Camshaft

A camshaft operating two valves

A camshaft is a shaft that contains a row of pointed cams in order to convert rotational motion to reciprocating motion. Camshafts are used in piston engines (to operate the intake and exhaust valves),[1][2] mechanically controlled ignition systems and early electric motor speed controllers.

Camshafts in piston engines are usually made from steel or cast iron, and the shape of the cams greatly affects the engine's characteristics.

History

Trip hammers are one of the early uses of a form of cam to convert rotating motion, e.g. from a waterwheel, into the reciprocating motion of a hammer used in forging or to pound grain. Evidence for these exists back to the Han dynasty in China, and they were widespread by the medieval period.

Once the rotative version of the steam engine was developed in the late 18th century, the operation of the valve gear was usually by an eccentric, which turned the rotation of the crankshaft into reciprocating motion of the valve gear, normally a slide valve. Camshafts more like those seen later in internal combustion engines were used in some steam engines, most commonly where high pressure steam (such as that generated from a flash steam boiler), required the use of poppet valves, or piston valves. For examples see the Uniflow steam engine, and the Gardner-Serpollet steam cars, which also included axially sliding the camshaft to achieve variable valve timing.

Among the first cars to utilize engines with single overhead camshafts were the Maudslay, designed by Alexander Craig and introduced in 1902[3][4][5] and the Marr Auto Car designed by Michigan native Walter Lorenzo Marr in 1903.[6][7]

Piston engines

DOHC cylinder head with intake camshaft lobe highlighted in blue

In piston engines, the camshaft is used to operate the intake and exhaust valves. The camshaft consists of a cylindrical rod running the length of the cylinder bank with a number of cams (discs with protruding cam lobes) along its length, one for each valve. As the cam rotates, the lobe presses on the valve (or an intermediate mechanism), thus pushing it open. Typically, a valve spring is used to push the valve in the opposite direction, thus closing the valve once the cam rotates past the highest point of its lobe.[8]

Construction

Camshaft produced from billet steel

Camshafts are made from metal and are usually solid, although hollow camshafts are sometimes used.[9] The materials used for a camshaft are usually either:

  • Cast iron: Commonly used in high volume production, chilled iron camshafts have good wear resistance since the chilling process hardens them.
  • Billet steel: For high-performance engines or camshafts produced in small quantities, steel billet is sometimes used. This is a much more time-consuming process, and is generally more expensive than other methods. The method of construction is usually either forging, machining, casting or hydroforming.[10][11][12]

Location in engine

Many early internal combustion engines used a cam-in-block layout (such flathead, IOE or T-head layouts), whereby the camshaft is located within the engine block near the bottom of the engine. Early flathead engines locate the valves in the block and the cam acts directly on those valves. In an overhead valve engine, which came later, the cam follower presses on a pushrod which transfers the motion to the top of the engine, where a rocker opens the intake/exhaust valve.[13] Although largely replaced by SOHC and DOHC layouts in modern automobile engines, the older overhead valve layout is still used in many industrial engines, due to its smaller size and lower cost.

As engine speeds increased through the 20th century, single overhead camshaft (SOHC) engines— where the camshaft is located within the cylinder head near the top of the engine— became increasingly common, followed by double overhead camshaft (DOHC) engines in more recent years. For OHC and DOHC engines, the camshaft operates the valve directly or via a short rocker arm.[13]

The valvetrain layout is defined according to the number of camshafts per cylinder bank. Therefore, a V6 engine with a total of four camshafts - two camshafts per cylinder bank - is usually referred to as a double overhead camshaft engine (although colloquially they are sometimes referred to as "quad-cam" engines).[14]

Drive systems

Accurate control of the position and speed of the camshaft is critically important in allowing the engine to operate correctly. The camshaft is usually driven either directly, via a toothed rubber "timing belt"' or via a steel roller "timing chain". Gears have also occasionally been used to drive the camshaft.[15] In some designs the camshaft also drives the distributor, oil pump, fuel pump and occasionally the power steering pump.

