Apparatus and method for assembling composite material leaf spring module
10767719 ยท 2020-09-08
Assignee
Inventors
Cpc classification
B60G2200/31
PERFORMING OPERATIONS; TRANSPORTING
F16F1/3683
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2226/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16F1/368
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60G11/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure relates to an apparatus and a method for assembling a composite material leaf spring module, wherein the efficiency of assembly of the composite material leaf spring module is improved and a camber of a spring member of a composite material is compensated for during assembly. An apparatus for assembling a composite material leaf spring module includes a first support configured to support a central portion of the composite material leaf spring module, a pair of second supports configured to individually support springs of the composite material leaf spring module, and a base connecting the first and second supports.
Claims
1. An apparatus for assembling a composite material leaf spring module, the apparatus comprising: a first support configured to support a central portion of the composite material leaf spring module, wherein the leaf spring module includes a spring member, an upper saddle disposed atop a central portion of the spring member, a lower saddle disposed under the central portion of the spring member, and a U-bolt coupling the upper saddle and the lower saddle; a pair of second supports configured to individually support springs of the composite material leaf spring module; a base connecting the first and second supports; and a U-bolt retainer separably installed on the first support; wherein the first support includes a pair of symmetrically disposed side walls, and a connection wall connecting the pair of side walls; wherein an insertable support extends from the connection wall; wherein the lower saddle has a cylindrical structure having a hollow, the insertable support has a corresponding cylindrical structure, and the insertable support is inserted into the hollow of the lower saddle; wherein the U-bolt retainer includes at least one pair of guides detachably coupled to the side walls of the first support, a pair of spaced, oppositely disposed connection members, and a pair of pressure plates; wherein each connection member of the pair of connection members is connected to the upper end of a corresponding one of the pair of guides through a connection rod, and each pressure plate of the pair of pressure plates extends from the corresponding one of the pair of guides toward a side surface of the upper saddle; wherein each of the guides has a guide surface contacting the U-bolt; and wherein the guide surface is inclined.
2. The apparatus of claim 1, wherein each of the second supports includes a support member configured to support a lower surface of the corresponding spring, and wherein the support member has an upper surface inclined at an inclination angle.
3. The apparatus of claim 1, wherein each of the guides has a recess configured to accommodate an upper end of the side wall.
4. The apparatus of claim 3, wherein the guide is separably coupled to the upper end of the side wall by inserting a dowel pin through the guide and the side wall.
5. The apparatus of claim 4, further comprising a pair of connection members connected to the upper end of the guide by a connection rod, wherein each of the pair of connection members includes a pressure plate configured to press against an upper saddle of the composite material leaf spring module.
6. A method for assembling a composite material leaf spring module by using the apparatus claimed in claim 1, the method comprising: supporting a lower saddle of the composite material leaf spring module and the spring member by the first support; supporting springs of the composite material leaf spring module by the second support units; and coupling the lower saddle and an upper saddle of the composite material leaf spring module using U-bolts.
7. The method of claim 6, further comprising: fixedly supporting the springs on the second supports by fixing the spring to the support members of the second supports using dowel pins.
8. The method of claim 7, further comprising: coupling the springs supported by the second supports to the spring member using a coupler.
9. The method of claim 6, further comprising: inserting the insertable support into the lower saddle.
10. The method of claim 9, further comprising: locating the spring member of the composite material leaf spring module on the lower saddle and arranging the spring member such that a center of the spring member is aligned with a center of the lower saddle.
11. The method of claim 10, further comprising: arranging the upper saddle and the lower saddle on and under a central portion of the spring member by positioning the upper saddle on the central portion of the spring member, and coupling the upper saddle and the lower saddle using the U-bolts.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects, features and advantages of the present disclosure will be more apparent from the following detailed description taken in conjunction with the accompanying drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION
(11) Hereinafter, exemplary embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. For reference, the sizes of the components and the thickness of the lines of the drawings may be exaggerated for convenience of understanding. Further, the terms used in the description of the present disclosure may be different according to the users, the intentions of the operators, or the customs in consideration of the functions in the present disclosure. Therefore, definition of the terms should be made according to the overall disclosure set forth herein.
(12)
(13) Spring member 2 may have an inclined camber due to the characteristics of the composite material.
(14) An upper saddle 3 and a lower saddle 4 may be disposed at the center of spring member 2, and upper saddle 3 and lower saddle 4 may be coupled to each other by a pair of U-bolts 5.
(15) Upper saddle 3 may be disposed atop a central portion of spring member 2, and lower saddle 4 may be disposed under the central portion of spring member 2. Lower saddle 4 may have a cylindrical structure having a hollow 4a at the center thereof.
(16) Springs 6 may be made of any suitable material such as tuber and may be coupled to opposite ends of spring member 2 using couplers 7.
