flushing, NY)
Assignee: Haier US Appliance Solutions, Inc.
A47J43/0711
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Quick Facts
Patent No.
US 12667228
App. No.
17/959,802
Granted
Jun 30, 2026
Kind
B2
Abstract

A quick release attachment mechanism to releasably join a stand mixer drivetrain to an attachment insert. The mechanism includes one or more retaining balls to axially fix the attachment insert in the assembly and a plurality of cooperating walls to fix the attachment insert against rotational displacement.

Claims (41)

1 . An attachment assembly on a stand mixer, the attachment assembly comprising:

a body having a distal end with a shank portion and a proximal end with a receiving portion, the receiving portion including at least a first wall defining an insert receiving cavity, the first wall having a first through hole formed radially therethrough;

an outer retainer disposed around an outside surface of the receiving portion and supported for axial displacement;

a shield arranged in the receiving portion and supported for axial displacement between a first position and a second position distal to the first position; and

a retaining ball received within the first through hole for displacement between an unloaded position and a loaded position;

a post having a head at a proximal portion, wherein the head restrains axial displacement of the shield in a proximal direction at the first position,

wherein the shield in the first position radially supports the retaining ball in the unloaded position and the retaining ball moves radially inward to the loaded position when the shield is in the second position.

2 . The attachment assembly of claim 1 , wherein an outside surface of the receiving portion is cylindrically shaped and an inner surface of the outer retainer is cylindrically shaped to slidingly engage with the outside surface of the receiving portion.

3 . The attachment assembly of claim 2 , wherein the inner surface of the outer retainer has a first diameter at a proximal portion and a second diameter at a distal portion, the first diameter being smaller than the second diameter.

4 . The attachment assembly of claim 3 , wherein a transition area is provided between the first diameter at the proximal portion and the second diameter at the distal portion.

5 . The attachment assembly of claim 3 , wherein the shield in the first position radially biases the retaining ball against the second diameter.

6 . The attachment assembly of claim 2 , further comprising an outer resilient member biasing the outer retainer towards the distal end of the body.

7 . The attachment assembly of claim 6 , wherein the outer resilient member is constrained between a lip on the outside surface of the body and a spring retainer at the distal end of the outer retainer.

8 . The attachment assembly of claim 1 , the post further comprising an external thread at a distal portion to meshingly engage with a set of internal threads in the body.

9 . The attachment assembly of claim 1 , further comprising an inner resilient member biasing the shield against the head when the shield is in the first position.

10 . The attachment assembly of claim 1 further comprising a plurality of walls defining the insert receiving cavity.

11 . The attachment assembly of claim 10 wherein an outer perimeter of the shield is a polygon comprised of a plurality of sides matching the plurality of walls of the insert receiving cavity.

12 . The attachment assembly of claim 10 wherein the insert receiving cavity comprises six walls.

13 . The attachment assembly of claim 1 wherein the retaining ball is spherical.

14 . The attachment assembly of claim 1 , wherein the shank portion, the receiving portion, and the outer retainer are axially aligned.

15 . The attachment assembly of claim 1 , wherein the receiving portion further comprises a second wall defining the insert receiving cavity, the second wall having a second through hole formed therethrough.

16 . The attachment assembly of claim 15 , wherein the first through hole receives a first retaining ball and the second through hole receives a second retaining ball, each retaining ball received for displacement between an unloaded position and a loaded position.

17 . The attachment assembly of claim 15 , wherein the first through hole and the second through hole are diametrically opposed.

18 . An attachment assembly on a stand mixer, the attachment assembly comprising:

a body having a distal end with a shank portion and a proximal end with a receiving portion, the receiving portion including six cavity walls defining an insert receiving cavity, a first cavity wall having a first through hole formed therethrough and a second cavity wall having a second through hole formed therethrough;

an outer retainer disposed around an outside surface of the receiving portion and supported for axial displacement;

a shield arranged in the insert receiving cavity and supported for axial displacement between a first position and a second position distal to the first position;

a first retaining ball received within the first through hole for displacement between an unloaded position and a loaded position; and

a second retaining ball received within the second through hole for displacement between an unloaded position and a loaded position,

wherein the shield in the first position radially supports the first and second retaining balls in the unloaded position,

wherein an outside surface of the receiving portion is cylindrically shaped and an inner surface of the outer retainer is cylindrically shaped to slidingly engage with the outside surface of the receiving portion, and

wherein an outer resilient member biases the outer retainer towards the distal end of the body.

19 . The attachment assembly of claim 18 , wherein the first cavity wall and the second cavity wall are diametrically opposed.

20 . An attachment assembly on a stand mixer, the attachment assembly comprising:

a body having a distal end with a shank portion and a proximal end with a receiving portion, the receiving portion including at least a first wall defining an insert receiving cavity, the first wall having a first through hole formed radially therethrough;

an outer retainer disposed around an outside surface of the receiving portion and supported for axial displacement;

a shield arranged in the receiving portion and supported for axial displacement between a first position and a second position distal to the first position; and

a retaining ball received within the first through hole for displacement between an unloaded position and a loaded position,

wherein the shield in the first position radially supports the retaining ball in the unloaded position and the retaining ball moves radially inward to the loaded position when the shield is in the second position,

wherein an outside surface of the receiving portion is cylindrically shaped and an inner surface of the outer retainer is cylindrically shaped to slidingly engage with the outside surface of the receiving portion, and

wherein an outer resilient member biases the outer retainer towards the distal end of the body.