F. W. Myers & Co. v. United States

37 Cust. Ct. 256
United States Customs Court·Decided December 13, 1956·No. C. D. 1832·Published·Cited by 7 cases

Opinion

Lawrence, Judge:

So-called “protective cream dispensers” were classified by the collector of customs as articles wholly or in chief value of metal in paragraph 397 of the Tariff Act of 1930 (19 U. S. C. § 1001, par. 397), as modified by the General Agreement on Tariffs and Trade, 82 Treas. Dec. 305, T. D. 51802, and duty was imposed thereon at the rate of 22% per centum ad valorem.

Plaintiff claims that the subject merchandise should be classified as “machines” in paragraph 372 of said act (19 U. S. C. § 1001, par. 372), as modified by the Torquay protocol to said general agreement, 86 Treas. Dec. 121, T. D. 52739, and subjected to duty at the rate of 13% per centum ad valorem.

[257] The competing provisions of the statutes above referred to read, so far as pertinent here, as follows:

Paragraph 397, as modified, supra—

Paragraph 372, as modified, supra-

At the trial, the above two protests were consolidated for hearing. The only witness in the case, Robert J. Marra, was called on behalf of the plaintiff. The substance of his testimony is that he is a chemical engineer and assistant plant manager of the plaintiff company. He identified a sample of the machine, which was received in evidence [258] as exhibit 1, and also a blueprint of exhibit 1, which was received in evidence as exhibit 2.

In describing the characteristics and uses of exhibit 1, the witness stated that the article is installed on the wall of an industrial plant. The main body of the article is filled with so-called “barrier cream,” also lmown as “Kerodex,” which, when in use, places a film on the hands of laborers in the plants to prevent oil, grease, or chemical material from coming in contact with the skin.

With the aid of exhibits 1 and 2, the witness described in detail the manner in which the article functions:

The drawing [exhibit 2] represents a oross-seetion through the bottom of the machine, which is the main operating portion. Referring to the print, a piston is formed in the bottom section which travels in a cylinder and that piston consists of Part “A” which is the inlet valve cap screw, Part “B” which is the inlet valve face, part “C” which is an inlet valve flapper.
Now all those parts put together comprise a piston which travels in the main section of Part “F” which is the container.
* * * as energy is applied to this device by the hand, to Part “H” which is the activating handle and nozzle, the piston travels in the cylinder creating a partial vacuum underneath the piston which causes the flapper, “C”, to be pulled down from Part “B”, the inlet valve face, and cream flows from the main part of the container, under the valve face into the evacuated area. At the same time Part “E” the discharge port body travels upward and exposes Part “I”, which is an inlet port. The energy which has been applied to “H” not only causes the cream to flow in to the evacuated area, but it stores up potential energy in the part, “G” which is the nozzle plunger spring. When the manual energy is renewed when the hand is taken away from the device, the energy stored up in Part “G” is released, pushing part “H” down and then Part “C” the inlet valve flapper closes off the inlet valve face and forces the cream through Part “I” down through the port body and on to the hand. That in brief is the operating principle of the machine.

When asked if the device has any movable parts, the witness replied:

The parts that comprise the piston which I have already described as parts A B D, and also C, the discharge port body, "E” and the spring “G”, the nozzle plunger spring.

All of the parts above described are, according to the witness, essential to the functioning of the device.

In explaining how the article, represented by exhibit 1, utilized energy, the witness replied:

The manual energy applies to the machine, applied to the machine, does two things; first, it creates a vacuum, a partial vacuum, under the piston which draws cream into the cylinder and, secondly, it stores up the kinetic energy which is applied to the nozzle plunger spring and stores up potential energy in that spring and when the kinetic energy is removed in the form of manual energy, the spring releases the energy and causes the cream to be removed through the port.

Further, the witness stated that “the potential energy stored up in the spring transmits motion to the piston, which causes cream to be ejected from the mechanism.”

[259] With respect to the nozzle plunger, the witness stated that it is merely an activating handle and, from that point, the device operates automatically.

The factual record is not rebutted nor contradicted in any way, and it is upon the facts disclosed by the record that plaintiff claims that the device is definitely a machine for tariff purposes, upon the authority of H. T. Kennedy Co., Inc., and Daniel F. Young, Inc. v. United States, 33 Cust. Ct. 68, C. D. 1637. That case related to a device known as an “Aladdin rail lubricator.” From an examination of that case, it appears that the device consisted of a hollow cylinder, from the bottom of which extended a curved spout or tube ending-in a flanged opening with an adjustable tongue to control the-size of the aperture. The mechanism was firmly clamped to the underside of a railroad rail between the ties, so that the lubricator was free of any contact with the ground. The hollow cylinder and spout were loaded with grease. The lubricator, then ready for use, was activated by the vertical motion imparted to the rail by the downward force exerted by each wheel of a train passing over the rail at the point where the lubricator was bolted to the rail. The upward and downward motion of the rails, when passed over by a train, was utilized, applied, or transmitted by virtue of the mechanical construction of the lubricator, causing it to apply lubrication to the flanges of the wheels of a passing train which, in turn, transferred the oil or grease to the edges of the rails on curved sections of railroad tracks in order to reduce friction and wear.

In the Kennedy case, supra, we cited the definition of a machine set forth in Simon, Buhler & Baumann (Inc.) v. United States, 8 Ct. Cust. Appls. 273, T. D. 37537, which reads as follows:

* * * a mechanical contrivance for utilizing, applying, or modifying energy or force or for the transmission of motion * * *.

We then referred to United States v. Guth Stern & Co., Inc., 21 C. C. P. A. (Customs) 246, T. D. 46777, wherein our appellate court pointed out that a careful analysis of the Simon case—

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F. W. Myers & Co. v. United States, 37 Cust. Ct. 256 (cusc 1956).

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