(17) An apparatus 10 for assembling a composite material leaf spring module according to the present disclosure may be applied not only to example assembly of the composite material leaf spring module 1 of
(18) Referring to
(19) Base frame 15 may have a length corresponding to the length of the composite material leaf spring module 1.
(20) First support 11 may be installed at the center of base frame 15, and may be configured to support a central portion of spring member 2 of the composite material leaf spring module 1 as the lower saddle 4 is inserted.
(21) As shown in the embodiment in
(22) As illustrated in
(23) An insertable support 24 may extend from connection wall 23 and the central portion of composite material leaf spring module 1 may be stably arranged and supported by assembling apparatus 10 of the present disclosure as insertable support 24 is inserted into lower saddle 4 of composite material leaf spring module 1. By doing so, lower saddle 4 and upper saddle 3 may be stably coupled to each other using the U-bolt 5.
(24) Insertable support 24 has an outer surface whose shape and size correspond to the shape and size of the inner surface of lower saddle 4, to allow insertable support 24 to be easily inserted into lower saddle 4. As exemplified in
(25) The pair of second supports 12 may be disposed at opposite ends of base frame 15 and may be configured to fixedly support springs 6.
(26) Each of the second supports 12 includes a support member 31 that supports a lower surface of spring 6, and, as illustrated in
(27) The inclination angle (a) of inclined surface 31a may be set to correspond to an initial camber of spring member 2. For example, when the designed camber of spring member 2 is 4.5, the inclination angle (a) of the inclined surface 31a also may be 4.5.
(28) As illustrated in
(29) A pair of fixing blocks 32 may be fixed to ends of base frame 15 by welding or other suitable methods, and support members 31 of second supports 12 also may be fixed to support blocks 32 by welding or other suitable methods.
(30) As illustrated in
(31) U-bolt retainer 13 may include at least one pair of guides 41 detachably coupled to side walls 21 and 22 of the first support 11.
(32) The at least one pair of guides 41 may be installed on side walls 21 and 22 of first support 11 so that they face each other from the left and right sides.
(33) As shown in
(34) For example, as exemplified in
(35) The number of guides 41 may correspond to the number of installed U-bolts 5. Furthermore, when two U-bolts 5 are installed on the front and rear sides of the composite material leaf spring module 1, as illustrated in
(36) Referring to
(37) A reinforcement 48 that reinforces the strength of corresponding side wall 21 or 22 may be attached to an upper end of side wall 21 or 22 by welding or another suitable method. In such an embodiment, recess 41b of guide 41 accommodates both reinforcing member 48 and side wall 21 or 22.
(38) Guide 41 also may be separably coupled to an upper end of the side wall 21 or 22 using a connector such as a dowel pin 43. Dowel pin 43 may pass through guide 41, recess 41b, side wall 21 or 22, and reinforcement 48 so that guide 41 is separably coupled to the upper end of side wall 21 or 22.
(39) U-bolt retainer 13 may further include a pair of spaced oppositely disposed connection members 45, each connection member 45 may be connected to the upper end of one or more guides 41 using a connection rod 44. Guides 41 that are adjacent to each other along either side wall 21 or 22 may be connected to each other by each connection member 45.
(40) As illustrated in
(41) As the opposite side surfaces of upper saddle 3 are pressed by pressure plates 46, upper saddle 3 may be prevented from being dislocated, when U-bolts 5 are inserted through upper saddle 3 and fixed with any suitable component such as a nut.
(42) Hereinafter, a method for assembling the composite material leaf spring module 1 according to the embodiment of the present disclosure is described in detail with reference to
(43) As illustrated in
(44) Then, as illustrated in
(45) Thereafter, as illustrated in
(46) Thereafter, spring member 2 is positioned such that the center of spring member 2 is aligned with the center of lower saddle 4. Furthermore, springs 6 are coupled to opposite ends of spring member 2 by couplers 7.
(47) After upper saddle 3 and lower saddle 4 are arranged on and under the central portion of spring member 2, respectively, by positioning upper saddle 3 on an upper surface of the central portion of spring member 2, upper saddle 3 and lower saddle 4 are coupled to each other using U-bolts 5. Assembly of composite material leaf spring module 1 is completed by coupling lower saddle 4 and upper saddle 3 by using U-bolts 5, and then composite material leaf spring module 1 is separated (demounted) from assembling apparatus 10.
(48) According to the present disclosure, the efficiency of assembling composite material leaf spring module 1 may be improved by conveniently arranging the components of composite material leaf spring module 1 and compensating for the camber of the spring member.
(49) Although detailed embodiments of the present disclosure have been described, the present disclosure is not limited to the embodiments disclosed in the specification and the accompanying drawings, and the present disclosure may be variously modified by those skilled in the art without departing from the technical spirit of the present disclosure.