US250917A - Steering-head for bicycles - Google Patents

Steering-head for bicycles Download PDF

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US250917A
US250917A US250917DA US250917A US 250917 A US250917 A US 250917A US 250917D A US250917D A US 250917DA US 250917 A US250917 A US 250917A
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steering
head
spindle
center
bicycles
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62KCYCLES; CYCLE FRAMES; CYCLE STEERING DEVICES; RIDER-OPERATED TERMINAL CONTROLS SPECIALLY ADAPTED FOR CYCLES; CYCLE AXLE SUSPENSIONS; CYCLE SIDE-CARS, FORECARS, OR THE LIKE
    • B62K21/00Steering devices
    • B62K21/06Bearings specially adapted for steering heads

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  • HORACE B. HICKS of the city of Hartford and State of Connecticut, have invented certain new and useful Improvem'ents in the Construction of Steering-Heads for Bicycles, of which the following is a specification.
  • My improvements relate to that class of steering-heads known as center-steering ones, as distinguished from socket-heads, and are equally applicable to open heads or to cylindrical heads.
  • Figure 1 shows in side elevation one form of a cylin- 1 drical bicycle-head and the neck of the perch, the internal construction being indicated by dotted lines.
  • Fig. 2 shows the same cylindrical head, in vertical section, at right angles to the plane of Fig. 1, the section being through themiddle of the head, while the spindle attached to the neck of the backbone appears in elevation.
  • Fig. 3 shows a part of the same with a different bearing for the upper center; and
  • Fig. 4 shows the corresponding parts of Fig. 3, as heretofore constructed, the loose block at the bottom of Fig. 4 showing a part after considerable use.
  • A is the neck, and D the part by which it is connected to the perch or backbone of the hi- 0 'cle.
  • E is the lug, to which the forward end of the spring may be attached.
  • G G the front forks extending downward and connecting with the front wheel.
  • C is the spindle on the forward part of the neck A.
  • F is the lug for handle-bars; H, a threaded bolt working in the upper part of the cylinder B.
  • I is a lock-nut intended to hold the bolt H in place after it is adjusted.
  • the K is a step inserted in the bottom of the cylinder B, containing the bearing for the lower end of the spindle.
  • the spindle C has at the lower end a rounded projection, m, forming a segment of a sphere, which may be case-hardened, and forms the lower steering-center. It rests in a recess, k, in the block K, the recess 50 70 corresponding with the contour of the lower center, m.
  • the upper end of the spindle C has a projection, n, rounded, or in the form of a segment of a sphere, and the bolt H has at its lower end a recess, h, corresponding with the contour of the upper steering-center, n.
  • H is a bolt similar to that at H, but having a comically-concave recess, h, for the upper steering-center.
  • H is a bolt having a concave recess, W, for the upper steering-center
  • K is a step having a concave conical recess, is, for the lower steering-center.
  • C is a spindle, as heretofore constructed, having the upper and lower conical steeringcenters, n m.
  • K is a step like that at K, but having a recess, k corresponding to the recess 7c in K, after it has been worn by use.
  • the upper and lower steering-centers of conical form have been customary to make the upper and lower steering-centers of conical form, as shown in Fig. 4.
  • the upper steering-center has been constructed with a convex conical projection on the bolt H, and a concave conical recess, ]L2, in the upper end 7 5 of the spindle C; but whether constructed as last mentioned, or as shown in Fig. 4, the strains which come upon the spindle C tend to incline it, as shown in Fig.
  • the strains are such as to cause a pull at k and a push at k, or a pull at k and a push at h in two different planes.
  • there is a leverage caused by the spindle which results in a pressure, for instance, at the upper part of the cavity k on the right-hand side, and a pressure at the bottom of the cavity is on the left-hand side, one or the other of these 0 points being a fulcrum, and the other at the short end of a lever; and this condition is repeated at the upper center.
  • a steering-head constructed according to my improvements is more sensitive to control, and is more durable than in any other construction with which I am acquainted.
  • Theimprovement in center-steering mechanism for a velocipede consisting in making the bearing-seat for the spindle rounded or spherical, substantially as set forth.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Steering Devices For Bicycles And Motorcycles (AREA)
  • Pivots And Pivotal Connections (AREA)