Alternative drive systems used in the past include a vertical shaft with bevel gears at each end (e.g. pre-World War I Peugeot and Mercedes Grand Prix Cars and the Kawasaki W800 motorcycle) or a triple eccentric with connecting rods (e.g. the Leyland Eight car).

In a two-stroke engine that uses a camshaft, each valve is opened once for every rotation of the crankshaft; in these engines, the camshaft rotates at the same speed as the crankshaft. In a four-stroke engine, the valves are opened only half as often, therefore the camshaft is geared to rotate at half the speed of the crankshaft.

Performance characteristics

Duration

The camshaft's duration determines how long the intake/exhaust valve is open for, therefore it is a key factor in the amount of power that an engine produces. A longer duration can increase power at high engine speeds (RPM), however this can come with the trade-off of less torque being produced at low RPM.[16][17][18]

The duration measurement for a camshaft is affected by the amount of lift that is chosen as the start and finish point of the measurement. A lift value of 0.050 in (1.3 mm) is often used as a standard measurement procedure, since this is considered most representative of the lift range that defines the RPM range in which the engine produces peak power.[16][18] The power and idle characteristics of a camshaft with the same duration rating that has been determined using different lift points (for example 0.006 or 0.002 inches) could be much different to a camshaft with a duration rated using lift points of 0.05 inches.

A secondary effect of increased duration can be increased overlap, which determines the length of time that both the intake and exhaust valves are open. It is overlap which most affects idle quality, in as much as the "blow-through" of the intake charge immediately back out through the exhaust valve which occurs during overlap reduces engine efficiency, and is greatest during low RPM operation.[16][18] In general, increasing a camshaft's duration typically increases the overlap, unless the Lobe Separation Angle is increased to compensate.

A lay person can readily spot a long duration camshaft by observing the broad surface of the lobe where the cam pushes the valve open for a large number of degrees of crankshaft rotation. This will be visibly greater than the more pointed camshaft lobe bump that is observed on lower duration camshafts.

Lift

The camshaft's lift determines the distance between the valve and the valve seat (i.e. how far open the valve is).[19] The farther the valve rises from its seat the more airflow can be provided, thus increasing the power produced. Higher valve lift can have the same effect of increasing peak power as increased duration, without the downsides caused by increased valve overlap. Most overhead valve engines have a rocker ratio of greater than one, therefore the distance that the valve opens (the valve lift) is greater than the distance from the peak of the camshaft's lobe to the base circle (the camshaft lift).[20]

There are several factors which limit the maximum amount of lift possible for a given engine. Firstly, increasing lift brings the valves closer to the piston, so excessive lift could cause the valves to get struck and damaged by the piston.[18] Secondly, increased lift means a steeper camshaft profile is required, which increases the forces needed to open the valve.[19] A related issue is valve float at high RPM, where the spring tension does not provide sufficient force to either keep the valve following the cam at its apex or prevent the valve from bouncing when it returns to the valve seat.[21] This could be a result of a very steep rise of the lobe,[18] where the cam follower separates from the cam lobe (due to the valvetrain inertia being greater than the closing force of the valve spring), leaving the valve open for longer than intended. Valve float causes a loss of power at high RPM and in extreme situations can result in a bent valve if it gets struck by the piston.[20][21]

Timing

The timing (phase angle) of the camshaft relative to the crankshaft can be adjusted to shift an engine's power band to a different RPM range. Advancing the camshaft (shifting it to ahead of the crankshaft timing) increases low RPM torque, while retarding the camshaft (shifting it to after the crankshaft) increases high RPM power.[22] The required changes are relatively small, often in the order of 5 degrees.[citation needed]

Modern engines which have variable valve timing are often able to adjust the timing of the camshaft to suit the RPM of the engine at any given time. This avoids the above compromise required when choosing a fixed cam timing for use at both high and low RPM.

