1. Field of the Invention
The present invention is related to a hydraulic squeezing and shrinking machine for forming ends of a roller and particularly to a concentric machining device for ends of a roller.
2. Brief Description of Related Art
Referring to
However, there are following disadvantages while machining the preceding roller 10:
1. The journal 12 at the two ends 11 has to be machined individually such that twice works for clamping and unloading the roller 10 have to be done during machining.
2. Due to twice works for machining the journal 12 at the two ends 11 being done, it is time wasting and it is not easy to control precision of the coaxial line such that defective rate is high.
3. It is easy to hurt the outer surface of the roller 10 being clamped and unloaded several times.
4. The inner wall of the roller 10 is incapable of being lathe-worked except the two ends 11, it is incapable of obtaining a homogeneous thickness of the roller 10 and correction of concentricity leads to high production cost and difficult work such that experienced professional is required.
5. A sufficient thickness of the blank roller has to be retained for cutting and machining such that costs related to material, delivery and machining are hard to reduce substantially.
6. It is complicated to perform machining for the roller so that speed of machining is slow and more material has to be wasted.
Referring to
Further, a bearing 32 fits with the concentric journal part 32, which has been finished the surface thereof, so that the axial lines of the spindle 34 and the roller 30 coincide with each other to ensure the concentricity thereof.
The preceding prior art is capable of making the roller 30 with accurate concentricity of the outer and inner wall surfaces to overcome the deficiency of conventional way shown in
The crux of the present invention resides in that a hydraulic actuated squeezing and forming machine is employed to improve the squeezing and forming machine disclosed in Taiwanese Patent Application No. 90200678 such that the inner and outer surfaces of the roller with two conical end sections and journal section for fitting with the bearing can be worked and finished at the same time for securing accurate concentricity of all parts of the roller.
An object of the present invention is to provide a concentric machining device with which a roller can be machined, squeezed and formed accurately at the same time to ensure concentricity of the entire roller.
Another object is to provide a concentric machining device with which a thinner steel pipe is employed as blank material for making a roller.
A further object is to provide a concentric machining device with which production rate of the roller can be promoted and precision for concentricity can be enhanced to 90% more than that made with the conventional way.
The detail structure, the applied principle, the function and the effectiveness of the present invention can be more fully understood with reference to the following description and accompanying drawings, in which:
Referring to
When the roller 53 is placed on the lower locating recess 43 of the lower mold 42, an end of the roller 53 is pressed against the outer end of the locating shaft 55 and another end of the roller 53 is pressed with the clamping shaft 56, which is moved by the hydraulic cylinder 57 while the machine 40 is started. The hydraulic cylinder 48 actuates the upper base 45 to move downward at the same time such that the upper locating recess 47 is capable of pressing the roller 53 from top except the both ends of the roller 53 being pressed. Meanwhile, the mold seats 50 with the forming molds 51 are pushed to move forward along the guide rods 44 for the respective fitting hole 52 with enlarged taper opening thereof performing operation of squeezing and shrinking both ends of the roller 53 as a formed part 54 respectively before releasing the forming molds 51. Due to both ends of the roller 53 being held by the locating shaft 55 and the clamping shaft 56, it allows the forming molds 51 being capable of detaching from the roller 53 easily after both ends of the roller 53 being squeezed and shrank. Of course, right at this time, the hydraulic cylinders 48, 57 are moved backward with the upper mold 46 and the clamping shaft 56 respectively. Then, the worked roller 53 is arranged with bearings 33 and the spindle 34 inside to constitute a finished roller 30 as shown in
It is appreciated that the roller worked by the concentric machining device of the present invention has the following advantages:
1. A thinner steel pipe can be employed as material of the roller such that weight of the roller is lowered and it is not necessary to perform machining the outer surface thereof for avoiding damage of material organization, lowering fabricating cost and increasing life span.
2. Due to the inner and outer diameters of the steel pipe providing the same concentricity, it is not necessary to correct the concentricity such that skilled technicians are not required for working the roller.
3. Due to providing accurate concentricity, the roller is capable of being used for high precision apparatus.
4. Due to the roller being made integrally, it is able to shorten fabricating time, promoting production quantity and enhancing precision.
While the invention has been described with referencing to a preferred embodiment thereof, it is to be understood that modifications or variations may be easily made without departing from the spirit of this invention, which is defined by the appended claims.
Number | Date | Country |
---|---|---|
03165944 | Jul 1991 | JP |
Number | Date | Country | |
---|---|---|---|
20070243280 A1 | Oct 2007 | US |