Description

(No Model.) v 2 Sheets-Sheet 1.
H. B. HICKS.
STEERING HEAD FOR BIOYOLBS..
No. 250,917. Patented Dec. 13,1881.
WITH ESSES I N\/ENTE| R 2 Sheets-Sheet 2.
(No Model.)
H. B. HICKS.
STEERING HEAD FOR BIOYGLES.
No. 250,917. Patented Dec. 13,1881.
llNrTE STATES PATENT OEETQE.
- HORACE B. HICKS, OF HARTFORD, CONNECTICUT, ASSIGNOR TO THE POPE MANUFACTURING COMPANY, OF BOSTON, MASSACHUSETTS.
STEERING-HEAD FO R BICYCLES.
SPECIFICATION formingpart of Letters Patent No. 250,917, dated December 13, 1881.
Application filed September 27, 1881. (No model.) C
To all whom it may concern Be it known that I, HORACE B. HICKS, of the city of Hartford and State of Connecticut, have invented certain new and useful Improvem'ents in the Construction of Steering-Heads for Bicycles, of which the following is a specification.
My improvements relate to that class of steering-heads known as center-steering ones, as distinguished from socket-heads, and are equally applicable to open heads or to cylindrical heads.
In the accompanying drawings, Figure 1 shows in side elevation one form of a cylin- 1 drical bicycle-head and the neck of the perch, the internal construction being indicated by dotted lines. Fig. 2 shows the same cylindrical head, in vertical section, at right angles to the plane of Fig. 1, the section being through themiddle of the head, while the spindle attached to the neck of the backbone appears in elevation. Fig. 3 shows a part of the same with a different bearing for the upper center; and Fig. 4 shows the corresponding parts of Fig. 3, as heretofore constructed, the loose block at the bottom of Fig. 4 showing a part after considerable use.
A is the neck, and D the part by which it is connected to the perch or backbone of the hi- 0 'cle.
E is the lug, to which the forward end of the spring may be attached.
B is the cylindrical head of the bicycle; G G, the front forks extending downward and connecting with the front wheel.
C is the spindle on the forward part of the neck A.
F is the lug for handle-bars; H, a threaded bolt working in the upper part of the cylinder B.
I is a lock-nut intended to hold the bolt H in place after it is adjusted.
K is a step inserted in the bottom of the cylinder B, containing the bearing for the lower end of the spindle. The spindle C has at the lower end a rounded projection, m, forming a segment of a sphere, which may be case-hardened, and forms the lower steering-center. It rests in a recess, k, in the block K, the recess 50 70 corresponding with the contour of the lower center, m. The upper end of the spindle C has a projection, n, rounded, or in the form of a segment of a sphere, and the bolt H has at its lower end a recess, h, corresponding with the contour of the upper steering-center, n.
H is a bolt similar to that at H, but having a comically-concave recess, h, for the upper steering-center.
H is a bolt having a concave recess, W, for the upper steering-center, and K is a step having a concave conical recess, is, for the lower steering-center.
C is a spindle, as heretofore constructed, having the upper and lower conical steeringcenters, n m.
K is a step like that at K, but having a recess, k corresponding to the recess 7c in K, after it has been worn by use.
Heretofore, in heads of the center-steering. class, it has been customary to make the upper and lower steering-centers of conical form, as shown in Fig. 4. Sometimes the upper steering-center has been constructed with a convex conical projection on the bolt H, and a concave conical recess, ]L2, in the upper end 7 5 of the spindle C; but whether constructed as last mentioned, or as shown in Fig. 4, the strains which come upon the spindle C tend to incline it, as shown in Fig. 4, at an angle to the perpendicular represented by the dotted line, and this tendency to inclination is both from side to side and fore and aftthat is, the strains are such as to cause a pull at k and a push at k, or a pull at k and a push at h in two different planes. In any such case there is a leverage caused by the spindle, which results in a pressure, for instance, at the upper part of the cavity k on the right-hand side, and a pressure at the bottom of the cavity is on the left-hand side, one or the other of these 0 points being a fulcrum, and the other at the short end of a lever; and this condition is repeated at the upper center. The result of this actionupon the steering-centers is to rapidly wear the step is into the form shown at W, and to wear the conical projections n and m into corresponding irregular forms. The result is, that in use with the constructions heretofore prevailing, the steering-centers and their steps are worn rapidly into irregular form, causing increase of friction, lateral looseness and rattle or shake of the machine, and a correspondin g destruction of the parts.
It is the object of my improvements to obviate these difficulties and to produce a bearing for the steering-centers which shall better preserve its form and prevent destruction of the parts by use, prevent rattling or shaking, and allow of accurate adjustment at any time in the course of wear. This I accomplish by forming the bearing-surfaces, the step, adjusting-bolt, and spindle, as shown in Fig. 2that is, with rounded contour or spherical concavities and convexities. The adjusting-bolt, instead of being made with a spherical concave seat for the upper center, as in Fig. 2,'may be made, as shown in Fig. 3, of conical concavity, if desired, and still retain a large part of the advantage gained by my construction, and avoid the difficulties attending the old style shown in Fig. 4.
A steering-head constructed according to my improvements is more sensitive to control, and is more durable than in any other construction with which I am acquainted.
Although I have described only the application of these improvements to a cylindrical head, they are equally applicable to what are known as open heads, Whether on bicycles or tricycles, or other velocipedes, wherever a part of the frame is to be centered in another part, so as to allow these parts to turn at angles to each other.-
I claim as new and of my invention- 1. Theimprovementincenter-steeringmechanism for a velocipede, consisting in making the bearing end otthe spindle rounded or spherical, substantially as set forth.
2. Theimprovement in center-steering mechanism for a velocipede, consisting in making the bearing-seat for the spindle rounded or spherical, substantially as set forth.
3. In a velocipede-head, a spindle, 0, connected with rounded or hemispherical centers m at, substantially as set forth.
4. In a velocipede-head, the combination of spindle G, centers m a, step R, with its concavity 70, and bolt H, containing a concavity, h, all constructed and adapted substantially as set forth.
. HORACE B. HICKS.
Witnesses:
GEO. H. DAY, E. J. Post.
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