Lobe separation angle

The lobe separation angle (LSA, also called lobe centreline angle) is the angle between the centreline of the intake lobes and the centreline of the exhaust lobes.[23] A higher LSA reduces overlap, which improves idle quality and intake vacuum,[22] however using a wider LSA to compensate for excessive duration can reduce power and torque outputs.[20] In general, the optimal LSA for a given engine is related to the ratio of the cylinder volume to intake valve area.[20]

Functionality

Camshafts are integral components of internal combustion engines, responsible for controlling the opening and closing of the engine's intake and exhaust valves. As the camshaft rotates, its lobes push against the valves, allowing the intake of air and fuel and the expulsion of exhaust gases. This synchronized process is crucial for optimizing engine performance, fuel efficiency, and emissions control. Without precisely engineered camshafts, the smooth and efficient operation of an engine would be compromised.[24]

Alternatives

The most common methods of valve actuation involve camshafts and valve springs, however alternate systems have occasionally been used on internal combustion engines:

  • Desmodromic valves, where the valves are positively closed by a cam and leverage system rather than springs. This system has been used on various Ducati racing and road motorcycles since it was introduced on the 1956 Ducati 125 Desmo racing bike.
  • Camless piston engine, which use electromagnetic, hydraulic, or pneumatic actuators. First used in turbocharged Renault Formula 1 engines in the mid-1980s and slated for road car use in the Koenigsegg Gemera.[25][26]
  • Wankel engine, a rotary engine which uses neither pistons nor valves. Most notably used by Mazda from the 1967 Mazda Cosmo until the Mazda RX-8 was discontinued in 2012.

Electric motor speed controllers

Before the advent of solid state electronics, camshaft controllers were used to control the speed of electric motors. A camshaft, driven by an electric motor or a pneumatic motor, was used to operate contactors in sequence. By this means, resistors or tap changers were switched in or out of the circuit to vary the speed of the main motor. This system was mainly used in electric train motors (i.e. EMUs and locomotives).[27]

See also

References

  1. ^ "The 4 Strokes of an Engine". help.summitracing.com. Retrieved 2020-06-10.
  2. ^ "How Camshafts Work". HowStuffWorks. 2000-12-13. Retrieved 2020-06-10.
  3. ^ Georgano, G. N. (1982). The New Encyclopedia of Motorcars 1885 to the Present (Third ed.). New York: E. P. Dutton. p. 407. ISBN 0525932542. LCCN 81-71857.
  4. ^ Culshaw, David; Horrobin, Peter (2013). The Complete Catalogue of British Cars 1895 – 1975. Poundbury, Dorchester, UK: Veloce Publishing. p. 210. ISBN 978-1-845845-83-4.
  5. ^ Boddy, William (January 1964). "Random Thoughts About O.H.C." Motor Sport (1). London, UK: Teesdale Publishing: 906. Retrieved 7 June 2020.
  6. ^ "Marr Auto Car Company". www.marrautocar.com. Archived from the original on 8 February 2014.
  7. ^ Kimes, Beverly Rae (2007). Walter L Marr: Buick's Amazing Engineer. Racemaker Press. p. 40. ISBN 978-0976668343.
  8. ^ "Lunati Cam Profile Terms". www.lunatipower.com. Retrieved 2020-06-10.
  9. ^ "What kind of camshaft – made of steel or cast iron?". www.camshaftkits.com. Archived from the original on 2020-09-20.
  10. ^ "Custom Ground Cam - Affordable Custom Cam Grind - Circle Track". Hot Rod. 2004-04-19. Retrieved 2020-06-10.
  11. ^ "Custom-made billet camshafts: – Moore Good Ink". Retrieved 2020-06-10.
  12. ^ "Linamar Buying Mubea Camshaft Operations". www.forgingmagazine.com. Retrieved 7 June 2020.
  13. ^ a b Sellén, Magnus (2019-07-24). "DOHC Vs. SOHC - What's The Difference Between Them?". Mechanic Base. Retrieved 2020-06-10.
  14. ^ "What is Quad-cam engine?". www.carspector.com. Retrieved 7 June 2020.
  15. ^ "The V8: Birth and Beginnings". www.rrec.org.uk. Archived from the original on 15 March 2016. Retrieved 12 July 2020.
  16. ^ a b c "Secrets Of Camshaft Power". www.hotrod.com. 1 December 1998. Retrieved 18 July 2020.
  17. ^ "Camshaft RPM Range". www.summitracing.com. Retrieved 18 July 2020.
  18. ^ a b c d e "Understanding Camshaft Fundamentals". www.jegs.com. Retrieved 18 July 2020.
  19. ^ a b "Camshaft Lift". www.summitracing.com.
  20. ^ a b c d "Be The Camshaft Expert". www.hotrod.com. 14 June 2006. Retrieved 18 July 2020.
  21. ^ a b "What is valve float?". www.summitracing.com. Retrieved 18 July 2020.
  22. ^ a b "COMP Cams Effect of Changes In Cam Timing and Lobe Separation Angle". www.compcams.com. Retrieved 19 July 2020.
  23. ^ "Camshaft Lobe Separation". www.summitracing.com. Retrieved 19 July 2020.
  24. ^ "Vehicle Camshafts". www.kelfordcams.com. Retrieved 4 January 2024.
  25. ^ "Koenigsegg Gemera - Technical specifications". www.koenigsegg.com. Archived from the original on 3 March 2020. Retrieved 19 July 2020.
  26. ^ "The Future of the Internal Combustion Engine – Inside Koenigsegg". www.youtube.com. The Drive. Archived from the original on 2021-11-18. Retrieved 7 June 2020.
  27. ^ "Electric Locomotives – The Railway Technical Website". www.railway-technical.com. Retrieved 7 June 2020.

