EP0302229A2

Rotary electric tool with a variable speed gearing.

Abstract

A variable speed gearing in a rotary electric tool in which a differential gear mechanism (B) is mounted within a gear case (3) which is fixed to a housing (1) for example; in order to attain the same rotating direction of both inner and outer output shafts of the differential gear mechanism (B), an intermediate gear (13) and a clutch mechanism (C) are disposed on at least one output side; projections (24) are formed on the outer peripheral surface of an internal gear (22) of a final planetary gear mechanism (B₃) in the differential gear mechanism (B) so that the projections (24) are capable of being enganged with and disengaged from a torque setting cam (15); the outer peripheral surface (34) of an internal gear (8) of a first planetary gear mechanism (B₁) in the differential gear mechanism (B) is tapered; and a brake disk (31) having a tapered surface (35) corresponding to the tapered surface (34) of the internal gear (8) of the first planetary gear mechanism (B₁) is brought into pressure contact through the tapered surface (35) thereof with the tapered surface (34) of the internal gear (8) of the first planetary gear mechanism (B₁) axially movably in a rotation-stopped condition, the brake disk (31) being constructed so that it can be interlocked with axial movement of the internal gear (22) of the final planetary gear mechanism (B₃).

EP0302229A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 30 June 2008, 18.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

8 claims: 1 independent, 7 dependent

  1. 1
    A variable speed gearing in a rotary electric tool, characterized in that a differential gear mechanism (B) is mounted within a gear case (3) which is fixed to a housing (1) or any other suitable member;that in order to attain the same rotating direction of both inner and outer output shafts of the differential gear mechanism (B), an intermediate gear (13) and a clutch mechanism (C) are disposed on at least one output side;that projections (24) are formed on the outer peripheral surface of an internal gear (22) of a final planetary gear mechanism (B₃) in the differential gear mechanism (B) so that the projections (24) are capable of being engaged with and disengaged from a torque setting cam (25);that the outer peripheral surface (34) of an internal gear (8) of a first planetary gear mechanism (B₁) in the differential gear mechanism (B) is tapered;and that a brake disk (31) having a tapered surface (35) corresponding to the tapered surface (34) of the internal gear (8) of said first planetary gear mechanism (B₁) is brought into pressure contact through the tapered surface (35) thereof with the tapered surface (34) of the internal gear (8) of the first planetary gear mechanism (B₁) axially movably in a rotation-stopped condition, the brake disk (31) being constructed so that it can be interlocked with axial movement of the internal gear (22) of the final planetary gear mechanism (B₃).
  2. 2
    A variable speed gearing according to Claim 1, wherein said brake disk (31) is urged in the direction of engagement with the internal gear (8) by virtue of a spring (32), the biasing force of said spring (32) being adjustable to permit the brake disk (31) to be locked in engagement with the internal gear (8) or separated therefrom.
  3. 3
    A variable speed gearing according to Claim 1, wherein said brake disk (31) is adapted to be engaged with and disengaged from both the gear case (3) and an internal gear (8) of the first planetary gear mechanism (B₁).
  4. 4
    A variable speed gearing according to Claim 3, wherein the engagement and disengagement of said brake disk (31) are effected by automatic change-over operation using a cam according to increase or decrease of the load exerted on the terminal output portion.
  5. 5
    A variable speed gearing according to Claim 1, wherein there is further provided an adjustment means in the vicinity of said brake disk (31).
  6. 6
    A variable speed gearing according to Claim 5, wherein said adjusting means is a rotary adjusting lever (38).
  7. 7
    A variable speed gearing according to Claim 6, wherein said adjusting lever (38) is doughnut-shaped and has a plurality of projections (39) formed stepwise on the outer peripheral edge thereof at equal intervals in the circumferential direction.
  8. 8
    A variable speed gearing according to Claim 5, wherein said adjusting means is positioned in front of said brake disk (31).