Enhanced Method and Equipment of Forging Bow-Shape Conjointed Rake
20200047236 ยท 2020-02-13
Assignee
Inventors
Cpc classification
B21D22/022
PERFORMING OPERATIONS; TRANSPORTING
B21D53/68
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
This application provides an enhanced method and equipment for forging bow-shape Conjointed rake with one-piece steel. The methods of the present application include: S1: heating the rectangular blank to target temperature; S2: stamping the rectangular blank to mold rake tooth with rake handle blank reserved at both sides, and conduct cutting at the shoulder; S3: horizontally forging and stamping the rake handle blanks at both sides respectively to columnar; S4: heating the rake handle blank locally, stretching the rake handle blank with roll forging machine to mold rake handle, and bending the rake handle back in reverse to the rake tooth; S5: bending the rake handle stretched out from the sides inward and forge the two ends of the rake handle together to form the main body of the bow-shape rake; S6: placing the main body of the bow-shape rake between the convex stamping equipment to stamp the rake tooth.
Claims
1. An enhanced method for forging a bow-shape conjointed rake with one-piece of steel, wherein the method includes the following steps: preparing a rectangular blank of steel of which the width is bigger than the width of the target bow-shape conjointed rake and the height is bigger than the longest rake tooth of the target bow-shape conjointed rake, and heating the rectangular blank to a target temperature; stamping the rectangular blank to mold a rake tooth with a rake handle blank reserved at both sides of the rake tooth slightly separated from the rake tooth, obtaining a rake main body with the rake tooth and the rake handle blank on one side and a rake back on the other side, and cutting off two corners of the rake back at a slant at the position of the rake handle blanks; bending the rake handle blanks away from the rake tooth, and horizontally forging and rotating the rake handle blanks to make them become column shape, respectively; heating the rake handle blank locally, stretching the rake handle blank to mold a rake handle, and bending the rake handle back to a direction reverse to the rake tooth; bending the rake handle inward and forging the two ends of the rake handle together; and bending all of the rake teeth of the bow-shape rake toward a same direction to become arc shape.
2. The enhanced method of forging a bow-shape conjointed rake with one-piece of steel as claimed in claim 1, wherein the target temperature is higher than or equal to 900 C.
3. The enhanced method of forging a bow-shape conjointed rake with one-piece of steel as claimed in claim 1, wherein the rectangular blank is made of carbon steel.
4. The enhanced method of a bow-shape conjointed rake with one-piece of steel as claimed in claim 1, wherein the rectangular blank has a length of 35-60 cm and a width 8-20 cm.
5. The enhanced method of forging a bow-shape conjointed rake with one-piece of steel as claimed in claim 1, wherein the step of bending the rake handle inward and forging the two ends of the rake handle together is realized by using bending equipment.
6. Producing equipment for forging a bow-shaped conjointed rake with one-piece of steel, wherein the producing equipment consists of: a steel heating unit, a rake tooth stamping device, a second stamping device, a roll forging device, and a rake handle bending device, the steel plate heating unit is used to heat rectangular blank of steel above a target temperature, the rake tooth stamping device is used to stamp the rectangular blank to form the rake body with rake tooth, the second stamping device is used to further stamp the rake body to form its shoulder, the roll forging device is used to forge the two outermost rake tooth to form two rake handles, and the rake handle forming device is used to form the rake handle once.
7. Bending equipment used in the method of claim 1, wherein the bending equipment consists of: body frame, motor drive, slide rod, cross bending rod, carriage, bearings, arc sliding chute, and arc baffle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION OF THE INVENTION
[0032] The following is to describe the present invention in details in combination with drawings and examples, but the protection scope of the invention is not limited within the scope described in the Example accordingly.
Embodiment 1
[0033]
[0034] As shown in the figure, the method of the invention includes the following steps:
[0035] S1: Take a rectangular blank of which the width is bigger than the width of the target bow-shape rake and the height is bigger than the longest rake tooth of the target bow-shape rake, and heat it to a target temperature of 1000-1200 C. This step is used to prepare for the following first stamping of rake tooth and blank shoulder. The heating temperature of this time is higher than the subsequent heating temperature to guarantee the stamping effect.
[0036] S2: Use stamping equipment to stamp the rectangular blank to mold rake tooth with rake handle blank reserved at both sides, and stamp and cut off two triangles respectively at the two corners along the longer side of the rectangular blank, i.e., cut off each triangle at each corner along the longer side of the rectangular blank. This stamping process is completed once. Alternatively, the step of cutting off the triangles at the two corners may be executed separately after the stamping of the rake tooth.
[0037] S3: Laterally forge the rake handle blanks at both sides respectively to columnar; Since the stamping of rake tooth and shoulder in step S2 is completed once and time is saved, the rake handle blanks at the two sides can be forged directly after step S2.
