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About The united American : a magazine of good citizenchip. (Portland, Or.) 1923-1927 | View Entire Issue (May 1, 1925)
MAY 1925 THE UNITED AMERICAN Twine Production the Source of Supply Chicago Twine Factories Alone Can Yearly Produce Enough Binder Twine to Harvest Seventy-Three Million Acres of Grain (The Christian Science Monitor) BALL of twine, hidden away on the while the manila fiber makes a beautiful inside of a great harvesting twine, the expense was too great a machine, is certainly an inconspicuous handicap, so far as cheap twine for thing, and few would realize, who are use in the wheat field was ocncerned. So not themselves makers or users of agri it became necessary to look about for cultural machinery, that on the uniform a more economical fiber. * * * size and tensile strength of the twine depends the smooth operation of the Yucatan solved the last step of the harvester, and hence, ultimately, in a problem. A plant of the agave tribe, great degree, the bread supply of the known to us only as a foliage plant, can world. The binding attachment, added be grown in great abundance in a small to the reaper, transformed it into a section just above sea-level — almost “harvester” in the fullest sense, and the a solid ledge of limestone rock. It yields humble twine, which superseded wire in a fiber known as sisal, and today sisal the binding of grain may be said to be produces from 85 to 90 per cent of the the crowning adjunct of that greatest of binder twine used throughout the world. labor-saving inventions, the harvester, as The plant is known in Yucatan as it is 'known today. If no harvesting henequen. machines were manufactured for a whole The henequen plant looks something year, the farming community would, un like a century plant, whith a low core, doubtedly, be put to some inconvenience, and stiff pulp leaves standing up around but would manage to get along with no it, considerably higher than a man’s head serious loss. On the other hand, if the when it reaches maturity, which takes supply of twine for one harvest were about seven years. A plant yields from suddenly to be cut off, it would mean not 12 to 20 leaves which the natives cut with simply a national, but an international, sickle-shaped knives from the mature calamity, as it would be impossible to plants, and such is the climate that they obtain help enough to gather the crops. can continue cutting all the year around. The hunt for the ball of twine that The leaves average a little less than two would work in the harvester was a long pounds in weight. Uusually from 3 to one. One manufacturer tried ro make 3% .per cent of marketable fiber, or twine out of grass. It cost him $15,000 about one ounce, is obtained from an to find out that it would not work. Then average leaf, making an average perhaps he tried to make a paper twine, and of one pound from each plant, or 1000 spent $35,000 before he gave it up. Next pounds an acre. This is the result of he tried straw as a raw material—and a year’s operations. the attempt cost him an additional Each leaf is handled individually, being $43,000. first cut from the plant, then the spines * * * removed from the edge of the leaf, then Eventually the problem was solved the leaves packed in bundles of about by two foreign fibers — manila and sisal 50 and carried to the nearest tramway. — but another company still thought From there they are conveyed to the plant, which is centrally located they could find a home product. Home cleaning on each plantation, and run through a grown flax seemed to fill all require decorticating machine. This machine, as ments, and the company spent $1,000,000 its name implies, takes off the hard in perfecting the process of turning it of the leaves, and reveals inside into twine. Then, when it was carried a cortex substance through which runs into the field and tied around the bundles the pulpy all-important fiber from which twine of grain, it was discovered that crickets and grasshoppers like nothing quite so is made. The fiber which comes from the de- well. These two insects promptly ate the twine and the bundles fell to pieces corticator is carried into the drying yards out in the fields. An industry that has and is spread on. galvanized wire, where grown to the grand total of $50,000,000 it dries and bleaches in the sun, after which it is gathered and taken into the in the last 40 years was at stake. warehouse, where it is pressed into bales One of the men kept awake at night in the same form in which it finally by these problems was William Deering, reaches mills. From Yucatan the whose harvester was interested in twine. bales are the conveyed by boat across the By chance one day he untwisted a manila Gulf of Mexico to New Orleans, Mobile rope, and the thought flashed upon him that manila would make good twine if or some .port in Texas. From these ■the strands could be spun small enough. points it is trans-shipped up the Miss:s- 'The problem was laid before one of the sippi River to Cairo, at the southern tip ■biggest rope manufacturers in the of Illinois, but comes into Chicago aboard ¡country, and promptly turned down. railway trains. ♦ ♦ ♦ Another manufacturer of ropes thought he could do it, only his machines made Chicago, the world’s center for agri ¡but 300 feet to the pound, whereas it cultural machinery, has very naturally was necessary to have it 700 feet to the become the world’s greatest producer of pound. The machines were rebuilt, binder twine. Here are the two largest however, and the desired twine produced. binder twine factories in the world, It was soon discovered, however, that having a capacity of 110,000 tons a year. A Page Fifteen A few additional figures will serve to visualize this capacity. It takes approxi mately two feet of binder- twine to bind the average-sized bundle of grain, and the harvester averages 750 pound bundles to the acre. There are 500 feet of binder twine to a pound. Reducing Chicago’s potential 110,000 tons to pounds, we' get 220,000,000 pounds, which- would bind 55,000,000,000 bundles, help to harvest more than 73,000,000 acres of grain, or girdle the globe 833 times. The trains which bear the sisal fiber bales to Chicago unload directly in the factory, at the rate of 800 or 900 bales a day, or more, and we see great walls of these fiber plants .piled up in the storage room. They are taken, as needed, to the opening department where men split them- up and release the closely packed fiber, mixing together- various grades of hemp which is put through a “spreading machine” to further prepare it. After inspection, sorting and spread ing the fiber is put into big box trucks and trundied away to be prepared for spinning into twine. As good twine is made of a mingling of coarse with thin fiber, each' man has four bales to work from, graded to give the desired thickness and texture. On the first machine employed, a comb ing machine, there is a scale, and as the fiber passes through, it, at intervals a bell rings indicating a certain weight a foot for that particular lot of fiber. The appropriateness of the name “combing machine” in connection with the fiber is apparent to the eye of the most un initiated, for the long ribbons of fiber as they pass into the machine look like nothing so. much as hair; long, luxuriant, if decidedly coarse hair, with a slight wave in it, due to the compression of the bales. The difference between combing fiber for twine and combing one’s head is that in addition to separating it into paralied lines and straighten'ng out tangles, the fiber-combing machine pulls it out to a greater length. This pulling or drawing out of the . fiber is accomplished not by stretching it but by combing it with revolving cylin ders, armed with teeth, some of which cylinders revolve faster than others, so that the layers which they pull will necessarily be pulled out farther than the first ones, and the whole mass of fiber will be thinner and longer than when it went into the machine. The action of the next two machines through which the fiber passes is still further to break up the fiber into smaller and smaller ribbons until at last each ribbon begins to look quite slender as it runs out of the machine into revolving cans at the ends, and these slender ribbons are called “sliver” by the work men. When at last the “finishing machine” spouts out its contents, one can tell by taking up one of the ribbons of “sliver” that it has diminished in thick ness to almost the feeling of a piece of thick string, and this is the point at which it is ready for spinning into twine. Thé spinning room is a wonderful sight, with its long rows of spindles, two to a machine, working horizontally, but controlled by bolts from above. As the