Crawford Overhead Door Co. v. Addison

504 S.W.2d 587, 1973 Tex. App. LEXIS 3023
CourtCourt of Appeals of Texas
DecidedDecember 27, 1973
DocketNo. 7507
StatusPublished
Cited by2 cases

This text of 504 S.W.2d 587 (Crawford Overhead Door Co. v. Addison) is published on Counsel Stack Legal Research, covering Court of Appeals of Texas primary law. Counsel Stack provides free access to over 12 million legal documents including statutes, case law, regulations, and constitutions.

Bluebook
Crawford Overhead Door Co. v. Addison, 504 S.W.2d 587, 1973 Tex. App. LEXIS 3023 (Tex. Ct. App. 1973).

Opinion

DIES, Chief Justice.

In April 1967 an overhead door at Industrial Towel & Uniform Company fell severing plaintiff’s left thumb. Plaintiff Eddie Addison brought suit for damages against Eugene Lee Crossland, d/b/a Hollywood-Crawford Door Sales (hdreafter called Crossland) and the Crawford Door Company, Inc. (hereafter called Door Company), alleging various acts of negligence on each part.

The overhead door was secured by a wire cable which passed through a bracket and under a wedge. Tension on the cable forced the wedge into a “lip,” which was intended to prevent the cable from slipping.

The case was tried to a jury which found that the lip of the bracket on the door was not of sufficient strength by construction to prevent it from releasing the wedge and cable (S.I. No. 2); that this was negligence and a proximate cause of the incident complained of; that Door Company failed to design the bracket with a device which would have prevented the cable from releasing from said bracket (S. I. No. S) ; but they failed to find this was negligence (S.I. No. 6). They did, however, find that “such negligence, if any, on the part of the defendant, Crawford Door Company, Inc., to design the bracket with a device which would have prevented the said cable from releasing from said bracket,” was a proximate cause of the accident (S.I. No. 7). The jury failed to find that Door Company “failed to design the bracket with a device which would have prevented the said cable from releasing from said bracket . . . rendered said bracket not reasonably fit for the purposes for which it was intended” (S.I. No. 8). They also found that Door Company “distributed the bracket installed on the door in question which did not include some mechanism or apparatus to prevent the end of the cable that passed between the wedge and lip from slipping between these parts” (S.I. No. 10); that this was negligence and a proximate cause of the incident complained of.

The jury found that Crossland failed to place a larger size Crawford bracket on the overhead door in question the day before the accident (S.I. No. 32), but failed to find that this was negligence.

The jury also found that Door Company failed to warn Crossland “that a door of the type in question required a larger size Crawford bracket” (S.I. No. 36), but failed to find that this was negligence.

The court entered judgment (a) for plaintiff against Door Company; (b) that plaintiff recover nothing from Crossland; (c) that Door Company recover nothing on its cross-action against Crossland. It is from this judgment Door Company has perfected this appeal.

Door Company’s points of error are briefed in' two sections. The first twenty points complain of the findings to S.I. Nos. 2, 3, and 4 (that the lip of the bracket on the door was not of sufficient strength by construction to prevent it from releasing the wedge and cable) as being supported by no evidence or insufficient evidence.

The only evidence to explain the failure involved came from plaintiff’s witness, W. B. West, Jr., who qualified as an expert:

“Q All right, sir. What happens if the cable, under a live load, is not attached as you have said, but the free end is left and a wedge is driven, as you have testified, into that bracket; what happens then ?
“A In this case the wedge is held by the friction or forces forcing the wedge into a smaller area. Under a steady load this is fine, but under your live load, your moving load, the cable is tight, it occilates [sic] like a guitar string and these movements continue to move the wire to one side of the wedge if there is any side play at all, and if these forces are released for a split second it will slip out.
[589]*589‘Q All right, now look at this bracket, please, and examine in that particular area, please, where the wedge was put in there. Do you see any evidence of slippage ?
‘A Yes, sir.
‘Q Would you be kind enough to show it to the jury, please, sir?
‘A The original design, of course, as shown by the damage next to it is that both sides should be curled down and form the same channel for the wedge to fit on it. You see on one side it is deformed and rolled up and opened up the opening. The distance from this side of the cavity is quite critical because we have a wedge that fits inside and the rope must pass through and keep pressing against this wedge and the wedge must stay in position in order for it to maintain its integrity. This bracket was originally built with both sides the same, the left and right, either way. It is important that these retain their dimension because the distance from here to here ... is quite important because the wedge must fit in here quite tight. If the wedge ever moves then the wire will come out.
# ⅝ ⅜ ⅝ J(C
‘Q The design of the lip and the wedge part to hold the cable, is that a proper design to that particular phase of that bracket?
‘A No, sir.
‘Q Why not ?
‘A Even on a dead steady load the efficiency of this type fastener would have been vastly improved had the face of this wedge against which the round cable bears — we have a round cable bearing against a flat edge of a wedge or cam. This could have been formed with a concave surface so that it would tend to center the wire rope across the
center of the wedge and prevent it from coming out to the side. This is done on all cable hoists where there is heavy loads on a drum winding up on a cable.
* * * * * *
“Q All right, sir. So far as the strength of the bracket, the size of it and so forth, you have no quarrel with that, do you ?
“A No, sir.
⅜ ⅜: ⅜ ‡ jjc ⅝
“Q While a door is hanging with the type cable and wedge and bracket tension on the cable, what is happening to the wedge and to that lip?
“A The tension is fluctuating on the cable and it is the round side of this cable that is bearing against this flat edge of the wedge and is pulling the wedge toward the cable and forcing the sides of the wedge against these retaining lips. If, so long as the cable stays in the center of the working surface of the wedge.
* * * * * *
“Q Could anything have been added to the wedge or done to the wedge in order to help secure this cable lip?
“A Yes, sir.
“Q Such as what ?
“A Set screws, simple set screws to hold it in position.
“Q Okay, what else ?
“A They could have designed the working edge of the wedge to have a concave surface rather than a flat surface so that the round edge would tend to stay centered on the working phase of this wedge.
* ⅜: * ⅜ * *
“Q And, of course, the bending of that side opens up this lip and allows this wedge to slide out of its normal position ?
[590]*590“A Correct, yes, sir.

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Bluebook (online)
504 S.W.2d 587, 1973 Tex. App. LEXIS 3023, Counsel Stack Legal Research, https://law.counselstack.com/opinion/crawford-overhead-door-co-v-addison-texapp-1973.