Read other articles:

Po des linwincieusès racsegnes sol mot foite droete, alez s' vey sol Wiccionaire Li foite droete, c' est ene alomåcion ki rashonne des mouvmints u pårtis politikes metous a l' aschate a droete sol tchantî politike, come les nazis, les recsisses, les fachisses, les noûrecsisses. Egzimpes di mouvmints et pårtis d' foite droete On plake-tot-seu antifachisse rmetou so ene plake-to-seu da Civitas, a Nameur. Mouvmints istorikes Recsisses (inte di zels : les noûrecsisses) Nazisse Fachiss...

 

Dit artikel staat op een nalooplijst. Als de inhoud op verifieerbaarheid gecontroleerd is, kan dit sjabloon verwijderd worden. Geef dat ook aan op de betreffende nalooplijst. Bekijk ook de bewerkingsgeschiedenis om te zien of anderen hier al aan gewerkt hebben. Alf Padgham winnaar 1936 Het Daily Mail Tournament was een internationaal golftoernooi in de periode dat de Europese PGA Tour nog niet bestond. Het werd altijd in het Verenigd Koninkrijk gespeeld. Geschiedenis Voordat de huidige Europe...

 

Filmmaking in Ukraine The article's lead section may need to be rewritten. Please help improve the lead and read the lead layout guide. (December 2019) (Learn how and when to remove this template message) Cinema of UkraineNo. of screens2,332 (2011)[1] • Per capita5.6 per 100,000 (2011)[1]Main distributorsB And H 20.0%Gemini Film 11.0%Kinomania 7.0%[2]Produced feature films (2009)[3]Fictional10Animated2Documentary7Number of admissions (2018...

Willi Frommelt Загальна інформаціяГромадянство  ЛіхтенштейнНародження 18 листопада 1952(1952-11-18) (71 рік)Шан, ЛіхтенштейнЗріст 180 смВага 78 кгСпортКраїна ЛіхтенштейнВид спорту гірськолижний спортКлуб Skiclub Schaan, Schaan (LIE) Участь і здобутки  Віллі Фроммельт у Вікісховищі Нагороди Олі

 

Si ce bandeau n'est plus pertinent, retirez-le. Cliquez ici pour en savoir plus. Cet article n’est pas rédigé dans un style encyclopédique (juillet 2015). Vous pouvez améliorer sa rédaction ! MölkkyJeu de société Une partie de Mölkky en cours. Données clés Éditeur Tactic Date de 1re édition XXe siècle Format Plein air Mécanismes AdresseJet Joueur(s) 2 à 16 Âge À partir de 6 ans Durée annoncée Environ 20 minutes Données clés habiletéphysique...