[0038] S4: Heat the rake handle blank locally (at the portion of the rake handle blanks), stretch the rake handle blank with roll forging machine to mold rake handle, and bend the rake handle back so that it is in a direction reverse to the rake tooth;
[0039] S5: Bend the rake handle inward and forge the two ends of the rake handle together to form the main body of the bow-shape rake;
[0040] This step is realized by the two-side synchronous bending machine related to the invention, and the bending machine consists of:
[0041] S6: Place the main body of the bow-shape rake between a convex forging equipment to press/forge the rake tooth to a bow-shape.
[0042] The aforesaid convex forging equipment consists of fastening end of the rake handle and the bow-shaping end of the rake tooth, the fastening end of the rake handle is slightly wider than the rake handle of the bow-shape rake, the arc end of the rake tooth has bending surface, and the curve of the bending surface or the bending angle matches the target bending curve or angle.
[0043] In the method of the present invention, the target temperature for locally heated is higher than or equal to 900 C. or higher than or equal to 1000 C. And the rectangular blank is made of carbon steel or other steel.
[0044] In this example, since the step of shoulder cutting is adopted, there is a thin separating section formed between the rake handle blank and the rake tooth. In the process of repeatedly forging the rake handle blank to make the rake handle blank thinner and form rake handle, the forging times can be reduced effectively to avoid bulges between the rake handle and the rake tooth and reducing defective products.
[0045] The statistics data over the forging times and number of defective products of 100 pcs of products is as follows:
TABLE-US-00001 Method of Existing the Present Method without 100 pcs products Invention Cutting Shoulder Average Forging Times 13.5 times 19.7 Circumstances under 0 13 which secondary cutting or other treatment shall be done Number of defective products 1 7
Embodiment 2
[0046] In this embodiment, the method consists of the following steps:
[0047] S1: Take a rectangular blank of which the width is bigger than W+A+2B (W refers to the width of the target bow-shape rake, A=8 cm+width of a single rake tooth, and B refers to the width of the reserved blank for forging rake handle) and the height is bigger than P+2Q (P refers to the longest rake tooth of the target bow-shape rake, Q refers to the width of the rake backside), and heat it to target temperature 1000-1200 C.
[0048] S2: On one side of the rectangular blank, using stamping equipment to stamp and form a molded rake body blank which consists of rake tooth as many as the final rake tooth and reserved part for rake handle which is at the two sides of the row of rake tooth and wider than a single rake tooth. The stamping equipment consists of an upper stamping platform and a lower stamping platform, and the lower stamping platform has several stamping tooth with separations(spaces) between the stamping tooth, the width of each separation equal to the width of a rake, and the width between the outermost stamping teeth at the left and right sides is equal to the width of the reserved rake handle part. The stamping tooth of the upper stamping platform are aligned with the separations between the stamping tooth of the lower stamping platform, while the stamping tooth of the lower stamping platform are aligned with the spaces between the stamping tooth of the upper stamping platform. To conduct the stamping, place a heated rectangular blank on the lower stamping platform, and when the upper stamping platform falls down, form a rake body with rake tooth, rake back (a connection portion for the tooth), and, one rake handle blank at each sides of the rake body. The rest part of the rectangular blank is named as the residual blank and can be used for forming another rake body.
[0049] After the rake body is stamped down, turn the residual blank around, place the residual blank on the lower stamping platform and place the original space part (between which the rake tooth are plushed down during the first stamping) between the position of plushing tooth the lower stamping platform, and conduct the second stamping to form the second rake body blank. By adopting this manner, the blank with an area less than 1.5 times of the original steel blank can form 2 pieces of rake body blanks, thus the cost is decreased significantly.
[0050] S3: Next, place the rake body blank under the second stamping equipment which is used to stamp the two triangular notches at the two sides of the rectangular rake body backside. Stamp and cut off two triangles at the two top corners sides of the longer side to form the shoulder. It should be noted that the process of stamping the triangular shoulder can be completed in S2 step or be completed independently after S2.
[0051] S4: After the stamping is completed, laterally forge (so as to press) the rake handle blanks of the two sides separately and repeatedly to make each of the rake handle blank become a column. Since two triangular parts are cut into shoulder through the stamping in the aforesaid step, there is separation section formed between the rake handle and the rake tooth, when forge the rake handle blank into column, plenty of time is saved, forging times are reduced, and there is no bulge produced between the rake handle blank and the rake handle, and production efficiency is promoted significantly.
[0052] S5: Heat the rake handle blank locally, stretch the rake handle blank with roll forging machine to mold rake handle, and bend the rake handle back so that it is in a direction reverse to the rake tooth;
[0053] S6: Bend the rake handle inward (toward each other) and forge the two ends of the rake handle together to form the main body of the bow-shape rake;
[0054] S7: Place main body of the bow-shape rake between a forging/Punching equipment (with a concave shape upper punching block and a convex shape lower punching block) to press/forge the rake tooth to a bow-shape.
