Metso Minerals Industries, Inc. v. Johnson Crushers International, Inc.

866 F. Supp. 2d 1024, 2011 U.S. Dist. LEXIS 136305, 2011 WL 5907886
District Court, E.D. Wisconsin·Decided November 28, 2011·No. Case No. 10-C-0951·Published

Opinion

DECISION AND ORDER

LYNN ADELMAN, District Judge.

John Crushers International, Inc. and Astee Industries, Inc. (together, “JCI”) claim that Metso Minerals Industries, Inc. and Metso Minerals (France) S.A. (together “Metso”) have infringed U.S. Patent No. 6,032,886 (the “'886 patent”). The present opinion contains my claim construction. I also address Metso’s motion for summary judgment of non-infringement and invalidity.

I. BACKGROUND

The invention relates to cone-type rock crushers, which are devices used to crush large-sized rock (such as from a quarry) into small-sized rock (for use in things like road beds). In a typical crushing operation, large rocks are dumped into a hopper at the top of the crusher. Gravity causes the rocks to drop into an area of the crusher that is between a cone and a cone-[1027]*1027shaped bowl. The bowl is above the cone, and the bowl and the cone form a convex-concave relationship. The cone gyrates beneath the stationary bowl, and thus large rocks in the space between the cone and the bowl are crushed between the surfaces of the cone and the bowl. The smaller rocks then drop out of the bottom of the crusher. To better visualize this process, it would help to watch the animation of a rock-crushing operation that JCI submitted at the Markman hearing.1 The figure below is a screenshot from that animation.

[[Image here]]

Because the operator of a rock crusher will want to make small rocks of different sizes (one inch, an inch-and-a-half, etc.) depending on the job, it is important to be able to adjust the spacing between the bowl and the cone. The spacing is usually adjusted by vertically moving the bowl closer to or farther away from the cone. Smaller rocks are produced by moving the bowl closer to the cone. Larger rocks are produced by moving the bowl farther away from the cone.

In the types of rock crushers at issue in the present case, the bowl is moved by screwing it up or down, as follows: Although the crushing surface of the bowl is bowl-shaped, the “outside” of the bowl is a cylinder. The surface of the cylinder is covered with screw threads, and these threads are mated to screw threads on the surface of a ring-shaped bowl support.2 The bowl support is part of the frame of the rock crusher and does not move. To move the bowl, the bowl is either screwed into the ring-shaped bowl support or unscrewed out of the support. One can envision the bowl as the threaded part of a screw and the bowl support as a nut. [1028]*1028Screwing the bowl into the bowl support causes the bowl to move downward and closer to the cone. Unscrewing the bowl out of the bowl support causes the bowl to move upward and away from the cone.

Although an operator will want to be able to move the bowl closer to or farther away from the cone between crushing operations, during a crushing operation the operator will want the bowl to remain stationary. This is because if the bowl moves up or down during the operation, the size of the rock will be inconsistent. Thus, the crusher must be equipped with a mechanism that “locks” the bowl into place during crushing operations. When the operation is over, the operator must be able to release the lock so that he or she can move the bowl as needed for the next operation.

The relevant claims of the '886 patent relate to a mechanism that performs the locking function. The general mechanism can be described as a lock ring. It is a ring that sits on top of the ring-shaped bowl support. Like the surface of the bowl support, the surface of the lock ring has threads mated to the threads on the outside surface of the bowl. Inside the lock ring is a hydraulic cylinder, which consists of a piston and a chamber. A ring-shaped groove formed into the lock ring serves as the chamber for a ring-shaped piston. The bottom of the piston abuts the upper surface (or rim) of the bowl support. When the operator wants to lock the bowl in place, hydraulic fluid is provided to the upper part of the chamber inside the lock ring, and hydraulic pressure forces the piston downward against the rim of the bowl support. This produces an equal and opposite force that drives the lock ring upward. The threads of the lock ring thus push up against the threads of the bowl, and the result of the threads pushing against each other is a binding lock that prevents the bowl from moving during operation. (In the preferred embodiment, the lock-ring threads push against inserts that have been inserted between the lock-ring threads and the bowl threads.) When the operation is over, hydraulic pressure is released, and this allows the bowl to be moved in preparation for the next job. JCI’s animation demonstrates this process, and the figure below depicts the lock ring in the “locked” position.

[1029]*1029[[Image here]]

II. RELEVANT CLAIM LANGUAGE

JCI alleges that Metso infringes claims 8 and 9 of the '886 patent, which are printed below. The disputed claim language is underlined.

8. A rock crusher comprising:
a conical shaped bowl, a cone mounted for oscillating movement within the conical shaped bowl, said bowl being vertically adjustable relative to the cone for crushing rock to specific sizes; a frame including an annular bowl support, said bowl adjustably supported within said annular bowl support for vertical adjustment of the bowl relative to the cone;
said vertical adjustment provided by mated screw threads on said support and said bowl whereby the bowl is screwed up or down on the support and thereby closer or farther away from said bowl;
an annular lock ring having a screw thread mated to the bowl and screwed onto the bowl and defining an annular surface in abutment with an annular surface of the support;
an annular chamber provided in one of the lock ring and bowl support and an annular piston fitted to the chamber, said piston providing the abutment surface for one of said lock ring and bowl support; and
a hydraulic fluid source providing hydraulic fluid to the chamber, and a control for controlling the hydraulic fluid floiv to the chamber for urging movement of the annular piston toward the surface of the other of the lock ring and support and thereby producing a binding-type lock that inhibits screw movement of the bowl.
9. A rock crusher as defined in claim 8 wherein the piston is provided with a seal portion between the piston and hydraulic fluid and expands under pressure to seal the chamber and induces movement of the piston against the other of the lock ring and bowl support.

[1030]*1030III. DISCUSSION

A. Principles of Claim Construction

A United States patent generally consists of a “specification,” along with one or more drawings. See Kristen Osenga, Linguistics and Patent Claim Construction, 38 Rutgers L.J. 61, 63-82 (2006). The specification consists of a written description of the invention and concludes with one or more “claims.” See 35 U.S.C. § 112.

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Metso Minerals Industries, Inc. v. Johnson Crushers International, Inc., 866 F. Supp. 2d 1024, 2011 U.S. Dist. LEXIS 136305, 2011 WL 5907886 (E.D. Wis. 2011).

866 F. Supp. 2d 1024 (Metso Minerals Industries, Inc. v. Johnson Crushers International, Inc.) — published by Counsel Stack Legal Research, free access to 12M+ legal documents.

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