 

هذه المقالة يتيمة إذ تصل إليها مقالات أخرى قليلة جدًا. فضلًا، ساعد بإضافة وصلة إليها في مقالات متعلقة بها. (أكتوبر 2019) مشروع إن2 غيتواي للإسكان هو مشروع ضخم لبناء المنازل وهو في قيد الإنشاء في كيب تاون، جنوب أفريقيا. وصفته وزيرة الحكومة الوطنية للإسكان السابقة لينديوي سيسيو...

This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: Roman military engineering – news · newspapers · books · scholar · JSTOR (September 2023) (Learn how and when to remove this template message)Part of a series on theMilitary of ancient Rome 753 BC – AD 476 Structural history Army Unit types and ranks Decorati...

 

كأس تونس لكرة القدم للسيدات الموسم 2007–08 البلد  تونس المنظم الجامعة التونسية لكرة القدم النسخة 4 الفائز المعهد العالي للرياضة والتربية البدنية بالكاف الوصيف الجمعية الرياضية لبنك الإسكان الموقع الرسمي www.ftf.org.tn 2006–07 2008–09 تعديل مصدري - تعديل   كأس تونس لكرة القدم للسيدا

 

Watanabe Shiho渡邊志穂Nama lainShiho (しほcode: ja is deprecated ), Shihochān (しほちゃーんcode: ja is deprecated ),Shihochan (しほちゃんcode: ja is deprecated )Lahir25 Oktober 1987 (umur 36)Asal Kakogawa, Hyōgo, Jepang.PekerjaanPenyanyi, model, tarentoTahun aktif2005-sekarangArtis terkaitAKB48 Shiho Watanabe (渡邊志穂code: ja is deprecated , Watanabe Shiho) (lahir 25 Oktober 1987) adalah seorang model, tarento, dan idola Jepang. Ia mengawali kariernya sebagai angg...

Ukrainian NGO to coordinate media during the war This article may contain excessive or inappropriate references to self-published sources. Please help improve it by removing references to unreliable sources where they are used inappropriately. (June 2022) (Learn how and when to remove this template message) Media Center UkraineМедіацентр УкраїнаFormationMarch 14, 2022; 20 months ago (2022-03-14)HeadquartersLviv (Pravda restaurant at 32 Rynok Square) Kyiv (Me...

 

1983 studio album by Bob Marley and the WailersConfrontationStudio album by Bob Marley and the WailersReleased23 May 1983Recordedca. 1977-80, April–May 1982StudioTuff Gong Studios, Kingston, JamaicaGenreReggaeLength37:47LabelTuff Gong/Island[1]ProducerBob Marley & the Wailers and Errol BrownBob Marley and the Wailers chronology Chances Are(1981) Confrontation(1983) Legend(1984) Singles from Confrontation Buffalo SoldierReleased: 1983 Professional ratingsReview scoresSour...

 

Painting by Bartolomé Esteban Murillo The Immaculate Conception of Los VenerablesSpanish: La Inmaculada Concepción de los VenerablesArtistBartolomé Esteban MurilloYearc. 1678MediumOil on canvasDimensions274 cm × 190 cm (108 in × 75 in)LocationMuseo del Prado, Madrid The Immaculate Conception of Los Venerables or The Immaculate Conception of Soult (original titles La Inmaculada Concepción de los Venerables or La Inmaculada Concepción de Soult) i...

1979 single by Joe JacksonSunday PapersSingle by Joe Jacksonfrom the album Look Sharp! B-sideLook Sharp!ReleasedFebruary 1979Recorded1978Genre New wave ska Length4:22LabelA&M - AMS 7413Songwriter(s)Joe JacksonProducer(s)David KershenbaumJoe Jackson singles chronology Is She Really Going Out with Him? (1978) Sunday Papers (1979) One More Time (1979) Sunday Papers is a song written and performed by British new wave musician Joe Jackson. It was released on his debut album, Look Sharp!. Writt...