[0055] The aforesaid convex stamping equipment consists of fastening end of the rake handle and the bow-shaping end of the rake tooth, the fastening end of the rake handle is slightly wider than the rake handle of the bow-shape rake, the arc end of the rake tooth has bending surface, and the curve of the bending surface or the bending angle matches the target bending curve or angle.
EXAMPLE 3
[0056] The producing equipment for bow-shape Conjointed rake consists of: steel heating unit, rake tooth stamping/punching device, a second stamping/punching device, a third stamping/punching device, roll forging device, and rake handle bending device. The steel heating unit is used to heat the rectangular blank above a target temperature, the rake tooth stamping device is used to stamp or punch the rectangular blank to form the rake body with rake tooth, the second stamping device is used to further stamp or punch the rake body to form its shoulder, the third stamping device is used to punch the rake handle blank repeatedly to make the rake handle blank become a column, and the roll forging device is used to forge the two outermost rake tooth (also called rake handle blanks) of the rake body to form two long rake handles
[0057] The bending device is used for the one-step molding of rake handle.
[0058] The steel heating unit may be ordinary electric or gas heating furnace, or high-efficiency coal-fired heating furnace. The rake tooth stamping device consists of a upper stamping platform and a lower stamping platform, and the lower stamping platform has several stamping tooth with space equal to the width of the rake tooth, and the width between the outermost stamping tooth at the left and right sides is equal to the width of the reserved rake handle part. The stamping tooth of the top stamping platform are aligned with the spaces between the stamping tooth of the lower stamping platform, while the stamping tooth of the lower stamping platform are aligned with the spaces between the stamping tooth of the top stamping platform.
[0059] The second stamping device is used to cut off the shoulder, and it also consists of a upper stamping platform and a lower stamping platform. Place the blank stamped by the first stamping equipment on the lower stamping platform. The upper stamping platform is aligned with the shoulder of the lower stamping platform. The lower stamping platform has corresponding notch on the shoulder of the blank. Then, the upper stamping platform is aimed at the shoulder of the blank.
[0060] The roll forging device contains two pairs of revolving wheels with grooves, and each revolving wheel is semicircular or arched with another half in notch. The revolving wheels can rotate around the axis of the semicircle, while the grooves are along the peripheral direction of the revolving wheels. Of the two revolving wheels, one rotates clockwise, and another anticlockwise, i.e., the two wheels rotate in opposite direction. After being stamped to column, place the rake handle blank in the grooves of the revolving wheels, and make the revolving wheels rotate against the squeezing plate to achieve the extruding formation of the rake handle blank. More preferably, rake handle forging device may be used. Before forging the rake handle, forge the rake handle to column. The rake handle forging device consists of forging platform and forging pole. The distance between the downward movement extreme position of the forging pole and the lower forging platform is bigger than or equal to the diameter of the rake handle. The worker clamps the rake body blank with tool and place the rake handle blank on the forging platform. The forging platform rotates ceaselessly, so the rake handle is forged in column, then the rake handle is forged by the roll forging device.
[0061] The rake handle forming device is used to bend the rake handle bilaterally inward (on the same plane), and fold it together with the front end of the rake handle. The two rake handles are cut off at the same length manually and welded together. At last, by the lateral radian forging device, the whole rake body is forged in required radian (radian from the side).
[0062] As show in
[0063] By connecting the output shaft of the revolving wheel driven by motor to the crankshaft of the crankshaft connecting rod can drive the crankshaft rotate. The connecting rod is connected to the crankshaft eccentrically, thus, when the crankshaft rotates, it can drive the connecting rod forward or backward push carriage 5 to move.
[0064] The carriage 5 is installed on the slide rod 3, and it can slide along the slide rod 3 repeatedly. The cross bending rod 4 contains four connecting rods. One end of the first and the second connecting rods are fixed above the carriage 5, while their the other ends are fixed on the upper ends of the first and the second bearings separately. The first and the second connecting rods cross each other, one end of the third and the forth connecting rods are fixed under the carriage 5, while their the other ends are fixed on the lower end of the first and the second bearings. The bearings 6 have rollers underneath, and the two bearings 6 go through the two arc sliding chutes 7 separately and can slide to-and-fro in arc sliding chute 7. The arc baffle 8 is installed on body frame 1 which has action floor and rake body placing floor. The arc baffle 8, which is raised upward, is set on the rake body placing portion, and one side of such raised part is in plane structure, and the other side has two eccentric arc structures. When the bending equipment of the present invention is to work, the motor drives carriage 5 move forward, so the bearings at the front end of the cross bending rod move forward to the rightmost (bottom) of the arc sliding chute 7, so that the first and the second bearings separate from each other. Then insert the two rake handles of the rake body to be bent (as shown in
[0065] The above are the preferred examples of the invention without restriction in any form to the invention. Within the spirit of the invention, any modification, change and omission, and substitution of the examples thereof with reference to the skills of the invention are within the protection scope of the invention.