 

PenjaringanKelurahanNegara IndonesiaProvinsiDaerah Khusus Ibukota JakartaKota AdministrasiJakarta UtaraKecamatanPenjaringanKode Kemendagri31.72.01.1001 Kode BPS3175010004 Luas3,9543 km²Jumlah penduduk109.486 jiwa (2020)Kepadatan27.718 jiwa/km² Letak Kelurahan Penjaringan di Kecamatan Penjaringan, Jakarta Utara Kelurahan Penjaringan memiliki 18 RW dan 252 RT untuk lokasi RW 01,02,03 berada di kampung luar batang yang terkenal dengan makam keramat. Untuk RW 04,05 beradi di wilayah berok ...

 

Village and civil parish in the East Lindsey district of Lincolnshire, England Human settlement in EnglandToynton St PeterSt Peter's Church, Toynton St PeterToynton St PeterLocation within LincolnshirePopulation256 (2011)[1]OS grid referenceTF404632• London115 mi (185 km) SDistrictEast LindseyShire countyLincolnshireRegionEast MidlandsCountryEnglandSovereign stateUnited KingdomPost townSPILSBYPostcode districtPE23PoliceLincolnshireFi...

Los Angeles Metro Rail station This article relies excessively on references to primary sources. Please improve this article by adding secondary or tertiary sources. Find sources: Pershing Square station – news · newspapers · books · scholar · JSTOR (August 2020) (Learn how and when to remove this template message) Pershing Square     Pershing Square station platformGeneral informationLocation500 South Hill StreetLos Angeles, CaliforniaC...

 

Artikel ini tidak memiliki referensi atau sumber tepercaya sehingga isinya tidak bisa dipastikan. Tolong bantu perbaiki artikel ini dengan menambahkan referensi yang layak. Tulisan tanpa sumber dapat dipertanyakan dan dihapus sewaktu-waktu.Cari sumber: Selamat Pagi acara Trans7 – berita · surat kabar · buku · cendekiawan · JSTOR Selamat PagiGenreProgram beritaMajalah beritaNegara asalIndonesiaBahasa asliBahasa IndonesiaProduksiProduserOcta Sutedja...

 

Сушківський 49°42′43″ пн. ш. 31°41′18″ сх. д. / 49.71221500002777560° пн. ш. 31.68840500002777816° сх. д. / 49.71221500002777560; 31.68840500002777816Координати: 49°42′43″ пн. ш. 31°41′18″ сх. д. / 49.71221500002777560° пн. ш. 31.68840500002777816° сх. д. / 49.71221500002777560; 31.68840500002777816...

Crematorium in Hampshire, England The Park Crematorium in Aldershot The Park Crematorium is the crematorium for the town of Aldershot in Hampshire and surrounding districts, including North East Hampshire and parts of Surrey and Berkshire. It was designed by Frank Taylor, the Aldershot Borough Surveyor, and opened in July 1960. Today it is operated and maintained by Rushmoor Borough Council.[1] Facilities The chapel at the crematorium The Books of Remembrance Located near Aldershot Pa...

 

Questa voce sugli argomenti circondari della Germania e Sassonia è solo un abbozzo. Contribuisci a migliorarla secondo le convenzioni di Wikipedia. Circondario di Löbau-ZittaucircondarioLandkreis Löbau-Zittau LocalizzazioneStato Germania Land Sassonia DistrettoDresda AmministrazioneCapoluogoZittau TerritorioCoordinatedel capoluogo50°54′N 14°48′E50°54′N, 14°48′E (Circondario di Löbau-Zittau) Superficie698,54 km² Abitanti140 982 (31-12-2006) Densità2...

 

Strategi Solo vs Squad di Free Fire: Cara Menang Mudah!